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DİŞ PLAĞINDA pH ÖLÇÜM YÖNTEMLERİ

DENTAL PLAQUE pH MEASUREMENTS

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Abstract (2. Language): 
There are three different types af.dental plaque pH measurements being doni to d Ja the plaque pH changes after a substrate challenge. Harvesting method is an invitro plaque pH measurement and the collected plaque's pH is measured outside the mouth. On the other hand, telemetry and microtouch electrode methods measure the plaque pH changes invivo.
Abstract (Original Language): 
Bir substrann yenmesinden sonra diş üzerindeki plakta meydana gelen pH değişikliklerinin saptanmasına dayanan plak pH'ı ölçüm çalışmaları üç yöntemle yapılabilmektedir İn Vitro plak pH ölçümünde, diş üzerinden plak örnekleri alınarak ağız boşluğunun dışında öl¬çümgerçekleştirilmektedir İn vivoplak pH'ı ölçümünde ise telemetri ve yüzey duvarlı elektrot ile plaîa dokundurularak ağız içindeölçümle,^y^pılmaktİdir
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REFERENCES

References: 

1. Birkhed, D„ Imfeld T., Echvardsson, S., pH changes in human dental plaque from lactose and milk before and after adaptation, Caries Res., 27, (1993), 43-50.
2. Caldwell, R.C., Stallard, R.E., A Texbook of preventive dentistry, Phiiadehphia, London, Toronto: W.B. Saunders, 1997,30-67,118-153.
3. Chida, R., Igarashi, K., Kamiyama, K., Hoshino, E., Esashi, M„ Characteritazation of human dental plaque formed on hydrogen-ion-sensitive field-effect transistor electrode sJDent Res, 65,3, (March 1986), 448-451.
4. Diet, nutrition and oral health: A rational approach for the dental practice.jftiH 109, (1984), 20-32.
5. Distler, W., Kröncke, A., The asid pattern İn human dental plaque,./0en(Res., 62,2,(Feb. 1983), 87-91.
6. Dodds, M.W.J., Edgar, W.M., Effects of dietary sucoro-se levels on pH fall and acid-anion profile in human dental plaque after a starch mounth-rinse, Archs. Oral Biol, 31,8,(1986),509-512.
7. Dodds, M.W.J., Edgar, W.M., The relationship between plaque pH, plaque acid-anion profiles, and oral carbohydrate retention after ingestion of several reference foods'bv human subjcts,y Dent Res., 67,5; (May 1988), 861-865.
8. Dodds, M.WJ., Hsich, S.C.Johnson, D.A:; The effect of increased mastication by daily gum-chewing on salivary gland output and dental plaque asidogcnicity,yOen/ Res., 70,12,(dcc. 1991), 1474-1478.
9. Duggal, M.S., Curzon, M.E.J., An evaluation of the ca-riogenic potential of baby and infant fruit drinks, Br Dent J, 166, (1989), 327-330.
10. Edgar, W.M., Bibby, B., Mundorff, S.A, Rowley, J., Asid production in plaque after eating snack*: modil^ng factors in foods, JADA, 90,(1975) ,418-425.
11. Englander, H,R., Carter, W.M., Fosdick, L.S., The formation of lactic acid in dental plaques, J Dent Res, 35,5,(Oct 1956), 792-799.
12. Fojcrskov, O., Scheie, AA., Bİrkhed, D., Manji, P., Ef-
198
KoparalE Eronat C
feet of sugarcane chewing on plaque pH in rural Kenyan chidren, Carnies Res., 26 (1992),286-289.
13. Fejerskov, O., Scheie, A.A., Manji, F., The effect of sucrose on plaque pH in the primary and permanent dentition of caries-inactive and-active Kenyan chûdrcn, J Dent Res, 71(1), (1992),25-3L
14. Firestone, A.R., Human indcrdental plaque-pH data and rat caries tests: Results with the same substances,/Dent Res., 61,10, (Oct. 1982),1130-1136.
15. Geddes, D.A.M., Edgar, W.M., Jenkins, G.N., Rugg-Gunn, A.J., Apples and salted peanuts and plaque pH, Brit DentJ., 142,(1977), 317-319.
16. Harper, S.D., Abelson, D.C., Jensen, M.E., Human plaque asidity models./DenfRes, 65(Spec Iss), (Dec. 1986), 1503-1510.
17. Higham; S.M., Edgar, W.M., Effects of parafilm and cheese chewing on human dental plaque pH and metabolism, Caries Res., 23, (1989), 42-48.
18. Igarashi, K., Kamiyama, K., Yamada, T., Measurement of pH in human dental plaque in vivo with an ion sensitive transistor electrode, Arch Oral Biol, 26,(1981),203-207.
