File(s) under permanent embargo
Methodological comparisons of heart rate variability analysis in patients with type 2 diabetes and angiotensin converting enzyme polymorphism
journal contribution
posted on 2016-01-01, 00:00 authored by F Marzbanrad, A H Khandoker, B D Hambly, E Ng, M Tamayo, Y Lu, S Matthews, Chandan KarmakarChandan Karmakar, M Palaniswami, H F Jelinek, C McLachlanAngiotensin converting enzyme (ACE) polymorphism has been shown to be important in hypertension progression and also in diabetes complications, especially associated with heart disease. Heart rate variability (HRV) is an established measure for classification of autonomic function regulating heart rate, based on the interbeat interval time series derived from a raw ECG recording. Results of this paper show that the length (number of interbeat intervals) and preprocessing of the tachogram affect the HRV analysis outcome. The comparison was based on tachogram lengths of 250, 300, 350, and 400 RR-intervals and five preprocessing approaches. An automated adaptive preprocessing method for the heart rate biosignal and tachogram length of 400 interbeat intervals provided the best classification. HRV results differed for the Type 2 Diabetes Mellitus (T2DM) group between the I/I genotype and the I/D and D/D genotypes, whereas for controls there was no significant difference in HRV between genotypes. Selecting an appropriate length of recording and automated preprocessing has confirmed that there is an effect of ACE polymorphism including the I/I genotype and that I/I should not be combined with I/D genotype in determining the extent of autonomic modulation of the heart rate.
History
Journal
IEEE journal of biomedical and health informaticsVolume
20Issue
1Pagination
55 - 63Publisher
IEEELocation
Piscataway, N.J.Publisher DOI
ISSN
2168-2194eISSN
2168-2208Language
engPublication classification
C Journal article; C1.1 Refereed article in a scholarly journalCopyright notice
2015, IEEEUsage metrics
Categories
Keywords
angiotensin converting enzyme (ACE) polymorphismgenotypesheart rate variability analysispreprocessingtachogram lengthtype-2 diabetesScience & TechnologyTechnologyLife Sciences & BiomedicineComputer Science, Information SystemsComputer Science, Interdisciplinary ApplicationsMathematical & Computational BiologyMedical InformaticsComputer ScienceGENE POLYMORPHISMSYMPATHOVAGAL BALANCEDELETION POLYMORPHISMASSOCIATIONRISKAGEMORTALITYMEN