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1.
Braz. j. med. biol. res ; 42(4): 386-396, Apr. 2009. graf, tab
Article in English | LILACS | ID: lil-509171

ABSTRACT

The autonomic nervous system plays an important role in physiological and pathological conditions, and has been extensively evaluated by parametric and non-parametric spectral analysis. To compare the results obtained with fast Fourier transform (FFT) and the autoregressive (AR) method, we performed a comprehensive comparative study using data from humans and rats during pharmacological blockade (in rats), a postural test (in humans), and in the hypertensive state (in both humans and rats). Although postural hypotension in humans induced an increase in normalized low-frequency (LFnu) of systolic blood pressure, the increase in the ratio was detected only by AR. In rats, AR and FFT analysis did not agree for LFnu and high frequency (HFnu) under basal conditions and after vagal blockade. The increase in the LF/HF ratio of the pulse interval, induced by methylatropine, was detected only by FFT. In hypertensive patients, changes in LF and HF for systolic blood pressure were observed only by AR; FFT was able to detect the reduction in both blood pressure variance and total power. In hypertensive rats, AR presented different values of variance and total power for systolic blood pressure. Moreover, AR and FFT presented discordant results for LF, LFnu, HF, LF/HF ratio, and total power for pulse interval. We provide evidence for disagreement in 23 percent of the indices of blood pressure and heart rate variability in humans and 67 percent discordance in rats when these variables are evaluated by AR and FFT under physiological and pathological conditions. The overall disagreement between AR and FFT in this study was 43 percent.


Subject(s)
Animals , Female , Humans , Male , Middle Aged , Rats , Young Adult , Autonomic Nervous System/physiopathology , Fourier Analysis , Heart Block/physiopathology , Hypertension/physiopathology , Atropine Derivatives/pharmacology , Heart Block/chemically induced , Heart Rate/physiology , Rats, Inbred SHR , Rats, Wistar , Severity of Illness Index , Tilt-Table Test , Young Adult
2.
Braz. j. med. biol. res ; 38(6): 949-957, June 2005. ilus, graf
Article in English | LILACS | ID: lil-402663

ABSTRACT

Arterial baroreflex sensitivity estimated by pharmacological impulse stimuli depends on intrinsic signal variability and usually a subjective choice of blood pressure (BP) and heart rate (HR) values. We propose a semi-automatic method to estimate cardiovascular reflex sensitivity to bolus infusions of phenylephrine and nitroprusside. Beat-to-beat BP and HR time series for male Wistar rats (N = 13) were obtained from the digitized signal (sample frequency = 2 kHz) and analyzed by the proposed method (PRM) developed in Matlab language. In the PRM, time series were low-pass filtered with zero-phase distortion (3rd order Butterworth used in the forward and reverse direction) and presented graphically, and parameters were selected interactively. Differences between basal mean values and peak BP (deltaBP) and HR (deltaHR) values after drug infusions were used to calculate baroreflex sensitivity indexes, defined as the deltaHR/deltaBP ratio. The PRM was compared to the method traditionally (TDM) employed by seven independent observers using files for reflex bradycardia (N = 43) and tachycardia (N = 61). Agreement was assessed by Bland and Altman plots. Dispersion among users, measured as the standard deviation, was higher for TDM for reflex bradycardia (0.60 ± 0.46 vs 0.21 ± 0.26 bpm/mmHg for PRM, P < 0.001) and tachycardia (0.83 ± 0.62 vs 0.28 ± 0.28 bpm/mmHg for PRM, P < 0.001). The advantage of the present method is related to its objectivity, since the routine automatically calculates the desired parameters according to previous software instructions. This is an objective, robust and easy-to-use tool for cardiovascular reflex studies.


Subject(s)
Animals , Male , Rats , Baroreflex/drug effects , Blood Pressure/drug effects , Heart Rate/drug effects , Pattern Recognition, Automated/methods , Signal Processing, Computer-Assisted , Baroreflex/physiology , Blood Pressure/physiology , Cardiotonic Agents/pharmacology , Heart Rate/physiology , Linear Models , Nitroprusside/pharmacology , Observer Variation , Phenylephrine/pharmacology , Rats, Wistar
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