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Distinct basal ganglia territories are engaged in early and advanced motor sequence learning

机译:不同的基底神经节区域从事早期和高级运动序列学习

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摘要

In this study, we used functional MRI (fMRI) at high field (3T) to track the time course of activation in the entire basal ganglia circuitry, as well as other motor-related structures, during the explicit learning of a sequence of finger movements over a month of training. Fourteen right-handed healthy volunteers had to practice 15 min daily a sequence of eight moves using the left hand. MRI sessions were performed on days 1, 14 and 28. In both putamen, activation decreased with practice in rostrodorsal (associative) regions. In contrast, there was a significant signal increase in more caudoventral (sensorimotor) regions of the putamen. Subsequent correlation analyses between signal variations and behavioral variables showed that the error rate (movement accuracy) was positively correlated with signal changes in areas activated during early learning, whereas reaction time (movement speed) was negatively correlated with signal changes in areas activated during advanced learning stages, including the sensorimotor putamen and globus pallidus. These results suggest the possibility that motor representations shift from the associative to the sensorimotor territories of the striato-pallidal complex during the explicit learning of motor sequences, suggesting that motor skills are stored in the sensorimotor territory of the basal ganglia that supports a speedy performance.
机译:在这项研究中,我们在明确学习手指运动序列的过程中,使用高场(3T)的功能性MRI(fMRI)跟踪了整个基底神经节电路以及其他与运动相关的结构中激活的时间过程一个多月的培训。 14位惯用右手的健康志愿者必须每天练习15分钟,用左手练习8步。在第1、14和28天进行MRI检查。在两个壳核中,在杆状交感(相关)区域中,激活均随练习而降低。相反,在壳状核的更多假腹(感觉运动)区域中信号明显增加。随后的信号变化与行为变量之间的相关分析表明,错误率(运动准确性)与早期学习过程中激活区域的信号变化呈正相关,而反应时间(运动速度)与高级学习过程中激活区域的信号变化呈负相关。阶段,包括感觉运动性壳核和苍白球。这些结果表明,在明确学习运动序列的过程中,运动表现形式可能会从纹状体-苍白质复合体的关联运动区转移到感觉运动区,这表明运动技能存储在支持快速表现的基底神经节的感觉运动区中。

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