Real-time changes in brain activity during tibial nerve stimulation for overactive bladder: Evidence from functional near-infrared spectroscopy hype scanning

被引:1
作者
Li, Xunhua [1 ,2 ]
Fang, Rui [3 ]
Liao, Limin [1 ,2 ,4 ]
Li, Xing [1 ,2 ]
机构
[1] Capital Med Univ, China Rehabil Res Ctr, Sch Rehabil, Dept Urol, Beijing, Peoples R China
[2] Univ Hlth & Rehabil Sci, Qingdao, Peoples R China
[3] China Rehabil Res Ctr, Dept Occupat Therapy, Beijing, Peoples R China
[4] China Rehabil Sci Inst, Beijing, Peoples R China
关键词
overactive bladder; tibial nerve stimulation; fNIRS; brain activity; central mechanism; NEURAL-CONTROL; MICTURITION; ACTIVATION; CONNECTIVITY; MECHANISMS; WOMEN;
D O I
10.3389/fnins.2023.1115433
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
PurposeTo use functional near-infrared spectroscopy (fNIRS) to identify changes in brain activity during tibial nerve stimulation (TNS) in patients with overactive bladder (OAB) responsive to therapy. MethodsEighteen patients with refractory idiopathic OAB patients were recruited consecutively for this pilot study. At baseline, all patients completed 3 days voiding diary, Quality-of-Life score, Perception-of-Bladder-Condition, and Overactive-Bladder-Symptom score. Then 4 region-of-interest (ROI) fNIRS scans with 3 blocks were conducted for each patient. The block design was used: 60 s each for the task and rest periods and 3 to 5 repetitions of each period. A total of 360 s of data were collected. During the task period, patients used transcutaneous tibial nerve stimulation (TTNS) of 20-Hz frequency and a 0.2-millisecond pulse width and 30-milliamp stimulatory current to complete the experiment. The initial scan was obtained with a sham stimulation with an empty bladder, and a second was obtained with a verum stimulation with an empty bladder. Patients were given water till strong desire to void, and the third fNIRS scan with a verum stimulation was performed. The patients then needed to urinate since they could not tolerate the SDV condition for a long time. After a period of rest, the patients then were given water until they exhibited SDV state. The fourth scan with sham fNIRS scan in the SDV state was performed. NIRS_KIT software was used to analyze prefrontal activity, corrected by false discovery rate (FDR, p < 0.05). Statistical analyses were performed using GraphPad Prism software; p < 0.05 was considered significant. ResultsTTNS treatment was successful in 16 OAB patients and unsuccessful in 2. The 3 days voiding diary, Quality-of-Life score, Perception-of-Bladder-Condition, and Overactive-Bladder-Symptom score were significantly improved after TNS in the successfully treated group but not in the unsuccessfully treated group. The dorsolateral prefrontal cortex (DLPFC) (BA 9, Chapters 25 and 26) and the frontopolar area (FA) (BA 10, Chapters 35, 45, and 46) were significantly activated during TNS treatment with an empty bladder rather than with an SDV. Compared with the successfully treated group, the unsuccessfully treated group did not achieve statistical significance with an empty bladder and an SDV state. ConclusionfNIRS confirms that TNS influences brain activity in patients with OAB who respond to therapy. That may be the central mechanism of action of TNS.
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页数:8
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共 41 条
  • [1] Brain activation during micturition in women
    Blok, BFM
    Sturms, LM
    Holstege, G
    [J]. BRAIN, 1998, 121 : 2033 - 2042
  • [2] A PET study on brain control of micturition in humans
    Blok, BFM
    Willemsen, ATM
    Holstege, G
    [J]. BRAIN, 1997, 120 : 111 - 121
  • [3] The developmental trajectory of fronto-temporoparietal connectivity as a proxy of the default mode network: a longitudinal fNIRS investigation
    Bulgarelli, Chiara
    de Klerk, Carina C. J. M.
    Richards, John E.
    Southgate, Victoria
    Hamilton, Antonia
    Blasi, Anna
    [J]. HUMAN BRAIN MAPPING, 2020, 41 (10) : 2717 - 2740
  • [4] Home-based transcutaneous tibial nerve stimulation for overactive bladder syndrome: a randomized, controlled study
    Cava, Robert
    Orlin, Yaacov
    [J]. INTERNATIONAL UROLOGY AND NEPHROLOGY, 2022, 54 (08) : 1825 - 1835
  • [5] Chancellor Michael B, 2014, Urol Pract, V1, P7, DOI 10.1016/j.urpr.2014.02.004
  • [6] Inhibitory effects of tibial nerve stimulation on bladder neurophysiology in rats
    Choudhary, Mahipal
    van Mastrigt, Ron
    van Asselt, Els
    [J]. SPRINGERPLUS, 2016, 5 : 1 - 8
  • [7] National Community Prevalence of Overactive Bladder in the United States Stratified by Sex and Age
    Coyne, Karin S.
    Sexton, Chris C.
    Vats, Vasudha
    Thompson, Christine
    Kopp, Zoe S.
    Milsom, Ian
    [J]. UROLOGY, 2011, 77 (05) : 1081 - 1087
  • [8] A quantitative comparison of NIRS and fMRI across multiple cognitive tasks
    Cui, Xu
    Bray, Signe
    Bryant, Daniel M.
    Glover, Gary H.
    Reiss, Allan L.
    [J]. NEUROIMAGE, 2011, 54 (04) : 2808 - 2821
  • [9] Anatomy of the central neural pathways controlling the lower urinary tract
    de Groat, WC
    [J]. EUROPEAN UROLOGY, 1998, 34 : 2 - 5
  • [10] Neural Control of the Lower Urinary Tract
    de Groat, William C.
    Griffiths, Derek
    Yoshimura, Naoki
    [J]. COMPREHENSIVE PHYSIOLOGY, 2015, 5 (01) : 327 - 396