Modeling of hemoglobin in dengue fever and dengue hemorrhagic fever using bioelectrical impedance

Ibrahim, F. and Ismail, N.A. and Taib, M.N. and Wan Abas, W.A.B. (2004) Modeling of hemoglobin in dengue fever and dengue hemorrhagic fever using bioelectrical impedance. Physiological Measurement, 25 (3). pp. 607-615. ISSN 0967-3334, DOI https://doi.org/10.1088/0967-3334/22/3/002.

[img]
Preview
PDF (Modeling of hemoglobin in dengue fever and dengue hemorrhagic fever using bioelectrical impedance)
Modeling_of_hemoglobin_in_dengue_fever_and_dengue_hemorrhagic_fever_using_bioelectrical_impedance.pdf - Other

Download (282kB)
Official URL: https://doi.org/10.1088/0967-3334/25/3/002

Abstract

This paper describes a model for predicting hemoglobin (Hb) by using bioelectrical impedance analysis (BIA) in dengue patients in the Hospital Universiti Kebangsaan Malaysia (HUKM). Bioelectrical impedance measurements were conducted on 83 (47 males and 36 females) serologically confirmed dengue fever (DF) and dengue hemorrhagic fever (DHF) patients during their hospitalization. The predictive equation for Hb was derived using multivariate analysis. We investigated all the parameters in BIA, patients' symptom and demographic data. In this developed model, four predictors (reactance (Xc), sex, weight and vomiting) were found to be the best predictive factors for modeling Hb in dengue patients. However, the model can only explain approximately 42 of the variation in Hb status, thus single frequency bio-impedance stand-alone technique is insufficient to monitor Hb for the DF and DHF patients. Further investigation using multi-frequency BIA is recommended in modeling Hb to achieve the most parsimonious model.

