ON THE EFFICACY OF LINEAR-SYSTEM ANALYSIS OF RENAL AUTOREGULATION IN RATS

被引:35
作者
CHON, KH
CHEN, YM
HOLSTEINRATHLOU, NH
MARSH, DJ
MARMARELIS, VZ
机构
[1] MACKAY MEM HOSP,DEPT INTERNAL MED,TAIPEI,TAIWAN
[2] UNIV SO CALIF,DEPT PHYSIOL & BIOPHYS,LOS ANGELES,CA 90033
关键词
D O I
10.1109/10.204766
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
In order to assess the linearity of the mechanisms subserving renal blood flow autoregulation, broad-band arterial pressure fluctuations at three different power levels were induced experimentally and the resulting renal blood flow responses were recorded. Linear system analysis methods were applied in both the time and frequency domain. In the frequency domain, spectral estimates employing FFT, autoregressive moving average (ARMA) and moving average (MA) methods were used; only the MA model showed two vascular control mechanisms active at 0.02-0.05 Hz and 0.1-0.18 Hz consistent with previous experimental findings [Holstein-Rathlou et al., Amer. J. Physiol., vol. 258, 1990.1. In the time domain, impulse response functions obtained from the MA model indicated likewise the presence of these two vascular control mechanisms, but the ARMA model failed to show any vascular control mechanism at 0.02-0.05 Hz. The residuals (i.e., model prediction errors) of the MA model were smaller than the ARMA model for all levels of arterial pressure forcings. The observed low coherence values and the significant model residuals in the 0.02-0.05 Hz frequency range suggest that the tubuloglomerular feedback (TGF) active in this frequency range is a nonlinear vascular control mechanism. In addition, experimental results suggest that the operation of the TGF mechanism is more evident at low/moderate pressure fluctuations and becomes overwhelmed when the arterial pressure forcing is too high.
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页码:8 / 20
页数:13
相关论文
共 19 条
  • [1] HEMODYNAMIC REGULATION - INVESTIGATION BY SPECTRAL-ANALYSIS
    AKSELROD, S
    GORDON, D
    MADWED, JB
    SNIDMAN, NC
    SHANNON, DC
    COHEN, RJ
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY, 1985, 249 (04): : H867 - H875
  • [2] TUBULOGLOMERULAR FEEDBACK-MEDIATED DECREASES IN GLOMERULAR PRESSURE IN MUNICH-WISTAR RATS
    BELL, PD
    REDDINGTON, M
    PLOTH, D
    NAVAR, LG
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY, 1984, 247 (06): : F877 - F880
  • [3] CLARKE DW, 1967, 1ST IFAC S ID AUT CO
  • [4] TUBULOGLOMERULAR FEEDBACK AND AUTOREGULATION IN SPONTANEOUSLY HYPERTENSIVE RATS
    DANIELS, FH
    ARENDSHORST, WJ
    ROBERDS, RG
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY, 1990, 258 (06): : F1479 - F1489
  • [5] SYNCHRONIZATION OF PROXIMAL INTRATUBULAR PRESSURE OSCILLATIONS - EVIDENCE FOR INTERACTION BETWEEN NEPHRONS
    HOLSTEINRATHLOU, NH
    [J]. PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 1987, 408 (05): : 438 - 443
  • [6] TUBULOGLOMERULAR FEEDBACK DYNAMICS AND RENAL BLOOD-FLOW AUTOREGULATION IN RATS
    HOLSTEINRATHLOU, NH
    WAGNER, AJ
    MARSH, DJ
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY, 1991, 260 (01): : F53 - F68
  • [7] A DYNAMIC-MODEL OF THE TUBULOGLOMERULAR FEEDBACK MECHANISM
    HOLSTEINRATHLOU, NH
    MARSH, DJ
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY, 1990, 258 (05): : F1448 - F1459
  • [8] MARMARELIS PZ, 1978, ANAL PHYSL SYSTEMS
  • [9] FAMILY OF QUASI-WHITE RANDOM SIGNALS AND ITS OPTIMAL USE IN BIOLOGICAL SYSTEM IDENTIFICATION .1. THEORY
    MARMARELIS, VZ
    [J]. BIOLOGICAL CYBERNETICS, 1977, 27 (01) : 49 - 56
  • [10] WIENER ANALYSIS OF NONLINEAR FEEDBACK IN SENSORY SYSTEMS
    MARMARELIS, VZ
    [J]. ANNALS OF BIOMEDICAL ENGINEERING, 1991, 19 (04) : 345 - 382