VA Northern California Health Care System, United States.
VA Northern California Health Care System, United States.
Neuroimage Clin. 2021;30:102614. doi: 10.1016/j.nicl.2021.102614. Epub 2021 Mar 10.
The role of white matter pathways in cognition is a topic of active investigation that is vital to both the fields of clinical neurology and cognitive neuroscience. White matter pathways provide critical connectivity amongst numerous specialized brain regions thereby enabling higher level cognition. While the effects of dissections and lesions of the corpus callosum have been reported, it is less understood how unilateral focal white matter lesions may impact cognitive processes. Here, we report a unique case study in which a small left lateralized stroke in the white matter adjacent to the body of the corpus callosum selectively impaired the ability to name letters and numbers presented to the ipsilesional, left hand. Naming of letters, numbers and objects was tested in both the visual and tactile modalities in both hands. Diffusion-weighted imaging showed a marked reduction in white matter pathway integrity through the body of the corpus callosum. Clinically, this case highlights the significant impact that a focal white matter lesion can have on higher-level cognition, specifically the integration of verbal and tactile information. Moreover, this case adds to prior reports on tactile agnosia by including DTI imaging data and emphasizing the role that white matter pathways through the body of the corpus callosum play in integrating tactile input from the right hemisphere with verbal naming capabilities of the left hemisphere. Finally, the findings also provoke fresh insight into alternative strategies for rehabilitating cognitive functioning when structural connectivity may be compromised.
大脑白质通路在认知中的作用是一个活跃的研究课题,对临床神经病学和认知神经科学都至关重要。白质通路为众多专门的大脑区域提供了至关重要的连接,从而实现了更高层次的认知。虽然已经报道了胼胝体切开术和病变的影响,但对于单侧局灶性白质病变如何影响认知过程的了解较少。在这里,我们报告了一个独特的病例研究,在胼胝体体部附近的白质中发生的一个小的左侧中风选择性地损害了对同侧左手呈现的字母和数字的命名能力。在双手的视觉和触觉两种模式下测试了字母、数字和物体的命名。弥散张量成像显示胼胝体体部的白质通路完整性明显降低。临床上,这种情况突出表明局灶性白质病变对高级认知,特别是言语和触觉信息的整合,会产生重大影响。此外,该病例通过包括弥散张量成像数据,补充了先前关于触觉失认症的报告,并强调了胼胝体体部的白质通路在整合来自右侧半球的触觉输入与左侧半球的言语命名能力方面的作用。最后,这些发现还为在结构连接可能受损时恢复认知功能提供了新的见解。