By Julia C. Boughner, Campbell Rolian
Developmental methods to Human Evolution encapsulates the present country of evolutionary developmental anthropology. This rising clinical box applies instruments and techniques from glossy developmental biology to appreciate the position of genetic and developmental techniques in riding morphological and cognitive evolution in people, non-human primates and within the laboratory organisms used to version those changes.
Featuring contributions from well-established pioneers and rising leaders, this quantity is designed to construct study momentum and catalyze destiny innovation during this burgeoning box. The book’s huge learn scope encompasses tender and tough tissues of the pinnacle and physique, together with the skeleton, designated senses and the brain.
Developmental methods to Human Evolution is a useful source at the mechanisms of primate and vertebrate evolution for students throughout a wide range of intersecting disciplines, together with primatology, paleoanthropology, vertebrate morphology, evolutionary developmental biology and wellbeing and fitness sciences.
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Additional info for Developmental approaches to human evolution
Teeth develop from two main tissue types: epithelium and mesenchyme. The mesenchyme originates from a special cell population called cranial neural crest cells (CNCC). 3, color plate) (Chai et al. 1998). For oral (versus pheryngeal) dentitions, early interactions between neural crest‐ derived mesenchyme and oral epithelium are critical to make the dental lamina competent to form teeth and thus trigger initiation (Thesleff et al. 1995; Thesleff and Sharpe 1997; Jernvall and Thesleff 2000). 2A–B).
Kollar and Baird 1969). 2). Teeth develop from two main tissue types: epithelium and mesenchyme. The mesenchyme originates from a special cell population called cranial neural crest cells (CNCC). 3, color plate) (Chai et al. 1998). For oral (versus pheryngeal) dentitions, early interactions between neural crest‐ derived mesenchyme and oral epithelium are critical to make the dental lamina competent to form teeth and thus trigger initiation (Thesleff et al. 1995; Thesleff and Sharpe 1997; Jernvall and Thesleff 2000).
M. 1982. Phenotypic, genetic, and environmental integration in the cranium. Evolution 36(3):499–516. Cheverud, J. M. 1988. A comparison of genetic and phenotypic correlations. Evolution 42(5):958–968. Integration and Evolvability in the Human Skull 33 De Beer, G. 1937. The development of the vertebrate skull. Oxford: Clarendon Press. xxiii, 552. , Heuzé, Y. et al. 2014. FGFR3 mutation causes abnormal membranous ossification in achondroplasia. Human Molecular Genetics 23(11):2914–2925. Dryden, I.
Developmental approaches to human evolution by Julia C. Boughner, Campbell Rolian