Chapter II: Part 2
DR. CLAPP:—I have left this softened dentine in a great many cases, and so far as my experience goes, I have not afterwards had very much trouble. I think that, rather than expose a pulp in a patient of good health, the surrounding conditions being favorable, I should prefer to leave a small layer, disinfecting and drying as much as possible before filling. It appears to me to be a great calamity whenever I expose the pulp in this way or in any other way, and I do the best I can to avoid doing so. It has been my practice, where I thought I should expose the pulp, to leave this softened dentine, but I have seen a few cases where decay has undoubtedly continued underneath the oxyphosphate or oxychloride fillings. I think it is a matter of great importance, and one where the best judgment will sometimes go astray.
DR. EDDY:—I would just like to mention that hydronapthol may be fearlessly used in all cavities without causing any escharotic action.
With regard to the spongy condition that Dr. Clapp speaks of, it must be thoroughly dried out with a hot air syringe. If it cannot be thoroughly dried, it is better to remove it.
DR. WERNER:—In regard to the question asked by Dr. Clapp, I should say that it would depend on the amount of sensibility yet left in the partly decalcified leathery part of the dentine spoken of. If that still has sensibility, I should believe in treating it not so much escharotically as antiseptically. Again I wish to assert my opinion, that after the foramen was closed and the tooth well developed, it would not be a great calamity for a tooth if the pulp were devitalized and the pulp cavity well filled. I am much of the opinion that a tooth in a devitalized condition resists better than a live tooth the attacks of caries. This is perhaps an extraordinary statement to make, and I know is contrary to the teachings of good authority, yet the many pulpless filled teeth I see free from decay, while their living neighbors do decay, leads me to this opinion.
DR. REILLY:—I would like to state a little experience that might cover Dr. Clapp's case partly. Some time ago a young lad came to my chair whose father had great difficulty in getting to go to a dentist's office. There were two enormous labial cavities in the central incisors. I did not attempt to excavate at all. I had been cautioned before that it would be hazardous to try it, as he was a fearful little fellow to get along with, and his teeth were very sensitive. I simply wiped out the cavities as well as I could, getting them dry without causing pain, and filled them with gutta-percha. He came again a few weeks ago, and the dentine was all there, much harder, as I remember it, than it was on the first visit. I removed it the last time and filled them without any trouble. Now, I do not think it is any risk to leave decalcified dentine in the bottom of a cavity, providing it is tightly sealed; but, as Dr. Eddy says, I should depend more on the drying process than on the use of antiseptics.
DR. WERNER:—Dr. Reilly brought up a very important point. Much less excavation than is generally done is necessary for the absolute control of decay, and that all excavation that gives pain is, in one sense, unscientific. It is only necessary, from a mechanical standpoint, to retain metallic fillings, but I think some day we will have a plastic filling that will require very little excavation—simply the wiping out of the cavity and the thorough removal of the actual decayed portion, leaving all that has sensation—treating the cavity antiseptically, and when in an aseptic condition, fill it with this plastic filling. The surgery of to-day is very much modified. Muscles and bone are not cut away as they were forty, or even twenty years ago. To-day ivory is inserted and made useful in the place of bone, and why should not tooth substance that has sensation be preserved? We have to cut it away simply because we have to shape the cavities to retain the metallic fillings; that is, we treat mechanically instead of therapeutically. In the near future I hope we shall know better than to cut away that which should be saved. I have a very hard little patient whose parents wish me to save his teeth but not to give him pain, and the little fellow will not stand any excavation. His teeth are being preserved at the only disadvantage of having to have a great many temporary fillings.
DR. SMITH:—I do not quite understand the logic of Dr. Reilly's conclusions. I may misunderstand him. He tells of a case coming to him where he did not see fit to excavate; he placed in that cavity some gutta-percha; the gutta-percha after being in a while was removed and the cavity excavated. Now, how did he know the depth of decay at the first sitting? and not knowing the depth of the cavity, how did he know that decay had not gone on in that cavity?
DR. REILLY:—I think I was cautious about that statement. I said, to all appearances, it had not decayed. Of course, I could not tell absolutely, only from my experience in excavating I judged it was about the same as when I first saw it, perhaps a little harder. If we were not able to judge something of the depth of decayed dentine, we would be in constant danger of exposing the pulp. If you cannot tell by the feeling of your excavator when you are near the pulp, I would like to know what you are going to do in those cases where you cannot see the bottom of the cavity?
DR. SMITH:—Yes; but you say you did not use your excavator in this case.
DR. REILLY:—I reached my conclusions while wiping out the cavity with the forceps and cotton, and I thought then, and it is my feelings now, that decay had not gone on in that cavity at all. I think it is possible for such a condition of affairs to exist; I think that things stand still in such a condition. I had a case the day before yesterday which was treated some ten years ago, and on removing the filling I found the pulp canals filled with cotton. There was no odor at all—perhaps the cotton was slightly discolored, but the cavity was in apparently the same condition in which it had been left; and it seems to me that if a tooth would remain in that condition with cotton, why wouldn't it be preserved under gutta-percha in just the same condition? I don't know why the gentleman should conclude that it would decay? What leads him to think that it would decay?
DR. SMITH:—I don't know that it is so, but I have read somewhere that in decayed dentine there exists "pesky little bugs," and if a cavity is stopped up and these micrococci, or bacteria, cannot get at the oxygen which comes to a cavity from the outside, they will work in to the dentine and decalcify the tooth substance in the search for that food which they live on. It is not my theory, but I read it somewhere, and in my practice I either kill the bugs or take them out.
