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Titlebook: Ultrashort Electric Pulse Effects in Biology and Medicine; Stephen J. Beebe,Ravi Joshi,Shu Xiao Book 2021 Springer Nature Singapore Pte Lt

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書目名稱Ultrashort Electric Pulse Effects in Biology and Medicine
編輯Stephen J. Beebe,Ravi Joshi,Shu Xiao
視頻videohttp://file.papertrans.cn/941/940541/940541.mp4
概述Extensively examines the most recent and exciting advances in how nanosecond and picosecond electric pulse research has grown and expanded into new areas of biology and medicine.Focuses on intracellul
叢書名稱Series in BioEngineering
圖書封面Titlebook: Ultrashort Electric Pulse Effects in Biology and Medicine;  Stephen J. Beebe,Ravi Joshi,Shu Xiao Book 2021 Springer Nature Singapore Pte Lt
描述.This book presents an overview of the current state of research on ultrashort electric field pulses of high intensity and their use in biology and medicine. It examines in detail the most recent and exciting advances in how nanosecond and picosecond electric pulse research has grown and expanded into new areas of biology and medicine.. Further, the book specifically focuses on electric pulses in the time domain, on intracellular effects as opposed to plasma membrane electroporation, and highlights the biological and medical applications of these unique pulse effects. Since the authors were initial innovators exploring nanosecond and picosecond pulses, their unique perspectives foreshadowed directions the research took, expanding into new areas that they continue to investigate today..
出版日期Book 2021
關(guān)鍵詞nanosecond pulse; picosecond pulse; nanosecond bioelectric research; electroporation; subcellular effect
版次1
doihttps://doi.org/10.1007/978-981-10-5113-5
isbn_ebook978-981-10-5113-5Series ISSN 2196-8861 Series E-ISSN 2196-887X
issn_series 2196-8861
copyrightSpringer Nature Singapore Pte Ltd. 2021
The information of publication is updating

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Ultrashort Electric Pulse Effects in Biology and Medicine978-981-10-5113-5Series ISSN 2196-8861 Series E-ISSN 2196-887X
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https://doi.org/10.1007/978-981-10-5113-5nanosecond pulse; picosecond pulse; nanosecond bioelectric research; electroporation; subcellular effect
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Simulations of Membrane Effects of Cells After Exposure to Ultrashort Pulses,rious schemes for analysis and simulations of the electrically driven bioeffects. Schemes ranging from molecular level descriptions to an averaged continuum analyses are presented and discussed in this chapter. Relevant examples and illustrative result are also given in this context of cellular bioelectrics.
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Comparison Between Monopolar and Bipolar Pulses for Effective Nanoporation,uptake. This prediction is in agreement with experimental reports and observations. It is also demonstrated that multipronged electrode configurations influence and increase the degree of cellular uptake.
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