Microvascular perfusion is modulated by the breathing activity. However, to the authors’ knowledge, no study has attempted to assess the pathological deterioration of this physiological coupling in diabetes, which is related to structural and functional alterations of the microvasculature. On this basis, a phase coherence analysis was conducted to identify a possible weakening of the time-phase relationship between the breathing rhythm and the peripheral pulse, measured with laser Doppler flowmetry.

Wavelet Phase Coherence Analysis Between the Respiratory Activity and the Microcirculation: The Effects of Type 1 Diabetes / Sorelli, Michele; Perrella, Antonia; Francia, Piergiorgio; Bocchi, Leonardo. - ELETTRONICO. - (2020), pp. 61-65. (Intervento presentato al convegno International Conference on Medical and Biological Engineering in Bosnia and Herzegovina, CMBEBIH 2019;) [10.1007/978-3-030-17971-7_9].

Wavelet Phase Coherence Analysis Between the Respiratory Activity and the Microcirculation: The Effects of Type 1 Diabetes

Sorelli, Michele
;
Perrella, Antonia;Francia, Piergiorgio;Bocchi, Leonardo
2020

Abstract

Microvascular perfusion is modulated by the breathing activity. However, to the authors’ knowledge, no study has attempted to assess the pathological deterioration of this physiological coupling in diabetes, which is related to structural and functional alterations of the microvasculature. On this basis, a phase coherence analysis was conducted to identify a possible weakening of the time-phase relationship between the breathing rhythm and the peripheral pulse, measured with laser Doppler flowmetry.
2020
IFMBE Proceedings
International Conference on Medical and Biological Engineering in Bosnia and Herzegovina, CMBEBIH 2019;
Sorelli, Michele; Perrella, Antonia; Francia, Piergiorgio; Bocchi, Leonardo
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1155993
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