Oral Cells and Tissues. Philias R. Garant
Eur J Oral Sci 1996;104:269–277.
99. Plate U, Höhling H-J. Morphological and structural studies of early mineral formation in enamel of rat incisors by electron spectroscopic imaging (ESI) and electron spectroscopic diffraction (ESD). Cell Tissue Res 1994;277:151–158.
100. Plate U, Arnold S, Reimer L, Höhling H-J, Boyde A. Investigation of the early mineralisation on collagen in dentine of rat incisors by quantitative electron spectroscopic diffraction (ESD). Cell Tissue Res 1994;278:543–547.
101. Holland GR. An ultrastructural survey of cat dentinal tubules. J Anat 1976;122:1–13.
102. Holland GR. The dentinal tubule and odontoblastic process in the cat. J Anat 1975;120:169–177.
103. Frank RM, Veogel JC. Ultrastructure of the human odontoblast process and its mineralization during dental caries. Caries Res 1980;14:367–380.
104. Thomas HF. The effect of various fixatives on the extent of the odontoblast process in human dentine. Arch Oral Biol 1983;28:465–469.
105. Thomas HF. The ultrastructure of dentinal tubules from erupted human premolar teeth. J Dent Res 1983;62:532–536.
106. Sasaki T, Tominaga H, Higashi S. Endocytotic activity of kitten odontoblasts in early dentinogenesis. 1. Thin section and freeze-fracture study. J Anat 1984;138:485–492.
107. Thomas HF. The lamina limitans of human dentinal tubules. J Dent Res 1984;63:1064–1066.
108. Thomas HF. The dentin-predentin complex and its permeability: Anatomical overview. J Dent Res 1985;64S:607–612.
109. Scherft JP. The lamina limitans of the organic matrix of calcified cartilage and bone. J Ultrastruct Res 1972;38:318–331.
110. Szabo J, Trombitas K, Szabo I. The odontoblast process and its branches in human teeth observed by scanning electron microscopy. Arch Oral Biol 1984;29:331–334.
111. Holland GR. The odontoblastic process: Form and function. J Dent Res 1985;64S:499–514.
112. Jones SJ, Boyde A. Ultrastructure of dentin and dentinogenesis. In: Linde A (ed). Dentin and Dentinogenesis. Boca Raton, FL: CRC Press, 1984:81–134.
113. Brännström M, Garberoglio R. The dentinal tubules and the odontoblast process. Acta Odontol Scand 1972;30:291–311.
114. Grossman ES, Austin JC. Scanning electron microscope observations on the tubule content of freeze-fractured peripheral velvet monkey dentine (Cercopithecus pyserythus). Arch Oral Biol 1983;28:279–281.
115. Kelly KW, Bergenholtz G, Cox CF. The extent of the odontoblast process in Rhesus monkeys (Macaca mulatta) as observed by scanning electron microscopy. Arch Oral Biol 1981;26:893–897.
116. Maniatopoulos C, Smith DC. A scanning electron microscopic study of the odontoblast process in human coronal dentine. Arch Oral Biol 1983;28:701–710.
117. Yamada T, Nakamura K, Iwaku M. The extent of the odontoblast process in normal and carious human dentin. J Dent Res 1983;62:798–802.
118. Thomas HF, Carella P. Correlation of scanning and transmission electron microscopy of human dentinal tubules. Arch Oral Biol 1984;29:641–646.
119. Sigal MJ, Aubin JE, ten Cate AR. An immunocytochemical study of the human odontoblast process using antibodies against tubulin, actin and vimentin. J Dent Res 1985;64: 1348–1355.
120. Byers MR, Sugaya A. Odontoblast processes in dentin revealed by fluorescent Di-I. J Histochem Cytochem 1995;43: 159–168.
121. Matthews B, Hughes SHS. The ultrastructure and receptor transduction mechanisms of dentine. Prog Brain Res 1988; 74:69–76.
122. LaFleche RG, Frank RM, Steuer P. The extent of the human odontoblast process as determined by transmission electron microscopy: The hypothesis of a retractable suspensor system. J Biol Buccale 1985;13:293–305.
123. Kabasawa M, Ejiri S, Hanada K, Ozawa H. Histological observations of dental tissues using the confocal laser scanning microscope. Biotech Histochem 1995;70:66–69.