DR. REILLY:—That theory may be all right, but it does not work out in my practice. The experience that I had with this young man has been repeated over and over. I do not excavate carious dentine as far as it can be, and I don't think that theory will work out in all cases. If bacteria are there after the cavity has been thoroughly cleansed and tightly stopped, they must find an early death in some way.
DR. NILES:—I am very glad to hear Dr. Reilly speak as he does. It is perfectly consistent with the accepted theory of decay. Decay does not progress where moisture and oxygen are excluded; therefore a cavity thoroughly dried out and hermetically sealed is good treatment and sound in theory. Nature has formed a covering to the nerve, and although nothing but the matrix of that covering may remain, I would not tear it away if an attempt is to be made to save the nerve. I would retain it with its odontoblastic connections with the pulp. I believe it is the only reasonable theoretical and practical course to follow. Let the nerve alone; nature has provided a covering, why should it be torn away? If there is any irritation, it is very easily removed. In my opinion, a pulp is never inflamed to an extent that needs treatment when it is free from soreness by percussion. If there is inflammation at all in the pulp there will be periosteal disturbance to give warning; but if the periodental membrane is not inflamed, it may be concluded that the pulp is free from irritation; provided, of course, it has never been painful or previously inflamed.
DR. REILLY:—I would like to relate my experience with cases of this kind which have been right under my eye and care for some two and one-half years. When I first began to fill my babies' teeth, I made it a point that they were not going to be frightened. The eldest is six years old, and has been under treatment for nearly three years, and during that time she has never experienced any pain in the chair, and she will come to my office any time with confidence,—in fact she seems to like it. Her teeth are very poor, and in the first ten cavities I did not do any excavating whatever. I practically did not remove any decayed dentine. I simply stuck in fillings wherever there was a cavity and depended entirely on dryness, and I have had good results from it, with no dead pulp up to the present time. After the first dressing of cement I endeavor to remove carious dentine.
DR. TAFT:—Did you use a rubber dam?
DR. REILLY:—No, sir. The teeth were too short and it could not be done without causing some pain. My principal object was to avoid pain.
DR. WERNER:—Did you put in any gutta-percha fillings?
DR. REILLY:—Yes, sir. I put in some at first; then cement, and I have used copper amalgam in crown cavities.
DR. GILLETT:—It seems to me that the case which Dr. Reilly has related is merely the ordinary temporizing with children's teeth, the object being to save them pain, and the case would be somewhat different with adult teeth in which there has been a large amount of decay, and when we expect to do permanent work. I do not see how that decayed, diseased matrix can be non-irritating, as Dr. Niles claims.
DR. NILES:—If it was irritating you would have inflammation.
DR. GILLETT:—A pulp will sometimes stand much irritation without showing evidence of inflammation. An inflamed pulp is not always painful. My experience with decalcified dentine under fillings has been gained chiefly from removing fillings which other dentists have inserted over such decalcified dentine, and I have seen many cases where the results were anything but satisfactory.
DR. NILES:—I have had some experience in that line myself during the last thirty years, and I have generally found decalcified dentine under good fillings to be in as good condition as when it was left there. In most cases it was left there, not with any idea of conservative treatment, but because the dentist was too lazy to take it out. I do not believe that decalcified dentine, thoroughly cleansed and dried, and hermetically sealed, can do any harm whatever to a nerve, or create any irritating effect. I would not leave a sloppy piece of dentine in the bottom of a cavity, which could not be well dried; neither would I leave the cavity half-full of decay, because in that case I could not reasonably expect that there would be no irritation.
DR. EDDY:—If my memory serves me right, Dr. Niles once read a paper before the American Academy of Dental Science, in which he stated that in those cases of decalcified dentine in the bottom of the cavity he invariably used arsenious acid, and treated them the same as he would an exposed pulp, and it went on record. Now, to-night, he seems to be advocating an entirely different method.
DR. NILES:—I should like to see that statement. I have written a paper on the subject—you will find it probably in the _Independent Practitioner_—but I don't think you will find the statement there that I always destroy the nerve in cases where there is decalcified dentine at the bottom of the cavity. Of course, where I have inflammation in the pulp and the tooth is sore, I should destroy the pulp.
DR. BRIGGS:—Rules have their exceptions, and when I make the statement that I do not believe in capping pulps, I still claim the privilege of having certain exceptions. It seems to me that in all the cases of actual exposure, the question of capping the pulp is merely one of expediency for the purpose of keeping the tooth along. You do not wish to destroy the pulp at that time, perhaps, because it is a young tooth; or perhaps you dread the trouble and inflammation which is likely to ensue from the use of arsenious acid at that time, or possibly the patient is going away. In those cases I have had no trouble in putting a dressing in, which has kept the tooth quiet for a long time, but I always expect that sooner or later I will have a dead pulp to attend to. In fact, the most of the pulps that I have capped to preserve, are pulps that are not exposed, but are protected by a thin layer of dentine, perhaps decalcified, but which I could easily make aseptic. Many cases of pulp stones are the result of putting a filling too near the pulp, which is irritating and causes a formation. In those cases I remove the irritant and put in a dressing. That dressing is made by mixing the oxide of zinc with an antiseptic which has some anæsthetic property—say some essential oil; then covering that with a thin layer of copper plate, and then putting a hard filling over that. There is always an uncertainty about it, and four, eight or even twelve years is not always time enough to prove the success of capping the pulp. It may be that after twelve years you find a pulp stone formed that will give all the trouble and exhibit all the symptoms of neuralgia. If your tooth is fully formed, it is better to get the pulp out of the way and to fill it properly, and have a good, healthy tooth. It has been said this evening that the office of the pulp is to form the tooth, and when the tooth has been fully formed its usefulness is, to a greater or less extent, over, and the tooth can do good service without it, and this opinion I agree with.
