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基于负拉伸电阻应变传感器的自适应心脏光遗传学装置。

Self-adaptive cardiac optogenetics device based on negative stretching-resistive strain sensor.

作者信息

Hong Wen, Jiang Chunpeng, Qin Mu, Song Ziliang, Ji Pengfei, Wang Longchun, Tu Kejun, Lu Lijun, Guo Zhejun, Yang Bin, Wang Xiaolin, Liu Jingquan

机构信息

National Key Laboratory of Science and Technology on Micro/Nano Fabrication, Shanghai Jiao Tong University, Shanghai 200240, China.

Department of Micro/Nano Electronics, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Sci Adv. 2021 Nov 26;7(48):eabj4273. doi: 10.1126/sciadv.abj4273. Epub 2021 Nov 24.

Abstract

Precision medicine calls for high demand of continuous, closed-loop physiological monitoring and accurate control, especially for cardiovascular diseases. Cardiac optogenetics is promising for its superiority of cell selectivity and high time-space accuracy, but the efficacy of optogenetics relative to the input of light stimulus is detected and controlled separately by discrete instruments in vitro, which suffers from time retardation, energy consumption, and poor portability. Thus, a highly integrated system based on implantable sensors combining closed-loop self-monitoring with simultaneous treatment is highly desired. Here, we report a self-adaptive cardiac optogenetics system based on an original negative stretching-resistive strain sensor array for closed-loop heart rate recording and self-adaptive light intensity control. The strain sensor exhibits a dual and synchronous capability of precise monitor and physiological-electrical-optical regulation. In an in vivo ventricular tachycardia model, our system demonstrates the potential of a negative stretching-resistive device in controlling-in-sensor electronics for wearable/implantable autodiagnosis and telehealth applications.

摘要

精准医学对连续的闭环生理监测和精确控制有很高要求,尤其是对于心血管疾病。心脏光遗传学因其细胞选择性优势和高时空精度而颇具前景,但光遗传学相对于光刺激输入的功效在体外是由离散仪器分别检测和控制的,这存在时间延迟、能量消耗和便携性差的问题。因此,非常需要一种基于植入式传感器的高度集成系统,该系统能将闭环自我监测与同步治疗相结合。在此,我们报告了一种基于原始负拉伸电阻应变传感器阵列的自适应心脏光遗传学系统,用于闭环心率记录和自适应光强度控制。该应变传感器具有精确监测和生理 - 电 - 光调节的双重同步能力。在体内室性心动过速模型中,我们的系统展示了负拉伸电阻装置在用于可穿戴/植入式自动诊断和远程医疗应用的传感器内控制电子设备方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6505/8612680/03364c73396e/sciadv.abj4273-f1.jpg

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