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Functional localization of the human color center by decreased water displacement using diffusion‐weighted fMRI

机译:使用扩散加权fMRI通过减少水位移来实现人色中心的功能定位

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AbstractIntroductionDecreased water displacement following increased neural activity has been observed using diffusion-weighted functional MRI (DfMRI) at high b-values. The physiological mechanisms underlying the diffusion signal change may be unique from the standard blood oxygenation level-dependent (BOLD) contrast and closer to the source of neural activity. Whether DfMRI reflects neural activity more directly than BOLD outside the primary cerebral regions remains unclear.MethodsColored and achromatic Mondrian visual stimuli were statistically contrasted to functionally localize the human color center Area V4 in neurologically intact adults. Spatial and temporal properties of DfMRI and BOLD activation were examined across regions of the visual cortex.ResultsAt the individual level, DfMRI activation patterns showed greater spatial specificity to V4 than BOLD. The BOLD activation patterns were more prominent in the primary visual cortex than DfMRI, where activation was localized to the ventral temporal lobe. Temporally, the diffusion signal change in V4 and V1 both preceded the corresponding hemodynamic response, however the early diffusion signal change was more evident in V1.ConclusionsDfMRI may be of use in imaging applications implementing cognitive subtraction paradigms, and where highly precise individual functional localization is required.
机译:摘要简介使用扩散加权功能MRI(DfMRI)在高b值下观察到神经活动增加引起的水排量减少。根据标准的血液氧合水平依赖性(BOLD)对比,弥散信号改变的生理机制可能是独特的,并且更接近于神经活动的来源。尚不清楚DfMRI是否在原发性脑区域之外比BOLD更直接地反映神经活动。方法在统计学上对比有色和无色Mondrian视觉刺激在功能上完整的成年人中功能定位人类色中心V4区。在视皮层的各个区域检查了DfMRI和BOLD激活的时空特性。结果在个体水平上,DfMRI激活模式对V4的空间特异性高于BOLD。与DfMRI相比,BOLD激活模式在初级视觉皮层中更为突出,后者的激活位于腹侧颞叶。在时间上,V4和V1中的扩散信号变化均先于相应的血流动力学反应发生,但是早期扩散信号的变化在V1中更为明显。结论DfMRI可能在实现认知减影范式的成像应用中使用,其中高精度的个体功能定位是需要。

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