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Successful tactile based visual sensory substitution use functions independently of visual pathway integrity

机译:成功的基于触觉的视觉感觉替代使用功能独立于视觉通路完整性

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摘要

>Purpose: Neuronal reorganization after blindness is of critical interest because it has implications for the rational prescription of artificial vision devices. The purpose of this study was to distinguish the microstructural differences between perinatally blind (PB), acquired blind (AB), and normally sighted controls (SCs) and relate these differences to performance on functional tasks using a sensory substitution device (BrainPort).>Methods: We enrolled 52 subjects (PB n = 11; AB n = 35; SC n = 6). All subjects spent 15 h undergoing BrainPort device training. Outcomes of light perception, motion, direction, temporal resolution, grating, and acuity were tested at baseline and after training. Twenty-six of the subjects were scanned with a three Tesla MRI scanner for diffusion tensor imaging (DTI), and with a positron emission tomography (PET) scanner for mapping regional brain glucose consumption during sensory substitution function. Non-parametric models were used to analyze fractional anisotropy (FA; a DTI measure of microstructural integrity) of the brain via region-of-interest (ROI) analysis and tract-based spatial statistics (TBSS).>Results: At baseline, all subjects performed all tasks at chance level. After training, light perception, time resolution, location and grating acuity tasks improved significantly for all subject groups. ROI and TBSS analyses of FA maps show areas of statistically significant differences (p ≤ 0.025) in the bilateral optic radiations and some visual association connections between all three groups. No relationship was found between FA and functional performance with the BrainPort.>Discussion: All subjects showed performance improvements using the BrainPort irrespective of nature and duration of blindness. Definite brain areas with significant microstructural integrity changes exist among PB, AB, and NC, and these variations are most pronounced in the visual pathways. However, the use of sensory substitution devices is feasible irrespective of microstructural integrity of the primary visual pathways between the eye and the brain. Therefore, tongue based devices devices may be usable for a broad array of non-sighted patients.
机译:>目的:失明后的神经元重组非常重要,因为它对人工视觉设备的合理处方具有影响。这项研究的目的是区分围产期盲人(PB),获得性盲人(AB)和正常视力对照(SC)之间的微观结构差异,并将这些差异与使用感觉替代设备(BrainPort)进行的功能性工作相关联。 strong>方法:我们招募了52名受试者(PB n = 11; AB n = 35; SC n = 6)。所有受试者花费15小时接受BrainPort设备培训。在基线和训练后测试光感知,运动,方向,时间分辨率,光栅和敏锐度的结果。使用三台Tesla MRI扫描仪进行扩散张量成像(DTI)扫描,并使用正电子发射断层扫描(PET)扫描仪对26位受试者进行扫描,以绘制感觉替代功能期间的局部脑葡萄糖消耗。非参数模型用于通过兴趣区域(ROI)分析和基于区域的空间统计(TBSS)分析大脑的分数各向异性(FA; DTI测量的微结构完整性)。>结果:基线时,所有受试者均以机会级别执行所有任务。训练后,所有受试者组的光感知,时间分辨率,位置和光栅敏锐度任务均得到显着改善。 FA图的ROI和TBSS分析显示,在双边光辐射以及所有三组之间的某些视觉关联性连接方面,统计上存在显着差异(p≤0.025)的区域。在Brain脑中,FA与功能表现之间没有关系。>讨论:所有受试者均使用BrainPort表现出了改善,而与失明的性质和持续时间无关。 PB,AB和NC之间存在具有明显微结构完整性变化的确定的大脑区域,这些变化在视觉通路中最为明显。但是,无论眼睛和大脑之间的主要视觉通路的微结构完整性如何,使用感觉替代设备都是可行的。因此,基于舌头的设备可用于广泛的无视患者。

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