胼胝体切开术、胼胝体发育不全或脑半球切除术患者的侧化良好

Markus Hausmann , Michael C. Corballis , Mara Fabri , Aldo Paggi , Jörg Lewald
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引用次数: 45

摘要

人类皮层中是否有右半球主导听觉空间信息的处理,以及胼胝体在空间听觉功能中的作用,仍然是一个有争议的问题。在这里,我们通过研究两名胼胝体晚期切除的受试者和一名胼胝体发育不全的受试者,使用具有可变耳间时差的声音偏侧化任务来解决这个问题。为了比较,三名左半球或右半球切除术的受试者也采用相同的方法进行了测试。除了视力显著下降外,与正常对照相比,胼胝体全部或部分切除的受试者表现出相当大的声音偏左偏侧。在胼胝体发育不全的受试者中没有发现这种偏倚,而仅仅是一般敏锐度的轻微降低。此外,一名完全切除左大脑皮层的受试者表现出几乎正常的表现,而另一名左半球切除术和一名右半球切除术的受试者表现出严重的缺陷,几乎完全丧失了声音偏侧化能力。胼胝体切开术患者的结果表明,胼胝体的完整性对于保持声音偏侧能力并不是必不可少的。另一方面,听觉信息的经胼胝体半球间转移在依赖双耳线索的空间听觉功能中明显起着重要作用。此外,这些数据与右皮质半球在听觉空间感知中占主导地位的一般观点是一致的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sound lateralization in subjects with callosotomy, callosal agenesis, or hemispherectomy

The question of whether there is a right-hemisphere dominance in the processing of auditory spatial information in human cortex as well as the role of the corpus callosum in spatial hearing functions is still a matter of debate. Here, we approached this issue by investigating two late-callosotomized subjects and one subject with agenesis of the corpus callosum, using a task of sound lateralization with variable interaural time differences. For comparison, three subjects with left or right hemispherectomy were also tested by employing identical methods. Besides a significant reduction in their acuity, subjects with total or partial section of the corpus callosum exhibited a considerable leftward bias of sound lateralization compared to normal controls. No such bias was found in the subject with callosal agenesis, but merely a marginal reduction of general acuity. Also, one subject with complete resection of the left cerebral cortex showed virtually normal performance, whereas another subject with left hemispherectomy and one subject with right hemispherectomy exhibited severe deficits, with almost total loss of sound-lateralization ability. The results obtained in subjects with callosotomy indicate that the integrity of the corpus callosum is not indispensable for preservation of sound-lateralization ability. On the other hand, transcallosal interhemispheric transfer of auditory information obviously plays a significant role in spatial hearing functions that depend on binaural cues. Moreover, these data are compatible with the general view of a dominance of the right cortical hemisphere in auditory space perception.

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