Přístupnostní navigace
E-přihláška
Vyhledávání Vyhledat Zavřít
Detail publikace
RONZHINA, M. JANOUŠEK, O. SCHEER, P. NOVÁKOVÁ, M. PROVAZNÍK, I. KOLÁŘOVÁ, J.
Originální název
Determination of the Frequency Bands for Heart Rate Variability: Studies on the Intact and Isolated Rabbit Hearts
Typ
článek ve sborníku ve WoS nebo Scopus
Jazyk
angličtina
Originální abstrakt
There are many different methods for diagnosis of cardiac disorders. One of them is spectral analysis of heart rate variability (HRV). Its frequency bands are standardized only for human hearts. The present study is focused on definition of frequency bands in isolated hearts of New Zealand rabbits and on analysis of changes of these bands caused by myocardial ischemia. The results of the study show that HRV of isolated hearts differs from that of intact hearts and the changes depend on the experiment phase (control, ischemia, and reperfusion). In particular, the limit between LF (low frequency) and HF (high frequency) bands is not constant in ischemic periods and reaches the same value in each reperfusion period. Thus, it is necessary to take into consideration anatomical and physiological differences between intact and isolated hearts when analysis of HRV is used for studying the heart function.
Klíčová slova
Frequency bands of HRV, isolated heart, intact heart, New Zealand rabbit
Autoři
RONZHINA, M.; JANOUŠEK, O.; SCHEER, P.; NOVÁKOVÁ, M.; PROVAZNÍK, I.; KOLÁŘOVÁ, J.
Rok RIV
2010
Vydáno
31. 12. 2010
Nakladatel
IEEE
Místo
Belfast, UK
ISBN
978-80-214-4106-4
Kniha
Computers in Cardiology
Číslo edice
1
Strany od
Strany do
4
Strany počet
BibTex
@inproceedings{BUT35801, author="Marina {Filipenská} and Oto {Janoušek} and Peter {Scheer} and Marie {Nováková} and Valentine {Provazník} and Jana {Kolářová}", title="Determination of the Frequency Bands for Heart Rate Variability: Studies on the Intact and Isolated Rabbit Hearts", booktitle="Computers in Cardiology", year="2010", number="1", pages="1--4", publisher="IEEE", address="Belfast, UK", isbn="978-80-214-4106-4" }