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采用计算机辅助氮洗脱法计算新生儿肺容积。

Calculation of lung volume in newborn infants by means of a computer-assisted nitrogen washout method.

作者信息

Sjöqvist B A, Sandberg K, Hjalmarson O, Olsson T

出版信息

Pediatr Res. 1984 Nov;18(11):1160-4. doi: 10.1203/00006450-198411000-00021.

Abstract

A clinically adapted method for the calculation of the functional residual capacity in newborn infants has been developed. The method is based on a multiple breath nitrogen washout test, during which the ventilatory air flow and the nitrogen concentration signals are sampled by a minicomputer, which also performs the calculations. The ventilatory air flow is measured by a pneumotachometer connected to a face-out volume displacement body plethysmograph, and the nitrogen concentration by a nitrogen analyzer. The functional residual capacity volume is calculated from the sampled signals by adding the expired nitrogen volumes during each expiration, and finally dividing this sum by the initial alveolar nitrogen concentration. Before the calculations, the sampled signals are adjusted regarding nitrogen analyzer delay and plethysmograph characteristics. The method presented is designed to minimize the test equipment influence on the baby's respiration and also to inhibit the necessity of pneumotachometer compensations normally connected with washout methods. Furthermore, the calculated breath-by-breath values of end-expiratory nitrogen concentration, nitrogen volume, inspired and expired tidal volume, are stored on disk for further analysis and resimulation of the test. The method has been tested on a mechanical lung model and on washouts from healthy newborn infants. The model tests indicate that the accuracy and the reproducibility of the method are good, and the results from the infants are in good agreement with previously obtained results.

摘要

已开发出一种适用于临床的计算新生儿功能残气量的方法。该方法基于多次呼吸氮洗脱试验,在此期间,通气气流和氮浓度信号由一台小型计算机采样,该计算机还进行计算。通气气流通过连接到面向外体积位移体容积描记器的呼吸速度描记器测量,氮浓度通过氮分析仪测量。功能残气量通过将每次呼气时呼出的氮气体积相加,然后将该总和除以初始肺泡氮浓度,从采样信号中计算得出。在计算之前,会根据氮分析仪延迟和容积描记器特性对采样信号进行调整。所提出的方法旨在最小化测试设备对婴儿呼吸的影响,同时避免通常与洗脱方法相关的呼吸速度描记器补偿的必要性。此外,计算出的逐次呼气末氮浓度、氮气体积、吸气和呼气潮气量的值会存储在磁盘上,以便进一步分析和重新模拟测试。该方法已在机械肺模型和健康新生儿的洗脱试验中进行了测试。模型测试表明该方法的准确性和可重复性良好,婴儿的测试结果与先前获得的结果高度一致。

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