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A mathematical model for the proliferation of bacteria in the urinary bladder due to enlarged prostate.

机译:前列腺增大引起的细菌在膀胱中增殖的数学模型。

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Urinary retention due to enlargement of the prostate (prostate hypertrophy) leads to increased proliferation of bacteria in the bladder. This in turn increases the infection rate. The reason is that the enlarged prostate presses on the urine channel and tends to close it. Thus the out flux of the bladder consists of repeatedly small amounts of fluid during a day. A mathematical dynamic model with differential equations is developed for the proliferation of bacteria in the urinary bladder (vesica urinary). The model accounts for how this proliferation is associated with varying amounts of mass of urine within the bladder. Parameters are estimated from published data and analytical and numerical results are presented. The relationships between the proliferation of bacteria within the bladder and the type of urinal out flux from the bladder are examined. The proliferation is shown to depend on the amount of mass of urine and the out flux of urine from the bladder. In the normal situation the bladder is drained successfully which also drains the bacteria. In the abnormal situation the bladder drains only partly. Despite frequent urination, substantial urine mass in the bladder on the average allows bacteria to proliferate and increase in number through time. The simulations depend on the numerical values of the parameters which again depend on the prostate condition of each male adult under scrutiny. By determining the parameters for each male, the dynamic model can be used as a powerful tool by which the proliferation of bacteria in the bladder can be studied and controlled by different means. Three clinical advices are provided. First, try to achieve that the proliferation rate of bacteria in the bladder is as small as possible, e.g. through altering the pH or chemical composition within the bladder. Second, try to achieve that the out flux of urine from the bladder is substantial, through sufficient drinking. Third, try to achieve that the mass of urine in the bladder is as small as possible, through sufficient urination. The intrinsic parameters for each male can be used to pinpoint the actual out flux during a day necessary to keep the number of bacteria in the bladder low. Suggestions for how to test the model are briefly presented.
机译:由于前列腺增大(前列腺肥大)而引起的尿retention留会导致细菌在膀胱中的增殖增加。这反过来又增加了感染率。原因是增大的前列腺压在尿道上并倾向于将其关闭。因此,在一天中,膀胱的流出流量由反复少量的液体组成。建立了带有微分方程的数学动态模型,用于细菌在膀胱(膀胱尿)中的增殖。该模型解释了这种增生与膀胱内尿液量变化之间的关系。根据公开的数据估算参数,并给出分析和数值结果。检查了细菌在膀胱内的增殖与尿液从膀胱流出的类型之间的关系。已表明增殖取决于尿液量和尿液从膀胱流出。在正常情况下,膀胱会被成功排干,这也会排干细菌。在异常情况下,膀胱仅排掉一部分。尽管尿频,但平均而言,膀胱中的大量尿液会使细菌繁殖并不断增加数量。模拟取决于参数的数值,该参数的数值又取决于每个经过检查的成年男性的前列腺状况。通过确定每个雄性的参数,动态模型可以用作强大的工具,通过它可以通过不同的方式研究和控制膀胱中细菌的繁殖。提供了三种临床建议。首先,尝试使细菌在膀胱中的增殖速率尽可能小,例如,通过改变膀胱内的pH值或化学成分。第二,通过充分饮水,设法使尿液从膀胱流出的尿量很大。第三,通过充分排尿,尝试使膀胱中的尿液量尽可能少。每个雄性的内在参数都可以用来查明在一天中保持膀胱中细菌数量很少的实际流出量。简要介绍了有关如何测试模型的建议。

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