233
Ishiyama M, Yoshie S, Teraki Y et al (1991) Ultrastructure of pleromin a highly mineralized tissue
comprising crystalline calcium phosphate known as whitlockite, in holocephalian tooth plates.
In: Suga S, Nakahara H (eds) Mechanisms and phylogeny of mineralization in biological
systems. Springer, Berlin
Jawad LA (2005) Comparative scale morphology and squamation patterns in triplefi ns (Pisces:
Teleostei: Perciformes: Tripterygiidae). Tuhinga 16:137–167
Kawasaki K (2011) The SCPP gene family and the complexity of hard tissues in vertebrates. Cell
Tissue Organ 194(2–4):108–112
Kawasaki K, Suzuki T, Weiss KM (2004) Genetic basis for the evolution of vertebrate mineralized
tissue. Proc Natl Acad Sci U S A 101(31):11356–11361. Copyright (2004) National Academy
of Sciences, U.S.A. Reprinted with permission
Kerr T (1952) The scales of primitive living actinopterygians. Proc Zool Soc London 122:55–78
Kondo S, Kuwahara Y, Kondo M et al (2001) The medaka rs–3 locus required for scale development encodes ectodysplasin–a receptor. Curr Biol 11:1202–1206
Landreneau EB (2011) Scales and scale–like structures. Dissertation, Texas A&M University,
College Station
Linde A (1995) Dentin mineralization and the role of odontoblasts in calcium transport. Connect
Tissue Res 33:163–170
Mandl L (1839) Recherches sur la structure intime des ecailles des poissons. Ann Sci Nat
2:337–371
Margolis HC, Beniash E, Fowler CE (2006) Role of macromolecular assembly of enamel matrix
proteins in enamel formation. J Dent Res 85(9):775–793. Copyright © 2006 by International
& American Associations for Dental Research. Reprinted by Permission of SAGE
Publications
Märss T (2011) A unique Late Silurian Thelodus squamation from Saaremaa (Estonia) and its
ontogenetic development. Estonian J Earth Sci 60:137–146
Märss T, Turner S, Karatajute–Talimaa V (2007) Handbook of paleoichthyology, vol 1B, ‘Agnatha’
II Thelodonti. Verlag Dr Friedrich Pfeil, Munich
Maxwell EE, Caldwell MW, Lamoureux DO (2011) The structure and phylogenetic distribution of
amniote plicidentine. J Vertebr Paleontol 31:553–561
Meinke DK (1984) A review of cosmine: its structure, development, and relationships to the other
forms of the dermal skeleton in osteichthyans. J Vertebr Paleontol 4:45–470
Meinke DK (1986) Morphology and evolution of the dermal skeleton in lungfi shes. J Morphol
190:133–149. Copyright © 1986 Wiley-Liss, Inc. Reprinted with permission
Meunier FJ (1980) Les relations isopedine – tissu osseux dans le post-temporal et les ecailJes de la
ligne laterale de Latimeria chalumnae (Smith). Zoologica Scripta 9:307–317. Copyright ©
2008, John Wiley and Sons. Reprinted with permission
Meunier FJ (1983) Les tissus osseux des Ostéichthyens. Structure, genèse, croissance et évolution.
Archives et Documentations, Micro–Edition, Institut d’Ethnologie, Museum National
d’Histoire Naturelle, Paris, SN, 82–600–328
Meunier FJ (1984) Spatial organization and mineralization of the basal plate of elasmoid scales in
osteichthyans. Am Zool 24:953–964
Meunier FJ (2011) Reprinted from: Meunier FJ (2011) The Osteichtyes, from the Paleozoic to the
extant time, through histology and palaeohistology of bony tissues. C R Palevol 10:347–355,
Copyright (2011), with permission from Elsevier
Miura J, Kubo M, Nagashima T, Takeshige F (2012) Ultra-structural observation of human enamel
and dentin by ultra-high-voltage electron tomography and the focus ion beam technique. J
Electron Microsc (Tokyo) 61(5):335–341
Mondéjar–Fernández J, Clément G (2012) Squamation and scale microstructure evolution in the
Porolepiformes (Sarcopterygii, Dipnomorpha) based on Heimenia ensis from the Devonian of
Spitsbergen. J Vertebr Paleontol 32:267–284
Moradian–Oldak J (2009) The regeneration of tooth enamel. Dimens Dent Hyg 7(8):12–15
Moradian–Oldak J, Paine ML (2008) Mammalian: enamel formation. In: Astrid S, Sigel H, Sigel
RKO (eds) Metal ions in life sciences. Wiley, Chichester
References
Ishiyama M, Yoshie S, Teraki Y et al (1991) Ultrastructure of pleromin a highly mineralized tissue
comprising crystalline calcium phosphate known as whitlockite, in holocephalian tooth plates.
