Literature DB >> 21646716

Bioimpedance harmonic analysis as a tool to simultaneously assess circulation and nervous control.

I S Mudraya1, S V Revenko, A V Nesterov, I Yu Gavrilov, V I Kirpatovsky.   

Abstract

Multicycle harmonic (Fourier) analysis of bioimpedance was employed to simultaneously assess circulation and neural activity in visceral (rat urinary bladder) and somatic (human finger) organs. The informative value of the first cardiac harmonic of the bladder impedance as an index of bladder circulation is demonstrated. The individual reactions of normal and obstructive bladders in response to infusion cystometry were recorded. The potency of multicycle harmonic analysis of bioimpedance to assess sympathetic and parasympathetic neural control in urinary bladder is discussed. In the human finger, bioimpedance harmonic analysis revealed three periodic components at the rate of the heart beat, respiration and Mayer wave (0.1 Hz), which were observed under normal conditions and during blood flow arrest in the hand. The revealed spectrum peaks were explained by the changes in systemic blood pressure and in regional vascular tone resulting from neural vasomotor control. During normal respiration and circulation, two side cardiac peaks were revealed in a bioimpedance amplitude spectrum, whose amplitude reflected the depth of amplitude respiratory modulation of the cardiac output. During normal breathing, the peaks corresponding to the second and third cardiac harmonics were split, reflecting frequency respiratory modulation of the heart rate. Multicycle harmonic analysis of bioimpedance is a novel potent tool to examine the interaction between the respiratory and cardiovascular system and to simultaneously assess regional circulation and neural influences in visceral and somatic organs.

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Year:  2011        PMID: 21646716     DOI: 10.1088/0967-3334/32/7/S17

Source DB:  PubMed          Journal:  Physiol Meas        ISSN: 0967-3334            Impact factor:   2.833


  1 in total

1.  Relationship between Passive and Active Pulsations of Rat Artery as Vascular Extension of Frank-Starling Law.

Authors:  I A Tarakanov; L N Tikhomirova; I Yu Gavrilov; S V Revenko
Journal:  Bull Exp Biol Med       Date:  2021-04-24       Impact factor: 0.804

  1 in total

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