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第四届生物电子医学峰会“靶向分子机制的技术”:当前进展、挑战及未来规划

The Fourth Bioelectronic Medicine Summit "Technology Targeting Molecular Mechanisms": current progress, challenges, and charting the future.

作者信息

Datta-Chaudhuri Timir, Zanos Theodoros, Chang Eric H, Olofsson Peder S, Bickel Stephan, Bouton Chad, Grande Daniel, Rieth Loren, Aranow Cynthia, Bloom Ona, Mehta Ashesh D, Civillico Gene, Stevens Molly M, Głowacki Eric, Bettinger Christopher, Schüettler Martin, Puleo Chris, Rennaker Robert, Mohanta Saroj, Carnevale Daniela, Conde Silvia V, Bonaz Bruno, Chernoff David, Kapa Suraj, Berggren Magnus, Ludwig Kip, Zanos Stavros, Miller Larry, Weber Doug, Yoshor Daniel, Steinman Lawrence, Chavan Sangeeta S, Pavlov Valentin A, Al-Abed Yousef, Tracey Kevin J

机构信息

The Feinstein Institutes for Medical Research, Northwell Health, Manhasset, NY, USA.

Karolinska Institute, Solna, Sweden.

出版信息

Bioelectron Med. 2021 May 24;7(1):7. doi: 10.1186/s42234-021-00068-6.

Abstract

There is a broad and growing interest in Bioelectronic Medicine, a dynamic field that continues to generate new approaches in disease treatment. The fourth bioelectronic medicine summit "Technology targeting molecular mechanisms" took place on September 23 and 24, 2020. This virtual meeting was hosted by the Feinstein Institutes for Medical Research, Northwell Health. The summit called international attention to Bioelectronic Medicine as a platform for new developments in science, technology, and healthcare. The meeting was an arena for exchanging new ideas and seeding potential collaborations involving teams in academia and industry. The summit provided a forum for leaders in the field to discuss current progress, challenges, and future developments in Bioelectronic Medicine. The main topics discussed at the summit are outlined here.

摘要

生物电子医学是一个充满活力的领域,它不断催生疾病治疗的新方法,人们对其兴趣广泛且与日俱增。第四届生物电子医学峰会“靶向分子机制的技术”于2020年9月23日至24日举行。这次虚拟会议由诺斯韦尔健康公司的费因斯坦医学研究所主办。该峰会使生物电子医学作为科学、技术和医疗保健新发展的平台受到国际关注。会议是一个交流新想法并促成学术界和产业界团队之间潜在合作的舞台。该峰会为该领域的领导者提供了一个论坛,以讨论生物电子医学的当前进展、挑战和未来发展。此处概述了峰会上讨论的主要主题。

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8
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10
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Brain Stimul. 2020 Nov-Dec;13(6):1617-1630. doi: 10.1016/j.brs.2020.09.002. Epub 2020 Sep 18.

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