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Reliability of motor and sensory neural decoding by threshold crossings for intracortical brain-machine interface

机译:大脑皮层内人机界面通过阈值穿越获得运动和感觉神经解码的可靠性

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摘要

Objective. For intracortical neurophysiological studies, spike sorting is an important procedure to isolate single units for analyzing specific functions. However, whether spike sorting is necessary or not for neural decoding applications is controversial. Several studies showed that using threshold crossings (TC) instead of spike sorting could also achieve a similar satisfactory performance. However, such studies were limited in similar behavioral tasks, and the neural signal source mainly focused on the motor-related cortical regions. It is not certain if this conclusion is applicable to other situations. Therefore, we compared the performance of TC and spike sorting in neural decoding with more comprehensive paradigms and parameters. Approach. Two rhesus macaques implanted with Utah or floating microelectrode arrays (FMAs) in motor or sensory-related cortical regions were trained to perform a motor or a sensory task. Data from each monkey were preprocessed with three different schemes: TC, automatic sorting (AS), and manual sorting (MS). A support vector machine was used as the decoder, and the decoding accuracy was used for evaluating the performance of three preprocessing methods. Different neural signal sources, different decoders, and related parameters and decoding stability were further tested to systematically compare three preprocessing methods. Main results. TC could achieve a similar (-4.5 RMS threshold) or better (-3.0 RMS threshold) decoding performance compared to the other two sorting methods in the motor or sensory tasks even if the neural signal sources or decoder-related parameters were changed. Moreover, TC was much more stable in neural decoding across sessions and robust to changes of threshold. Significance. Our results indicated that spike-firing patterns could be stably extracted through TC from multiple cortices in both motor and sensory neural decoding applications. Considering the stability of TC, it might be more suitable for neural decoding compared to sorting methods.
机译:目的。对于皮层内神经生理学研究,加标排序是分离单个单元以分析特定功能的重要过程。然而,对于神经解码应用是否需要尖峰排序是有争议的。多项研究表明,使用阈值穿越(TC)代替尖峰排序也可以实现类似的令人满意的性能。但是,此类研究仅限于类似的行为任务,并且神经信号源主要集中在运动相关的皮质区域。尚不确定该结论是否适用于其他情况。因此,我们将TC和尖峰排序在神经解码中的性能与更全面的范例和参数进行了比较。方法。训练了在运动或感觉相关的皮层区域植入了犹他州或漂浮微电极阵列(FMA)的两只恒河猴,以执行运动或感觉任务。使用三种不同的方案对来自每只猴子的数据进行预处理:TC,自动分类(AS)和手动分类(MS)。支持向量机用作解码器,解码精度用于评估三种预处理方法的性能。进一步测试了不同的神经信号源,不同的解码器以及相关的参数和解码稳定性,以系统地比较三种预处理方法。主要结果。与在运动或感觉任务中的其他两种分类方法相比,即使更改了神经信号源或与解码器相关的参数,TC仍可以实现类似的(-4.5 RMS阈值)或更好的(-3.0 RMS阈值)解码性能。此外,TC在跨会话的神经解码中要稳定得多,并且对阈值的更改具有鲁棒性。意义。我们的结果表明,在运动和感觉神经解码应用中,可以通过TC从多个皮层中稳定地提取尖峰发射模式。考虑到TC的稳定性,与排序方法相比,它可能更适合于神经解码。

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  • 来源
    《Journal of neural engineering 》 |2019年第3期| 036011.1-036011.15| 共15页
  • 作者单位

    Acad Mil Med Sci, Inst Mil Cognit & Brain Sci, Dept Neural Engn & Biol Interdisciplinary Studies, 27 Taiping Rd, Beijing 100850, Peoples R China;

    Acad Mil Med Sci, Inst Mil Cognit & Brain Sci, Dept Neural Engn & Biol Interdisciplinary Studies, 27 Taiping Rd, Beijing 100850, Peoples R China|Huazhong Univ Sci & Technol, Wuhan Natl Lab Optoelect, Wuhan, Hubei, Peoples R China;

    Acad Mil Med Sci, Inst Mil Cognit & Brain Sci, Dept Neural Engn & Biol Interdisciplinary Studies, 27 Taiping Rd, Beijing 100850, Peoples R China;

    Acad Mil Med Sci, Inst Mil Cognit & Brain Sci, Dept Neural Engn & Biol Interdisciplinary Studies, 27 Taiping Rd, Beijing 100850, Peoples R China;

    Acad Mil Med Sci, Inst Mil Cognit & Brain Sci, Dept Neural Engn & Biol Interdisciplinary Studies, 27 Taiping Rd, Beijing 100850, Peoples R China;

    Acad Mil Med Sci, Inst Mil Cognit & Brain Sci, Dept Neural Engn & Biol Interdisciplinary Studies, 27 Taiping Rd, Beijing 100850, Peoples R China;

    Acad Mil Med Sci, Inst Mil Cognit & Brain Sci, Dept Mil Cognit & Stress Med Sci, 27 Taiping Rd, Beijing 100850, Peoples R China;

    Acad Mil Med Sci, Inst Mil Cognit & Brain Sci, Dept Neural Engn & Biol Interdisciplinary Studies, 27 Taiping Rd, Beijing 100850, Peoples R China;

    Acad Mil Med Sci, Inst Mil Cognit & Brain Sci, Dept Neural Engn & Biol Interdisciplinary Studies, 27 Taiping Rd, Beijing 100850, Peoples R China;

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  • 正文语种 eng
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  • 关键词

    intracortical brain-machine interface; spike sorting; monkey; sensorimotor decoding; threshold crossings;

    机译:大脑皮层内人机界面;穗分类;猴子;感觉运动解码;阈值穿越;

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