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首页> 外文期刊>NeuroImage >Unilateral hemispheric lesions disrupt parallel processing within the contralateral intact hemisphere: an auditory fMRI study.
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Unilateral hemispheric lesions disrupt parallel processing within the contralateral intact hemisphere: an auditory fMRI study.

机译:单侧半球病变破坏了对侧完整半球内的并行处理:听觉功能磁共振成像研究。

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摘要

Evidence from activation studies suggests that sound recognition and localization are processed in two distinct cortical networks that are each present in both hemispheres. Sound recognition and/or localization may, however, be disrupted by purely unilateral damage, suggesting that processing within one hemisphere may not be sufficient or may be disturbed by the contralateral lesion. Sound recognition and localization were investigated psychophysically and using fMRI in patients with unilateral right hemisphere lesions. Two patients had a combined deficit in sound recognition and sound localization, two a selective deficit in sound localization, one a selective deficit in sound recognition, and two normal performance in both tasks. The overall level of activation in the intact left hemisphere of the patients was smaller than in normal control subjects, irrespective of whether the patient's performance in the psychophysical tasks was impaired. Despite this overall decrease in activation strength, patients with normal performance still exhibited activation patterns similar to those of the control subjects in the recognition and localization tasks, indicating that the specialized brain networks subserving sound recognition and sound localization in normal subjects were also activated in the patients with normal performance, albeit to an altogether lesser degree. In patients with deficient performance, on the other hand, the activation patterns during the sound recognition and localization tasks were severely reduced, comprising fewer and partly atypical activation foci compared to the normal subjects. This indicates that impaired psychophysical performance correlates with a breakdown of parallel processing within specialized networks in the contralesional hemisphere.
机译:激活研究的证据表明,声音的识别和定位是在两个分别存在于两个半球的两个不同的皮层网络中进行的。但是,声音的识别和/或定位可能会由于单纯的单侧损伤而中断,这表明一个半球内的处理可能不足或可能受到对侧病变的干扰。从心理上和使用fMRI对单侧右半球病变患者进行了声音识别和定位研究。两名患者在声音识别和声音定位方面存在综合缺陷,两名在声音定位方面存在选择性缺陷,一名在声音识别方面存在选择性缺陷,并且两项任务均正常。患者完整的左半球的总体激活水平小于正常对照组,而不管患者在心理生理任务中的表现是否受到损害。尽管激活强度总体下降,但在识别和定位任务中,具有正常表现的患者仍表现出与对照组相似的激活模式,这表明在正常受试者中,支持声音识别和声音定位的专门大脑网络也被激活了。表现正常的患者,尽管程度较低。另一方面,在表现欠佳的患者中,声音识别和定位任务期间的激活模式被大大降低,与正常受试者相比,包括更少且部分为非典型的激活灶。这表明心理生理功能受损与对侧半球专用网络内并行处理的崩溃相关。

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