Perhaps right here would be a good place to mention something which I intended to speak of later on, under the head of "Incidents of Office Practice." We have, all of us, more or less trouble from applying arsenious acid, and I have lately found that where the pulp is exposed, I can, by wiping a 20 per cent. solution of cocaine over the surface, inject without pain a twenty per cent. solution of cocaine, and after a few moments remove the pulp entirely, also without pain. My brother and myself have operated several times on such cases lately with satisfaction to ourselves and our patients. I say several cases, because we have disposed of some old cases which had resisted the arsenious acid and had been hanging along waiting for "something to turn up."
DR. GILLETT:—Dr. Briggs' remarks concerning injecting cocaine solution, and removing pulps in this way, brought to my mind that the chief use that I make of cocaine is in connection with arsenious acid, when I am going to destroy a pulp. My method is to moisten the end of an instrument, and pick up with it some of the cocaine crystals, making a pellet the size of two or three pinheads, and seal it in with the arsenious acid. I find it very helpful in controlling the pain in connection with such application.
PRESENTATION OF SPECIMENS.
PRESIDENT COOKE:—Dr. Gillett will show a warm-air apparatus.
DR. GILLETT:—I was prompted by the note on the card, saying that an apparatus for obtunding dentine would be shown, to bring up this apparatus, which some of you have seen before, as Dr. Brackett exhibited it at the last meeting of the American Academy of Dental Science. This is an apparatus for obtunding sensitive dentine, of which there are but a few of its kind in the country, and this particular one was sent to Dr. Brackett by Dr. Bogue, of New York. I have used it some for the last two or three weeks, and find that it is possible to produce very good results without hurting the patient. Those who have used Dr. Waite's obtundent, and have gotten satisfactory results with it, will perhaps appreciate my explanation in this way. I have used that with considerable success, and like it very well, and I find that I can do the same work with this apparatus, with the additional gain that its application is not painful, as a rule. It is simply a means of obtaining dryness in the cavity by the use of a continuous current of warm air.
H. L. UPHAM, D.M.D.,
_Editor Harvard Odontological Society_.
PHOSPHATE OF ZINC CEMENT AS ANCHORAGE FOR PERMANENT FILLINGS.[2]
BY C. J. PETERS, D.D.S., SYRACUSE, N. Y.
About six years ago I read a paper before the Syracuse Dental Society on the subject, "Oxy. Phosphate," in which my main object was to bring forward the idea of its use as anchorage for amalgam fillings in particular. After the experience I have had with the method, I have nothing to retract, but can reiterate with emphasis every word said then. This, now, is no new untried thing I bring before you. For the last two years it has been talked of more or less throughout the country. I conceived the idea early in 1884 when a lady came to me for treatment in whose mouth were four teeth which two years previously she had been told were beyond saving, but had neglected having them extracted on account of the dread of the operation. I treated three of these teeth and filled the roots, but could think of nothing that would be retained in the crown but cement. I wondered if amalgam would stick to cement as the cement does to tooth structure. I tried it, and was successful, and those three fillings are in to-day and can be produced at any time.
The good results attending its use with amalgam, suggested at once numerous uses to which it might be put, as: anchorage for gold, foundation for any other filling at one operation, lining for thin walls when objectionable color of filling material could show through, cementing fillings which had fallen out or loosened intact, last to place temporarily or otherwise. As an anchorage, its greatest is, I believe, under amalgam fillings in cases of badly broken down molar and bicuspid crowns where, on account of excessive decay and nearness of the pulp, reliable undercut cannot be obtained, and if it could be, would so weaken what remained of the crown as to deprive it of strength to carry the filling. It is especially useful in molars where the buccal surface and a half or more of the grinding surface is gone, in bicuspids whose proximate surfaces are gone with a large share of the grinding, so that the opening of the cavity is the full size of the circumference of the tooth and the remaining walls thin. It is astonishing how many of these latter cases can be shaped and contoured with amalgam without a particle of the amalgam being in sight after the work is finished. If in an anterior proximal filling proper contouring make it necessary for some of the amalgam to show, the anchorage may be thoroughly relied on to permit of cutting out a small portion and facing with gold. The shading of the thin walls by the amalgam is absolutely prevented by the cement. I have in my own mouth a molar in which the filling was loosened by mastication five times on account of the cavity being one of the kind where reliable anchorage could not be obtained. The pulp finally became exposed from frequent cutting away of tooth structure, and the sixth filling was anchored by taking advantage of the pulp chamber, or a portion of it. To use cement as anchorage for amalgam, this is the process: Mix the amalgam according to your custom; place on a slab for mixing cement a small quantity of the liquid and powder ready to mix; then, the cavity being prepared, dry it thoroughly and keep it so while mixing the cement. This being done, place a small amount in the cavity, and at once upon it place a piece of amalgam, which should be so manipulated with the instrument suited to the size and shape of cavity as to force the cement under the amalgam all over the floor of the cavity. Care should be taken to not force the cement entirely to the cervical edge in proximal cavities, and any excess of cement used should be worked out at a point easy of access. By this time the cement is hard enough to be easily chipped off whenever it has been forced beyond the inner edge of the enamel. The filling with amalgam is proceeded with and finished in the usual manner. It is essential that the cement should not be smeared over the edges of the cavity, but carefully worked all over the dentine, closing the mouths of the tubuli, allowing the enamel edge free for contact with the amalgam. The edges of such a filling are better, and remain better than those of the ordinary filling, for the reason, I believe, that the cement controls, or at any rate lessens, the spheroidal tendency in the amalgam. In very deep cavities it is well to work into the cement a piece of hardened amalgam before inserting the fresh, as it lessens the amount of cement necessary, and also of the amalgam, and again prevents the tendency to spheroid. Proximal cavities in children's teeth are very easily filled with amalgam by this method, and without causing pain in cutting tooth structure.
