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Impaired interhemispheric synchrony in late blindness

机译:晚期失明的间歇性同步受损

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Background Several neuroimaging studies demonstrated that visual deprivation led to significant cross-modal plasticity in the brain's functional and anatomical architecture. Purpose To investigate the pattern of the interhemispheric functional connectivity in individuals with late blindness using the voxel-mirrored homotopic connectivity (VMHC) and seed-based functional connectivity (FC) methods. Material and Methods Forty-four individuals with late blindness (22 men, 22 women; mean age = 39.88 +/- 12.84 years) and 55 sighted control individuals (35 men, 20 women; mean age = 43.13 +/- 13.98 years)-closely matched for age, sex, and education-underwent resting-state magnetic resonance imaging scans. The VMHC and seed-based FC methods were applied to assess interhemispheric coordination in a voxel-wise manner. Results Compared with the sighted control groups, the late blindness groups showed decreased VMHC values in the bilateral cuneus/calcarine/lingual gyrus (CUN/CAL/LING) (BA 17/18/19) (voxel level: P < 0.001, Gaussian random field [GRF] correction, cluster level: P < 0.005). Meanwhile, for seed-based FC analysis, compared with the sighted control group, the late blindness group showed a decreased FC between the right lower VMHC regions and the bilateral CUN/LING/CAL/precuneus (PreCUN)/left middle occipital gyrus (MOG) (BA 18/19/30/31) and left precentral gyrus (PreCG) and postcentral gyrus (PostCG) (BA 2/3/4/6). The late blindness group showed a decreased FC between the left lower VMHC regions and the bilateral CUN/LING/CAL/PreCUN (BA 18/19/31) and left PreCG and PostCG (BA 2/3/4/6) relative to the sighted control group (voxel level: P < 0.001, GRF correction, cluster level: P < 0.005). Moreover, a negative correlation was observed between the duration of blindness and VMHC values in the bilateral CUN/CAL/LING (r = -0.393, P = 0.008) in individuals with late blindness. Conclusion Our results indicated that late blindness induced substantial impairment of interhemispheric coordination in the visual cortex. This might reflect impaired visual fusion, visual recognition function, and top-down modulations in individuals with late blindness.
机译:背景技术几种神经影像学研究表明,视觉剥夺导致大脑功能和解剖结构中的显着跨模型可塑性。目的在使用voxel镜像均匀连通性(VMHC)和种子的功能连通性(FC)方法中探讨具有晚期失明的个体中的互脱型功能连通性的模式。有44名患有晚期失明的物质和方法(22名男子,22名女性;平均年龄= 39.88 +/- 12.84岁)和55名视力控制人(35名男子,20名女性;意思是年龄= 43.13 +/- 13.98岁) - 为年龄,性和教育接受休息状态磁共振成像扫描密切匹配。施用VMHC和基于种子的Fc方法以以体素 - 明智的方式评估斜血栓配位。结果与视力对照组相比,后期失明基团在双侧脊椎/钙碱/舌序(CUN / CAL / Ling)(Ba 17/18/19)(Ba 17/18/19)中显示出降低的VMHC值(Voxel水平:P <0.001,高斯随机字段[GRF]校正,群集级别:P <0.005)。同时,对于基于种子的Fc分析,与视力对照组相比,晚期失明组在右下方VMHC地区和双侧CUN / Ling / Cal / Preceus(Premun)/左中枕(MOG)之间表现出降低的FC )(BA 18/19/30/31)和左前术 - (PROPG)和后中央陀螺(POSTCG)(BA 2/3/4/6)。晚期失明集团在左下方VMHC地区和双边CUN / Ling / Cal / Precun(BA 18/19/31)之间表现出降低的FC,并将PREGG和POSTCG(BA 2/3/4/6)左侧视力对照组(体素水平:P <0.001,GRF校正,群集水平:P <0.005)。此外,在具有晚期失明的个体中双侧CUN / CAL / Ling(R = -0.393,P = 0.008)的盲目和VMHC值之间观察到负相关性。结论我们的结果表明,晚期失明诱导了视觉皮层中的间歇性协调的大量损害。这可能反映了具有晚期失明的个人的视觉融合,视觉识别功能和自上而下的调制。

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