遥测控制同步刺激记录装置(SRD)研究大鼠初级体感皮层(SI)半球间皮层回路。

BMC biomedical engineering Pub Date : 2019-08-08 eCollection Date: 2019-01-01 DOI:10.1186/s42490-019-0019-7
John T Ramshur, Bashir I Morshed, Amy L de Jongh Curry, Robert S Waters
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引用次数: 3

摘要

背景:对神经科学平台的需求日益增长,这些平台可以在遥测控制的方式下对动物模型中的神经组织进行同步慢性记录和刺激,并通过信号处理来分析慢性记录数据和外部触发能力。我们描述了一种无线同步刺激和记录设备(SRD)的系统设计、测试、评估和实现,用于调节清醒行为和自由运动大鼠初级体感(SI)皮层生理识别部位的皮层回路。SRD是使用低成本电子元件和开源软件开发的。通过台架试验和体内试验评估SRD的功能。结果:SRD记录了自发的尖峰和破裂神经元活动,诱发了SRD内部传递的程序性皮质内微刺激(ICMS)的反应,以及外部外周前肢刺激的反应。结论:SRD能够按照预定的时间表进行无线刺激和记录,也可以在ICMS之前、期间和之后的行为测试中与外部输入进行无线同步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Telemetry-controlled simultaneous stimulation-and-recording device (SRD) to study interhemispheric cortical circuits in rat primary somatosensory (SI) cortex.

Telemetry-controlled simultaneous stimulation-and-recording device (SRD) to study interhemispheric cortical circuits in rat primary somatosensory (SI) cortex.

Telemetry-controlled simultaneous stimulation-and-recording device (SRD) to study interhemispheric cortical circuits in rat primary somatosensory (SI) cortex.

Telemetry-controlled simultaneous stimulation-and-recording device (SRD) to study interhemispheric cortical circuits in rat primary somatosensory (SI) cortex.

Background: A growing need exists for neuroscience platforms that can perform simultaneous chronic recording and stimulation of neural tissue in animal models in a telemetry-controlled fashion with signal processing for analysis of the chronic recording data and external triggering capability. We describe the system design, testing, evaluation, and implementation of a wireless simultaneous stimulation-and-recording device (SRD) for modulating cortical circuits in physiologically identified sites in primary somatosensory (SI) cortex in awake-behaving and freely-moving rats. The SRD was developed using low-cost electronic components and open-source software. The function of the SRD was assessed by bench and in-vivo testing.

Results: The SRD recorded spontaneous spiking and bursting neuronal activity, evoked responses to programmed intracortical microstimulation (ICMS) delivered internally by the SRD, and evoked responses to external peripheral forelimb stimulation.

Conclusions: The SRD is capable of wireless stimulation and recording on a predetermined schedule or can be wirelessly synchronized with external input as would be required in behavioral testing prior to, during, and following ICMS.

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