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The effect of acute superior oblique palsy on torsional optokinetic nystagmus in monkeys.

机译:急性上斜肌麻痹对猴子扭转视动性眼震的影响。

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PURPOSE: To investigate the effects of acquired superior oblique palsy (SOP) and corrective strabismus surgery on torsional optokinetic nystagmus (tOKN) in monkeys. METHODS: The trochlear nerve was severed intracranially in two rhesus monkeys (M1 and M2). For each monkey, more than 4 months after the SOP, the ipsilateral inferior oblique muscle was denervated and extirpated. For M2, 4 months later, the contralateral inferior rectus muscle was recessed by 2 mm. tOKN was elicited during monocular viewing of a rotating stimulus that was rear projected onto a screen 43.5 cm in front of the animal. Angular rotation of the stimulus about the center was 40 deg/s clockwise or counterclockwise. RESULTS: The main findings after trochlear nerve sectioning were (1) the amplitude and peak velocity of torsional quick and slow phases of the paretic eye was less than that in the normal eye for both intorsion and extorsion, and (2) the vertical motion of the paretic eye increased during both torsional slow and quick phases. After corrective inferior oblique surgery, both of these effects were even greater. CONCLUSIONS: Acquired SOP and corrective inferior oblique-weakening surgery create characteristic patterns of change in tOKN that reflect alterations in the dynamic properties of the extraocular muscles involved in eye torsion. tOKN also provides information complementary to that provided by the traditional Bielschowsky head-tilt test and potentially can help distinguish among different causes of vertical ocular misalignment.
机译:目的:研究获得性上斜肌麻痹(SOP)和斜视矫正术对猴子的扭转性视动性眼球震颤(tOKN)的影响。方法:在两只恒河猴(M1和M2)的颅内切断滑车神经。对于每只猴子,在SOP后4个月以上,将同侧下斜肌去神经并根除。对于M2,4个月后,对侧下直肌下移2 mm。单眼观察旋转刺激时会引发tOKN,该旋转刺激向后投影到动物前方43.5 cm的屏幕上。刺激绕中心的角度旋转是顺时针或逆时针40度/秒。结果:滑车神经切片后的主要发现是(1)扭转和扭转时,Paretic眼的扭转快和慢相的幅度和峰值速度均小于正常眼,(2)滑行神经的垂直运动。在扭曲的慢速和快速阶段,视线都增加了。矫正下斜肌手术后,这两种效果都更大。结论:获得性SOP和矫正性下斜肌弱化手术会产生tOKN的特征性变化,反映出眼扭转所涉及的眼外肌动态特性的变化。 tOKN还提供了与传统的Bielschowsky头倾斜测试所提供的信息互补的信息,并可能有助于区分垂直眼未对准的不同原因。

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