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视束核损伤对猴子视动性眼球震颤和后眼球震颤的影响。

Effects of lesions of the nucleus of the optic tract on optokinetic nystagmus and after-nystagmus in the monkey.

作者信息

Schiff D, Cohen B, Büttner-Ennever J, Matsuo V

机构信息

Department of Neurology, Mount Sinai School of Medicine, City University of New York, NY 10029.

出版信息

Exp Brain Res. 1990;79(2):225-39. doi: 10.1007/BF00608231.

DOI:10.1007/BF00608231
PMID:2323371
Abstract
  1. The nucleus of the optic tract (NOT) and the dorsal terminal nucleus (DTN) of the accessory optic system were lesioned electrolytically or with kainic acid in rhesus monkeys. When lesions involved NOT and DTN, peak velocities of optokinetic nystagmus (OKN) with slow phases toward the side of the lesion were reduced, and optokinetic after-nystagmus (OKAN) was reduced or abolished. The jump in slow phase eye velocity at the onset of OKN was smaller in most animals, but was not lost. Initially, there was spontaneous nystagmus with contralateral slow phases. OKN and OKAN with contralateral slow phases were unaffected. 2. Damage to adjacent regions had no effect on OKN or OKAN with two exceptions: 1. A vascular lesion in the MRF, medial to NOT and adjacent to the central gray matter, caused a transient loss of the initial jump in OKN. The slow rise in slow phase velocity was prolonged, but the gain of OKAN was unaffected. There was no effect after a kainic acid lesion in this region in another animal. 2. Lesions of the fiber tract in the pulvinar that inputs to the brachium of the superior colliculus caused a transient reduction in the buildup and peak velocity of OKN and OKAN. 3. In terms of a previous model (Cohen et al. 1977; Waespe et al. 1983), the findings suggest that the indirect pathway that activates the velocity storage integrator in the vestibular system to produce the slow rise in ipsilateral OKN and OKAN, lies in NOT and DTN. Activity for the rapid rise in OKN, carried in the direct pathway, is probably transmitted to the pontine nuclei and flocculus via an anatomically separate fiber pathway that lies in the MRF. A fiber tract in the pulvinar that inputs to the brachium of the superior colliculus appears to carry activity related to retinal slip from the visual cortex to NOT and DTN.
摘要
  1. 在恒河猴中,对视束核(NOT)和辅助视系统的背侧终核(DTN)进行电解损伤或用 kainic 酸损伤。当损伤累及 NOT 和 DTN 时,向损伤侧慢相的视动性眼震(OKN)的峰值速度降低,视动性后眼震(OKAN)降低或消失。在大多数动物中,OKN 起始时慢相眼速度的跃升变小,但并未消失。最初,存在向对侧慢相的自发性眼震。向对侧慢相的 OKN 和 OKAN 未受影响。2. 除两个例外情况外,对相邻区域的损伤对 OKN 或 OKAN 没有影响:1. 在 NOT 内侧且与中央灰质相邻的中脑网状结构(MRF)中的血管病变,导致 OKN 起始时的初始跃升短暂丧失。慢相速度的缓慢上升延长,但 OKAN 的增益未受影响。在另一只动物中,该区域用 kainic 酸损伤后没有影响。2. 输入到上丘臂的丘脑枕纤维束损伤导致 OKN 和 OKAN 的建立和峰值速度短暂降低。3. 根据先前的模型(Cohen等人,1977;Waespe等人,1983),这些发现表明,在前庭系统中激活速度存储积分器以产生同侧 OKN 和 OKAN 慢相缓慢上升的间接通路,位于 NOT 和 DTN 中。通过直接通路进行的 OKN 快速上升的活动,可能通过位于 MRF 中的解剖学上独立的纤维通路传递到脑桥核和绒球。输入到上丘臂的丘脑枕纤维束似乎携带与视网膜滑动相关的活动,从视觉皮层传递到 NOT 和 DTN。

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Exp Brain Res. 1990;79(2):225-39. doi: 10.1007/BF00608231.
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本文引用的文献

