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首页> 外文期刊>The Journal of Physiology >A second mechanism of increase of cerebellar hypermetria in humans.
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A second mechanism of increase of cerebellar hypermetria in humans.

机译:人类小脑肥大症增加的第二种机制。

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So far, there is only one procedure known to increase hypermetria in cerebellar patients. Facing an increased inertia of the moving limb, patients presenting a lesion of the lateral cerebellum are able to increase appropriately the intensity of the agonist electromyographic (EMG) activity (the launching force), but are unable to adapt the intensity of the antagonist activity (the braking force). As a result, hypermetria is larger when the inertial load is artificially increased. Recent studies have demonstrated that hyperventilation increases hypermetria in patients presenting a spinocerebellar ataxia type 6 (SCA 6), a disorder associated with polyglutamine expansions in the alpha1A-voltage-dependent calcium channel. The mechanism of this increase of hypermetria has not been identified so far. In the present work, we combined kinematic, EMG and transcranial Doppler studies to understand the effects of hyperventilation on fast goal-directed movements in patients presenting a SCA 6. Both in the normal mechanical state and after increasing the inertial load of the moving hand, hyperventilation induced an increase of hypermetria. Hyperventilation increased the delay of the onset latency of the antagonist EMG activity and decreased the rate of rise of both the agonist and the antagonist EMG activities. Hyperventilation induced a marked decrease in cerebral blood flow velocities. The mechanism of this provocative test is original and is distinct from the mechanism of the load-induced increase of hypermetria.
机译:迄今为止,已知只有一种方法可以使小脑患者的子宫内膜肥大增加。面对活动肢体增加的惯性,出现小脑外侧病变的患者能够适当增加激动剂肌电图(EMG)活动(发射力)的强度,但无法适应拮抗剂活动的强度(制动力)。结果,当惯性负载被人为增加时,超子宫增大。最近的研究表明,过度换气会增加表现为6型脊髓小脑共济失调(SCA 6)的患者的子宫肥大,该疾病与α1A电压依赖性钙通道中的聚谷氨酰胺扩张有关。到目前为止,尚不清楚这种增加子宫肥大的机制。在目前的工作中,我们结合运动学,肌电图和经颅多普勒研究,以了解过度换气对SCA 6患者快速定向运动的影响,无论是在正常的机械状态下还是在增加动手的惯性负荷后,过度换气引起子宫内膜肥大。过度换气增加了拮抗剂EMG活性的发作潜伏期的延迟,并降低了激动剂和拮抗剂EMG活性的升高速率。换气过度导致脑血流速度明显降低。这种激发性测试的机制是原始的,与负荷引起的子宫内膜异位症增加的机制不同。

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