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一种用于小动物生理数据传输的光无线通信系统。

An Optical Wireless Communication System for Physiological Data Transmission in Small Animals.

作者信息

Domingues Ana R, Pereira Diogo, Silva Manuel F, Pimenta Sara, Correia José H

机构信息

CMEMS-UMinho, University of Minho, 4800-058 Guimarães, Portugal.

LABBELS-Associate Laboratory, 4800-122 Braga, Portugal.

出版信息

Sensors (Basel). 2024 Dec 29;25(1):138. doi: 10.3390/s25010138.

Abstract

In biomedical research, telemetry is used to take automated physiological measurements wirelessly from animals, as it reduces their stress and allows recordings for large data collection over long periods. The ability to transmit high-throughput data from an in-body device (e.g., implantable systems, endoscopic capsules) to external devices can also be achieved by radiofrequency (RF), a standard wireless communication procedure. However, wireless in-body RF devices do not exceed a transmission speed of 2 Mbit/s, as signal absorption increases dramatically with tissue thickness and at higher frequencies. This paper presents the design of an optical wireless communication system (OWCS) for neural probes with an optical transmitter, sending out physiological data through an optical signal that is detected by an optical receiver. The optical receiver position is controlled by a tracking system of the small animal position, based on a cage with a piezoelectric floor. To validate the concept, an OWCS based on a wavelength of 850 nm for a data transfer of 5 Mbit/s, with an optical power of 55 mW, was demonstrated for a tissue thickness of approximately 10 mm, measured in an optical tissue phantom.

摘要

在生物医学研究中,遥测技术用于从动物身上无线自动采集生理测量数据,因为它能减轻动物的压力,并允许长时间记录大量数据。通过射频(RF)这种标准的无线通信程序,也能够实现将体内设备(例如,可植入系统、内窥胶囊)的高通量数据传输到外部设备。然而,无线体内射频设备的传输速度不超过2 Mbit/s,因为随着组织厚度增加以及频率升高,信号吸收会急剧增加。本文介绍了一种用于神经探针的光无线通信系统(OWCS)的设计,该系统带有一个光发射器,通过光信号发送生理数据,光信号由光接收器检测。光接收器的位置由基于带有压电地板的笼子的小动物位置跟踪系统控制。为验证该概念,在光学组织模型中,针对厚度约为10 mm的组织,展示了一种基于波长850 nm、数据传输速率为5 Mbit/s且光功率为55 mW的光无线通信系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0607/11723236/59d3dc41ec81/sensors-25-00138-g001.jpg

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