Department of Biology and Biological Engineering, California Institute of Technology, Pasadena, California 91125.
Tianqiao and Chrissy Chen Brain-Machine Interface Center, Chen Institute for Neuroscience, California Institute of Technology, Pasadena, California 91125.
eNeuro. 2020 Mar 12;7(2). doi: 10.1523/ENEURO.0222-19.2019. Print 2020 Mar/Apr.
Recent studies in posterior parietal cortex (PPC) have found multiple effectors and cognitive strategies represented within a shared neural substrate in a structure termed "partially mixed selectivity" (Zhang et al., 2017). In this study, we examine whether the structure of these representations is preserved across changes in task context and is thus a robust and generalizable property of the neural population. Specifically, we test whether the structure is conserved from an open-loop motor imagery task (training) to a closed-loop cortical control task (online), a change that has led to substantial changes in neural behavior in prior studies in motor cortex. Recording from a 4 × 4 mm electrode array implanted in PPC of a human tetraplegic patient participating in a brain-machine interface (BMI) clinical trial, we studied the representations of imagined/attempted movements of the left/right hand and compare their individual BMI control performance using a one-dimensional cursor control task. We found that the structure of the representations is largely maintained between training and online control. Our results demonstrate for the first time that the structure observed in the context of an open-loop motor imagery task is maintained and accessible in the context of closed-loop BMI control. These results indicate that it is possible to decode the mixed variables found from a small patch of cortex in PPC and use them individually for BMI control. Furthermore, they show that the structure of the mixed representations is maintained and robust across changes in task context.
最近在顶后皮质(PPC)的研究发现,在一个被称为“部分混合选择性”的结构中,多个效应器和认知策略在一个共同的神经基质中得到了代表(Zhang 等人,2017)。在这项研究中,我们研究了这些表示结构是否在任务上下文的变化中得到保留,因此是否是神经群体的一个稳健和可推广的特性。具体来说,我们测试了结构是否从开环运动想象任务(训练)到闭环皮质控制任务(在线)保持不变,这一变化导致了运动皮层中先前研究中神经行为的重大变化。我们记录了一名参加脑机接口(BMI)临床试验的四肢瘫痪患者的 PPC 中一个 4×4mm 电极阵列的神经活动,研究了左手/右手想象/尝试运动的表示,并使用一维光标控制任务比较它们各自在 BMI 控制任务中的性能。我们发现,代表的结构在训练和在线控制之间基本保持不变。我们的结果首次表明,在开环运动想象任务背景下观察到的结构在闭环 BMI 控制背景下得到了保持和可访问。这些结果表明,可以从 PPC 的一小部分皮质中解码出混合变量,并将其单独用于 BMI 控制。此外,它们表明,混合表示的结构在任务上下文的变化中得到了保持和稳健。