现代自动化仪器测量血压的错误。无创振荡血压测量误差的影响[j]。

Fortschritte der Medizin Pub Date : 1999-04-10
K Forstner
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引用次数: 0

摘要

带有数字显示的自动血压测量装置现在在非专业人员和医生中普遍使用。然而,振荡方法与许多可能的误差来源有关,其中包括与标准Riva-Rocci方法进行比较的困难。方法学上的误差源于生理/解剖学上的差异:前臂和手腕的周长、动脉的位置、周围组织的结构、动脉直径以及血管舒缩功能。后者代表了一个明显的不确定因素,特别是从手指获得的测量结果。技术误差源在明显的低血压或严重的高血压中起作用,因为设备仅在120至180 mmHg的范围内进行校准。设备对心律失常脉冲的处理也很关键。另外的错误来源是处理和解释。总的来说,这些错误的来源是这样的,并不是所有不同类型的设备都同样适合患者使用,有必要对这些设备的应用进行限制并建立使用规则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Errors in blood pressure measuring with modern automated machines. Effects of errors in non-invasive oscillometric blood pressure measuring].

Automatic blood pressure measuring devices with digital display are now in common use, both among lay persons and physicians. The oscillometric method is, however, associated with a number of possible sources of error which, among other things, make comparison with the standard Riva-Rocci method difficult. Methodological errors arise from physiological/anatomical variations: circumference of the forearm and wrist, position of the arteries, structure of the surrounding tissue, arterial diameter and also vasomotor function. The latter represents an appreciable uncertainty factor, in particular with measurements obtained from the finger. Technological sources of error play a role in pronounced hypotension or severe hypertension, since the devices are calibrated only for a range extending from 120 to 180 mmHg. The processing by the device of arrhythmic pulses is also critical. Additional sources of error are in handling and interpretation. Overall, these sources of error are such that not all the various types of device available are equally suitable for use by the patient, and it is necessary to place limitations on the application of such devices and to establish rules for their use.

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