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左侧后顶叶皮层的感觉-空间转换可能有助于控制到达时间。

Sensory-spatial transformations in the left posterior parietal cortex may contribute to reach timing.

机构信息

Psychology Department, Rutgers University, Piscataway, NJ 08854, USA.

出版信息

J Neurophysiol. 2010 Nov;104(5):2375-88. doi: 10.1152/jn.00089.2010. Epub 2010 Sep 1.

Abstract

The posterior parietal cortex (PPC) contains viewer-centered spatial maps important for reaching movements. It is known that spatial reaching deficits emerge when this region is damaged, yet less is known about temporal deficits that may also emerge because of a failure in sensory-spatial transformations. This work introduces a new geometric measure to quantify multimodal sensory transformation and integration deficits affecting the tempo of reaching trajectories that are induced by injury to the left PPC. Erratic rates of positional change involving faulty maps from rotational angular displacements to translational linear displacements contributed to temporal abnormalities in the reach. Such disruptions were quantified with a time-invariant geometric measure. This measure, paired with an experimental paradigm that manipulated the source of visual guidance for reaches, was used to compare the performance of normal controls to those from a patient (T.R.) who had a lesion in his left-PPC. For controls, the source of visual guidance significantly scaled the tempo of target-directed reaches but did not change the geometric measure. This was not the case in patient T.R., who altered this measure. With continuous, extrapersonal visual feedback of the target, however, these abnormalities improved. Vision of the target rather than vision of his moving hand also improved his arm-joint rotations for posture control. These results show that the left PPC is critically important for visuo-motor transformations that specifically rely on extrapersonal cues to align rotational-arm and linear-hand displacements and to continuously integrate their rates of change. The intactness of this system contributes to the fluidity of the reach's tempo.

摘要

顶叶后皮质(PPC)包含以观察者为中心的空间图谱,对于伸手运动非常重要。众所周知,当该区域受损时,会出现空间伸手缺陷,但对于可能由于感觉-空间转换失败而出现的时间缺陷知之甚少。这项工作引入了一种新的几何度量来量化影响因左顶叶损伤而引起的伸手轨迹节奏的多模态感觉转换和整合缺陷。涉及从旋转角位移到平移线性位移的错误映射的位置变化不规则率导致伸手的时间异常。这种中断可以通过时间不变的几何度量来量化。该度量与一种实验范式相结合,该范式可以操纵伸手的视觉引导源,用于将正常对照者的表现与患有左顶叶损伤的患者(T.R.)进行比较。对于对照组,视觉引导源显著缩放了目标导向伸手的节奏,但不会改变几何度量。患者 T.R.的情况并非如此,他改变了该度量。然而,随着目标的连续、外生视觉反馈,这些异常情况得到了改善。目标的视觉而不是他移动的手的视觉也改善了他的关节旋转以进行姿势控制。这些结果表明,左顶叶对于专门依赖于外部线索来对准旋转臂和线性手位移并持续整合其变化率的视动转换至关重要。该系统的完整性有助于伸手节奏的流畅性。

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