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Critical role of cerebellar fastigial nucleus in programming sequences of saccades

机译:小脑发短核在扫描术编程序列中的关键作用

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The cerebellum plays an important role in programming accurate saccades. Cerebellar lesions affecting the ocular motor region of the fastigial nucleus (FOR) cause saccadic hypermetria; however, if a second target is presented before a saccade can be initiated (double-step paradigm), saccade hypermetria may be decreased. We tested the hypothesis that the cerebellum, especially FOR, plays a pivotal role in programming sequences of saccades. We studied patients with saccadic hypermetria because of either genetic cerebellar ataxia or surgical lesions affecting FOR and confirmed that the gain of initial saccades made to double-step stimuli was reduced compared with the gain of saccades to single target jumps. Based on measurements of the intersaccadic interval, we found that the ability to perform parallel processing of saccades was reduced or absent in all of our patients with cerebellar disease. Our results support the crucial role of the cerebellum, especially FOR, in programming sequences of saccades.
机译:小脑在编程准确的扫描方面发挥着重要作用。小脑病变影响快速核(FOR)的眼电机区引起扫视高介质;然而,如果在可以启动扫视之前呈现第二目标(双步范例),则可以减少扫视超介质。我们测试了小脑,特别是对于扫视编程序列中的枢轴作用的假设。我们研究了患有扫视患者的患者,因为遗传小脑共济失调或手术病变影响并确认与单次跳跃的扫描增益相比,对双层刺激的初始扫描的增益降低。基于Intersaccic间隔的测量,我们发现,在所有小脑疾病的所有患者中,减少或缺乏执行扫描囊的并行处理的能力。我们的结果支持小脑的作用,特别是在扫视的编程序列中。

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