We now come to the use of cements as anchorage for gold. With this material it has a smaller field of application, and in my hands does not yield as good results as in the use of amalgam. I believe that Dr. F. D. Nellis, of Syracuse, New York, was the first to conceive the idea and use the cement as an anchorage for gold. It is useful in teeth having very shallow cavities, and in those cases where, while it is desirable to use gold, the edges chip or shale off at every attempt to make the cavity retentive. The method of use is as follows: The rubber dam, of course, is used. The cavity being ready, a small amount of cement is mixed and placed in it. On the cement put a cylinder of gold large enough to cover the floor of the cavity. Work the gold into the cement, at the same time working the latter all over the cavity. Trim cement from edges and proceed with the filling, making a mechanical anchorage of the gold with that anchored by the cement. Foil or pellet may be used in place of cylinder, and it may be cohesive or not, and the filling finished with soft or cohesive gold, but I think the best results are obtained by using soft cylinder over the cement, continuing with the same and finishing with a few strips of annealed foil. A very good way is to proceed to fill the cavity with gold the same as if cement were not to be used for anchorage, holding the gold in place with another instrument, and when sufficient has been inserted to nicely take the form of the cavity, to take out, place a little cement in the cavity, then force the gold back to place, and after waiting a minute or two for the setting, go on and finish the filling. It is not necessary in this work to confine oneself to the use of the phosphate of zinc cement. In restoring color to very dark pulpless teeth, and wherever extra whiteness is desired, the oxychloride may be used with advantage, but must not be relied upon for strength like the oxyphosphate. In shading, I get the best general results from the yellow shade of the latter. Pulpless teeth generally have a bluish tinge, and yellow seems to neutralize it very effectually. In regard to the effect of oxyphosphate in deep cavities in teeth with living pulps, it does not seem necessary for me to say much here, since the subject has long been worn threadbare by the profession. However, it must be borne in mind that here is a difference. The cement in use I have described is sealed away from the fluids of the mouth and does not have the same effect as when being disintegrated by those fluids. It remains a perfectly inert substance so long as moisture is kept from it, and has the same use in the floor of the cavity as the varnish so often recommended for closing the tubuli of the dentine to prevent ingress of moisture from that direction. In such cases it is a very simple matter to touch the bottom of the cavity with liquid gutta percha before using the cement. In cases of exposure where capping is desired, cap according to your custom and then proceed as described. When extirpation is resorted to, I fill root and pulp chamber with gutta percha.
CAPPING EXPOSED PULPS.[3]
BY A. H. FULLER, M.D., D.D.S., ST. LOUIS, MO.
I will, in a brief manner, give something of a history of the practice of capping the exposed pulps of teeth, with a view of rendering the teeth comfortable and useful, and at the same time preserving the vitality of the capped pulp.
In the early days of the profession, up to and including the time of Hunter, Fox and Bell, the exposure of the pulp was almost equivalent to the absolute loss of the tooth; not from the fact that dentists were ignorant of the conditions necessary for its retention, but from the want of instruments and appliances with which to perform operations for its preservation.
We find them attempting in various ways to overcome the difficulties with which they were surrounded. They attempted to shrink the pulp and render it less sensitive, that they might fill over without wounding or pressing upon it. To accomplish this, astringents and opiates were resorted to; again, acids, alkalies, or the actual cautery were used to destroy it. Any of the above operations were rarely possible, and when possible, still more rarely successful. The extraction and replantation of the aching tooth was resorted to, the pulp removed and the root canals filled in cases where the means at hand would admit. Cleansing the tooth by boiling before replanting, was _suggested_ by Hunter.
Following the above methods, the operation of excision had its day, its advocates and its opponents. This consisted in removing the crown and as much of the root and pulp as possible with cutting forceps, adapted to the different teeth.
The following from "Waite" would lead us to infer that there were those in his day, as well as at present, who would mount a hobby and attempt to ride into prominence by so doing. In discussing this operation of excision, he says: "At the present period, nothing is aimed at but novelty; nor do many productions succeed that follow the regular line of going on; and while men of science pursue honorable and just means to bring themselves into notice, their reputation is frequently surpassed by cotemporaries, brought forward by some lucky coincidence."
This digression may possibly be excused, as it was, in a measure, necessary, in order to continue the history of attempts at conservation of the dental pulp. I will copy from a few of the earlier writers on dental subjects, to show methods of practice, together with results as given:
Jourdan, writing in 1784, says: "I saw a right canine tooth, in a young lady of twenty-three, so worn away as to expose the commencement of the pulp cavity. I enlarged the opening, gave vent to a drop or two of dark, offensive blood, and the pains, which had been very acute, ceased. I destroyed the sensibility of this tooth with cotton dipped with ether, and filled it with gold. It is still in the mouth and gives no trouble, though it has a blueish hue."
