Basic neurobiology techniques / edited by Nicholas J. D. Wright, Levine College of Health Sciences, Wingate University, Wingate, NC, USA.

Contributor(s): Wright, Nicholas J. D [editor.]
Material type: TextTextSeries: Neuromethods: 152.; Springer protocols (Series): Publisher: New York, NY : Humana Press, [2020]Copyright date: ©2020Description: 1 online resource (xii, 352 pages) : illustrations (some color)Content type: text Media type: computer Carrier type: online resourceISBN: 9781493999446; 1493999443Subject(s): Neurobiology -- Methodology -- Laboratory manuals | Neurobiology -- methods | Neurobiology -- MethodologyGenre/Form: Laboratory Manual. | Electronic books. DDC classification: 612.8072 LOC classification: QP356 | .B37 2020Online resources: Click here to access online Summary: This volume explores the latest techniques and improved methods used to study important neurobiological and associated neuropathological conditions. Chapters cover topics such as the application of semiconductor quantum dots as photostable fluorophores used for labeling and tracking; GCaMP6 transcranial imaging to monitor neural activity; the patch-clamping technique allowing simultaneous monitoring of membrane currents and optical signals; and quantifying behavioral dysfunction caused by traumatic brain injury (TBI). In Neuromethods series style, chapters include the kind of detail and key advice from the specialists needed to get successful results in your laboratory. Cutting-edge and practical, Basic Neurobiology Techniques is a valuable resource for novel and expert researchers interested in expanding their knowledge of this developing field. .
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Includes bibliographical references and index.

Online resource; title from PDF title page (SpringerLink, viewed November 6, 2019).

This volume explores the latest techniques and improved methods used to study important neurobiological and associated neuropathological conditions. Chapters cover topics such as the application of semiconductor quantum dots as photostable fluorophores used for labeling and tracking; GCaMP6 transcranial imaging to monitor neural activity; the patch-clamping technique allowing simultaneous monitoring of membrane currents and optical signals; and quantifying behavioral dysfunction caused by traumatic brain injury (TBI). In Neuromethods series style, chapters include the kind of detail and key advice from the specialists needed to get successful results in your laboratory. Cutting-edge and practical, Basic Neurobiology Techniques is a valuable resource for novel and expert researchers interested in expanding their knowledge of this developing field. .

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