Key result
Double-wavelet analysis revealed a nonlinear interaction between two mechanisms regulating renal blood flow via frequency and amplitude modulation of myogenic oscillations.
Population
Experimental data from normotensive and hypertensive rats and simulation results from a physiologically…
Design
Preclinical
Authors
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Double-wavelet analysis detects nonlinear renal autoregulation interactions; extends oscillatory tools in animal models but leaves open human translation.
A double-wavelet approach can successfully identify nonlinear interactions, such as frequency and amplitude modulation, between different oscillatory mechanisms in renal autoregulation.
Sosnovtseva et al. (2004) studied Renal autoregulation. Double-wavelet analysis was evaluated on Frequency and amplitude modulation of myogenic oscillations. Double-wavelet analysis revealed a nonlinear interaction between two mechanisms regulating renal blood flow via frequency and amplitude modulation of myogenic oscillations.
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