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首页> 外文期刊>Clinical neurophysiology >Lateralization of cerebral hemodynamics during Wisconsin Card Sorting Test: a functional transcranial Doppler sonography study.
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Lateralization of cerebral hemodynamics during Wisconsin Card Sorting Test: a functional transcranial Doppler sonography study.

机译:威斯康星卡片分类测试期间脑血流动力学的侧向化:功能性经颅多普勒超声检查。

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OBJECTIVE: Studies on lateralization of cerebral metabolism during Wisconsin Card Sorting Test (WCST), a well-known paradigm of category learning, have shown mixed results. Moreover, sorting dimension (number, color and shape) is a cofounder of laterality in WCST. Functional transcranial Doppler sonography (fTCD) has a high temporal resolution and allows the measurement of mean cerebral blood flow velocity (CBFV) in the middle (MCA) and anterior cerebral arteries (ACA), which supply lateral and medial parts of the frontal and parietal lobes, respectively. We used fTCD to investigate CBFV changes occurring in both MCA and ACA during WCST and different sorting dimensions. METHODS: Twenty-one subjects underwent twice two distinct phases of the WCST, namely maintaining a rule (maintaining set) and searching for a new rule (set shifting), during bilateral fTCD of the MCA and ACA. RESULTS: There was a left-sided dominance of CBFV during maintaining set and set shifting in the MCA. CBFV was not associated with test performance. The sorting dimension number caused the highest CBFV increase in both MCA and ACA during maintaining set, and the sorting dimension shape caused lowest CBFV decrease in both MCA during set shifting. CONCLUSIONS: This study confirms results that cerebral blood flow (CBF) lateralizes to the left side during WCST. The 3 sorting dimensions provoked distinct processing speed during maintaining set and set shifting, but caused no effect on hemispheric lateralization. SIGNIFICANCE: Functional transcranial Doppler sonography can be used to assess CBFV during WCST and different sorting dimensions, and the latter modulate reaction time and cerebral hemodynamics.
机译:目的:在威斯康星卡片分类测试(WCST)(一种著名的类别学习范例)中对脑代谢的偏侧化研究显示出不同的结果。此外,分拣尺寸(数量,颜色和形状)是WCST中横向性的共同创始人。功能性经颅多普勒超声检查(fTCD)具有较高的时间分辨率,可以测量中脑(MCA)和前脑动脉(ACA)的平均脑血流速度(CBFV),后者可供应额叶和顶叶的外侧和内侧部分叶分别。我们使用fTCD来研究WCST和不同排序维度期间MCA和ACA中发生的CBFV变化。方法:21名受试者在MCA和ACA的双侧fTCD期间经历了WCST的两个不同阶段的两次,即维持规则(保持组)和寻找新规则(组移动)。结果:MCA维持设定和设定移动期间,CBFV在左侧占主导地位。 CBFV与测试性能无关。排序维数导致在维护集期间MCA和ACA的CBFV增幅最大,而排序维数形状导致在集结移位期间MCA和CCA的CBFV降幅最小。结论:这项研究证实了WCST期间脑血流(CBF)横向偏向左侧的结果。这3个排序维度在保持定形和定形移位期间激发了不同的处理速度,但对半球偏侧化没有影响。意义:功能性经颅多普勒超声可用于评估WCST和不同分选尺寸时的CBFV,后者可调节反应时间和脑血流动力学。

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