124. Mjör IA, Nordahl I. The density and branching of dentinal tubules in human teeth. Arch Oral Biol 1996;41:401–412.
125. Fosse G, Saele PK, Eide R. Numerical density and distributional pattern of dentin tubules. Acta Odontol Scand 1992; 50:201–210.
126. Tronstad L. Ultrastructural observations on human coronal dentin. Scand J Dent Res 1973;81:101–111.
127. Thomas HF, Carella P. A scanning electron microscope study of dentinal tubules from un-erupted human teeth. Arch Oral Biol 1983;28:1125–1130.
128. Pashley DH. Dentin-predentin complex and its permeability: Physiologic overview. J Dent Res 1985;64S:613–620.
129. Lindén LÅ, Källskog Ö, Wolgast M. Human dentine as a hydrogel. Arch Oral Biol 1995;40:991–1004.
130. Okamura K. Histological study on the origin of dentinal immunoglobulins and the change in their localization during caries. J Oral Pathol 1985;14:680–689.
131. Pashley DH. Dynamics of the pulpo-dentin complex. Crit Rev Oral Biol Med 1996;7:104–133.
132. Knutsson G, Jontell M, Bergenholtz G. Determination of plasma proteins in dentinal fluid from cavities prepared in healthy young human teeth. Arch Oral Biol 1994;39:185–190.
133. Olgart L, Edwall L, Gazelius B. Involvement of afferent nerves in pulpal blood-flow reactions in response to clinical and experimental procedures in the cat. Arch Oral Biol 1991; 36:575–581.
134. Hahn CL, Overton B. The effects of immunoglobulins on the convective permeability of human dentine in vitro. Arch Oral Biol 1997;42:835–843.
135. Lundgren T, Nannmark U, Linde A. Calcium ion activity and pH in the odontoblast-predentin region. Ion-selective microelectrode measurements. Calcif Tissue Int 1992;50:134–136.
136. Linde A. Dentin mineralization and the role of odontoblasts in calcium transport. Connect Tissue Res 1995;33:163–170.
137. Lundgren T, Linde A. Voltage-gated calcium channels and nonvoltage-gated calcium uptake pathways in the rat incisor odontoblast plasma membrane. Calcif Tissue Int 1997;60: 79–85.
138. Lundgren T, Linde A. Calcium ion transport kinetics during dentinogenesis: Effects of disrupting odontoblast cellular transport systems. Bone Mineral 1992;19:31–44.
139. Smutzer G, Zimmerman JE, Han LY, Ruscheinsky DD, Arnold SE, Yu XS, Kratskin I. Inositol 1,4,5-trisphosphate receptor expression in odontoblast cells. Biochim Biophys Acta Mol Cell Res 1997;1358:221–228.
140. Maeda T, Honma S, Takano Y. Dense innervation of human radicular dental pulp as revealed by immunocytochemistry for protein gene-product 9.5. Arch Oral Biol 1994;39: 563–568.
141. Frank RM, Nalbandian J. Innervation and dentin-pulp sensitivity. In: Oksche A, Vollrath L (eds). Handbook of Microscopic Anatomy, vol 6. Teeth. Berlin: Springer-Verlag, 1989: 264–287.
142. Ibuki T, Kido MA, Kiyoshima T, Terada Y, Tanaka T. An ultrastructural study of the relationship between sensory trigeminal nerves and odontoblasts in rat dentin/pulp as demonstrated by the anterograde transport of wheat germ agglutinin-horseradish peroxidase (WGA-HRP). J Dent Res 1996;75:1963–1970.
143. Byers MR. Dental sensory receptors. Int Rev Neurobiol 1984;25:39–94.
144. Fristad I, Heyeraas KJ, Kvinnsland I. Nerve fibres and cells immunoreactive to neurochemical markers in developing rat molars and supporting tissues. Arch Oral Biol 1994;39: 633–646.
145. Miyawaki Y, Youn SH, Ochi K, Maeda T, Kurisu K, Wakisaka S. Calbindin D28k-like immunoreactive nerve fibres in the predentine of rat molar teeth. Arch Oral Biol 1997;42: 773–777.
146. Byers MR, Narhi MV, Dong WK. Sensory innervation of pulp and dentin in adult dog teeth as demonstrated by autoradiography. Anat Rec 1987;218:207–215.
147. Okamura K, Kobayashi I, Matsuo K, Taniguchi