Mathematical model to estimate risk of calcium-containing renal stones.

R A Pietrzyk, A H Feiveson, P A Whitson
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引用次数: 10

Abstract

Background/aims: Astronauts exposed to microgravity during the course of spaceflight undergo physiologic changes that alter the urinary environment so as to increase the risk of renal stone formation. This study was undertaken to identify a simple method with which to evaluate the potential risk of renal stone development during spaceflight.

Method: We used a large database of urinary risk factors obtained from 323 astronauts before and after spaceflight to generate a mathematical model with which to predict the urinary supersaturation of calcium stone forming salts.

Result: This model, which involves the fewest possible analytical variables (urinary calcium, citrate, oxalate, phosphorus, and total volume), reliably and accurately predicted the urinary supersaturation of the calcium stone forming salts when compared to results obtained from a group of 6 astronauts who collected urine during flight.

Conclusions: The use of this model will simplify both routine medical monitoring during spaceflight as well as the evaluation of countermeasures designed to minimize renal stone development. This model also can be used for Earth-based applications in which access to analytical resources is limited.

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估计含钙肾结石风险的数学模型。
背景/目的:宇航员在太空飞行过程中暴露在微重力环境中,会发生生理变化,改变泌尿环境,从而增加肾结石形成的风险。这项研究是为了确定一种简单的方法来评估太空飞行期间肾结石发展的潜在风险。方法:利用323名航天员飞行前后的尿危险因素数据库,建立预测尿钙石形成盐过饱和的数学模型。结果:该模型涉及尽可能少的分析变量(尿钙、柠檬酸盐、草酸盐、磷和总体积),与6名宇航员在飞行中收集尿液的结果相比,该模型可靠而准确地预测了钙结石形成盐的尿过饱和。结论:该模型的使用将简化航天飞行期间的常规医疗监测以及旨在减少肾结石发展的对策评估。该模型也可用于对分析资源的获取有限的地面应用。
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Author Index Vol. 25, 1999 Manuscript Consultants Contents Vol. 25, 1999 Subject Index Vol. 25, 1999 Subject Index Vol. 25, No. 4–6, 1999
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