Department of Neurology, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.
PLoS One. 2011;6(11):e27838. doi: 10.1371/journal.pone.0027838. Epub 2011 Nov 16.
The present study investigated how direction of hand movement, which is a well-described parameter in cerebral organization of motor control, is incorporated in the somatotopic representation of the manual effector system in the human primary motor cortex (M1). Using functional magnetic resonance imaging (fMRI) and a manual step-tracking task we found that activation patterns related to movement in different directions were spatially disjoint within the representation area of the hand on M1. Foci of activation related to specific movement directions were segregated within the M1 hand area; activation related to direction 0° (right) was located most laterally/superficially, whereas directions 180° (left) and 270° (down) elicited activation more medially within the hand area. Activation related to direction 90° was located between the other directions. Moreover, by investigating differences between activations related to movement along the horizontal (0°+180°) and vertical (90°+270°) axis, we found that activation related to the horizontal axis was located more anterolaterally/dorsally in M1 than for the vertical axis, supporting that activations related to individual movement directions are direction- and not muscle related. Our results of spatially segregated direction-related activations in M1 are in accordance with findings of recent fMRI studies on neural encoding of direction in human M1. Our results thus provide further evidence for a direct link between direction as an organizational principle in sensorimotor transformation and movement execution coded by effector representations in M1.
本研究旨在探讨手部运动的方向(运动控制中大脑组织的一个特征参数)是如何整合到人类初级运动皮层(M1)对手部效应器系统的躯体定位中的。我们使用功能磁共振成像(fMRI)和手动跟踪任务发现,与不同方向运动相关的激活模式在 M1 手部代表区是空间分离的。与特定运动方向相关的激活焦点在手区 M1 内分离;与方向 0°(右侧)相关的激活位于最外侧/表面,而方向 180°(左侧)和 270°(向下)的激活位于手部区域的更内侧。与方向 90°相关的激活位于其他方向之间。此外,通过研究与沿水平(0°+180°)和垂直(90°+270°)轴运动相关的激活差异,我们发现与水平轴相关的激活在 M1 中比与垂直轴相关的激活更靠前/外侧和背侧,这支持了与个体运动方向相关的激活与方向有关,而与肌肉无关。我们在 M1 中发现的与方向相关的激活模式空间分离的结果与最近关于人类 M1 中方向神经编码的 fMRI 研究结果一致。因此,我们的结果进一步证明了作为运动执行的感觉运动转换的组织原则的方向与 M1 中效应器表示的运动之间存在直接联系。