Agnew, M.C., Agnew, R.G. AND Tisdall, F.F., The Production and Prevention of Dental Caries. J. A. D. A. , 20: 193, 1933.
2.
Babkin, B.P., The Physiology of the Salivary Glands, in Gordon's Dental Science and Dental Art (Philadelphia, Lea and Febiger : 1938).
3.
Becks, H., Ergebnisse neuerer Speichel Untersuchungen (Berlin, Hermann Meuser: 1929).
4.
Ibid, Human saliva, VII. A Study of Rate of Flow of Resting Saliva, J. D. Res., 18: 431, 1939.
5.
Ibid, Human Saliva, XIV, Total Calcium Content of Resting Saliva of 650 Individuals. J. D. Res., 22: 397, 1943.
6.
Becks, H. AND Wainwright, W.W. , Human Saliva. I. Critical Discussion of Former Salivary Calcium Studies and Their Value in the Establishment of Normal Standards . J. D. Res., 14: 387, 1934.
7.
Ibid, Human Saliva. III. Critical Discussion of Former Salivary Phosphorus Studies and Their Value in the Establishment of Normal Standards. J. D. Res., 17: 197, 1938.
8.
Ibid., Human Saliva. IX. The effect of Activation on Salivary Flow. J. D. Res., 18: 447, 1939.
9.
Ibid., Human Saliva. X. Fluctuations of Calcium and Phosphorus Content of Resting Saliva. J. D. Res., 20: 627, 1941.
10.
Ibid., Human Saliva. XI. The Effect of Activation on Salivary Calcium and Phosphorus Content. J. D. Res., 20: 637, 1941.
11.
Ibid., Human Saliva, XIII. Rate of Flow of Resting Saliva of 650 Healthy Individuals. J. D. Res., 22: 000, 1943.
12.
Ibid., Report on Investigations in the Field of Prevention of Dental Caries. A Research Conference on the Causes and Prevention of Dental Caries, pg. 54 (Chicago , Good Teeth Council for Children, Inc.: 1938).
13.
Becks, H., Wainwright, W.W. AND Young, D.H., Does Salivary Calcium and Phosphorus Composition Differ Significantly in Caries-Free and Caries-Active Individuals?J. D. Res., 20:171, 1941.
14.
Ibid., Further Studies of the Calcium and Phosphorus Content of Resting and Activated Saliva of Caries-Free and Caries-Active Individuals. J. D. Res., 22: 139, 1943.
15.
Bodecker, C.F. , The Modified Dental Caries Index. J. A. D. A., 26: 1453, 1939.
16.
Brawley, R.E. AND Sedwick, J.H., Studies Concerning Oral Cavity and Saliva. IV. Calcium (1) Content of Children's Saliva. J. D. Res., 17: 293, 1938.
17.
Ibid., Studies Concerning the Oral Cavity and Saliva. IV. Calcium (1) Calcium Content of Resting and Activated Saliva of Children. J. D. Res., 17: 477, 1938.
18.
Ibid., Studies Concerning the Oral Cavity and Saliva, V. Phosphorus (Inorganic Phosphorus Content of Resting and Activated Saliva of Children). J. D. Res., 19: 315, 1940.
19.
Ibid., Studies Concerning the Oral Cavity and Saliva. VII. Rate of Flow (Rate of Flow of Resting and Activated Saliva of Children). J. D. Res., 19: 316, 1940. 20. Cheyne, V.D., A Description of the Salivary Glands of the Rat and a Procedure for Their Extirpation. J. D. Res. , 18: 457, 1939.
20.
Ibid., Effects of Selective Salivary Gland Extirpation upon Experimental Dental Caries in the Rat. Proc. Soc. Exp. Biol. & Med., 42: 587, 1939.
21.
Ibid., An Experimental Approach to Some Dental Problems by Use of a Procedure of Salivary Gland Extirpation in Rats. Thesis, Univ. of Rochester, 1940.
22.
Ibid., Inhibition of Experimental Dental Caries by Fluorine in the Absence of Saliva. Proc. Soc. Exp. Biol. & Med., 43: 58, 1940.
23.
Cushman, F.H. , Etherington, J.W. and Thompsen, G.E., Quantitative Relationship between Saliva and Caries in an Adolescent Group. J. D. Res., 19: 298, 1940.
24.
Deakins, M., Cheyne, V.D., Bibby, B.G. AND Van Kesteren, M. , Significance of Salivary Analyses upon Small Groups of Subjects. J. D. Res., 20: 161, 1941.
25.
Dunlap, J.W. AND Kurtz, A.K., Handbook of Statistical Nomographs, Tables and Formulas ( New York, World Book Co.: 1932).
26.
Eddy, W.H., Heft, H.L., Rosenstock, S. AND Ralston, R., Effects of Diet on Salivary Phosphate. J. D. Res., 13: 511, 1933.
27.
Gurley, W.B., Unilateral Dental Caries: Report of a Case. J. A. D. A., 26:163, 1939.
28.
Karshan, M., Do Calcium and Phosphorus in Saliva Differ Significantly in Caries-Free and Active Caries Groups?J. D. Res., 21: 83, 1942.
29.
Klein, H. AND Mccollum, E.V., The Significance of Food-Particle Size in the Etiology of Microscopic Dental Caries in Rats. J. D. Res., 13: 69, 1933.
30.
Losch, P.K. AND Weisberger, D., High Caries Susceptibility in Diminished Salivation. Am. J. Ortho., 26: 1103, 1940.
31.
McCollum, E.V., Relationship Between Diet and Dental Caries. J. D. Res., 11: 553, 1931.
32.
Price, W.A., The Experimental Basis for a New Theory of Dental Caries, with Chemical Procedures for Determining Immunity and Susceptibility. D. Cosmos, 74: 1139, 1932.
33.
Trimble, H.C. , Etherington, J.W. AND Losch, P.K., Rate of Secretion of Saliva and Incidence of Dental Caries. J. D. Res., 17: 299, 1938.
34.
Wainwright, W.W., Human Saliva. II. A Technical Procedure for Calcium Analysis. J. D. Res., 14: 425, 1934.
35.
Ibid., Human Saliva, V. A Technical Procedure for Phosphorus Analysis. J. D. Res. , 17: 235, 1938.
36.
Ibid., Human Saliva. XV. Inorganic Phosphorus Content of Resting Saliva of 650 Healthy Individuals . J. D. Res., 22: 403, 1943.
37.
Wainwright, W.W. AND Becks, H., Human Saliva. VI. Methods of Biometrical Evaluation of Salivary Analyses. J. D. Res., 18: 1, 1939.
38.
Weisberger, D., Nelson, T. AND Boyle, P., The Development of Caries in the Teeth of Albino Rats Following Extirpation of the Salivary Glands. Am. J. Ortho., 26: 88, 1940.
39.
Youngburg, G.E., Phosphorus Metabolism. IV. The Phosphorus of Saliva, with Special Reference to Dental Caries. J. D. Res., 12: 267, 1932.