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一种简易耳式血氧仪的准确性及响应特性

The accuracy and response characteristics of a simplified ear oximeter.

作者信息

Chapman K R, D'Urzo A, Rebuck A S

出版信息

Chest. 1983 Jun;83(6):860-4. doi: 10.1378/chest.83.6.860.

Abstract

We evaluated the accuracy and speed of response of a newly available, lightweight, and relatively inexpensive ear oximeter (Biox II oximeter). The instrument was compared with another oximeter (Hewlett-Packard 47201A) under conditions of both steadily maintained and progressively increasing hypoxia induced in normal subjects by rebreathing. The new oximeter (Biox II), which can be operated in either a "normal" or "fast" response mode, as selected by a switch on the front panel, was evaluated in its "normal" mode during steady-state hypoxic conditions and in both "normal" and "fast" modes during progressive hypoxic conditions. The other oximeter (HP 47201A) was operated in its factory preset "normal" mode for all measurements. During steady-state hypoxia the relationship between oximetric arterial oxygen saturation (SaO2) readings (y) and spectrophotometrically measured SaO2 in samples of arterial blood (x) when SaO2 exceeded 65 percent was as follows: for the new oximeter (Biox), y = 0.95x + 3.25 (r = 0.96); and for the other oximeter (HP 47201A), y = 1.03x - 2.31 (r = 0.94). Neither of these relationships differed significantly from the line of identity. During trials of progressive isocapnic hypoxia induced acutely in ten normal subjects, SaO2 was measured continuously by both oximeters. With the new oximeter (Biox) operated in the "normal" mode, the relationship between values for SaO2 from it (y) and the other oximeter (Hewlett-Packard) (x) was y = 0.85x + 12.91 (r = 0.93). When the new oximeter (Biox) was switched to its "fast" response mode, the relationship more closely approximated the line of identity such that y = 1.05x - 5.95 (r = 0.98). The response of the new oximeter (Biox II) to an in vitro step change in saturation followed a complex nonexponential function characterized by small initial changes in output signal with the greatest changes in output occurring during the latter portion of the response period. The 50 percent response times of the new oximeter (Biox II) were 5.65 seconds and 2.86 seconds in the "normal" and "fast" modes, respectively, by contrast to the 50 percent response time of 2.87 seconds for the other oximeter (H-P 47201A). We conclude that the new oximeter (Biox II) demonstrated accuracy comparable to a more complex and expensive oximeter and had response characteristics that may be useful in clinical and laboratory settings.

摘要

我们评估了一种新推出的、轻便且相对便宜的耳式血氧仪(Biox II血氧仪)的准确性和响应速度。在正常受试者通过重复呼吸诱导的稳定维持和逐渐加重的低氧条件下,将该仪器与另一种血氧仪(惠普47201A)进行了比较。新的血氧仪(Biox II)可通过前面板上的开关选择在“正常”或“快速”响应模式下操作,在稳定状态低氧条件下以“正常”模式进行评估,在逐渐加重的低氧条件下以“正常”和“快速”模式进行评估。另一种血氧仪(惠普47201A)在所有测量中均以其工厂预设的“正常”模式操作。在稳定状态低氧期间,当动脉血氧饱和度(SaO2)超过65%时,血氧测定的动脉血氧饱和度(SaO2)读数(y)与分光光度法测量的动脉血样本中的SaO2(x)之间的关系如下:对于新的血氧仪(Biox),y = 0.95x + 3.25(r = 0.96);对于另一种血氧仪(惠普47201A),y = 1.03x - 2.31(r = 0.94)。这些关系均与恒等线无显著差异。在对10名正常受试者急性诱导的进行性等碳酸血症低氧试验中,两种血氧仪均连续测量SaO2。新的血氧仪(Biox)在“正常”模式下操作时,其SaO2值(y)与另一种血氧仪(惠普)(x)之间的关系为y = 0.85x + 12.91(r = 0.93)。当新的血氧仪(Biox)切换到其“快速”响应模式时,该关系更接近恒等线,即y = 1.05x - 5.95(r = 0.98)。新的血氧仪(Biox II)对体外饱和度阶跃变化的响应遵循复杂的非指数函数,其特征是输出信号的初始变化较小,而输出的最大变化发生在响应期的后半部分。新的血氧仪(Biox II)在“正常”和“快速”模式下的50%响应时间分别为5.65秒和2.86秒,相比之下,另一种血氧仪(惠普47201A)的50%响应时间为2.87秒。我们得出结论,新的血氧仪(Biox II)显示出与更复杂、更昂贵的血氧仪相当的准确性,并且具有在临床和实验室环境中可能有用的响应特性。

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