"Koecker" gives the method pursued by him from about 1817. He first produced a black scar by burning, with a red-hot wire, the exposed pulp: covered this with a capping of lead foil, and filling over this with gold. He had previously used gold, and afterwards tin foil, as a capping, but with indifferent success. He attributed the later successes to the cooling properties of the lead.
He relates case after case, and adds: "Five out of six teeth can be preserved alive when this operation is _skillfully_ performed." He relates one case where he treated and capped seven teeth, and successfully preserved six of the pulps alive for many years. He further says the smallest error will inevitably cause the destruction and loss of the tooth. He devotes ten pages of his "Principles of Dental Surgery" to this subject.
"Fitch," 1835, recommends the treatment of the exposed pulp with Aleppo galls, scraped up, placed on the exposure and covered with wax; a few weeks or months later, caps with sheet lead or piece of gold plate and fills with gold. He relates numerous cases and complete success of this practice.
Harris, in 1840, arched his gold fillings over the exposure and continued the filling with gold, with some success. Had tried Fitch's method with indifferent success, and thought Koecker's must from necessity result in failure.
In 1841, "Lefoulon," in his work, after giving some of the methods and remedies of his predecessors and cotemporaries, says: "As for ourselves, though we be accused of being controlled by one permanent notion, truth compels us to say that the employment of our ethereal alluminous paste has enabled us to preserve the teeth of our patients, even when these organs were attacked with most intense inflammations. Its sedative and extraordinary anti-spasmodic quality does not fail to triumph over the inflammatory erytheism of the dental nervous system and its appendages to such an extent that all pain and all irritation cease at the end of some days, sometimes on the next day. Let the incredulous put us to the proof and test for themselves the truth of our words."
The above quotations will show about the status of the professional opinion as expounded by the authors of the then works on dentistry. Most of these were written by practitioners who claimed special skill, and were in a measure separated from each other and the profession.
With the exception of Hudson, Maynard and, possibly, one or two others, the practice of removing the pulps and filling the canals was not known or attempted. Harris, in 1840, speaks of their operations, but had attempted it only in a few cases, and with indifferent success.
The necessity for, at least, claiming to succeed in operations of this kind—saving pulps—was almost imperative.
In 1850, Dr. J. D. White, in the _News Letter_, says: "The treatment of the exposed pulp has given rise to great difference of sentiment among well educated dentists, but mainly about the means which should be employed for that purpose, agreeing pretty generally that it is bad practice to destroy it entirely. But as well might we expect to procure a healthy function of the reto-mucosum when denuded of the epidermis by substituting one of our own invention, as to procure a healthy function of the pulp when deprived of its natural protection, the bone."
From about this time until within a comparative recent date, in all methods of capping the ultimate design has been to secure a production of secondary dentine at the exposed point of the pulp. The methods and materials made use of are almost numberless, and the successes claimed are also equally as numerous. For applications in the treatment we have recommended to us in our text-books, pure nitric acid, pure carbolic acid, pure creosote, iodoform, dilute chloride of zinc, iodine, bichloride of mercury, and in fact everything from stimulating it with the electric cautery, to feeding it upon lacto-phosphate of lime and powdered dentine. For capping: the different cements, stoppings, gums, minerals, etc.; and the cases run from the capping of the remaining third of the pulp in the root of a lower incisor upon which a pivot tooth was to be placed, an exposure in the distal surface of a third upper molar, and this suppurating, to a simple exposure from excavating a cavity for filling.
Our dental societies in their reports show that some are very successful in their endeavors to save exposed pulps: that others don't kill babies for the sake of having a funeral, and attempt to save everything: while others, whose experiences are just as extensive, whose observations and opinions are just as much to be respected, claim that an exposed pulp that has ached or been inflamed, can never become healthy by any treatment whatsoever.
There has been, without doubt, a gradual change in practice for the past fifteen years, brought about by sad experiences and the better knowledge of the tissues involved; also by the improved educational condition of the profession as a whole. Dr. Black, in the _American System of Dentistry_, on "The Pathology of the Dental Pulp," has given us, as far as I am able to judge, by far the best and most instructive contribution upon this subject. He concludes his sixty pages of valuable observations as follows:
"PATHOLOGY OF THE DENTAL PULP—GENERAL CONSIDERATIONS."
"In the foregoing pages I have frequently alluded to the fact—which is apparent in a very large proportion of my microscopic preparations—that any of the secondary calcific formations within the pulp of the tooth, result in exhaustion and final death of the pulp. This fact is so prominent that it seems to me that it cannot well be overlooked; and yet, in the capping of exposed pulps, it seems to have been the thought of the profession that to be able to obtain a secondary deposit under such circumstances was to insure the permanence of the health of the pulp. This was my own thought some years ago, but further clinical experience, combined with closer microscopical study of the subject has convinced me that this is a mistake. Secondary deposits may, and do, insure temporary quiet, but so far from insuring health are they, that, as a matter of fact, they bring about the very conditions that we most wish to avoid—the degeneration and final destruction of the pulp.
"In a large majority of cases, however, this result is brought about very slowly, and thus has escaped the notice of most observers; for if an exposed pulp is capped and the cavity filled, and the case seems to do well for a year or two, it is regarded as a success, and is lost sight of. When this returns some years later with a dead pulp, it is treated as one of the great mass of such cases that are constantly presenting themselves, and probably no note was made of the fact that it was capped at a certain time, and was one of the many successful cases.
