Stem cell technologies in neuroscience / edited by Amit K. Srivastava, Evan Y. Snyder, Yang D. Teng.

This volume provides comprehensive knowledge on the fundamental techniques and detailed laboratory protocols used in stem cell research and their potential application in the field of neuroscience. The chapters in this book cover detailed descriptions of techniques for isolation, maintenance, differ...

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Bibliographic Details
Online Access: Full Text (via Springer)
Other Authors: Srivastava, Amit K. (Editor), Snyder, Evan Y. (Editor), Teng, Yang D. (Editor)
Format: eBook
Language:English
Published: New York, NY : Humana Press : Springer, [2017]
Series:Neuromethods ; 126.
Subjects:

MARC

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505 0 0 |t Three-dimensional cultures of human neural stem cells : an application for modeling Alzheimer's disease pathogenesis /  |r Se Hoon Choi, Carla D'Avanzo, Young Hye Kim, Enjana Bylykbashi, Matthias Hebisch, Oliver Brüstle, Ruldolph E. Tanzi, and Doo Yeon Kim --  |t Neural stem cell fate control on micropatterned substrates /  |r Leonora Buzanska, Marzena Zychowicz, Ana Ruiz, and François Rossi --  |t Dopaminergic and GABAergic neuron in vitro differentiation from embryonic stem cells /  |r Talita Glaser, Juliana Corrêa-Velloso, Ágatha Oliveira-Giacomelli, Yang D. Teng, and Henning Ulrich --  |t Transfection of cultured primary neurons /  |r Annalisa Rossi, Ralf Dahm, and Paolo Macchi --  |t Reprogramming of mouse fibroblasts to induced oligodendrocyte progenitor cells /  |r Robert T. Karl, Angela M. Lager, Fadi J. Najm, and Paul J. Tesar --  |t Isolation and culture of oligodendrocyte precursor cells from prenatal and postnatal rodent brain /  |r Danyang He, Bradley Meyer, and Q. Richard Lu --  |t Schwann cell isolation and culture reveals the plasticity of these glia /  |r David E. Weinstein --  |t Generation of cerebral organoids derived from human pluripotent stem cells /  |r Mark E. Hester and Alexis B. Hood --  |t Development of mouse cell-based in vitro blood-brain barrier models /  |r Malgorzata Burek, Ellaine Salvador, and Carola Y. Förster --  |t Microfluidic device for studying traumatic brain injury /  |r Yiing Chiing Yap, Tracey C. Dickson, Anna E. King, Michael C. Breadmore, and Rosanne M. Guijt --  |t Multimodal neural stem cell research protocols for experimental spinal cord injuries /  |r Yang D. Teng, Evan Y. Snyder, Xiang Zeng, Liquan Wu, and Inbo Han --  |t Real-time dual MRI for predicting and subsequent validation of intra-arterial stem cell delivery to the central nervous system /  |r Piotr Walczak and Miroslaw Janowski --  |t Standardized cryopreservation of stem cells /  |r Maria L. Thompson, Eric J. Kunkel, and Rolf O. Ehrhardt --  |t Isolation and characterization of extracellular vesicles in stem cell-related studies /  |r Zezhou Zhao, Dillon C. Muth, Vasiliki Mahairaki, Linzhao Cheng, and Kenneth W. Witwer --  |t Essential requirements for setting up a stem cell laboratory /  |r Philip H. Schwartz and Robin L. Wesselschmidt. 
588 0 |a Online resource; title from pdf title page (SpringerProtocol, viewed May 15, 2017). 
520 |a This volume provides comprehensive knowledge on the fundamental techniques and detailed laboratory protocols used in stem cell research and their potential application in the field of neuroscience. The chapters in this book cover detailed descriptions of techniques for isolation, maintenance, differentiation, and characterization of neural stem cells, and the development of in vitro stem cell-based neurological disease model. There are detailed methods on leading techniques for stem cell genetic engineering and intra-organ transplantation for research and therapeutic purposes, in vivo imaging of donor stem cells, and essential requirements for setting up a new stem cell laboratory. Neuromethods series offers chapters with key advice and procedure specifics to empower the readers to successfully achieve their own scientific and experimental goals. Cutting-edge and pragmatic, Stem Cell Technologies in Neuroscience is a valuable resource for academic and translational researchers, industry scientists, biology teachers, and life science graduate students to grasp the vital pulse of the rapidly growing field of stem cell research. 
650 0 |a Multipotent stem cells  |v Laboratory manuals. 
650 0 |a Multipotent stem cells. 
650 0 |a Nervous system. 
650 7 |a Nervous system  |2 fast 
650 7 |a Multipotent stem cells  |2 fast 
655 7 |a Laboratory manuals  |2 fast 
700 1 |a Srivastava, Amit K.,  |e editor. 
700 1 |a Snyder, Evan Y.,  |e editor. 
700 1 |a Teng, Yang D.,  |e editor. 
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830 0 |a Neuromethods ;  |v 126.  |x 0893-2336 
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