188
Donoghue PCJ, Sansom IJ, Downs JP (2006) Early evolution of vertebrate skeletal tissues and
cellular interactions, and the canalization of skeletal development. J Exp Zool B Mol Dev Evol
306(3):278–294. doi: 10.1002/jez.b.21090 . Copyright © 2006 Wiley-Liss, Inc., A Wiley
Company. Reprinted with permission
Doody JS (2011) Environmentally cued hatching in reptiles. Integr Comp Biol 51(1):49–61
Doyle WL (1960) The principal cells of the salt gland of marine birds. Exp Cell Res 21:386–393
Dror AA, Politi Y, Shahin H, Lenz DR, Dossena S, Nofziger C, Fuchs H, de Angelis MH Paulmichl
M, Weiner S, Avraham KB (2010) Calcium oxalate stone formation in the inner ear as a result
of an Slc26a4 mutation. J Biol Chem 285:21724–21735. © 2010 The American Society for
Biochemistry and Molecular Biology. Reprinted with permission
Dunson WA (1968) Salt gland secretion in the pelagic sea snake Pelamis. Am J Physiol
215:1512–1515
Dunson W (1969) Electrolyte excretion by the salt gland of the Galápagos marine iguana.
Am J Physiol 216:995–1002
Dunson WA (1970) Some aspects of electrolyte and water balance in three estuarine reptiles, the
diamond back terrapin, American and ‘salt water’ crocodiles. Comp Biochem Physiol
32A:161–174
Dunson WA, Dunson MK (1974) Interspecifi c differences in fl uid 497 concentration and secretion
rate of sea snake salt glands. Am J Physiol 227:430–438
Dunson WA, Packer RK, Dunson MK (1971) Sea snakes: an unusual gland under the tongue.
Science 173:437–441
Eckert KL, Luginbuhl C (1988) Death of a giant. Mar Turtl News 43:1–3
Eder SHK, Cadiou H, Muhamad A, McNaughton PA, Kirschvink JL, Winklhofer M
(2012) Magnetic characterization of isolated candidate vertebrate magnetoreceptor cells. Proc
Nat Acad Sci 109(30):12022–12027. Copyright (2012) National Academy of Sciences,
USA. Reprinted with permission
Edwards H, Schnell G, DuBois R et al (1992) Natural and induced remanent magnetism in birds.
Auk 109:43–56
Efremov JA (1940) Taphonomy: new branch of paleontology. Pan-Am Geo 174:81–93
Ehrlich H (2010) Biological materials of marine origin. Springer, Heidelberg
Ehrlich H (2011) Silica biomineralization in sponges. In: Reitner J, Thiel V (eds) Encyclopedia of
geobiology. Springer, Dordrecht, pp 796–808
Ehrlich H et al (2008) Reprinted from Ehrlich H, Koutsoukos PG, Demadis KD et al (2008)
Principles of demineralization: modern strategies for the isolation of organic frameworks. Part
I. Common defi nitions and history. Micron 39(8):1062–1091. doi: 10.1016/j.micron.2008.02.004 .
Copyright (2008), with permission from Elsevier
Ehrlich H et al (2010) Reprinted with permission from Ehrlich H, Demadis KD, Pokrovsky OS
et al (2010) Modern views on desilicifi cation: biosilica and abiotic silica dissolution in natural
and artifi cial environments. Chem Rev 110(8):4656–4689. Copyright (2010) American
Chemical Society
Eidelman N, Eichmiller FC, Zhang Y et al (2005) Position–resolved structural and mechanical
properties of Narwhal tusk dental tissues, Abstract. The Preliminary Program for IADR/
AADR/CADR 83rd General Session, Baltimore, MD, USA, 9–12 March 2005
Ellis RA, Abel JH (1964) Intercellular channels in the salt–secreting glands of marine turtles.
Science 144:1340–1342
Elsdon TS, Wells BK, Campana SE et al (2008) Otolith chemistry to describe movements and
life–history parameters of fi shes: hypotheses, assumptions, limitations and inferences using
fi ve methods. Oceanogr Mar Biol Ann Rev 46:207–330
Engkvist O, Ohlsen L (1979) Reconstruction of articular cartilage with free autologous perichondrial grafts. An experimental study in rabbits. Scand J Plast Reconstr Surg 13(2):269–274
Erben HK (1970) Ultrastrukturen und mineralisation rezenter und fossiler eischalen bei vogeln
und reptilien. Biomin Forschsber 1:1–65
Erben HK, Newesely H (1972) Kristalline bausteine und mineralbestand von kalkigen eischalen.
