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乙酰-DL-亮氨酸在小脑性共济失调中的作用 ([F]-FDG-PET 研究):小脑疾病如何影响皮质感觉运动网络?

Acetyl-DL-leucine in cerebellar ataxia ([F]-FDG-PET study): how does a cerebellar disorder influence cortical sensorimotor networks?

机构信息

German Center for Vertigo and Balance Disorders (DSGZ), University Hospital, LMU Munich, Marchioninistr. 15, 81377, Munich, Germany.

Department of Nuclear Medicine, University Hospital, LMU Munich, Munich, Germany.

出版信息

J Neurol. 2023 Jan;270(1):44-56. doi: 10.1007/s00415-022-11252-2. Epub 2022 Jul 25.

Abstract

OBJECTIVE

The aim of the study was to deepen our insights into central compensatory processes of brain networks in patients with cerebellar ataxia (CA) before and with treatment with acetyl-DL-leucine (AL) by means of resting-state [F]-FDG-PET brain imaging.

METHODS

Retrospective analyses of [F]-FDG-PET data in 22 patients with CA (with vestibular and ocular motor disturbances) of different etiologies who were scanned before (PET A) and on AL treatment (PET B). Group subtraction analyses, e.g., for responders and non-responders, comparisons with healthy controls and correlation analyses of regional cerebral glucose metabolism (rCGM) with symptom duration, ataxia (SARA) and quality of life (QoL) scores were calculated.

RESULTS

Prior to treatment rCGM was consistently downregulated at the cerebellar level and increased in multisensory cortical areas, e.g., somatosensory, primary and secondary visual (including V5, precuneus), secondary vestibular (temporal gyrus, anterior insula), and premotor/supplementary motor areas. With AL (PET B vs. A) cerebellar hypometabolism was deepened and sensorimotor hypermetabolism increased only in responders with clinical benefit, but not for the non-responders and the whole CA group. A positive correlation of ataxia improvement with rCGM was found in visual and vestibular cortices, a negative correlation in cerebellar and brainstem areas. QoL showed a positive correlation with rCGM in the cerebellum and symptom duration in premotor and somatosensory areas.

CONCLUSIONS

Central compensatory processes in CA mainly involve multisensory visual, vestibular, and somatosensory networks as well as premotor/primary motor areas at the cortical level. The enhanced divergence of cortical sensorimotor up- and cerebellar downregulation with AL in responders could reflect amplification of inhibitory cerebellar mechanisms.

摘要

目的

通过静息态 [F]-FDG-PET 脑成像研究,深入了解小脑共济失调(CA)患者在乙酰-DL-亮氨酸(AL)治疗前后中枢补偿过程的脑网络。

方法

对 22 例不同病因的 CA(伴有前庭和眼动障碍)患者的 [F]-FDG-PET 数据进行回顾性分析,这些患者在治疗前(PET A)和 AL 治疗后(PET B)进行了扫描。计算了组减法分析,例如,对于应答者和无应答者,与健康对照组的比较,以及与症状持续时间、共济失调(SARA)和生活质量(QoL)评分的区域脑葡萄糖代谢(rCGM)的相关性分析。

结果

治疗前,小脑水平的 rCGM 持续下调,多感觉皮质区域(如体感、初级和次级视觉(包括 V5、顶叶)、次级前庭(颞叶、前岛叶)和运动前/补充运动区)的 rCGM 增加。用 AL(PET B 与 A)治疗后,小脑代谢低下加深,只有临床受益的应答者的感觉运动代谢增加,而非应答者和整个 CA 组则没有。在视觉和前庭皮质中,发现共济失调改善与 rCGM 呈正相关,在小脑和脑干部位呈负相关。QoL 与小脑的 rCGM 呈正相关,与运动前和体感区的症状持续时间呈负相关。

结论

CA 中的中枢补偿过程主要涉及多感觉的视觉、前庭和体感网络以及皮质水平的运动前/初级运动区。在应答者中,AL 增强了皮质感觉运动的发散和小脑的下调,这可能反映了抑制性小脑机制的放大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c59/9813104/b4552ce215bd/415_2022_11252_Fig1_HTML.jpg

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