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Molecular Signaling of Mammalian Inner Ear Development

of Corti (organ of hearing) and the molecular signals that characterise ancestral development of the inner ear. Following this, the topics;

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Retinoic Acid

structure, mechanisms and roles in disease of retinoic acid. Topics discussed include retinoid signalling in mammalian inner ear development;

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Inner Ear Development & Hearing Loss

, informative and self-contained. It will provide an overview of four main topics related to inner ear development, hearing loss and clinical remedies;

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Mammalian Sterols

This book provides a comprehensive description of sterols and their novel biological roles in mammalian signaling, the book covers their;

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Death Receptors and Cognate Ligands in Cancer

Death receptors play a central role in directing apoptosis in mammalian cells. This process of active cell death is important for a number;

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Wnt Signaling In Development And Disease

Widely recognized as one of the most important signaling mechanisms in development and disease, Wnt signaling pathways are networks;

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The Cochlea

Knowledge about the structure and function of the inner ear is vital to an understanding of vertebrate hearing. This volume presents a;

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The Molecular Switch Signaling and Allostery

conformations. The Molecular Switch articulates a biophysical perspective on signaling, showing how allostery-a powerful explanation of how molecules;

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Molecular Signaling in Spermatogenesis and Male Infertility

development and fertility Highlights the translational opportunities in molecular signaling in testis;

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Molecular Signaling in Spermatogenesis and Male Infertility

regulation of germ cell development and fertility Highlights the translational opportunities in molecular signaling in testis;

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Regenerative Medicine For The Inner Ear

The research described in this book represents important steps toward understanding the development of inner ear medicine and new;

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Development of Cardiovascular Systems

first section focuses on the molecular, cellular, and integrative mechanisms that determine cardiovascular development. The second section has;

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In Vitro Neurotoxicology

, biochemical, and molecular methodological protocols in the area of in vitro neurotoxicology, with an emphasis on mammalian cell culture systems;

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Cochlear Implantation in Children with Inner Ear Malformation and Cochlear Nerve Deficiency

inner ear malformations or cochlear nerve deficiencies that have slowed the development of their speech, hearing, and/or sense of balance;

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Cochlear Implantation in Children with Inner Ear Malformation and Cochlear Nerve Deficiency

inner ear malformations or cochlear nerve deficiencies that have slowed the development of their speech, hearing, and/or sense of balance;

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Mammalian Development

overview of the conceptual framework of molecular and cellular mechanisms of mammalian development, and a glimpse into future directions;

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Glycosphingolipids Signaling

oncotransformation, phenotype change, neuronal or embryonic development, regulation of cell division, cell-cell interaction, cell attachment, adhesion, and;

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Glycosphingolipids Signaling

oncotransformation, phenotype change, neuronal or embryonic development, regulation of cell division, cell-cell interaction, cell attachment, adhesion, and;

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Auditory Mechanisms

and medicine to present current work and to review the critical issues of inner ear function. A special emphasis of the workshop was on;

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Endothelial Signaling in Development and Disease

examining the development of the vascular system in a variety of contexts, the second delving into its homeostatic characteristics, and the third;

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Gametogenesis

oogenesis in mammals, and genomic imprinting as a parental effect established in mammalian germ cells. Covers the area of gametogenesis;

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Ionotropic Glutamate Receptors in the CNS

It is now widely accepted that glutamate is the major excitatory neurotrans- mitter in the mammalian central nervous system. The main;

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Cilia, Part B

pathways in mammalian spermatozoa, and biochemical and physiological analysis of axonemal dyneins. Continues the legacy of this;

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Wnt Signaling in Embryonic Development

. elegans, and mammalian cells. Together, these chapters review the available knowledge and will fill gaps in our understanding of this interesting;

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Induction of Bone Formation in Primates

Factor- 3 sums up editor Ugo Ripamonti's research into the osteogenic activity of the three mammalian TGF- isoforms, particularly in primates;

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Einde inhoud

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