首页> 美国卫生研究院文献>The Journal of Neuroscience >Visual processing of motion-defined form: selective failure in patients with parietotemporal lesions
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Visual processing of motion-defined form: selective failure in patients with parietotemporal lesions

机译:运动定义形式的视觉处理:顶颞部病变患者的选择性衰竭

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摘要

The following psychophysical data were obtained from 13 patients with unilateral cerebral hemispheric lesions and 20 control subjects: speed thresholds for detecting and for recognizing motion-defined letters, speed thresholds for detecting coherent motion and for discriminating its direction, and visual acuity for recognizing letters of 96% and 11% contrast. Acuity was between 6/6 and 6/3 for all patients. Four patients showed a selective loss of ability to recognize motion-defined letters, while the ability to detect those same letters was spared, as was the ability to detect coherent motion and discriminate its direction (type I loss). Three patients showed a loss of ability both to recognize and to detect motion-defined letters, while the ability to detect coherent motion and discriminate its direction was spared (type II loss). All seven patients who failed to recognize motion-defined letters had extensive lesions in parietotemporal white matter underlying Brodmann cortical areas 18, 19, 37, 39, 21, and 22. The lesion was in the left hemisphere for three patients and in the right hemisphere for the remaining four. The region of overlap in these seven patients was not invaded by the lesion in any of the other six patients, and none of these six patients showed a loss of ability to recognize motion-defined letters. Three patients showed selective loss of acuity for low-contrast letters with normal Snellen acuity. The lesions in these three patients extended more posteriorly than in any other patient, and their region of overlap was in white matter underlying areas 18 and 19. We conclude that (1) the loss of ability to recognize letters in seven patients was specific to motion-defined letters rather than being a general loss of letter-recognition ability, (2) this visual loss was specific to motion-defined form rather than being a general failure of motion processing, and (3) the visual loss was not produced by lesions that did not involve the localized cerebral region specified above. To explain the existence of type I and of type II loss with sparing of the detection and discrimination of coherent motion, we propose that motion information is processed hierarchically. We further suggest that homologs of the socalled motion and color/form pathways (i.e., areas V1/MT/MST/7a and areas V1/V4/IT) are interconnected to form a distributed system that is important for the recognition of motion-defined form.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:以下心理物理数据来自13例单侧脑半球病变患者和20例对照受试者:用于检测和识别运动定义字母的速度阈值,用于检测连贯运动和辨别其方向的速度阈值以及用于识别运动字母的视敏度对比度为96%和11%。所有患者的视力在6/6和6/3之间。四名患者表现出选择性丧失识别运动定义字母的能力,而检测那些相同字母的能力以及检测连贯运动并区分其方向的能力(I型丧失)则得以保留。三名患者表现出无法识别和检测运动定义的字母的能力,而保留了检测连贯运动和区分其方向的能力(II型丧失)。未能识别运动定义字母的所有7名患者在Brodmann皮质区域18、19、37、39、21和22下的顶颞白质中都有广泛的病变。该病变在左半球占3名患者,在右半球剩下的四个。在其他六名患者中,这七名患者​​的重叠区域均未被病变侵袭,这六名患者中没有一名表现出识别运动定义字母的能力。 3例患者对Snellen视力正常的低对比度字母表现出选择性的视力丧失。这三名患者的病变向后扩展的幅度比其他任何患者都大,并且它们的重叠区域位于18和19区的白质中。我们得出结论:(1)七名患者丧失了识别字母的能力,这与运动有关定义的字母,而不是一般的字母识别能力丧失;(2)这种视觉丧失是运动定义的形式所特有的,而不是运动处理的普遍失败;(3)视觉损害不是由病变引起的不涉及上面指定的局部大脑区域。为了解释I型和II型丢失的存在,同时又避免了对相干运动的检测和区分,我们建议对运动信息进行分层处理。我们进一步建议将所谓的运动和颜色/形式通路(即区域V1 / MT / MST / 7a和区域V1 / V4 / IT)的同源物相互连接,以形成一个分布式系统,这对于识别运动定义的运动非常重要。表格(摘要以400字截断)

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