Item Type: Article
Funders: UNSPECIFIED
Additional Information: Cited By (since 1996):13 Export Date: 29 January 2014 Source: Scopus CODEN: PMEAE PubMed ID: 15253113 Language of Original Document: English Correspondence Address: Ibrahim, F.; Department of Biomedical Engineering, Faculty of Engineering, University of Malaya, 50603, Kuala Lumpur, Malaysia Chemicals/CAS: hemoglobin, 9008-02-0; Hemoglobins References: Berhman, R.E., Kliegman, R.M., (2002) Nelson Essentials of Paediatrics 4th Edn., p. 610. , Philadelphia, PA: Saunders; Bethell, D.B., Noninvasive measurement of microvascular leakage in patients with dengue hemorrhagic fever (2001) Clin. Infectious Diseases, 32, pp. 243-253; Bioimpedance Analyzer User's Guide, Bioelectrical Impedance Measurements, Basic Principles of Bioimpedance Testing 1st Edn., pp. 32-33. , 450 Washington: Biodynamics Corporation; Bottoni, A., Marco, D., Pereira Da Costa Oliveira, G., Bottoni, A., De Lourdes Teixecia Da Silva, M., Linetzky Waitzberg, Y.D., Resistance and reactance in patients undergoing coronary artery bypass (2003) Nutr. Hospt., 18, pp. 147-152; Bourne, J.R., (1996) Critical Reviews in Biomedical Engineering, 24, pp. 390-391. , New York: Begell House; Chungue, E., Boutin, J.P., Roux, J., Antibody capture ELISA for IgM antibody titration in sera for dengue serodiagnosis and surveillance (1989) Res. Virol., 140, pp. 229-240; Ganong, W.F., (2003) Review of Medical Physiology (Lange Medical Books) 21st Edn., p. 640. , New York: McGraw-Hill; Halstead, S.B., Antibody, macrophages, dengue virus infection, shock, and hemorrhagic: Apathogenetic cascade (1989) Rev. Infectious Disease, 11, pp. S-9; Ibrahim, F., Chan, C.G., Taib, M.N., Wan Abas, W.A.B., The characteristic hydration status changes by bioelectrical impedance assessment in female dengue haemorrhagic fever (DHF) patients (2002) The Med. J. Malaysia, 57, p. 98; Ibrahim, F., Ismail, N.A., Taib, M.N., Wan Abas, W.A.B., Sulaiman, S., Chan, C.G., Assessment of haematocrit status using bioelectrical impedance analysis in dengue patients (2003) Elsevier Proc. 5th Int. Federation of Automatic Control (IFAC) Symposium on Modelling and Control in Biomedical Systems (IFAC) (Melbourne, Australia), pp. 277-281; Ibrahim, F., Taib, M.N., Sulaiman, S., Wan Abas, W.A.B., Dengue fever (DF) and dengue haemorrhagic fever (DHF) symptoms analysis from an expert system perspective (2001) Proc. 5th IEEE Int. Multi-Topic Conf., pp. 212-215; Ibrahim, F., Taib, M.N., Wan Bakar, W.A.B., Chan, C.G., Sulaiman, S., A novel approach to classify risk in dengue hemorrhagic fever (DHF) using bioelectrical impedance analysis (2003) IEEE Trans. Instrum. Meas., , submitted; Klassen, P., Mazariegos, M., Deurenberg, P., Solomons, N.W., Furst, P., Hydrational status assessed by bioelectrical impedance spectroscopy and dilution method in patients with classical dengue fever (2000) Ann. New York Acad. Sci., 904, pp. 163-170; Kubicek, W.G., Kamegis, J.N., Patterson, R.P., Witsoe, P.A., Mattson, R.H., Development and evaluation of an impedance cardiac output system (1960) Aerosp. Med., 37, p. 1208; Kushner, E.C., Bioelectrical impedance analysis: A review of principles applications (1992) J. Am. Coll. Nutr., 11, pp. 199-209; Lam, S.K., Devi, S., Pang, T., Detection of specific IgM in dengue infection (1987) Southeast Asian J. Tropical Med. Public Health., 18, pp. 532-538; Libraty, D.H., Endy, T.P., Kalayanarooj, S., Chansiriwongs, W., Nisalak, A., Green, S., Ennis, F.A., Rothman, A.L., Assessment of body fluid compartment volumes by multifrequency bioelectrical impedance spectroscopy in children with dengue (2002) Trans. R. Soc. Tropical Med. Hygiene, 96, pp. 295-299; Liedtke, R.J., (1998) Fundamental of Bioelectrical Impedance Analysis RJL System, pp. 1-10. , http://www.rjlsystems.com/research/bia-fundamental.html, publications; Lukaski, H.C., Methods for assessment of human body composition: Traditional and new (1987) Am. J. Clin. Nutr., 46, pp. 537-556; Lukaski, H.C., Johnson, P.E., Bolonchuk, W.W., Likken, G.I., Assessment of fat free mass using bioelectrical impedance measurements of human body (1985) Am. J. Clin. Nutr., 41, pp. 810-817; Mattar, J.A., Application of total body bioimpedance to the critically ill patient (1996) New Horizons, 4, pp. 493-503; Mazariegos, M., Klassen, P., Solomons, N.W., Furst, P., Bioelectrical impedance spectroscopy in health and disease: Corresponding between whole body and segmental biolelectrical impedance spectroscopy indices in patients with classical dengue fever in vivo body composition studies: Part 1. Methods and instrumentation: Bioelectrical impedance analysis (2000) Ann. New York Acad. Sci., 904, pp. 205-209; McPhee, S.J., Lingappa V, R., Ganong, W.F., Lange, J.D., (1997) Pathophysiology of Disease: An Introduction to Clinical Medicine 2nd Edn., p. 274. , Connecticut: Appleton & Lange Prentice-Hall; Nelson V, C., Wilkinson, A.F., Electronic measurement of blood sedimentation rate (1972) J. Maine Med. Assoc., 63, pp. 160-163; Nelson, W.E., Vaughan V, C., McKay, R.J., (1969) Textbook of Paediatrics, p. 1043. , Philadephia: Saunders; Nigrelli, S., Pizzarelli, S., Bioelectrical impedance analysis: A non-invasive assessment of body composition in uremics (1989) J. Nephrol., 2, pp. 155-156; Nimmannitya, S., Clinical spectrum and management of dengue haemorrhagic fever (1987) Southeast Asian J. Tropical Med. Public Health, 18, pp. 392-397; Nyboer, J., (1970) Electrical Impedance Plethysmography 2nd Edn., pp. 335-341. , Springfield, II: Charles C Thomas; Nyboer, J., Bagno, S., Barnett, A., Radiagrams - The electrical impedance changes and heart sounds (1940) Abst. J. Clin. Invest., 19, p. 773; Okada, R.H., Schwan, H.P., An electrical method to determine haematocrits (1960) IRE Trans. Med. Electron., 7, pp. 188-192; PanBio, (2001) Dengue Duo IgM and IgG Rapid Strip Test Catalogue No. DEN-25S; Pethig, R., Dielectric properties of body tissues (1987) Clin. Phys. Physiol. Meas., 8, pp. 5-12; Rigaud, B., Morucci, J.P., Chauveau, N., Bioelectrical impedance techniques in medicine: I. Bioimpedance measurement. Second section: Impedance spectrometry (1996) Crit. Rev. Biomed. Eng., 24 (4-6), p. 330. , New York: Begell House; Schwan, H.P., Electrical properties of tissue and cell suspensions (1957) Adv. Biol. Med. Phys., 5, pp. 147-209; Tedner, B., (1985) In Vivo Fluid Volume Monitoring with Impedance Technique, , PhD Thesis Department of Medical Engineering, Karolinska Institute, Stockholm; Thomasset, A., Bioelectrical properties of tissue impedance measurement (1962) Lyo. Med., 207, pp. 107-118; Ulgen, Y., Sezdi, M., Haematocrit dependence of the Cole-Cole parameters of human blood (1997) Proc. IEEE 2nd Int. Biomedical Engineering Days, pp. 71-74; Ulgen, Y., Sezdi, M., Electrical parameter of human blood (1998) Proc. 20th Annual Int. Conf. IEEE Engineering in Medicine and Biology Society, 20, pp. 2983-2986; (1997) Dengue Haemorrhagic Fever, Diagnosis, Treatment, Prevention & Control 2nd Edn., pp. 18-23. , Geneva: World Health Organization
Uncontrolled Keywords: Bioelectrical impedance, Dengue hemorrhagic fever, Hemoglobin, Modeling, Multivariate analysis, adolescent, adult, analytic method, article, bioelectrical impedance analysis, bioenergy, blood sampling, blood vessel permeability, body weight, calculation, demography, dengue, evaluation, extracellular space, female, hemoglobin determination, human, impedance, intracellular space, major clinical study, Malaysia, male, mathematical model, measurement, osmotic pressure, parameter, patient monitoring, prediction, priority journal, school child, serodiagnosis, sex difference, symptom, technique, vomiting, Child, Diagnosis, Computer-Assisted, Hemoglobins, Humans, Middle Aged, Models, Biological, Models, Statistical, Plethysmography, Impedance, Reproducibility of Results, Sensitivity and Specificity, Statistics, Bia
Subjects: T Technology > T Technology (General)
T Technology > TA Engineering (General). Civil engineering (General)
Divisions: Faculty of Engineering
Depositing User: Mr Jenal S
Date Deposited: 10 Apr 2014 02:05
Last Modified: 30 Dec 2021 07:23
URI: http://eprints.um.edu.my/id/eprint/9529

Actions (login required)

View Item View Item