Suppr超能文献

纹状体内囊卒中后运动网络过度激活的动态变化:一项使用固定表现范式的纵向PET研究

Dynamics of motor network overactivation after striatocapsular stroke: a longitudinal PET study using a fixed-performance paradigm.

作者信息

Calautti C, Leroy F, Guincestre J Y, Baron J C

机构信息

INSERM U320 and University Hospital, Caen, France.

出版信息

Stroke. 2001 Nov;32(11):2534-42. doi: 10.1161/hs1101.097401.

Abstract

BACKGROUND AND PURPOSE

Although excessive brain activation during affected hand motion after stroke is well documented, its time course has been rarely studied, and when studied, this has either been with passive movement or with active but cognitively complex task and uncontrolled performance over time, complicating interpretation.

METHODS

According to a prospective and longitudinal design, we studied 5 right-handed patients with right-sided hemiparesis due to first-ever left striatocapsular infarction. Three-dimensional PET H(2)O(15) studies were performed twice ( approximately 7 and approximately 31 weeks after stroke [PET1 and PET2, respectively]) during right thumb-to-index tapping executed at the same rate in both studies (1.26 Hz, auditory cued). With SPM96 software, significant group and individual overactivations (P<0.05, corrected for multiple comparisons) were computed by comparison with a group of 7 healthy age-matched right-handed control subjects performing the same task.

RESULTS

Motor recovery was significant from PET1 to PET2. Both the group and individual analyses revealed striking overactivations at PET1, affecting notably the cortical hand area and the whole motor network bilaterally. These overactivations were less prominent at PET2 over both hemispheres, not only in terms of Z score but also in terms of spatial extent (almost reaching statistical significance in the affected hemisphere for the latter, P=0.09). However, new overactivations were found at PET2 in the left prefrontal areas, the putamen, and the premotor cortex.

CONCLUSIONS

This study is the first to document that to perform the same simple movement of the paretic fingers, the brain with subcortical infarction shows less overactivations at the late than at the early timepoint, especially on the affected side, suggesting reduced recruitment of affected-hemisphere motor networks. However, unaffected-hemisphere prefrontal, premotor, and putaminal overactivations, observed at PET2 only, may suggest late-appearing compensatory reorganization.

摘要

背景与目的

尽管脑卒中后患侧手部运动时大脑过度激活现象已有充分记录,但其时间进程却鲜有研究,即便有研究,也多是针对被动运动或主动但认知复杂的任务,且未对随时间变化的表现进行控制,这使得解读变得复杂。

方法

根据前瞻性纵向设计,我们研究了5例因首次左侧纹状囊梗死导致右侧偏瘫的右利手患者。在两项研究中,均以相同速率(1.26Hz,听觉提示)进行右拇指对食指轻敲动作时,分别于卒中后约7周和约31周(分别为PET1和PET2)进行三维PET H₂O¹⁵研究。使用SPM96软件,通过与7名年龄匹配的健康右利手对照受试者组成的小组进行相同任务时的数据进行比较,计算出显著的组间和个体过度激活情况(P<0.05,经多重比较校正)。

结果

从PET1到PET2,运动功能有显著恢复。组间和个体分析均显示PET1时有明显的过度激活,显著影响双侧皮质手部区域和整个运动网络。在PET2时,这些过度激活在两个半球均不那么明显,不仅在Z评分方面,而且在空间范围方面(后者在患侧半球几乎达到统计学显著性,P = 0.09)。然而,在PET2时,在左侧前额叶区域、壳核和运动前皮质发现了新的过度激活。

结论

本研究首次证明,对于患侧手指进行相同的简单运动,皮层下梗死的大脑在后期比早期显示出较少的过度激活,尤其是在患侧,这表明患侧半球运动网络的募集减少。然而,仅在PET2时观察到的未受影响半球的前额叶、运动前区和壳核的过度激活,可能提示出现较晚的代偿性重组。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验