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Titlebook: In Vitro Neuronal Networks; From Culturing Metho Michela Chiappalone,Valentina Pasquale,Monica Freg Book 2019 Springer Nature Switzerland A

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發(fā)表于 2025-3-21 19:11:01 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱In Vitro Neuronal Networks
副標(biāo)題From Culturing Metho
編輯Michela Chiappalone,Valentina Pasquale,Monica Freg
視頻videohttp://file.papertrans.cn/464/463032/463032.mp4
概述Provides thorough overview of the current state of in vitro neuronal network research.Examines a number of applications in the form of case studies.Details techniques that researchers can use in exper
叢書名稱Advances in Neurobiology
圖書封面Titlebook: In Vitro Neuronal Networks; From Culturing Metho Michela Chiappalone,Valentina Pasquale,Monica Freg Book 2019 Springer Nature Switzerland A
描述This book provides a comprehensive overview of the incredible advances achieved in the study of in vitro neuronal networks for use in basic and applied research. These cultures of dissociated neurons offer a perfect trade-off between complex experimental models and theoretical modeling approaches giving new opportunities for experimental design but also providing new challenges in data management and interpretation. Topics include culturing methodologies, neuroengineering techniques, stem cell derived neuronal networks, techniques for measuring network activity, and recent improvements in large-scale data analysis. The book ends with a series of case studies examining potential applications of these technologies.
出版日期Book 2019
關(guān)鍵詞stem cell cultures; coating; patterning; Micro-Electrode Array; neural interfaces; multi-channel acquisit
版次1
doihttps://doi.org/10.1007/978-3-030-11135-9
isbn_ebook978-3-030-11135-9Series ISSN 2190-5215 Series E-ISSN 2190-5223
issn_series 2190-5215
copyrightSpringer Nature Switzerland AG 2019
The information of publication is updating

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Neuronal Cultures and Nanomaterials, the interest of graphene and graphene-based materials has rapidly risen in the neuroscience field due to the properties of this material, such as high conductivity, transparency and flexibility. As for any new material that aims to play a role in the biomedical area, a fundamental aspect is the ev
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From MEAs to MOAs: The Next Generation of Bioelectronic Interfaces for Neuronal Culturesy, extreme robustness, and usability. Over the past 40?years, silicon technology has also played a role in the advancement of the field, and CMOS-based in vitro and in vivo systems are now able to achieve unprecedented spatial resolutions, giving the possibility to unveil hidden behavior of cellular
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Burst Detection Methods both in vitro and in vivo. It has been associated with a range of neuronal processes, including efficient information transfer and the formation of functional networks during development, and has been shown to be sensitive to genetic and pharmacological manipulations. Accurate detection of periods
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Reconstruction of Functional Connectivity from Multielectrode Recordings and Calcium Imagingrain circuits, with the main goal of relating the wiring diagram of neuronal systems to their emerging properties, from the microscale to the macroscale. While combining multisite parallel recordings with structural circuits’ reconstruction in vivo is still very challenging, the reductionist in vitr
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Open-Source Tools for Processing and Analysis of In Vitro Extracellular Neuronal Signalsneuroscientific community with neuronal probes containing thousands of recording sites. These next-generation probes are capable of simultaneously recording neuronal signals from a large number of channels. Numerically, a simple 128-channel neuronal data acquisition system equipped with a 16 bits A/
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