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首页> 外文期刊>Parkinson’s Disease >Changes in Vowel Articulation with Subthalamic Nucleus Deep Brain Stimulation in Dysarthric Speakers with Parkinson’s Disease
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Changes in Vowel Articulation with Subthalamic Nucleus Deep Brain Stimulation in Dysarthric Speakers with Parkinson’s Disease

机译:帕金森病患者的丘脑下丘脑深部神经元刺激的元音发音变化

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Purpose. To investigate changes in vowel articulation with the electrical deep brain stimulation (DBS) of the subthalamic nucleus (STN) in dysarthric speakers with Parkinson’s disease (PD). Methods. Eight Quebec-French speakers diagnosed with idiopathic PD who had undergone STN DBS were evaluated ON-stimulation and OFF-stimulation (1 hour after DBS was turned off). Vowel articulation was compared ON-simulation versus OFF-stimulation using acoustic vowel space and formant centralization ratio, calculated with the first () and second formant () of the vowels /i/, /u/, and /a/. The impact of the preceding consonant context on articulation, which represents a measure of coarticulation, was also analyzed as a function of the stimulation state. Results. Maximum vowel articulation increased during ON-stimulation. Analyses also indicate that vowel articulation was modulated by the consonant context but this relationship did not change with STN DBS. Conclusions. Results suggest that STN DBS may improve articulation in dysarthric speakers with PD, in terms of range of movement. Optimization of the electrical parameters for each patient is important and may lead to improvement in speech fine motor control. However, the impact on overall speech intelligibility may still be small. Clinical considerations are discussed and new research avenues are suggested.
机译:目的。研究在患有帕金森病(PD)的发音异常的说话者中,丘脑底下核(STN)的电深脑刺激(DBS)引起的元音发音变化。方法。评估了八名被诊断患有特发性PD的魁北克法语患者,他们接受了STN DBS的ON刺激和OFF刺激(关闭DBS 1小时后)。使用元音空间/ i /,/ u /和/ a /的第一个()和第二个共振峰()计算的声学元音空间和共振峰集中比,比较元音清晰度的ON模拟和OFF刺激。还分析了前面辅音环境对关节运动的影响,该运动代表了关节运动的量度,并作为刺激状态的函数。结果。在接通刺激过程中,最大元音清晰度增加。分析还表明,元音发音是由辅音上下文调节的,但是这种关系在STN DBS中并没有改变。结论。结果表明,就运动范围而言,STN DBS可能会改善PD的发音异常的说话者的发音。对每个患者的电参数的优化很重要,并且可以改善语音精细运动控制。但是,对总体语音清晰度的影响可能仍然很小。讨论了临床考虑因素,并提出了新的研究途径。

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