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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Magnetic resonance compatibility of multichannel silicon microelectrode systems for neural recording and stimulation: design criteria, tests, and recommendations
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Magnetic resonance compatibility of multichannel silicon microelectrode systems for neural recording and stimulation: design criteria, tests, and recommendations

机译:用于神经记录和刺激的多通道硅微电极系统的磁共振兼容性:设计标准,测试和建议

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摘要

Magnetic resonance (MR) compatibility of biomedical implants and devices represents a challenge for designers and potential risks for users. This paper addresses these problems and presents the first MR-compatible multichannel silicon chronic microelectrode system, used for recording and electrical stimulation of the central nervous system for animal models. A standard chronic assembly, from the Center for Neural Communication Technology at the University of Michigan, was tested on a 2 Tesla magnet to detect forces, heating, and image distortions, and modified to minimize or eliminate susceptibility artifacts, tissue damage, and electrode displacement, maintaining good image quality and safety to the animals. Multiple commercial connectors were tested for MR compatibility and several options for the reference electrode were also tested to minimize image artifacts and provide a stable biocompatible reference for short- and long-term neural recordings. Different holding screws were tested to anchor the microelectrode assembly on the top of the skull. The final selection of this part was based on MR-compatibility, biocompatibility, durability, and mechanical and chemical stability. The required adaptor to interconnect the MR-compatible microelectrode with standard data acquisition systems was also designed and fabricated. The final design is fully MR-compatible and has been successfully tested on guinea pigs.
机译:生物医学植入物和设备的磁共振(MR)兼容性对设计人员构成挑战,并给用户带来潜在风险。本文解决了这些问题,并提出了第一个MR兼容的多通道硅慢性微电极系统,该系统用于动物模型的中枢神经系统的记录和电刺激。来自密歇根大学神经通讯技术中心的标准慢性装配体在2特斯拉磁体上进行了测试,以检测力,发热和图像变形,并进行了修改以最大程度地减少或消除磁化伪影,组织损伤和电极移位,保持良好的图像质量和对动物的安全性。测试了多个商用连接器的MR兼容性,还测试了参比电极的几个选项,以最大程度地减少图像伪影,并为短期和长期神经记录提供稳定的生物相容性参考。测试了不同的固定螺丝,将微电极组件固定在头骨的顶部。这部分的最终选择是基于MR兼容性,生物兼容性,耐用性以及机械和化学稳定性。还设计和制造了将MR兼容微电极与标准数据采集系统互连所需的适配器。最终设计完全兼容MR,并已在豚鼠上成功测试。

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