In: Suga S, Nakahara H (eds) Mechanisms and phylogeny of mineralization in biological
systems. Springer, Berlin
Jawad LA (2005) Comparative scale morphology and squamation patterns in triplefi ns (Pisces:
Teleostei: Perciformes: Tripterygiidae). Tuhinga 16:137–167
Kawasaki K (2011) The SCPP gene family and the complexity of hard tissues in vertebrates. Cell
Tissue Organ 194(2–4):108–112
Kawasaki K, Suzuki T, Weiss KM (2004) Genetic basis for the evolution of vertebrate mineralized
tissue. Proc Natl Acad Sci U S A 101(31):11356–11361. Copyright (2004) National Academy
of Sciences, U.S.A. Reprinted with permission
Kerr T (1952) The scales of primitive living actinopterygians. Proc Zool Soc London 122:55–78
Kondo S, Kuwahara Y, Kondo M et al (2001) The medaka rs–3 locus required for scale development encodes ectodysplasin–a receptor. Curr Biol 11:1202–1206
Landreneau EB (2011) Scales and scale–like structures. Dissertation, Texas A&M University,
College Station
Linde A (1995) Dentin mineralization and the role of odontoblasts in calcium transport. Connect
Tissue Res 33:163–170
Mandl L (1839) Recherches sur la structure intime des ecailles des poissons. Ann Sci Nat
2:337–371
Margolis HC, Beniash E, Fowler CE (2006) Role of macromolecular assembly of enamel matrix
proteins in enamel formation. J Dent Res 85(9):775–793. Copyright © 2006 by International
& American Associations for Dental Research. Reprinted by Permission of SAGE
Publications
Märss T (2011) A unique Late Silurian Thelodus squamation from Saaremaa (Estonia) and its
ontogenetic development. Estonian J Earth Sci 60:137–146
Märss T, Turner S, Karatajute–Talimaa V (2007) Handbook of paleoichthyology, vol 1B, ‘Agnatha’
II Thelodonti. Verlag Dr Friedrich Pfeil, Munich
Maxwell EE, Caldwell MW, Lamoureux DO (2011) The structure and phylogenetic distribution of
amniote plicidentine. J Vertebr Paleontol 31:553–561
Meinke DK (1984) A review of cosmine: its structure, development, and relationships to the other
forms of the dermal skeleton in osteichthyans. J Vertebr Paleontol 4:45–470
Meinke DK (1986) Morphology and evolution of the dermal skeleton in lungfi shes. J Morphol
190:133–149. Copyright © 1986 Wiley-Liss, Inc. Reprinted with permission
Meunier FJ (1980) Les relations isopedine – tissu osseux dans le post-temporal et les ecailJes de la
ligne laterale de Latimeria chalumnae (Smith). Zoologica Scripta 9:307–317. Copyright ©
2008, John Wiley and Sons. Reprinted with permission
Meunier FJ (1983) Les tissus osseux des Ostéichthyens. Structure, genèse, croissance et évolution.
Archives et Documentations, Micro–Edition, Institut d’Ethnologie, Museum National
d’Histoire Naturelle, Paris, SN, 82–600–328
Meunier FJ (1984) Spatial organization and mineralization of the basal plate of elasmoid scales in
osteichthyans. Am Zool 24:953–964
Meunier FJ (2011) Reprinted from: Meunier FJ (2011) The Osteichtyes, from the Paleozoic to the
extant time, through histology and palaeohistology of bony tissues. C R Palevol 10:347–355,
Copyright (2011), with permission from Elsevier
Miura J, Kubo M, Nagashima T, Takeshige F (2012) Ultra-structural observation of human enamel
and dentin by ultra-high-voltage electron tomography and the focus ion beam technique. J
Electron Microsc (Tokyo) 61(5):335–341
Mondéjar–Fernández J, Clément G (2012) Squamation and scale microstructure evolution in the
Porolepiformes (Sarcopterygii, Dipnomorpha) based on Heimenia ensis from the Devonian of
Spitsbergen. J Vertebr Paleontol 32:267–284
Moradian–Oldak J (2009) The regeneration of tooth enamel. Dimens Dent Hyg 7(8):12–15
Moradian–Oldak J, Paine ML (2008) Mammalian: enamel formation. In: Astrid S, Sigel H, Sigel
RKO (eds) Metal ions in life sciences. Wiley, Chichester
References
