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首页> 外文期刊>NeuroImage >Performing allocentric visuospatial judgments with induced distortion of the egocentric reference frame: an fMRI study with clinical implications.
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Performing allocentric visuospatial judgments with induced distortion of the egocentric reference frame: an fMRI study with clinical implications.

机译:进行以自我为中心的参考框架引起的变形的同心异位视觉空间判断:一项具有临床意义的功能磁共振成像研究。

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The temporary improvement of visuospatial neglect during galvanic vestibular stimulation (Scand. J. Rehabil. Med. 31 (1999)117) may result from correction of the spatial reference frame distorted by the responsible lesion. Prior to an investigation of the neural basis of this effect in neurological patients, exploration of the neural mechanisms underlying such procedures in normals is required to provide insight into the physiological basis thereof. Despite their clinical impact, the neural mechanisms underlying the interaction of galvanic (and other) vestibular manipulations with visuospatial processing (and indeed the neural bases of how spatial reference frames are computed in man) remain to be clarified. We accordingly used fMRI in normal volunteers to investigate the effect of galvanically induced interference with the egocentric spatial reference frame on the neural processes underlying allocentric visuospatial (line bisection) judgments. A significant specific interaction of galvanic vestibular stimulation with the neural mechanisms underlying allocentric visuospatial judgments was observed in right posterior parietal and ventral premotor cortex only. Activation of these areas previously found to be damaged in visuospatial neglect suggests that these effects reflect the increased processing demands when compensating for the distorted egocentric spatial reference frame while maintaining accurate performance during the allocentric spatial task. These results thus implicate right posterior parietal and right ventral premotor cortex in the computation of spatial reference frames. Furthermore, our data imply a specific physiological basis for the temporary improvement of visuospatial neglect in patients with right hemisphere lesions during galvanic vestibular stimulation and may thus impact upon the rehabilitation of neglect: understanding the interaction of galvanic vestibular stimulation with allocentric visuospatial judgments in healthy volunteers may lead to the more effective deployment of such techniques in neurological patients.
机译:电流前庭刺激期间视觉空间疏忽的暂时改善(Scand。J. Rehabil。Med。31(1999)117)可能是由于对因病灶造成畸变的空间参照系进行了校正。在研究神经系统患者中这种作用的神经基础之前,需要探索正常情况下此类程序的神经机制,以提供对其生理基础的认识。尽管它们具有临床影响,但仍需要弄清电流(和其他)前庭操纵与视觉空间处理(以及实际上是如何计算人体空间参照系的神经基础)相互作用的神经机制。因此,我们在正常志愿者中使用了功能磁共振成像技术,以研究自我中心空间参考系的电感应干扰对异位中心视空间(线平分)判断所依据的神经过程的影响。仅在右后顶叶和腹侧前运动皮层中观察到前庭电刺激与异位中心视觉空间判断基础的神经机制有显着的特异性相互作用。这些区域的激活先前在视觉空间忽略中被损坏,这表明这些效果反映了在补偿变形的以自我为中心的空间参照系时,同时在以同心为中心的空间任务中保持准确性能的同时,处理需求的增加。这些结果因此暗示了空间参考系的计算中的右后顶叶和右腹前运动皮层。此外,我们的数据暗示了在电前庭刺激过程中右半球病变患者视觉空间疏忽的暂时改善的特定生理基础,因此可能影响疏忽的康复:了解健康志愿者中电前庭刺激与同心异形视觉空间判断的相互作用可能导致这种技术在神经病患者中更有效的部署。

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