Biomin Forschsber 6:32–48
3 Biocomposites and Mineralized Tissues
Donoghue PCJ, Sansom IJ, Downs JP (2006) Early evolution of vertebrate skeletal tissues and
cellular interactions, and the canalization of skeletal development. J Exp Zool B Mol Dev Evol
306(3):278–294. doi: 10.1002/jez.b.21090 . Copyright © 2006 Wiley-Liss, Inc., A Wiley
Company. Reprinted with permission
Doody JS (2011) Environmentally cued hatching in reptiles. Integr Comp Biol 51(1):49–61
Doyle WL (1960) The principal cells of the salt gland of marine birds. Exp Cell Res 21:386–393
Dror AA, Politi Y, Shahin H, Lenz DR, Dossena S, Nofziger C, Fuchs H, de Angelis MH Paulmichl
M, Weiner S, Avraham KB (2010) Calcium oxalate stone formation in the inner ear as a result
of an Slc26a4 mutation. J Biol Chem 285:21724–21735. © 2010 The American Society for
Biochemistry and Molecular Biology. Reprinted with permission
Dunson WA (1968) Salt gland secretion in the pelagic sea snake Pelamis. Am J Physiol
215:1512–1515
Dunson W (1969) Electrolyte excretion by the salt gland of the Galápagos marine iguana.
Am J Physiol 216:995–1002
Dunson WA (1970) Some aspects of electrolyte and water balance in three estuarine reptiles, the
diamond back terrapin, American and ‘salt water’ crocodiles. Comp Biochem Physiol
32A:161–174
Dunson WA, Dunson MK (1974) Interspecifi c differences in fl uid 497 concentration and secretion
rate of sea snake salt glands. Am J Physiol 227:430–438
Dunson WA, Packer RK, Dunson MK (1971) Sea snakes: an unusual gland under the tongue.
Science 173:437–441
Eckert KL, Luginbuhl C (1988) Death of a giant. Mar Turtl News 43:1–3
Eder SHK, Cadiou H, Muhamad A, McNaughton PA, Kirschvink JL, Winklhofer M
(2012) Magnetic characterization of isolated candidate vertebrate magnetoreceptor cells. Proc
Nat Acad Sci 109(30):12022–12027. Copyright (2012) National Academy of Sciences,
USA. Reprinted with permission
Edwards H, Schnell G, DuBois R et al (1992) Natural and induced remanent magnetism in birds.
Auk 109:43–56
Efremov JA (1940) Taphonomy: new branch of paleontology. Pan-Am Geo 174:81–93
Ehrlich H (2010) Biological materials of marine origin. Springer, Heidelberg
Ehrlich H (2011) Silica biomineralization in sponges. In: Reitner J, Thiel V (eds) Encyclopedia of
geobiology. Springer, Dordrecht, pp 796–808
Ehrlich H et al (2008) Reprinted from Ehrlich H, Koutsoukos PG, Demadis KD et al (2008)
Principles of demineralization: modern strategies for the isolation of organic frameworks. Part
I. Common defi nitions and history. Micron 39(8):1062–1091. doi: 10.1016/j.micron.2008.02.004 .
Copyright (2008), with permission from Elsevier
Ehrlich H et al (2010) Reprinted with permission from Ehrlich H, Demadis KD, Pokrovsky OS
et al (2010) Modern views on desilicifi cation: biosilica and abiotic silica dissolution in natural
and artifi cial environments. Chem Rev 110(8):4656–4689. Copyright (2010) American
Chemical Society
Eidelman N, Eichmiller FC, Zhang Y et al (2005) Position–resolved structural and mechanical
properties of Narwhal tusk dental tissues, Abstract. The Preliminary Program for IADR/
AADR/CADR 83rd General Session, Baltimore, MD, USA, 9–12 March 2005
Ellis RA, Abel JH (1964) Intercellular channels in the salt–secreting glands of marine turtles.
Science 144:1340–1342
Elsdon TS, Wells BK, Campana SE et al (2008) Otolith chemistry to describe movements and
life–history parameters of fi shes: hypotheses, assumptions, limitations and inferences using
fi ve methods. Oceanogr Mar Biol Ann Rev 46:207–330
Engkvist O, Ohlsen L (1979) Reconstruction of articular cartilage with free autologous perichondrial grafts. An experimental study in rabbits. Scand J Plast Reconstr Surg 13(2):269–274
Erben HK (1970) Ultrastrukturen und mineralisation rezenter und fossiler eischalen bei vogeln
und reptilien. Biomin Forschsber 1:1–65
Erben HK, Newesely H (1972) Kristalline bausteine und mineralbestand von kalkigen eischalen.
Biomin Forschsber 6:32–48
3 Biocomposites and Mineralized Tissues
