AREGU September 46/3
نویسندگان
چکیده
Burgess, Don E., Tabitha A. Zimmerman, Marshall T. Wise, Sheng-Gang Li, David C. Randall, and David R. Brown. Low-frequency renal sympathetic nerve activity, arterial BP, stationary ‘‘1/f noise,’’ and the baroreflex. Am. J. Physiol. 277 (Regulatory Integrative Comp. Physiol. 46): R894–R903, 1999.—The object of this study is to quantify the very low frequency (i.e., ,0.1 Hz) interactions between renal sympathetic nerve activity (SNA) and arterial blood pressure (ABP). Six rats were instrumented for chronic recordings of SNA and ABP. Data were collected 24 h after surgery at 10 kHz for 2–5 h and subsequently compressed to a 1-kHz signal. The power spectra and ordinary coherence were calculated from data epochs up to 1 h in length. The very low frequency spectra for both variables were fitted to a constant times f 2b. The peak magnitude squared of the coherence near 0.4 Hz was 0.82 6 0.08, but the apparent linear coherence fell off quickly at lower frequencies so that it was close to zero for frequencies ,0.1 Hz. Moreover, at these low frequencies b, as computed by a coarse grain spectral analysis, was significantly (P , 0.01) different for SNA (0.66 6 0.12) and ABP (1.12 6 0.14). Assuming that SNA and ABP are stationary time series, the results of our classical spectral analysis would indicate that SNA and ABP are not linearly correlated at frequencies with a period more than ,10 s. Accordingly, we tested for stationarity by computing the spectral coherence and found that SNA and ABP are not stationary ‘‘1/f noise’’ within the frequency range from 0.02 to 2.0 Hz. Rather the SNA exerts control over the cardiovascular system through intermittent bursts of activity. Such intermittent behavior can be modeled by nonlinear dynamics.
منابع مشابه
AREGU September 46/3
CHEN-LI CHENG,1,2 JIANG-CHUAN LIU,3 SUN-YRAN CHANG,2 CHENG-PING MA,2 AND WILLIAM C. DE GROAT4 1Division of Urology, Department of Surgery, Taichung Veterans General Hospital, Taichung 407; 2Division of Urology, Department of Surgery, Tri-Service General Hospital, Taipei 100; 3Department of Biology and Anatomy, National Defense Medical Center, Taipei 100, Taiwan, Republic of China; and 4Departme...
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MICHAEL L. PUCCI,1 YI BAO,1 BRENDA CHAN,1 SHIGEKAZU ITOH,1 RUN LU,1 NEAL G. COPELAND,2 DEBRA J. GILBERT,2 NANCY A. JENKINS,2 AND VICTOR L. SCHUSTER1 1Departments of Medicine, Physiology, and Biophysics, Albert Einstein College of Medicine, Bronx, New York 10461; 2Mammalian Genetics Laboratory, ABL-Basic Research Program, National Cancer Institute-Frederick Cancer Research and Development Center...
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Ghai, H. S., and L. T. Buck. Acute reduction in whole cell conductance in anoxic turtle brain. Am. J. Physiol. 277 (Regulatory Integrative Comp. Physiol. 46): R887–R893, 1999.—We tested the effect of anoxia, a ‘‘mimic’’ turtle artificial cerebrospinal fluid (aCSF) consisting of high Ca21 and Mg21 concentrations and low pH and adenosine perfusions, on whole cell conductance (Gw) in turtle brain ...
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متن کاملAREGU September 46/3
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