Tassinari G, Aglioti S, Pallini R, Berlucchi G, Rossi G F
Istituto di Fisiologia Umana, Università di Verona, Italy.
Behav Brain Res. 1994 Oct 20;64(1-2):141-9. doi: 10.1016/0166-4328(94)90126-0.
Because of the organization of visual and motor pathways, simple manual responses to a light stimulus in the right or left visual hemifields are performed faster with uncrossed hand-field combinations than with crossed hand-field combinations. Uncrossed responses can be integrated within a single hemisphere, whereas crossed responses require a time-consuming interhemispheric transfer via the corpus callosum which is reflected in the difference between crossed and uncrossed reaction times. We investigated crossed-uncrossed differences (CUDs) in speed of simple visuomotor responses to lateralized flashes in seven subjects with an anterior section of the corpus callosum sparing the splenium and in one subject with an agenetic absence of the splenium due to a cerebrovascular malformation. There was no evidence of an abnormal prolongation of the CUDs in any of these subjects, in sharp contrast with the very long CUDs exhibited by an epileptic subject with a complete callosal section and two subjects with total callosal agenesis tested in the same experimental situation [1]. The normality of the CUDs in the subjects with partial callosal defects was not due to a postoperatory reorganization of interhemispheric communication, since there was no indication of an increased CUD in a patient tested as early as 5 days after the anterior callosotomy. These results are compatible with the assumption that both anterior and posterior callosal routes may subserve the integration of speeded manual responses to a visual stimulus directed to the hemisphere ipsilateral to the responding hand.
由于视觉和运动通路的组织方式,对于右侧或左侧视野中的光刺激,单手对侧视野组合的简单手动反应比双手交叉视野组合的反应速度更快。非交叉反应可以在单个半球内整合,而交叉反应则需要通过胼胝体进行耗时的半球间传递,这反映在交叉和非交叉反应时间的差异上。我们研究了7名胼胝体前部保留压部的受试者和1名因脑血管畸形导致压部先天性缺失的受试者对侧向闪光的简单视觉运动反应速度的交叉-非交叉差异(CUDs)。在这些受试者中,没有任何证据表明CUDs异常延长,这与在相同实验情况下测试的一名胼胝体完全切断的癫痫患者和两名胼胝体完全缺失的受试者所表现出的非常长的CUDs形成鲜明对比[1]。部分胼胝体缺陷受试者的CUDs正常并非由于半球间通信的术后重组,因为在胼胝体前部切开术后最早5天测试的一名患者中没有CUD增加的迹象。这些结果与以下假设一致,即胼胝体的前部和后部路径都可能有助于对指向反应手同侧半球的视觉刺激进行快速手动反应的整合。