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Cell Fusion

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Cover of 'Cell Fusion'

Table of Contents

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    Book Overview
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    Chapter 1 Yeast Mating
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    Chapter 2 Cell Fusion in the Filamentous Fungus, Neurospora crassa
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    Chapter 3 Gametic Cell Adhesion and Fusion in the Unicellular Alga Chlamydomonas
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    Chapter 4 Cell Fusion in Caenorhabditis elegans
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    Chapter 5 Myoblast Fusion in Drosophila
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    Chapter 6 Mammalian Fertilization Is Dependent on Multiple Membrane Fusion Events*
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    Chapter 7 Molecular Control of Mammalian Myoblast Fusion
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    Chapter 8 Placenta Trophoblast Fusion
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    Chapter 9 Macrophage Fusion
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    Chapter 10 Cell Fusion Assays for Yeast Mating Pairs
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    Chapter 11 Ultrastructural Analysis of Cell Fusion in Yeast
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    Chapter 12 Isolation and In Vitro Binding of Mating Type Plus Fertilization Tubules From Chlamydomonas
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    Chapter 13 Optical Imaging of Cell Fusion and Fusion Proteins in C aenorhabditis elegans
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    Chapter 14 Ultrastructural Imaging of Cell Fusion in Caenorhabditis elegans
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    Chapter 15 Live Imaging of Drosophila Myoblast Fusion
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    Chapter 16 Ultrastructural Analysis of Myoblast Fusion in Drosophila
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    Chapter 17 A Genomic Approach to Myoblast Fusion in Drosophila
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    Chapter 18 Cell Fusion
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    Chapter 19 Sperm–Egg Fusion Assay in Mammals
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    Chapter 20 Quantitative Assays for Cell Fusion
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    Chapter 21 Fusion assays and models for the trophoblast.
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    Chapter 22 Methods to Fuse Macrophages In Vitro
Attention for Chapter 18: Cell Fusion
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Chapter title
Cell Fusion
Chapter number 18
Book title
Cell Fusion
Published in
Methods in molecular biology, January 2008
DOI 10.1007/978-1-59745-250-2_18
Pubmed ID
Book ISBNs
978-1-58829-911-6, 978-1-59745-250-2
Authors

Hodor, Paul G, Ettensohn, Charles A, Paul G. Hodor, Charles A. Ettensohn

Abstract

Mesenchymal cells of the sea urchin embryo provide a valuable experimental model for the analysis of cell-cell fusion in vivo. The unsurpassed optical transparency of the sea urchin embryo facilitates analysis of cell fusion in vivo using fluorescent markers and time-lapse three-dimensional imaging. Two populations of mesodermal cells engage in homotypic cell-cell fusion during gastrulation: primary mesenchyme cells and blastocoelar cells. In this chapter, we describe methods for studying the dynamics of cell fusion in living embryos. These methods have been used to analyze the fusion of primary mesenchyme cells and are also applicable to blastocoelar cell fusion. Although the molecular basis of cell fusion in the sea urchin has not been investigated, tools have recently become available that highlight the potential of this experimental model for integrating dynamic morphogenetic behaviors with underlying molecular mechanisms.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 14 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 14 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 5 36%
Student > Ph. D. Student 4 29%
Student > Bachelor 2 14%
Professor 1 7%
Other 1 7%
Other 1 7%
Readers by discipline Count As %
Agricultural and Biological Sciences 10 71%
Biochemistry, Genetics and Molecular Biology 1 7%
Environmental Science 1 7%
Materials Science 1 7%
Engineering 1 7%
Other 0 0%