"Very many cases of capping pass on for years without any deposit whatever, and seem to remain in a perfectly healthy condition. This we must regard as the most desirable result that can be obtained. Enough of these cases have been noted to demonstrate the possibility of rendering the conditions so nearly normal that no disturbance of the functions of the organ occurs."
From my own experience and observation, and with all due regard for the experiences and opinion of others, I will say, when there has been an exposure of the pulp, with any considerable pain as a consequence, I would in all cases destroy and remove. In cases where from the location of the cavity, or where the surroundings would not admit of a satisfactory operation otherwise, I would devitalize. With the remedies at our command, the increased facilities for destroying and removing the pulp, cleansing the canals, and the various means for hermetically filling them, thereby rendering the tooth absolutely free from painful impressions, just as serviceable, just as beautiful, and in all respects as enduring. I fail to see how we can justify ourselves, or do justice to the patient by subjecting them to a painful and, possibly, an imperfect operation, with the probabilities that they will again be obliged to seek for relief from the same offending member.
In conclusion, I would add, that accepting the reasoning of Dr. Black as the correct explanation of the conditions presented, I believe there are, comparatively, a small number of cases where we are able to so protect the exposed pulp as to leave it in a normal condition; and while we should endeavor to save the patient time and expense, we should also endeavor to secure them relief from pain and future suffering, and also protect ourselves and the profession from the criticisms following operations that are worse than failures. Since my experience has enabled me to distinguish, to a certain extent, between facts and fables, between the teachings of reasoning intelligence and egotistical statements, my practice has been most satisfactory, my ways have been those of pleasantness, and my paths those of comparative peace.
* * * * *
DRS. J. A. PRICE, Weston, Mo., J. C. Goodrich, Wentzville, Mo., J. H. Kennerly, Lebanon, Ill., P. H. Helmuth, Highland, Ill., Geo. Cameron, Carrollton, Ill., F. A. Green, New Albany, Ind., F. H. Caughell, Morrison, Mo., J. O. Eppright, Odessa, Mo., R. R. Vaughan, Fulton, Mo., visited St. Louis during the past month.
OBITUARY.
At the annual meeting of the Southern Illinois Dental Society, held in Chester, October 21st, 1890, the following resolutions, expressive of the sense of the Society, relative to the death of Dr. Homer Judd, and Dr. M. D. LaCroix were adopted.
WHEREAS, The Southern Illinois Dental Society having learned with profound regret of the death of Dr. Homer Judd since the last annual meeting, the members in convention assembled desire at this time, both individually and collectively, to testify to their high esteem and great love for the life and character of the deceased. Much of the success of the Society is due to his kind helping hand as one of the founders, and the admirable rules and by-laws governing it, were largely the work of his experience.
The members of the Southern Illinois Dental Society will ever hold in reverent regard the memory of Dr. Homer Judd, and extend to his family their respectful sympathy; and the Secretary is hereby requested to advise the family of this action.
C. B. ROHLAND, }
T. W. PRICHITT, } _Committee_.
L. BETTS, }
WHEREAS, We have learned with deep regret and sorrow of the death of our friend and professional brother, Dr. M. D. LaCroix of Lebanon, Illinois, in the prime of his young manhood and usefulness in the dental profession; it is hereby
_Resolved_, That in the death of this estimable young man, the Southern Illinois Dental Society has lost one of its most earnest and enthusiastic members, the world a useful and honorable citizen, and the social circle a faithful and beloved companion;
_Resolved_, That our heartfelt sympathies are hereby tendered to the family of our deceased brother, in the hour of their sad bereavement;
_Resolved_, That these resolutions be entered upon the records of this Society, that copies be sent to the family of the deceased, and to the dental journals for publication.
J. J. JENNELLE, }
C. C. CORBETT, } _Committee_.
R. H. CANINE. }
NORTHERN OHIO DENTAL ASSOCIATION.
The thirty-second annual meeting will be held in Oberlin, Ohio, Tuesday, May 12th, 1891, at ten o'clock A.M., and continue its sessions three days.
SUBJECTS FOR DISCUSSION.—"Development of the Teeth." Paper by Dr. W. H. Whitslar, Youngstown. Discussion opened by Dr. A. J. Dowds, Canton.
"The Recurrence of Decay in Teeth." Paper by Dr. J. G. Templeton, Pittsburgh, Pa., and "Hind Sight." Paper by Dr. W. H. Atkinson, New York. Discussion opened by Dr. C. R. Butler, Cleveland, and Dr. E. J. Waye, Sandusky.
"The Sanitary Condition of the Mouth, and How Best to Maintain It." Paper by Dr. J. F. Dougherty, Canton. Discussion opened by Dr. W. T. Jackman, Cleveland and Dr. J. H. Wible, Canton.
Correspondence.
DEPOSIT PLATES.
EDITOR ARCHIVES:—Please allow me a word in regard to the electric deposit plate. Mr. E. E. Clark, the owner and manager, has been absent in the West in its interest most of the year, and I have, in his absence, undertaken to look after the making of the plates. For a considerable time past, the plates have been sadly deficient in gold, sometimes not enough being put on to properly vulcanize over.
I was unable to account for it, knowing that full quantity of gold was supplied. The secret has been discovered, and the thief lined his pockets instead of coating the plates with gold, and is now in jail awaiting trial for larceny.
The plates as now made are all right in every respect, and it is hoped that all its former friends will again come back to its use.
Yours, etc.,
C. S. STOCKTON.
Newark, Nov. 17th, '90.
