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Developmental Patterning of the Vertebrate Limb

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Cover of 'Developmental Patterning of the Vertebrate Limb'

Table of Contents

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    Book Overview
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    Chapter 1 Some Problems in Limb Development
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    Chapter 2 The Molecular Basis of Limb Patterning: A Review
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    Chapter 3 Expression of the Msh-Like Homebox-Containing Genes during Mouse Limb Development
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    Chapter 4 The Limb Deformity Gene Encodes Evolutionarily Highly Conserved Proteins
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    Chapter 5 The Role of Homeobox Genes in Amphibian Limb Development and Regeneration
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    Chapter 6 Homeobox-Containing Genes and GAP Junctional Communication in Pattern Formation during Chick Limb Development
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    Chapter 7 Functional Studies of Genes in the Limb
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    Chapter 8 HOX-7: Temporal Patterns of Expression in Normal and Limbless Chick Embryos
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    Chapter 9 Expression Profile of Two Homeoboxgenes during Chicken Embryogenesis
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    Chapter 10 Characterization of Three Zebrafish Genes Related to Hox-7
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    Chapter 11 A Comparison of the Expression Domains of the Murine Hox-4, RARs and CRABP Genes Suggests Possible Functional Relationships During Patterning of the Vertebrate Limb
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    Chapter 12 Retinoic Acid Nuclear Receptors
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    Chapter 13 The Role of Retinoic Acid and Cellular Retinoic Acid-Binding Protein in the Regenerating Amphibian Limb
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    Chapter 14 Retinoic Acid Treatment Alters the Pattern of Retinoic Acid Receptor Beta Expression in the Embryonic Chick Limb
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    Chapter 15 Expression Pattern of an RXR Nuclear Receptor Gene in the Chick Embryo
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    Chapter 16 Retinoic Acid and Limb Pattern Formation in Cell Culture
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    Chapter 17 Growth Factors Produced by the Polarising Zone — A Complement to the Retinoic Acid System
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    Chapter 18 Biochemical and Molecular Aspects of Retinoid Action in Limb Pattern Formation
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    Chapter 19 Position-Dependent Properties of Limb Cells
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    Chapter 20 Retinoic Acid and Limb Patterning and Morphogenesis
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    Chapter 21 Does Retinoic Acid Organise a Limb or Induce a ZPA?
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    Chapter 22 Retinoic Acid Effects on Experimental Chick Wing Buds: Patterns of Cell Death and Skeletogenesis
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    Chapter 23 A Comparison of Reaction Diffusion and Mechanochemical Models for Limb Development
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    Chapter 24 The Pathway of Polarizing Activity from Hensen’s Node To the Wing Bud in the Chick Embryo
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    Chapter 25 Extracellular Matrix in Early Limb Development
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    Chapter 26 Molecular Heterogeneity of Chondroitin Sulphate in the Developing Chick Limb
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    Chapter 27 Special Properties of the AER/Mesenchyme Interface in the Chick Wing Bud: Analysis of ECM Molecules and Integrin Receptors
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    Chapter 28 Physical Forces and Pattern Formation in Limb Development
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    Chapter 29 Extracellular Material Organization and Long Tendon Formation in the Chick Leg Autopodium. In Vivo and in Vitro Study
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    Chapter 30 Hyaluronan-Cell Interactions in Limb Development
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    Chapter 31 Role of the Transforming Growth Factor- β (TGF- β ) Family, Extracellular Matrix, and GAP Junctional Communication in Limb Cartilage Differentiation
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    Chapter 32 Vascular Involvement in Cartilage and Bone Development
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    Chapter 33 Patterning of Connective Tissues in the Regenerating Amphibian Limb
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    Chapter 34 The Interdigital Spaces of the Chick Leg Bud as a Model for Analysing Limb Morphogenesis and Cell Differentiation
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    Chapter 35 A “Packaging” Model of Limb Development
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    Chapter 36 The Somite-Muscle Relationship in the Avian Embryo
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    Chapter 37 Observations Concerning the Control of Directed Myogenic Cell Migration
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    Chapter 38 Extracellular Matrix and Muscle Formation
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    Chapter 39 Control of Muscle Morphogenesis and Endplate Pattern in Limb Muscles of Avian Chimeras
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    Chapter 40 Review of the Extracellular Matrix in Relation to Limb Development
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    Chapter 41 The Evolution of Connective and Skeletal Tissues
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    Chapter 42 Developmental Approaches to the Problem of Transformation of Limb Structure in Evolution
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    Chapter 43 New Palaeontological Contributions to Limb Ontogeny and Phylogeny
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    Chapter 44 The Fin-Limb Transformation: Palaeontological and Embryological Evidence
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    Chapter 45 The Development of the Teleost Fin and Implications for Our Understanding of Tetrapod Limb Evolution
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    Chapter 46 Phylogenetically Ancient Pattern in Ontogenesis of Limb Muscles
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    Chapter 47 Mutation and Limb Evolution
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    Chapter 48 Insights into Limb Development and Pattern Formation from Studies of the Limbless and Talpid 2 Chick Mutants
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    Chapter 49 Proximal Elements in the Vertebrate Limb: Evolutionary and Developmental Origin of the Pectoral Girdle
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    Chapter 50 Evolutionary Transformation of Limb Pattern: Heterochrony and Secondary Fusion
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    Chapter 51 Plasticity in Skeletal Development: Knee-Joint Morphology in Fibula-Deficient Chick Embryos
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    Chapter 52 The Implications of “The Bauplan” for Development and Evolution of the Tetrapod Limb
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    Chapter 53 Molecular Biology and Evolution: Two Perspectives
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    Chapter 54 The Developmental Basis of Limb Evolution: A Review
Overall attention for this book and its chapters
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Title
Developmental Patterning of the Vertebrate Limb
Published by
Springer US, December 2012
DOI 10.1007/978-1-4615-3310-8
ISBNs
978-1-4613-6457-3, 978-1-4615-3310-8
Editors

Hinchliffe, J. Richard, Hurle, Juan M., Summerbell, Dennis

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 25 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
India 1 4%
Unknown 24 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 5 20%
Researcher 4 16%
Student > Doctoral Student 3 12%
Student > Bachelor 2 8%
Student > Master 2 8%
Other 4 16%
Unknown 5 20%
Readers by discipline Count As %
Agricultural and Biological Sciences 9 36%
Biochemistry, Genetics and Molecular Biology 3 12%
Earth and Planetary Sciences 3 12%
Unspecified 1 4%
Mathematics 1 4%
Other 3 12%
Unknown 5 20%