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Molecular Signaling of Mammalian Inner Ear Development

Molecular Signaling of Mammalian Inner Ear Development

9781626189928
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Description
The inner ear originates from an ectodermal thickening, the otic placode, which lies adjacent to the developing hindbrain. Complex interactions between regulatory signalling molecules guide development of the simple otic placode into the elaborate, multifunctional organs of hearing and balance. This book delves into recent research in the field, focusing on successive stages of inner ear development and how they are influenced by the co-ordinate activity of signalling molecules. This book begins with an overview of the evolutionary adaptation of the organ of Corti (organ of hearing) and the molecular signals that characterise ancestral development of the inner ear. Following this, the topics addressed include the complex signalling interactions underlying induction of the otic placode, key molecular mediators influencing inner ear development and patterning, genetic signalling of the vestibular (balance) system and clinical correlations to human balance disorders, commitment to auditory hair cell fate, and reliance of the inner ear on retinoic acid, a biologically-active derivative of vitamin A, for appropriate development. This timely and comprehensive book provides an excellent resource for researchers, clinician-scientists and students alike.
Product Details
74256
9781626189928
9781626189928

Data sheet

Publication date
2013
Issue number
1
Cover
hard cover
Pages count
230
Dimensions (mm)
180.00 x 260.00
Weight (g)
516
  • Preface; Evolution of the Mammalian Auditory System:: An Integrated Perspective of the Molecular Development; Induction & Morphogenesis of the Inner Ear; Function & Regulation of Fibroblast Growth Factors in the Developing Otic Epithelium; BMP Signaling during Inner Ear Development; Role of Hedgehog & Wnt Signaling in Mammalian Inner Ear Formation; Genetic Signal Pathways that Control the Development of the Vestibular System & Clinical Correlates in Patients with Balance Disorders; Determination of Hair Cell Fate in the Cochlea:: Molecular Signaling Pathways; Retinoic Acid Signaling in the Developing Otocyst; Index.
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