Suppr超能文献

穆罗神经泌尿动力学;小鼠下尿路功能的功能评估综述

Muro-Neuro-Urodynamics; a Review of the Functional Assessment of Mouse Lower Urinary Tract Function.

作者信息

Ito Hiroki, Pickering Anthony E, Igawa Yasuhiko, Kanai Anthony J, Fry Christopher H, Drake Marcus J

机构信息

Department of Physiology, Pharmacology and Neuroscience, University of Bristol Bristol, UK.

Department of Continence Medicine, University of Tokyo Graduate School of Medicine Tokyo, Japan.

出版信息

Front Physiol. 2017 Feb 6;8:49. doi: 10.3389/fphys.2017.00049. eCollection 2017.

Abstract

Mouse urodynamic tests are fundamental to understanding normal lower urinary tract (LUT) function. These experiments also contribute to our understanding of neurological dysfunction, pathophysiological processes, and potential mechanisms of therapy. Systematic assessment of published evidence on urodynamics, advantages and limitations of different urodynamic measurements in mice, and consideration of potential implications for the clinical field. A search using specific search-terms for urodynamic studies and mice was conducted on PubMed (from inception to 1 July 2016). We identified 55 studies examining or describing mouse neuro-urodynamics. We summarize reported features of mouse urodynamic function deriving from frequency-volume chart (FVC) measurements, voiding spot assays, filling cystometry, and pressure-flow studies. Similarly, an influence of the diurnal cycle on voiding is observed in mice and should be considered when interpreting rodent urodynamic studies, especially FVC measurements and voiding spot assays. Anaesthesia, restraint conditions, or filling rate influence mouse neuro-urodynamics. Mouse cystometric studies have observed intravesical pressure oscillations that accompany urine flow, attributed to high frequency opening and closing of the urethra. This characterization is not seen in other species, except rats. In contrast to human clinical urodynamics, the terminology of these examinations has not been standardized although many rodent urodynamic studies have been described. Mice have many anatomical and physiological similarities to humans and they are generally cost effective, and allow investigation of the effects of aging because of their short lifespan. There are some differences between mouse and human urodynamics. These must be considered when interpreting LUT function in mice, and translational value of murine disease models.

摘要

小鼠尿动力学测试对于理解正常下尿路(LUT)功能至关重要。这些实验也有助于我们理解神经功能障碍、病理生理过程以及潜在的治疗机制。系统评估已发表的关于尿动力学的证据、小鼠不同尿动力学测量方法的优缺点,并考虑其对临床领域的潜在影响。在PubMed上使用特定搜索词对尿动力学研究和小鼠进行了搜索(从创刊到2016年7月1日)。我们确定了55项研究小鼠神经尿动力学的研究。我们总结了从频率-容量图(FVC)测量、排尿点分析、充盈性膀胱测压和压力-流率研究中得出的小鼠尿动力学功能的报道特征。同样,在小鼠中观察到昼夜节律对排尿的影响,在解释啮齿动物尿动力学研究时,尤其是FVC测量和排尿点分析时应予以考虑。麻醉、约束条件或充盈率会影响小鼠神经尿动力学。小鼠膀胱测压研究观察到尿液流动时伴随的膀胱内压力振荡,这归因于尿道的高频开闭。除大鼠外,在其他物种中未见此特征。与人类临床尿动力学不同,尽管已经描述了许多啮齿动物尿动力学研究,但这些检查的术语尚未标准化。小鼠在解剖学和生理学上与人类有许多相似之处,而且它们通常成本效益高,并且由于寿命短而允许研究衰老的影响。小鼠和人类尿动力学之间存在一些差异。在解释小鼠的LUT功能以及小鼠疾病模型的转化价值时,必须考虑这些差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec7f/5292568/17ae0d9010ae/fphys-08-00049-g0001.jpg

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