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An Open-Source Hardware and Software System for Acquisition and Real-Time Processing of Electrophysiology during High Field MRI

机译:用于高场MRI期间电生理采集和实时处理的开源硬件和软件系统

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摘要

Simultaneous recording of electrophysiology and functional magnetic resonance imaging (fMRI) is a technique of growing importance in neuroscience. Rapidly evolving clinical and scientific requirements have created a need for hardware and software that can be customized for specific applications. Hardware may require customization to enable a variety of recording types (e.g., electroencephalogram, local field potentials, or multi-unit activity) while meeting the stringent and costly requirements of MRI safety and compatibility. Real-time signal processing tools are an enabling technology for studies of learning, attention, sleep, epilepsy, neurofeedback, and neuropharmacology, yet real-time signal processing tools are difficult to develop. We describe an open source system for simultaneous electrophysiology and fMRI featuring low-noise (< 0.6 uV p-p input noise), electromagnetic compatibility for MRI (tested up to 7 Tesla), and user-programmable real-time signal processing. The hardware distribution provides the complete specifications required to build an MRI-compatible electrophysiological data acquisition system, including circuit schematics, print circuit board (PCB) layouts, Gerber files for PCB fabrication and robotic assembly, a bill of materials with part numbers, data sheets, and vendor information, and test procedures. The software facilitates rapid implementation of real-time signal processing algorithms. This system has used in human EEG/fMRI studies at 3 and 7 Tesla examining the auditory system, visual system, sleep physiology, and anesthesia, as well as in intracranial electrophysiological studies of the non-human primate visual system during 3 Tesla fMRI, and in human hyperbaric physiology studies at depths of up to 300 feet below sea level.
机译:同时记录电生理学和功能磁共振成像(fMRI)是一种在神经科学中越来越重要的技术。迅速变化的临床和科学要求已引起对可针对特定应用定制的硬件和软件的需求。硬件可能需要定制以启用各种记录类型(例如,脑电图,局部场电势或多单元活动),同时满足MRI安全性和兼容性的严格和昂贵要求。实时信号处理工具是用于学习,注意力,睡眠,癫痫,神经反馈和神经药理学的一项使能技术,但是实时信号处理工具很难开发。我们描述了一种用于同步电生理学和功能磁共振成像的开源系统,该系统具有低噪声(<0.6 uV p-p输入噪声),磁共振成像的电磁兼容性(经测试高达7特斯拉)和用户可编程的实时信号处理。硬件发行版提供了构建MRI兼容的电生理数据采集系统所需的完整规范,包括电路原理图,印刷电路板(PCB)布局,用于PCB制造和自动组装的Gerber文件,带零件号的物料清单,数据表,供应商信息以及测试过程。该软件有助于快速实施实时信号处理算法。该系统已用于在3和7号特斯拉进行的人类EEG / fMRI研究中,以检查听觉系统,视觉系统,睡眠生理和麻醉,以及在3号特斯拉fMRI期间进行的非人类灵长类动物视觉系统的颅内电生理研究,以及在人类高压生理学研究中的深度不超过海平面300英尺。

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