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傅里叶级数在生物系统分析中的应用。

Use of Fourier series for the analysis of biological systems.

作者信息

Attinger E O, Anné A, McDonald D A

出版信息

Biophys J. 1966 May;6(3):291-304. doi: 10.1016/S0006-3495(66)86657-2.

Abstract

In an attempt to quantitate the physical behavior of biological systems, Fourier analysis has been applied to the respiratory and circulatory systems by a number of investigators. The validity of this application has been questioned on the basis that these systems are nonlinear and not strictly periodic. If these objections were valid much of the more recent work in this field would have to be re-evaluated. The applicability of Fourier analysis to these two systems was therefore investigated, both theoretically and experimentally, using on-line analysis on a LINC (laboratory instrument computer) digital computer. In normal anesthetized dogs errors introduced by deviations from periodicity and linearity were found to be within the range of measurement errors. In sinusoidally perfused aortas the amount of second harmonic produced by the vessel was less than 5%. In addition, the magnitude of errors due to faulty determination of cycle length, sampling techniques, aliasing, and A-D (analogue to digital) conversion were evaluated and found to be within the noise level of the measuring equipment when appropriate techniques were employed. Utmost care has to be used in the coupling between a transducer and the system to be measured, and dynamic calibration before each experiment is a prerequisite for successful analysis. With presently available equipment the static measurement errors can be reduced to +/-0.2 cm H(2)O for pressure transducers, 0.1 cm(3)/sec for electromagnetic flowmeters, and 5 x 10(-4) cm for measurement of radius changes. The frequency response of this equipment once properly coupled to the system is flat to at least 20 cycle/sec.

摘要

为了定量描述生物系统的物理行为,许多研究人员已将傅里叶分析应用于呼吸系统和循环系统。由于这些系统是非线性的且并非严格周期性的,这种应用的有效性受到了质疑。如果这些异议成立,那么该领域最近的许多工作都将不得不重新评估。因此,使用LINC(实验室仪器计算机)数字计算机进行在线分析,从理论和实验两方面研究了傅里叶分析对这两个系统的适用性。在正常麻醉的狗身上,发现由周期性和线性偏差引入的误差在测量误差范围内。在正弦灌注的主动脉中,血管产生的二次谐波量小于5%。此外,评估了由于周期长度确定错误、采样技术、混叠以及模数(A-D)转换导致的误差大小,发现当采用适当技术时,这些误差在测量设备的噪声水平范围内。在传感器与被测系统之间的耦合过程中必须格外小心,并且每次实验前的动态校准是成功分析的前提条件。使用目前可用的设备,压力传感器的静态测量误差可降至±0.2 cm H₂O,电磁流量计的静态测量误差可降至0.1 cm³/sec,半径变化测量的静态测量误差可降至5×10⁻⁴ cm。该设备一旦正确耦合到系统,其频率响应在至少20周期/秒内是平坦的。

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