19. Igarashi, IC, Lee, I.M., Schachtele, C.F., Comparison of in vivo human dental plaque pH changes within artificial fissures and at interpraximal sites, Caries Res, 23, (1989), 417-22.
20. Jensen, M.E., Polansky, PJ„ Schachtele, C.F., Plaque sampling and telemetry for monitoring acid production on human buccal tooth surfaces, Arch oral Biol, 37,(1982),21¬31.
21. Jensen, M.E., Responses of interproximal plaque pH to snack foods and effect of chewing sorbitol cotaining gum, fADA 113,(1986), 262-266.
22. Jensen, M.E., Schachtele, C.F., The asidogenic potential of reference foods and snacks at interproximal sites in the human dentition,/Dent Res, 62,8,(August 1983) 886¬892.
23. Weinberg, I.Jenkins, R., Charttcrjee, R., Wijeyeera, L:, The antimony pH electrode and its role in the assessment and interpretation of dental plaque pH, / Dent Res, 61(10),(1982), 1139-114.
24. Koparal, E., Yiyeceklerin karyojenitcsinin İnvİvo plak pH1! ölçülerek saptanması, Doktora tezi, 1995, HOsyf.
25. Krase, B., Caries Risk-A practical guide for assessment and control, Quintessence Publishing Co. Inc., 1985, Chicago, London, Berlin, Rio dejanerio, Tokyo, 11-27,35¬40,53-57.
26. Küseler, A, Baelum, V., Fcderskov, O., Heidmann, ]., Accurarcy and precision in vitro of Beetrode microelectro-des used for intaoral pH measurements, Caries Res., 27,(1993),183-190.
27. Lingström., P., Holm, J., Birkhed, D.Björck, I., Effects of variously processed starch on pH of human dental plaque, Sean J Dent Res, 97, (1989),392-400.
28. Lingström., P., Imfeld, T„ Birkhed, D., Comparison of three different methods of measurement of plaque pH in humans after consumption of soft bread and patato chips J Dent Res., 72(5),(1993),865-870.
29. Newbrun, E., Cariology, 3rd Ed., Chicago, London, Berlin, Sao Paolu, Tokyo, Hong Kong: Quintessence Publihing Co. Inc., (1989), 13-219.
30. Newman, P., MacFadyen, E.E., Gillespie, F.C., Stephan, KW„ An indwelling electrode for in-vivo measurement of the pH of dental plaque in man Archs. Ora! Biol., 24,(I978),50I-507.
31. Pollard, MA., Potential cariogenicity of starches and fruits as assessed by the plaque sampling method and an intraoral cariogenicity test, CariesRes., 29,(I995),68-74.
32. Pollard, MA, Imfeld, T., Higham, SM., ct.al., Acido-genic potential and total salivary carbohydrate cotcnt of expectorants following the consumption of some cereal-based foods and fruits, CariesRes., (1996),132-137.
33. Rekola, M., Invivo asid production from medicines in syrup form, Caries Res., 23, (1989) ,412-416.
34. Rekola, M„ Söderling, E., Weekly variation in acido-genis response of plaque, Acta Odontol Scand, 48(1990) ,229-232.
35. Schacthtele, C.F., Jensen, M.E., Comparison of methods for monitoring changes in the pH of human dental pSa-que, /Dent Res, 61,10, (Oct. 1982) ,1117-1125.
36. Scheie, A.A., Fejerskov, O., Lingström, P., Birkhed, D., Manji, F., Use of palladium touch microelectrodcs under field conditions for in vivo assessment of dental plaque pH in children, CariesRes., 26,(1992),44-52,
37. Steinberg, LM, Odusola, F, Mandel, ID, Effect of sucrolase in coffee an plaque pH in human subjects, Canes Res., 30,(1996),138-142.
38. Stephan, R.M., Changes in hydrogen-ion concentration on tooth surfaces and in carious lesions JADA, 27(May 1940), 718-723.
39. Stephan, R.M., Intra-oral hydrogen-ion concentrations associated with dental saries activity, / Dent Res., 23,(1944),257-266.
40. Stösser, L., Tietze, W., Kim/el, W., Limbergcr, K, Intra-orale pH-Messungzur Bestimmung des azidogenen Potentials von Nahrungsmitteln, Oralprophylaxe, 12, (1990), 145-153.
41. Tahmassebi.JF, Duggal, MS, Comparison of the plaque pH response to an acidogenic challenge in children and aduhs, Caries Res, 30,(1996) ,3423-346.
42. Whaley, L.F., Wong, D.L., Nursing care of infants and children, St.Louis, Washington DC, Toronto: The C.V. Mosby Company, 1987,610-755.

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