Cerebellar functional connectivity relates to lower urinary tract function: A 7 Tesla study.

IF 1.8 3区 医学 Q3 UROLOGY & NEPHROLOGY
Charles Mazeaud, Jessica A Bernard, Betsy H Salazar, Johnny Su, Christof Karmonik, Rose Khavari
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Abstract

Objectives: The objective of this study is to explore the functional connectivity (FC) of the cerebellum during the storage phase of micturition, through detecting spontaneous blood-oxygen-level dependent signal between the cerebellum and different brain regions using a high-resolution 7 Tesla magnetic resonance imaging (MRI) scanner.

Materials and methods: We recruited healthy individuals with no reported history of neurological disease or lower urinary tract (LUT) symptoms. Participants were asked to drink 500 mL of water and then empty their bladders before entering the MRI scanner. They underwent a T1-weighted anatomical scan, followed by an initial (8 min) empty bladder resting state functional MRI (rs-fMRI) acquisition. Once subjects felt the desire to void, a second rs-fMRI scan was obtained, this time with a full bladder state. We established a priori cerebellar regions of interest from the literature to perform seed-to-voxel analysis using nonparametric statistics based on the Threshold Free Cluster Enhancement method and utilized a voxel threshold of p < 0.05.

Results: Twenty individuals (10 male and 10 female) with a median age of 25 years (IQR [3.5]) participated in the study. We placed 31 different 4-mm spherical seeds throughout the cerebellum and assessed their FC with the remainder of the brain. Three of these (left cerebellar tonsil, right posterolateral lobe, right posterior lobe) showed significant differences in connectivity when comparing scans conducted with a full bladder to those with an empty bladder. Additionally, we observed sex differences in FC, with connectivity being higher in women during the empty bladder condition.

Conclusion: Our initial findings reveal, for the first time, that the connectivity of the cerebellar network is modulated by bladder filling and is associated with LUT function. Unraveling the cerebellum's role in bladder function lays the foundation for a more comprehensive understanding of urinary pathologies affecting this area.

小脑功能连接与下尿路功能有关:7 特斯拉研究
研究目的本研究的目的是通过使用高分辨率 7 特斯拉磁共振成像(MRI)扫描仪检测小脑与不同脑区之间的自发血氧水平相关信号,探索小脑在排尿储存阶段的功能连通性(FC):我们招募了没有神经系统疾病史或下尿路(LUT)症状的健康人。在进入核磁共振成像扫描仪之前,我们要求参与者喝下 500 毫升的水,然后排空膀胱。他们先接受 T1 加权解剖扫描,然后进行初始(8 分钟)空膀胱静息状态功能磁共振成像(rs-fMRI)采集。一旦受试者有排尿欲望,就进行第二次rs-fMRI扫描,这次是在膀胱充盈状态下进行的。我们从文献中先验地建立了小脑感兴趣区,使用基于无阈值聚类增强法的非参数统计进行种子到体素分析,并将体素阈值定为 p 结果:参与研究的有 20 人(10 男 10 女),中位年龄为 25 岁(IQR [3.5])。我们在整个小脑中放置了 31 个不同的 4 毫米球形种子,并评估了它们与大脑其余部分的 FC 值。与膀胱充盈时进行的扫描相比,其中三个区域(左侧小脑扁桃体、右侧后外侧叶、右侧后叶)的连通性存在显著差异。此外,我们还观察到了FC的性别差异,女性在空膀胱状态下的连接性更高:我们的初步发现首次揭示了小脑网络的连通性受膀胱充盈的调节,并与 LUT 功能有关。揭示小脑在膀胱功能中的作用为更全面地了解影响该区域的泌尿系统病理奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Neurourology and Urodynamics
Neurourology and Urodynamics 医学-泌尿学与肾脏学
CiteScore
4.30
自引率
10.00%
发文量
231
审稿时长
4-8 weeks
期刊介绍: Neurourology and Urodynamics welcomes original scientific contributions from all parts of the world on topics related to urinary tract function, urinary and fecal continence and pelvic floor function.
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