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Altered dynamics of visual contextual interactions in Parkinson’s disease

机译:帕金森病的视觉上下围互动改变了动态

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Over the last decades, psychophysical and electrophysiological studies in patients and animal models of Parkinson's disease (PD), have consistently revealed a number of visual abnormalities. In particular, specific alterations of contrast sensitivity curves, electroretinogram (ERG), and visual-evoked potentials (VEP), have been attributed to dopaminergic retinal depletion. However, fundamental mechanisms of cortical visual processing, such as normalization or "gain control" computations, have not yet been examined in PD patients. Here, we measured electrophysiological indices of gain control in both space (surround suppression) and time (sensory adaptation) in PD patients based on steady-state VEP (ssVEP). Compared with controls, patients exhibited a significantly higher initial ssVEP amplitude that quickly decayed over time, and greater relative suppression of ssVEP amplitude as a function of surrounding stimulus contrast. Meanwhile, EEG frequency spectra were broadly elevated in patients relative to controls. Thus, contrary to what might be expected given the reduced contrast sensitivity often reported in PD, visual neural responses are not weaker; rather, they are initially larger but undergo an exaggerated degree of spatial and temporal gain control and are embedded within a greater background noise level. These differences may reflect cortical mechanisms that compensate for dysfunctional center-surround interactions at the retinal level.
机译:在过去的几十年中,帕金森病(PD)患者和动物模型的心理物理和电生理学研究一直揭示了许多视觉异常。特别地,对比度敏感性曲线,电气识字图(ERG)和视觉诱发电位(VEP)的具体改变归因于多巴胺能视网膜耗尽。然而,尚未在PD患者中检查皮质视觉处理的基本机制,例如标准化或“增益控制”计算。在此,我们在基于稳态VEP(SSVEP)的PD患者中的空间(环绕抑制)和时间(感官适应)中测量了增益控制的电生理指标。与对照组相比,患者表现出显着更高的初始SSVEP幅度,随着时间的推移,快速衰减,以及作为周围刺激对比度的函数的函数更大的相对抑制SSVEP振幅。同时,患者相对于对照患者大致升高了EEG频谱。因此,与在PD中经常报告的对比度敏感度降低的对比度敏感度相反,视觉神经响应并不弱;相反,它们最初更大,但经历了夸张的空间和时间增益控制,并且嵌入在更大的背景噪声水平内。这些差异可以反映皮质机制,这些机制可以补偿视网膜水平的功能障碍中心环绕相互作用。

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