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ocn944905379 |
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20180501122030.0 |
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160316s2016 maua ob 001 0 eng d |
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|a OPELS
|b eng
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|c OPELS
|d IDEBK
|d UIU
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|d YDXCP
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|d CDX
|d OCLCQ
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|a 944934192
|a 945136224
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|a 9780128016169
|q (electronic bk.)
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|a 0128016167
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|a 9780128013823
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|a 0128013826
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|a (OCoLC)944905379
|z (OCoLC)944934192
|z (OCoLC)945136224
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|a QH491
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|a SCI
|x 056000
|2 bisacsh
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|a 571.8
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|a TEFA
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|a Essays on developmental biology.
|n Part B /
|c edited by Paul M. Wassarman.
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|a Cambridge, MA :
|b Academic Press,
|c 2016.
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|a 1 online resource :
|b color illustrations.
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|a text
|b txt
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|a computer
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|a online resource
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|a Current topics in developmental biology ;
|v volume 117
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|a Includes bibliographical references and index.
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|a In 2016 Current Topics in Developmental Biology (CTDB) will celebrate its 50th or "goldenïÅư anniversary. To commemorate the founding of CTDB by Aron Moscona (1921-2009) and Alberto Monroy (1913-1986) in 1966, a two-volume set of CTDB (volumes 116 and 117), entitled Essays on Development, will be published by Academic Press/Elsevier in early 2016. The volumes are edited by Paul M. Wassarman, series editor of CTDB, and include contributions from dozens of outstanding developmental biologists from around the world. Overall, the essays provide critical reviews and discussion of developmental processes for a variety of model organisms. Many essays relate the history of a particular area of research, others personal experiences in research, and some are quite philosophical. Essays on Development provides a window onto the rich landscape of contemporary research in developmental biology and should be useful to both students and investigators for years to come.
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|a Online resource; title from PDF title page (ScienceDirect, viewed March 16, 2016).
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|a Front cover; Essays on Developmental Biology, Part B; Copyright; Contents; Contributors; Preface; Essays on Developmental Biology-2016; Chapter One: Epigenetic Regulation by ATP-Dependent Chromatin-Remodeling Enzymes: SNF-ing Out Crosstalk; 1. Introduction; 2. Remodeler Localization Genome-Wide; 3. Accessory Subunits in Remodeler Activities; 4. Conclusion; References; Color Plate; Chapter Two: Sea Urchin Morphogenesis; 1. Skeletal Patterning; 2. Ectodermal Patterning Inputs; References; Chapter Three: Development of the Mammalian Kidney.
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|a 1. Structure-Function: An Overview of the Anatomy and Function of the Kidney2. From Progenitors to Products: Assembling the Kidney; 2.1. A General Overview; 2.2. The Collecting Duct Network; 2.3. The Main Body of the Nephron; 2.4. The Interstitial Cell Population; 2.5. Vascular and Neural Development; 3. Man Versus Mouse; 4. Translating Development Biology: Regenerative Approaches to Kidney Disease; Acknowledgments; References; Color Plate; Chapter Four: Applied Developmental Biology: Making Human Pancreatic Beta Cells for Diabetics; References; Color Plate.
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|a Chapter Five: The Dishevelled Protein Family: Still Rather a Mystery After Over 20 Years of Molecular Studies1. The Many Functions of Dishevelleds; 2. Molecular Features and Interactions of Dishevelled; 3. Kinases Associated with Dsh; 4. Cellular Levels of Dsh and Redundancy in the Mouse Model; 5. A Ciliary Function of Dsh; 6. Other Functions of Dsh Family Members?; 7. Concluding Remarks; Acknowledgments; References; Color Plate; Chapter Six: When Family History Matters: The Importance of Lineage Analyses and Fate Maps for Explaining Animal Development; 1. The Advent of Analyzing Cell Fates.
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|a 2. Creating Fate Maps2.1. Fate Mapping Using Vital Dyes; 2.2. Fate Mapping by Making Chimeras; 3. Lineage Mapping of Identified Founder Cells; 4. Clonal Fate Maps; 5. What Have We Learned?; Acknowledgments; References; Color Plate; Chapter Seven: Frizzled Receptors in Development and Disease; 1. Introduction; 2. Frizzled1, Frizzled2, and Frizzled7; 3. Frizzled5 and Frizzled8; 4. Frizzled9 and Frizzled10; 5. Frizzled4; 6. Frizzled3 and Frizzled6; 7. Conclusion; Acknowledgments; References; Chapter Eight: The Developmental Genetics ofVertebrate Color Pattern Formation: Lessons from Zebrafish.
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|a 1. Introduction2. The Striped Color Pattern of Zebrafish; 3. Stripe Formation, a Self-organizing Process Involving the Interaction of All Three Cell Types; 4. Developmental Origin of the Three Pigment Cell Types; 5. Formation of a Series of Light and Dark Stripes by Patterned Aggregation of Iridophores; 6. Genetic and Molecular Regulation ofColorPattern Formation; 6.1. Regulation of Pigment Cell Proliferation and Maintenance by Distinct Signaling Systems; 6.2. Formation of Contiguous Boundaries Between the Light and the Dark Stripes.
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|a Developmental biology.
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|a Morphogenesis.
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|a SCIENCE
|x Life Sciences
|x Anatomy & Physiology.
|2 bisacsh
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650 |
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|a Developmental biology.
|2 fast
|0 (OCoLC)fst00891773
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|a Morphogenesis.
|2 fast
|0 (OCoLC)fst01026447
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|a Electronic books.
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|a Wassarman, Paul M.,
|e editor.
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|i Print version:
|t Essays on developmental biology. Part B.
|z 9780128013823
|z 0128013826
|w (OCoLC)930255330
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830 |
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|a Current topics in developmental biology ;
|v v. 117.
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856 |
4 |
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|u https://www.sciencedirect.com/science/bookseries/00702153/117
|z Full Text via HEAL-Link
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