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首页> 外文期刊>Investigative ophthalmology & visual science >Dissociations in Coherence Sensitivity Reveal Atypical Development of Cortical Visual Processing in Congenital Achromatopsia
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Dissociations in Coherence Sensitivity Reveal Atypical Development of Cortical Visual Processing in Congenital Achromatopsia

机译:相干敏感性的解离揭示先天性色盲的皮质视觉处理的非典型发展。

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Purpose: While basic visual functions have been described in subjects with congenital achromatopsia (ACHM), little is known about their mid- or high-level cortical visual processing. We compared midlevel cortical visual processing in ACHM subjects (n = 11) and controls (n = 20). Methods: Abilities to detect global form, global motion, and biological motion embedded in noise were tested across a range of light levels, including scotopic, in which both ACHM subjects and controls must rely on rods. Contrast sensitivity functions (CSFs) were also measured. Results: Achromatopsia subjects showed differential impairments across tests. In scotopic conditions, global form was most impaired, while biological motion was normal. In a subset of three ACHM subjects with normal scotopic CSFs, two of the three showed global form perception worse than controls; all showed global motion comparable to controls; and strikingly, two of the three showed biological motion perception superior to controls. Conclusions: The cone signal appears to play a crucial role in the development of perception of global form, as in ACHM this is impaired even in scotopic conditions, in which controls also have to rely on rods, and even in ACHM subjects with no scotopic spatial vision loss. In contrast, the rod signal appears sufficient for the development of normal (or even superior) extrastriate biological motion perception. These results suggest that ACHM leads to atypical development of cortical vision, highlighting the need to better understand the potential for further reorganization of cortical visual processing following new therapies aimed at restoring cone function.
机译:目的:虽然先天性色盲(ACHM)患者已描述了基本的视觉功能,但对其中高级皮质视觉处理知之甚少。我们比较了ACHM受试者(n = 11)和对照(n = 20)的中层皮层视觉处理。方法:在包括暗视在内的各种光照水平上测试了检测嵌入在噪声中的整体形式,整体运动和生物运动的能力,其中ACHM受试者和对照都必须依靠杆。还测量了对比敏感度函数(CSF)。结果:色盲症受试者在所有测试中均表现出不同的损伤。在暗视条件下,整体形态受损最大,而生物运动正常。在三名患有正常暗室CSF的ACHM受试者中,三名中的两名表现出的整体感觉比对照组差;所有人都表现出与对照组相当的整体运动;令人惊讶的是,三分之二的生物运动感知优于对照组。结论:视锥细胞信号似乎在形成整体形式的感知中起着至关重要的作用,因为在ACHM中,即使在暗视条件下,视锥信号也会受到损害,在暗视条件下,控制也必须依靠视杆,甚至在无暗视空间的ACHM受试者中视力下降。相比之下,杆信号似乎足以发展正常的(甚至更好的)外泌体生物运动知觉。这些结果表明ACHM会导致皮质视觉的非典型发展,这突出表明有必要更好地了解针对旨在恢复视锥细胞功能的新疗法之后皮质视觉处理进一步重组的潜力。

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