首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Neural Representations of Sensorimotor Memory- and Digit Position-Based Load Force Adjustments Before the Onset of Dexterous Object Manipulation
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Neural Representations of Sensorimotor Memory- and Digit Position-Based Load Force Adjustments Before the Onset of Dexterous Object Manipulation

机译:令人迷惑的物体操纵开始前的感觉电流记忆和基于位位置的负载力调整的神经表示

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摘要

Anticipatory load forces for dexterous object manipulation in humans are modulated based on visual object property cues, sensorimotor memories of previous experiences with the object, and, when digit positioning varies from trial to trial, the integrating of this sensed variability with force modulation. Studies of the neural representations encoding these anticipatory mechanisms have not considered these mechanisms separately from each other or from feedback mechanisms emerging after lift onset. Here, representational similarity analyses of fMRI data were used to identify neural representations of sensorimotor memories and the sensing and integration of digit position. Cortical activity and movement kinematics were measured as 20 human subjects (11 women) minimized tilt of a symmetrically shaped object with a concealed asymmetric center of mass (CoM, left and right sided). This task required generating compensatory torques in opposite directions, which, without helpful visual CoM cues, relied primarily on sensorimotor memories of the same object and CoM. Digit position was constrained or unconstrained, the latter of which required modulating forces beyond what can be recalled from sensorimotor memories to compensate for digit position variability. Ventral premotor (PMv), somatosensory, and cerebellar lobule regions (CrusII, Villa) were sensitive to anticipatory behaviors that reflect sensorimotor memory content, as shown by larger voxel pattern differences for unmatched than matched CoM conditions. Cerebellar lobule I-IV, Broca area 44, and PMv showed greater voxel pattern differences for unconstrained than constrained grasping, which suggests their sensitivity to monitor the online coincidence of planned and actual digit positions and correct for a mismatch by force modulation.
机译:用于人类灵巧对象操纵预期负载力被调制基于视觉对象属性线索,与对象,并且当手指定位从试验变化到试验,力调制该感测到的变异性的积分以前的经验感觉记忆。编码这些预期机制的神经表征的研究还没有从电梯发病后出现的相互或反馈机制,认为这些机制分开。在这里,fMRI数据的代表性相似性分析来鉴定的感觉记忆和数字位置传感和集成神经表征。皮质活动和运动运动学测量为最小化的对称形状的物体的倾斜与质量块的隐蔽不对称中心20名人类受试者(11名妇女)(COM,左,右两面)。该任务所需产生在相反方向上,其未经有用视觉线索COM,主要依靠相同的对象和COM的感觉记忆补偿转矩。位的位置被限制或不受约束,后者需要调节的力量超出了可以从感觉记忆被召回补偿数字位置的变化。腹侧前运动(PMV),体感,和小脑小叶区(CrusII,别墅)分别以反映感觉存储器内容,如由比匹配COM条件不匹配的较大体素图案差预期行为敏感。小脑小叶I-IV,Broca区44和副粘病毒表现出比约束的把持,这表明它们的灵敏度监视计划和实际数字位置的通过力调制失配在线巧合和正确不受约束更大的体素图案的差异。

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