Colin R Grove, Brian J Loyd, Leland E Dibble, Michael C Schubert
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引用次数: 0
摘要
报告头晕的多发性硬化症(PwMS)患者通常会因前庭眼反射(VOR)缺陷和代偿性囊回(CS)异常而导致注视不稳定。在此,我们旨在描述和比较 PwMS 偏航和俯仰头部运动的凝视稳定机制。37名PwMS(27名女性,平均±标准差,年龄=53.4±12.4岁,中位数[IQR]残疾状况扩展量表评分=3.5,[1.0].我们分析了视频头部脉冲测试结果,包括VOR增益、CS频率、CS潜伏期、脉冲结束时的注视位置误差(GPE)和脉冲开始后400毫秒时的GPE。我们发现,偏航(0.92 [0.14])与俯仰(0.71 [0.44],p<0.05)的 VOR 增益中位数 [IQR] 存在差异。
Evidence for the differential efficacy of yaw and pitch gaze stabilization mechanisms in people with multiple sclerosis.
People with multiple sclerosis (PwMS) who report dizziness often have gaze instability due to vestibulo-ocular reflex (VOR) deficiencies and compensatory saccade (CS) abnormalities. Herein, we aimed to describe and compare the gaze stabilization mechanisms for yaw and pitch head movements in PwMS. Thirty-seven PwMS (27 female, mean ± SD age = 53.4 ± 12.4 years old, median [IQR] Expanded Disability Status Scale Score = 3.5, [1.0]. We analyzed video head impulse test results for VOR gain, CS frequency, CS latency, gaze position error (GPE) at impulse end, and GPE at 400 ms after impulse start. Discrepancies were found for median [IQR] VOR gain in yaw (0.92 [0.14]) versus pitch-up (0.71 [0.44], p < 0.001) and pitch-down (0.81 [0.44], p = 0.014]), CS latency in yaw (258.13 [76.8]) ms versus pitch-up (208.78 [65.97]) ms, p = 0.001] and pitch-down (132.17 [97.56] ms, p = 0.006), GPE at impulse end in yaw (1.15 [1.85] degs versus pitch-up (2.71 [3.9] degs, p < 0.001), and GPE at 400 ms in yaw (-0.25 [0.98] degs) versus pitch-up (1.53 [1.07] degs, p < 0.001) and pitch-down (1.12 [1.82] degs, p = 0.001). Compared with yaw (0.91 [0.75]), CS frequency was similar for pitch-up (1.03 [0.93], p = 0.999) but lower for pitch-down (0.65 [0.64], p = 0.023). GPE at 400 ms was similar for yaw and pitch-down (1.88 [2.76] degs, p = 0.400). We postulate that MS may have preferentially damaged the vertical VOR and saccade pathways in this cohort.
期刊介绍:
Founded in 1966, Experimental Brain Research publishes original contributions on many aspects of experimental research of the central and peripheral nervous system. The focus is on molecular, physiology, behavior, neurochemistry, developmental, cellular and molecular neurobiology, and experimental pathology relevant to general problems of cerebral function. The journal publishes original papers, reviews, and mini-reviews.