Department of Medical Neurobiology, The Institute for Medical Research Israel-Canada, Faculty of Medicine, The Hebrew University of Jerusalem, 91220, Jerusalem, Israel.
The Edmond and Lily Safra Center for Brain Sciences, The Hebrew University of Jerusalem, 91220, Jerusalem, Israel.
Sci Rep. 2019 Feb 14;9(1):2085. doi: 10.1038/s41598-018-38430-5.
Emerging evidence suggests that white matter plasticity in the adult brain is preserved after sensory and behavioral modifications. However, little is known about the progression of structural changes during the process of decline in visual input. Here we studied two groups of patients suffering from advanced retinitis pigmentosa with specific deterioration of the visual field: patients who had lost their peripheral visual field, retaining only central ("tunnel") vision, and blind patients with complete visual field loss. Testing of these homogeneous groups made it possible to assess the extent to which the white matter is affected by loss of partial visual input and whether partially preserved visual input suffices to sustain stability in tracts beyond the primary visual system. Our results showed gradual changes in diffusivity that are indicative of degenerative processes in the primary visual pathway comprising the optic tract and the optic radiation. Interestingly, changes were also found in tracts of the ventral stream and the corticospinal fasciculus, depicting a gradual reorganisation of these tracts consequentially to the gradual loss of visual field coverage (from intact perception to partial vision to complete blindness). This reorganisation may point to microstructural plasticity underlying adaptive behavior and cross-modal integration after partial visual deprivation.
新出现的证据表明,在感觉和行为改变后,成人大脑的白质可塑性得以保留。然而,对于视觉输入下降过程中结构变化的进展知之甚少。在这里,我们研究了两组患有晚期色素性视网膜炎且视野特异性恶化的患者:视野丧失的患者仅保留中央(“隧道”)视力,而完全丧失视野的失明患者。对这些同质组的测试使得评估白质受部分视觉输入丧失影响的程度以及部分保留的视觉输入是否足以维持初级视觉系统以外的束的稳定性成为可能。我们的结果显示,各向异性弥散度逐渐变化,表明包括视束和视辐射在内的初级视觉通路发生退行性变化。有趣的是,在腹侧流和皮质脊髓束的束内也发现了变化,这描绘了这些束随之逐渐丧失视野覆盖范围(从完整感知到部分视力到完全失明)而发生的逐渐重新组织。这种重新组织可能指向部分视觉剥夺后适应性行为和跨模态整合的微观结构可塑性。