Selection.
PEROXIDE OF HYDROGEN AND OZONE. THEIR ANTISEPTIC PROPERTIES.[4]
BY DR. PAUL GIBIER,
_Director of the Pasteur Institute of New York_.
GENTLEMEN:—Since the discovery of the peroxide of hydrogen by Thenard, in 1818, the therapeutical applications of this oxygenated compound seem to have been neglected both by the medical and surgical professions; and it is only in the last twenty years that a few bacteriologists have demonstrated the germicidal potency of this chemical.
Among the most elaborate reports on the use of this compound may be mentioned those of Paul Bert and Regnard, Baldy, Péan and Larrivé.
Dr. Miguel places peroxide of hydrogen at the head of a long list of antiseptics, and close to the silver salts.
Dr. Bouchut has demonstrated the antiseptic action of peroxide of hydrogen, when applied to diphtheritic exudations.
Prof. Nocart, of Alfort, attenuates the virulence of the symptomatic microbe of carbuncle before he destroys it, by using the same antiseptic.
Dr. E. R. Squibb,[5] of Brooklyn, has also reported the satisfactory results which he obtained with peroxide of hydrogen in the treatment of infectious diseases.
Although the above-mentioned scientists have demonstrated by their experiments that peroxide of hydrogen is one of the most powerful destroyers of pathogenic microbes, its use in therapeutics has not been as extensive as it deserves to be.
In my opinion, the reason for its not being in universal use is the difficulty of procuring it free from hurtful impurities. Another objection is the unstableness of the compound, which gives off nascent oxygen when brought in contact with organic substances.[6]
Besides the foregoing objections the surgical instruments decompose the peroxide, hence, if an operation is to be performed, the surgeon uses some other antiseptic during the procedure, and is apt to continue the application of the same antiseptic in the subsequent dressings.
Nevertheless, the satisfactory results which I have obtained at the Pasteur Institute of New York with peroxide of hydrogen, in the treatment of wounds resulting from deep bites, and those which I have observed at the French clinic of New York, in the treatment of phagedenic chancres, varicose ulcers, parasitic diseases of the skin, and also in the treatment of other affections caused by germs, justify me in adding my statement as to the value of the drug.
But, it is not from a clinical standpoint that I now direct attention to the antiseptic value of peroxide of hydrogen. What I now wish is merely to give a full report of the experiments which I have made on the effects of peroxide of hydrogen upon cultures of the following species of pathogenic microbes: Bacillus anthracis, bacillus pyocyaneous, the bacilli of typhoid fever, of Asiatic cholera, and of yellow fever, streptococcus pyogenes, micro-bacillus prodigiosus, bacillus megaterium, and the bacillus of osteomyelites.
The peroxide of hydrogen which I used was a 3.2% solution, yielding fifteen times its volume of oxygen; but this strength reduced to about 1.5%, corresponding to about eight volumes of oxygen, by adding the fresh culture containing the microbe upon which I was experimenting. I have also experimented upon old cultures loaded with a large number of the spores of the bacillus anthracis. In all cases my experiments were made with a few cubic centimetres of the culture in sterilized test-tubes, in order to obtain accurate results.
The destructive action of peroxide of hydrogen, even diluted in the above proportions, is almost instantaneous. After a contact of a few minutes, I have tried to cultivate the microbes which were submitted to the peroxide, but unsuccessfully, owing to the fact that the germs had been completely destroyed.
My next experiments were made on the hydrophobic virus in the following manner:
I mixed with sterilized water a small quantity of the medulla that had been taken from a rabbit that had died of hydrophobia, and to this mixture added a small quantity of peroxide of hydrogen. Abundant effervescence took place, and, as soon as it ceased, having previously trephined a rabbit, I injected a large dose of the mixture under the dura mater. Slight effervescence immediately took place, and lasted a few moments, but the animal was not more disturbed than when an injection of the ordinary virus is given. This rabbit is still alive, two months after the inoculation.
A second rabbit was inoculated with the same hydrophobic virus, which had not been submitted to the action of the peroxide, and this animal died at the expiration of the eleventh day, with the symptoms of hydrophobia.
I am now experimenting in the same manner upon the bacillus tuberculosis, and if I am not deceived in my expectation, I will be able to impart to the profession some interesting results.
It is worthy of notice that water charged, under pressure, with fifteen times its volume of pure oxygen has not the antiseptic properties of peroxide of hydrogen. This is due to the fact that when the peroxide is decomposed nascent oxygen separates in that most active and potent of its conditions next to the condition, or allotropic form, known as "ozone." Therefore, it is not illogical to conclude that ozone is the active element of peroxide of hydrogen.
Although peroxide of hydrogen decomposes rapidly in the presence of organic substances, I have observed that its decomposition is checked to some extent by the addition of a sufficient quantity of glycerin; such a mixture, however, cannot be kept for a long time, owing to the slow but constant formation of secondary products, having irritating properties.
Before concluding, I wish to call attention to a new oxygenated compound, or rather ozonized compound, which has been recently discovered, and called "glycozone," by Mr. Marchand.
This glycozone results from the reaction which takes place when glycerin is exposed to the action of ozone, under pressure—one volume of glycerin with fifteen volumes of ozone produces glycozone.
By submitting the bacillus anthracis, pyocyaneous, prodigiosus, and megaterium to the action of glycozone, they were almost immediately destroyed.
I have observed that the action of glycozone upon the typhoid fever bacillus, and some other germs, is much slower than the influence of peroxide of hydrogen.
