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Adapting renal and cardiovascular physiology to the genetically hypertensive mouse.

机译:使肾脏和心血管生理适应遗传性高血压小鼠。

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摘要

Gene targeting techniques are a revolutionary tool in determining gene function. The mouse is the only mammal in which these methods can be performed. For morphologic and histologic characterization, a broad armamentarium is available for the mouse. However, for functional studies, the 20- to 25-g mouse provides unique challenges. We have successfully established tail-cuff, intra-arterial, and telemetric blood pressure and heart rate measurements for the mouse. We have also succeeded in measuring renal blood flow, cortical and medullary blood flow, and glomerular filtration rate under various conditions. We have been able to make sophisticated assessments of myocardial performance by using direct intraventricular determinations of pressure and volume. Other investigators have established micropuncture and microperfusion techniques for the mouse. Imaging techniques for the mouse including ultrasound and magnetic resonance imaging are currently feasible. Thus, we will be able to characterize the physiology of any hypertensive mouse model that may become available. Copyright 2002, Elsevier Science (USA). All rights reserved.
机译:基因靶向技术是确定基因功能的革命性工具。小鼠是唯一可以执行这些方法的哺乳动物。为了进行形态学和组织学表征,可为小鼠提供广泛的武器库。但是,对于功能研究,20至25 g的小鼠提出了独特的挑战。我们已经成功建立了小鼠的尾袖,动脉内和遥测血压和心率测量值。我们还成功地测量了各种条件下的肾血流量,皮层和髓质血流量以及肾小球滤过率。通过使用直接的心室内压力和容积测定,我们已经能够对心肌功能进行复杂的评估。其他研究人员已经为小鼠建立了微穿刺和微灌注技术。用于小鼠的包括超声和磁共振成像的成像技术目前是可行的。因此,我们将能够描述任何可用的高血压小鼠模型的生理特征。版权所有(Elsevier Science)2002(美国)。版权所有。

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