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The cerebral control of speech tempo: opposite relationship between speaking rate and BOLD signal changes at striatal and cerebellar structures.

机译:语音节奏的大脑控制:在纹状体和小脑结构处,语速和BOLD信号变化之间存在相反的关系。

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So far, only sparse data on the cerebral organization of speech motor control are available. In order to further delineate the neural basis of articulatory functions, fMRI measurements were performed during self-paced syllable repetitions at six different frequencies (2-6 Hz). Bilateral hemodynamic main effects, calculated across all syllable rates considered, emerged within sensorimotor cortex, putamen, thalamus and cerebellum. At the level of the caudatum and the anterior insula, activation was found restricted to the left side. The computation of rate-to-response functions of the BOLD signal revealed a negative linear relationship between syllable frequency and response magnitude within the striatum whereas cortical areas and cerebellar hemispheres exhibited an opposite activation pattern. Dysarthric patients with basal ganglia disorders show unimpaired or even accelerated speaking rate whereas, in contrast, cerebellar dysfunctions give rise to slowed speech tempo which does not fall below a rate ofabout 3 Hz. The observed rate-to-response profiles of the BOLD signal thus might help to elucidate the pathophysiological mechanisms of dysarthric deficits in central motor disorders.
机译:到目前为止,只有关于语音运动控制的大脑组织的稀疏数据可用。为了进一步描述关节功能的神经基础,在六个频率(2-6 Hz)的自定音节重复期间进行了功能磁共振成像测量。在感觉运动皮层,壳核,丘脑和小脑中出现了双侧血流动力学的主要影响,这些影响是通过考虑的所有音节率计算得出的。在尾状骨和前岛的水平,发现激活仅限于左侧。 BOLD信号的速率-响应函数的计算揭示了纹状体内音节频率与响应幅度之间呈负线性关系,而皮质区域和小脑半球则呈现相反的激活模式。具有基底神经节疾病的重度肌无力患者表现出无障碍甚至加速的说话速度,而相反,小脑功能障碍导致语速减慢,其速度不低于约3 Hz。因此,观察到的BOLD信号的速率-响应曲线可能有助于阐明中枢性运动障碍中的肌膜发育不全的病理生理机制。

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