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本文引用的文献

1
A reinterpretation of the purpose of the translational vestibulo-ocular reflex in human subjects.对人类受试者平移性前庭眼反射目的的重新诠释。
Prog Brain Res. 2008;171:295-302. doi: 10.1016/S0079-6123(08)00643-2.
2
Abnormal vestibular responses to vertical head motion in cerebellar ataxia.小脑共济失调患者对垂直头部运动的前庭反应异常。
Ann Neurol. 2008 Aug;64(2):224-7. doi: 10.1002/ana.21407.
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A neural representation of depth from motion parallax in macaque visual cortex.猕猴视觉皮层中基于运动视差的深度神经表征。
Nature. 2008 Apr 3;452(7187):642-5. doi: 10.1038/nature06814. Epub 2008 Mar 16.
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Why do patients with PSP fall? Evidence for abnormal otolith responses.为什么进行性核上性麻痹患者会跌倒?耳石反应异常的证据。
Neurology. 2008 Mar 4;70(10):802-9. doi: 10.1212/01.wnl.0000304134.33380.1e. Epub 2008 Jan 16.
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Vestibulo-ocular responses to vertical translation in normal human subjects.正常人类受试者对垂直平移的前庭眼反射
Exp Brain Res. 2008 Mar;185(4):553-62. doi: 10.1007/s00221-007-1181-z. Epub 2007 Nov 8.
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The up and down bobbing of human walking: a compromise between muscle work and efficiency.人类行走时的上下摆动:肌肉工作与效率之间的一种权衡。
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Vestibulo-ocular reflex to transient surge translation: complex geometric response ablated by normal aging.前庭眼反射对瞬态激增的翻译:正常衰老消除的复杂几何反应。
J Neurophysiol. 2006 Apr;95(4):2042-54. doi: 10.1152/jn.00635.2005.
8
Interaural translational VOR: suppression, enhancement, and cognitive control.耳间平移性前庭眼反射:抑制、增强与认知控制。
J Neurophysiol. 2005 Oct;94(4):2391-402. doi: 10.1152/jn.01328.2004. Epub 2005 May 18.
9
Eyes on target: what neurons must do for the vestibuloocular reflex during linear motion.目光对准目标:线性运动期间神经元在前庭眼反射中必须完成的任务。
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Ocular motor responses to abrupt interaural head translation in normal humans.正常人类对双耳间突然的头部平移的眼动反应。
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人类垂直平移性前庭眼反射。正常与异常反应。

The human vertical translational vestibulo-ocular reflex. Normal and abnormal responses.

作者信息

Liao Ke, Walker Mark F, Joshi Anand, Reschke Millard, Strupp Michael, Leigh R John

机构信息

Department of Neurology, Case Western Reserve University, 11100 Euclid Avenue, Cleveland, OH 44106-5040, USA.

出版信息

Ann N Y Acad Sci. 2009 May;1164:68-75. doi: 10.1111/j.1749-6632.2008.03711.x.

DOI:10.1111/j.1749-6632.2008.03711.x
PMID:19645882
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2858323/
Abstract

Geometric considerations indicate that the human translational vestibulo-ocular reflex (tVOR) should have substantially different properties than the angular vestibulo-ocular reflex (aVOR). Specifically, tVOR cannot simultaneously stabilize images of distant and near objects on the retina. Most studies make the tacit assumption that tVOR acts to stabilize foveal images even though, in humans, tVOR is reported to compensate for less than 60% of foveal image motion. We have determined that the compensation gain (eye rotational velocity/required eye rotational velocity to maintain foveal target fixation) of tVOR is held steady at approximately 0.6 during viewing of either near or distant targets during vertical (bob) translations in ambient illumination. We postulate that tVOR evolved not to stabilize the image of the target on the fovea, but rather to minimize retinal image motion between objects lying in different depth planes, in order to optimize motion parallax information. Such behavior is optimized when binocular visual cues of both near and distant targets are available in ambient light. Patients with progressive supranuclear palsy or cerebellar ataxia show impaired ability to increase tVOR responses appropriately when they view near targets. In cerebellar patients, impaired ability to adjust tVOR responses to viewing conditions occurs despite intact ability to converge at near. Loss of the ability to adjust tVOR according to viewing conditions appears to represent a distinct disorder of vestibular function.

摘要

几何学上的考量表明,人类平移性前庭眼反射(tVOR)应具有与角向性前庭眼反射(aVOR)截然不同的特性。具体而言,tVOR无法同时稳定视网膜上远处和近处物体的图像。大多数研究默认tVOR的作用是稳定中央凹图像,尽管据报道在人类中,tVOR仅能补偿不到60%的中央凹图像运动。我们已经确定,在环境光下进行垂直(摆动)平移时,无论是观察近处还是远处目标,tVOR的补偿增益(眼球旋转速度/保持中央凹目标固定所需的眼球旋转速度)都稳定在约0.6。我们推测,tVOR的进化并非为了稳定中央凹上目标的图像,而是为了最小化位于不同深度平面的物体之间的视网膜图像运动,以优化运动视差信息。当环境光中同时存在近处和远处目标的双眼视觉线索时,这种行为得到优化。进行性核上性麻痹或小脑共济失调患者在观察近处目标时,适当增加tVOR反应的能力受损。在小脑疾病患者中,尽管在近处具有完整的会聚能力,但根据观察条件调整tVOR反应的能力受损。根据观察条件调整tVOR的能力丧失似乎代表了一种独特的前庭功能障碍。