In dressing of wounds, ulcers, etc., the antiseptic influence of glycozone is rather slow if compared with that of peroxide of hydrogen, with which it may, however, be mixed at the time of using.
It has been demonstrated in Pasteur's laboratory that glycerin has no appreciable antiseptic influence upon the virus of hydrophobia; therefore, I mixed the virus of hydrophobia with glycerin, and at the expiration of several weeks all the animals which I inoculated with this mixture died with the symptoms of hydrophobia.
On the contrary, when glycerin has been combined with ozone to form glycozone, the compound destroys the hydrophobic virus almost instantaneously.
Two months ago, a rabbit was inoculated with the hydrophobic virus, which had been submitted to the action of this new compound, and the animal is still alive.
I believe that the practitioner will meet with very satisfactory results with the use of peroxide of hydrogen for the following reasons:
1. This chemical seems to have no injurious effect upon animal cells.
2. It has a very energetic destructive action upon vegetable cells—microbes.
3. It has no toxic properties; five cubic centimetres injected beneath the skin of a guinea-pig do not produce any serious result, and it is also harmless when given by the mouth.
As an immediate conclusion resulting from my experiments, my opinion is, that peroxide of hydrogen should be used in the treatment of diseases caused by germs, if the microbian element is directly accessible; and it is particularly useful in the treatment of infectious diseases of the throat and mouth.
Books Received.
THE PHYSICIAN'S VISITING LIST (_Lindsay & Blakiston's_) FOR 1891. Fortieth year of its publication. P. Blakiston, Son & Co., 1012 Walnut street, Philadelphia, Pa.
DESCRIPTIVE ANATOMY OF THE HUMAN TEETH: By G. V. BLACK, M.D., D.D.S. Published by the Wilmington Dental Mfg. Company, 1413 Filbert street, Philadelphia.
"THE PHYSICIAN'S ALL-REQUISITE ACCOUNT BOOK;" being a ledger and account book for physicians' use, meeting all the requirements of the law and courts. Published by F. A. Davis, Medical Publisher and Bookseller, 1231 Filbert street, Philadelphia, Pa. Style No. 1, 900 accounts, price $5.00, net; style No. 2, 1,800 accounts, $8.00, net.
A TREATISE ON THE IRREGULARITIES OF THE TEETH AND THEIR CORRECTION; including, with the author's practice, other current methods. Designed for practitioners and students. Illustrated with nearly 2,000 engravings (_not embracing those in the third volume_). Vol. I., by JOHN NUTTING FARRAR, M.D., D.D.S. Herman Helfeld, General Agent, 1271 Broadway, New York. Price of Vol. I., full cloth, $6.00.
TWELVE LECTURES ON THE STRUCTURE OF THE CENTRAL NERVOUS SYSTEM, for physicians and students, by Dr. LUDWIG EDINGER, Frankfort-on-the-Main. Second revised edition with 133 illustrations. Translated by Willis Hall Vittum, M.D., St. Paul, Minn. Edited by C. Eugene Riggs, A.M., M.D., Professor of Mental and Nervous Diseases, University of Minnesota; Member of the American Neurological Association. F. A. Davis, Publisher, Philadelphia, Pa.
Brief Mention.
DELAYED.—This issue has been delayed on account of anticipated changes in this journal, which will be announced in the future.
THE RUSSIAN MEDICAL DEPARTMENT has issued an order that druggists are on no account to dispense medicines on the prescriptions of dentists.
DR. E. M. THOMAS, a student of Dr. Frank Brewer (formerly of Palmyra, Mo.) enjoys a most enviable practice in the beautiful city of Vienna, Austria.
A LADY STUDENT in dentistry is desirous to obtain a situation in a dental office as assistant. Can make herself useful in the laboratory. Address, "Dental Student," 1100 Burlington street, Muscatine, Iowa.
SIR JOHN TOMES is spending his declining years very comfortably and pleasantly at his delightful country home, Upward Gorse, Catram Valley, and devotes a great deal of his time to the literature of the day, and is remarkably strong and well preserved for a man of his age.
THE TOOTH TRANSPLANTED from a bell-boy's mouth to a lady's, the full description of which is given in the _Missouri Dental Journal_ of 1882, on page 245, was extracted a few days ago, having done faithful service in its transplanted socket for _ten years_, lacking one month. The roots were considerably absorbed; also the external plate of the socket, which made it unfavorable to implant another tooth, so a "dummy," attached to a gold crown on an adjoining root, was substituted in its place.
WM. N. MORRISON, _St. Louis_.
[END OF VOLUME VII.]
=FOOTNOTES.=
[Footnote 1: Read before Harvard Odontological Society.]
[Footnote 2: Read before the Fifth District Dental Society of New York State.]
[Footnote 3: Read before the Southern Dental Society, at Chester, October, 1890.]
[Footnote 4: Read before the International Medical Congress, held at Berlin, Germany, on the 7th of August, 1890.]
[Footnote 5: _Gaillard's Medical Journal_, March, 1889.]
[Footnote 6: The peroxide of hydrogen that I use is manufactured by Mr. Charles Marchand, of New York. This preparation is remarkable for its uniformity in strength, purity and stability.]
TRANSCRIBER'S NOTES.
1. Silently corrected simple spelling, grammar, and typographical errors. 2. Retained anachronistic and non-standard spellings as printed.
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The Archives of Dentistry, Vol. VII, No. 12, December 1890Chapter II: Part 2
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