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Improved voiding function by deep brain stimulation in traumatic brain-injured animals with bladder dysfunctions

机译:通过膀胱功能障碍的创伤性脑受伤的动物的深脑刺激改善了排尿功能

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ObjectiveTraumatic brain injury (TBI) is a global scenario with high mortality and disability, which does not have an effectual and approved therapy till now. Bladder dysfunction is a major symptom after TBI, and this study deals with the alleviation of bladder function in TBI rats, with the aid of deep brain stimulations (DBS).MethodsTBI was induced by weight drop model (WDM) and standardized with the experimental subjects with variable heights for weight dropping. The rats survived after TBI were considered for bladder dysfunction observations. DBS with variable stimulation parameters like cystometric analysis and MRI studies were also performed.ResultsAfter experimental studies, TBI 2-m-height crash was determined as suitable parameter due to minimal mortality rate and significant reduction in the voiding efficiency from 67 to 28%, whereas DBS significantly reversed the value of voiding efficiency to 65-84%. MRI studies revealed the severity of TBI impact and DBS localization.ConclusionThe results showed profound therapeutic effect of PnO-DBS on voiding functions and bladder control on TBI rats.
机译:客观特例脑损伤(TBI)是一种具有高死亡率和残疾的全球性情景,直到现在患有有效和批准的治疗。膀胱功能障碍是TBI之后的主要症状,这项研究涉及TBI大鼠的膀胱功能,借助于深脑刺激(DBS)。用重量下降模型(WDM)诱导,并用实验对象标准化.MethodstBI具有可变高度的重量滴。在考虑膀胱功能障碍观察后,TBI在TBI后存活的大鼠。还进行了变量刺激参数的DBS,如囊曲线分析和MRI研究。结果,实验研究,TBI 2-M高度崩溃是由于最小的死亡率和空隙效率显着降低,从67〜28%的情况下确定了合适的参数。 DBS显着逆转空隙效率的价值至65-84%。 MRI研究表明,TBI抗冲击和DBS定位的严重程度。结论结果表明PNO-DBS对TBI大鼠空隙功能和膀胱对照的深刻治疗作用。

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