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首页> 外文期刊>Muscle and Nerve >The physiological basis of conduction slowing in ALS patients homozygous for the D90A CuZn-SOD mutation.
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The physiological basis of conduction slowing in ALS patients homozygous for the D90A CuZn-SOD mutation.

机译:D90A CuZn-SOD突变纯合的ALS患者传导减慢的生理基础。

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Familial amyotrophic lateral sclerosis (ALS) with the autosomal-recessively inherited D90A CuZn-superoxide dismutase (CuZn-SOD) mutation is characterized by a stereotypic slowly progressive, distinctive phenotype and very slow central motor conduction. To determine the basis of this slowing, we assessed corticomotoneuronal function using peristimulus time histograms (PSTHs) in 8 ALS patients homozygous for the D90A CuZn-SOD mutation. The results were compared with findings in 10 patients with multiple sclerosis (MS), in which slowing of central motor conduction is common, and 11 healthy subjects. PSTHs were constructed from 3-7 different, voluntarily recruited motor units recorded in each patient from the extensor digitorum communis muscle (EDC). In D90A and MS patients, the stimulus threshold, onset latency, number of excess bins, duration, amplitude, and synchrony of the primary peak differed significantly from controls (P < 0.0004). The mean onset latency of the primary peak in D90A patients was 35.3 ms, compared to 23.6 ms for MS patients and 19.3 ms for normal subjects (P < 0.0001). In the D90A patients, the onset latencies of the primary peak had a bimodal distribution, whereas in MS the distribution showed a continuum. Loss of synchrony was similar in D90A and MS patients, but the threshold, number of excess bins, and duration differed significantly (P < 0.0057), which suggests that either axonal loss or demyelination can result in delayed and desynchronized primary peaks. We propose that conduction slowing in the D90A homozygotes results from selective loss of fast-conducting large pyramidal cells with preservation of slow-conducting mono- or polysynaptic corticomotoneuronal connections. Copyright 2001 John Wiley & Sons, Inc.
机译:具有常染色体隐性遗传的D90A CuZn超氧化物歧化酶(CuZn-SOD)突变的家族性肌萎缩性侧索硬化症(ALS),其特征是定型的缓慢进行,独特的表型和非常缓慢的中枢运动传导。为了确定这种减慢的基础,我们在D90A CuZn-SOD突变纯合的8例ALS患者中,使用刺激时间直方图(PSTH)评估了皮质单神经元的功能。将结果与10例多发性硬化症(MS)和11例健康受试者的发现进行了比较,其中多发性中枢运动传导减慢很常见。 PSTH由3-7个不同的自愿招募的运动单位构建而成,这些单位记录在每个患者的指趾伸肌(EDC)中。在D90A和MS患者中,刺激阈值,发作潜伏期,多余垃圾箱数量,持续时间,振幅和主要峰的同步性与对照组有显着差异(P <0.0004)。 D90A患者的主要峰值平均发作潜伏期为35.3 ms,而MS患者为23.6 ms,正常人为19.3 ms(P <0.0001)。在D90A患者中,主要峰的发作潜伏期具有双峰分布,而在MS中,分布呈连续峰。 D90A和MS患者的同步丢失相似,但阈值,多余垃圾箱数量和持续时间差异显着(P <0.0057),这表明轴突丢失或脱髓鞘均可导致延迟和失步的主峰。我们提出,D90A纯合子中的传导减慢是由快速传导的大锥体细胞的选择性损失导致的,并且保留了慢传导的单突触或多突触的皮膜神经元连接。版权所有2001 John Wiley&Sons,Inc.

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