Neuroscience Program, SRI International, Menlo Park, California 94025-3493, USA.
J Neurosci. 2010 Sep 8;30(36):12168-78. doi: 10.1523/JNEUROSCI.2160-10.2010.
Degradation of white matter fibers can affect the transmission of signals in brain circuits that normally enable integration of highly lateralized visual and motor processes. Here, we used diffusion tensor imaging tractography in combination with functional magnetic resonance imaging to examine the specific contributions of interhemispheric and intrahemispheric white matter fibers to functional measures of hemispheric transfer and parallel information processing using bilateral and unilateral left and right visual field stimulation in normal and compromised systems. In healthy adults, a greater degree of bilateral processing advantage with the left (nondominant) hand correlated with higher integrity of callosal fibers connecting occipital cortices, whereas less unilateral processing advantage with the right hand correlated with higher integrity of left-hemispheric posterior cingulate fibers. In contrast, alcoholics who have compromised callosal integrity showed less bilateral processing advantage than controls when responding with the left hand and greater unilateral processing advantage when responding with the right hand. We also found degraded left posterior cingulate and posterior callosal fibers in chronic alcoholics, which is consistent with functional imaging results of less left posterior cingulate and extrastriate cortex activation in alcoholics than controls when processing bilateral compared with unilateral visual field stimulation. Together, our results demonstrated that interhemispheric and intrahemispheric white matter fiber pathways mediate visuomotor integration asymmetrically and that subtle white matter fiber degradation in alcoholism attenuated the normal pattern of hemispheric asymmetry, which may have ramifications for the efficiency of visual information processing and fast response execution.
白质纤维的退化会影响大脑回路中信号的传输,这些信号通常能够整合高度侧向化的视觉和运动过程。在这里,我们使用弥散张量成像束追踪技术结合功能磁共振成像,研究了双侧和单侧左、右眼刺激对半球间和半球内白质纤维对半球间转移和并行信息处理的功能测量的特定贡献,在正常和受损系统中。在健康成年人中,左手(非优势手)的双侧处理优势程度与胼胝体纤维的连接完整性呈正相关,而右手的单侧处理优势程度与左半球后扣带回纤维的完整性呈正相关。相比之下,酒精中毒者的胼胝体完整性受损,用左手反应时的双侧处理优势小于对照组,用右手反应时的单侧处理优势大于对照组。我们还发现慢性酒精中毒者的左后扣带回和后胼胝体纤维退化,这与功能成像结果一致,即与单侧视觉刺激相比,酒精中毒者处理双侧视觉刺激时左后扣带回和外纹状体皮层的激活减少。总之,我们的结果表明,半球间和半球内的白质纤维通路不对称地介导了视动整合,而酒精中毒者的白质纤维细微退化削弱了正常的半球间不对称模式,这可能对视觉信息处理的效率和快速反应执行产生影响。