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电刺激治疗神经系统损伤疾病:研究进展与展望 被引量:11
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作者 单义珠 封红青 李舟 《物理化学学报》 SCIE CAS CSCD 北大核心 2020年第12期65-75,共11页
神经系统损伤会扰乱神经系统内的通讯,导致基本神经功能丧失和瘫痪,这不仅给患者本人带来身体和心理上的极大伤害,严重影响患者的生活质量,还会对家庭乃至整个社会造成巨大的经济负担。自20世纪40年代的研究人员发现外源电场(EF)可以诱... 神经系统损伤会扰乱神经系统内的通讯,导致基本神经功能丧失和瘫痪,这不仅给患者本人带来身体和心理上的极大伤害,严重影响患者的生活质量,还会对家庭乃至整个社会造成巨大的经济负担。自20世纪40年代的研究人员发现外源电场(EF)可以诱导神经细胞产生更多的神经突以及引导轴突定向及加速生长之后,电刺激疗法即被纳入神经损伤的治疗研究中来,并在几十年的发展中涌现出很多的优秀成果。本综述讨论了EFs对神经细胞的影响,以及应用EFs进行外周神经(PNS)和中枢神经(CNS)损伤的研究进展。在PNS中,EF能够刺激受损肢体神经的再生和功能恢复。在CNS中,可以使用EF刺激实现轴突再生并恢复患者的行走能力。另外,近年来关于一种新型的电刺激源——纳米发电机的研究进展迅速。纳米发电机是可将机械能直接转换为电能的创新能源器件。将其应用于生物医学领域,可以收集人体运动的机械能并直接输出电刺激,而不再需要外界的电能供应,这有望为电刺激治疗带来重大的创新和变革。本综述概述了近年来纳米发电机在神经系统疾病治疗方面的研究进展和应用实例。 展开更多
关键词 电刺激 神经系统损伤 神经电极 功能修复 纳米发电机
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Hybrid nanogenerator based closed-loop self-powered low-level vagus nerve stimulation system for atrial fibrillation treatment 被引量:7
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作者 Yu Sun Shengyu Chao +11 位作者 Han Ouyang Weiyi Zhang Weikang Luo Qingbin Nie Jianing Wang Changyi Luo Gongang Ni Lingyu Zhang Jun Yang hongqing feng Gengsheng Mao Zhou Li 《Science Bulletin》 SCIE EI CSCD 2022年第12期1284-1294,M0004,共12页
Atrial fibrillation is an “invisible killer” of human health. It often induces high-risk diseases, such as myocardial infarction, stroke, and heart failure. Fortunately, atrial fibrillation can be diagnosed and trea... Atrial fibrillation is an “invisible killer” of human health. It often induces high-risk diseases, such as myocardial infarction, stroke, and heart failure. Fortunately, atrial fibrillation can be diagnosed and treated early. Low-level vagus nerve stimulation(LL-VNS) is a promising therapeutic method for atrial fibrillation. However, some fundamental challenges still need to be overcome in terms of flexibility,miniaturization, and long-term service of bioelectric stimulation devices. Here, we designed a closedloop self-powered LL-VNS system that can monitor the patient’s pulse wave status in real time and conduct stimulation impulses automatically during the development of atrial fibrillation. The implant is a hybrid nanogenerator(H-NG), which is flexible, light weight, and simple, even without electronic circuits,components, and batteries. The maximum output of the H-NG was 14.8 V and 17.8 μA(peak to peak). In the in vivo effect verification study, the atrial fibrillation duration significantly decreased by 90% after LLVNS therapy, and myocardial fibrosis and atrial connexin levels were effectively improved. Notably, the anti-inflammatory effect triggered by mediating the NF-κB and AP-1 pathways in our therapeutic system is observed. Overall, this implantable bioelectronic device is expected to be used for self-powerability,intelligentization, portability for management, and therapy of chronic diseases. 展开更多
关键词 NANOGENERATORS Low-level vagus nerve stimulation Closed-loop control Atrial fibrillation Self-power Implantable electronics
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Field enhanced photocatalytic disinfection
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作者 Baoying Dai hongqing feng +1 位作者 Zhou Li Yannan Xie 《Science Bulletin》 SCIE EI CSCD 2022年第8期779-783,共5页
An enormous number and tremendous diversity of microorganisms(such as bacteria and viruses)are surrounding us in our daily life,most of which we can live together in harmony under common circumstance.
关键词 场增强 光催化灭菌 of
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