1
A METHOD OF MEASURING EYE MOVEMENT USING A SCLERAL SEARCH COIL IN A MAGNETIC FIELD.一种在磁场中使用巩膜搜索线圈测量眼动的方法。
IEEE Trans Biomed Eng. 1963 Oct;10:137-45. doi: 10.1109/tbmel.1963.4322822.
2
The efferent projections of the pretectal complex: an autoradiographic and horseradish peroxidase analysis.顶盖前复合体的传出投射:放射自显影和辣根过氧化物酶分析
Brain Res. 1980 Jul 21;194(1):1-28. doi: 10.1016/0006-8993(80)91315-3.
3
Effects of ablation of flocculus and paraflocculus of eye movements in primate.灵长类动物绒球及旁绒球切除对眼球运动的影响
J Neurophysiol. 2020 Jan 1;123(1):329-345. doi: 10.1152/jn.00485.2019. Epub 2019 Nov 20.
4
Elimination of the error signal in the superior colliculus impairs saccade motor learning.上丘中错误信号的消除会损害眼球运动的运动学习。
Proc Natl Acad Sci U S A. 2018 Sep 18;115(38):E8987-E8995. doi: 10.1073/pnas.1806215115. Epub 2018 Sep 5.
5
MRI Study of the Posterior Visual Pathways in Primary Open Angle Glaucoma.原发性开角型青光眼患者视觉传导通路后部的磁共振成像研究
J Glaucoma. 2017 Feb;26(2):173-181. doi: 10.1097/IJG.0000000000000558.
6
Visual fixation as equilibrium: evidence from superior colliculus inactivation.视固定作为平衡:来自上丘失活的证据。
J Neurosci. 2012 Aug 1;32(31):10627-36. doi: 10.1523/JNEUROSCI.0696-12.2012.
7
Visual error signals from the pretectal nucleus of the optic tract guide motor learning for smooth pursuit.视束前脑桥核的视觉错误信号引导平滑追踪运动学习。
J Neurophysiol. 2010 May;103(5):2889-99. doi: 10.1152/jn.01024.2009.
8
The commissural transfer of the horizontal optokinetic signal in the rat: a c-Fos study.大鼠水平视动信号的连合传递:c-Fos 研究。
Exp Brain Res. 2009 Sep;198(1):85-94. doi: 10.1007/s00221-009-1935-x. Epub 2009 Jul 17.
9
Relationships between versional and vergent quick phases of the involuntary version-vergence nystagmus.不随意旋转性眼球震颤的旋转相和扭转相快相之间的关系。
J Vis. 2008 Jul 23;8(9):11.1-11. doi: 10.1167/8.9.11.
10
Superior colliculus inactivation causes stable offsets in eye position during tracking.上丘失活会导致跟踪过程中眼睛位置出现稳定的偏移。
J Neurosci. 2008 Aug 6;28(32):8124-37. doi: 10.1523/JNEUROSCI.1317-08.2008.
J Neurophysiol. 1981 Oct;46(4):878-99. doi: 10.1152/jn.1981.46.4.878.
4
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5
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Ann N Y Acad Sci. 1981;374:44-55. doi: 10.1111/j.1749-6632.1981.tb30859.x.
6
Implantation of magnetic search coils for measurement of eye position: an improved method.用于测量眼位的磁性搜索线圈植入:一种改进方法。
Vision Res. 1980;20(6):535-8. doi: 10.1016/0042-6989(80)90128-5.
7
Vertical optokinetic nystagmus and vestibular nystagmus in the monkey: up-down asymmetry and effects of gravity.猴子的垂直视动性眼球震颤和前庭性眼球震颤:上下不对称及重力的影响
Exp Brain Res. 1984;53(2):197-216. doi: 10.1007/BF00238150.
8
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Neurosci Res. 1984 Dec;2(1-2):1-25. doi: 10.1016/0168-0102(84)90002-6.
9
Projections from the superior colliculus to a region of the central mesencephalic reticular formation (cMRF) associated with horizontal saccadic eye movements.从 Superior colliculus 到与水平扫视眼动相关的中脑中央网状结构(cMRF)区域的投射。
Exp Brain Res. 1984;57(1):167-76. doi: 10.1007/BF00231143.
10
Role of the flocculus and paraflocculus in optokinetic nystagmus and visual-vestibular interactions: effects of lesions.绒球和旁绒球在视动性眼震及视觉-前庭相互作用中的作用:损伤的影响。
Exp Brain Res. 1983;50(1):9-33. doi: 10.1007/BF00238229.