Bioelectrical Impedance Vector Analysis (BIVA) for the monitoring of body composition in pregnancy

Clinical Trials & Research
  • 1.

    Sistema Nazionale Linee Guida. Linea guida 2011 – Gravidanza fisiologica. Linee Guida ISS. 2011. https://www.salute.gov.it/imgs/C_17_pubblicazioni_1436_allegato.pdf.

  • 2.

    Ghiotti P. Nascere in Piemonte: percorso nascita regionale. 2006–2016. https://www.epi.piemonte.it/pubblicazioni/atlanti/nascere_in_piemonte_2006_2016.pdf.

  • 3.

    Benedetto C, Marozio L, Lanzo G. Patologia della gravidanza – Ipertensione in gravidanza. In: Benedetto C, Sismondi P, editors. Ginecologia e Ostetricia. Torino: Minerva Me. 2013. p. 340–54.

  • 4.

    Piemonte R. Profilo assistenziale condiviso per l’assistenza diagnostica e terapeutica del diabete gestazionale in dietoterapia. 2015. https://www.regione.piemonte.it/web/sites/default/files/media/documenti/2018-11/3_diabete_gestazionale.pdf.

  • 5.

    Wierdis T, Romanini C, Alba E, Arduini D, D’Addato F, Grio R, et al. Ginecologia e Ostetricia (II). Torino: Minerva Medica; 2003.

  • 6.

    Institute of Medicine and National Research Council. Weight Gain During Pregnancy: Reexamining the Guidelines. Washington, DC: The National Academies Press. 2009. https://doi.org/10.17226/12584.

  • 7.

    Most J, Marlatt KL, Altazan AD, Redman LM. Advances in assessing body composition during pregnancy. Eur J Clin Nutr. 2018;72:645–56.

    PubMed 
    PubMed Central 
    Article 

    Google Scholar
     

  • 8.

    Lukaski HC, Vega Diaz N, Talluri A, Nescolarde L. Classification of hydration in clinical conditions: indirect and direct approaches using bioimpedance. Nutrients. 2019;11:809. https://doi.org/10.3390/nu11040809.

    CAS 
    PubMed Central 
    Article 

    Google Scholar
     

  • 9.

    Bioelectrical impedance analysis in body composition measurement: National Institutes of Health Technology Assessment Conference. Am J Clin Nutr. 1996;64:524S–32S.

  • 10.

    Piuri G, Ferrazzi E, Bulfoni C, Mastricci L, Di Martino D, Speciani AF. Longitudinal changes and correlations of bioimpedance and anthropometric measurements in pregnancy: Simple possible bed-side tools to assess pregnancy evolution. J Matern Neonatal Med. 2017;30:2824–30.

    CAS 
    Article 

    Google Scholar
     

  • 11.

    Berlit S, Stojakowits M, Tuschy B, Weiss C, Leweling H, Sütterlin M, et al. Bioelectrical impedance analysis in the assessment of pre-eclampsia. Arch Gynecol Obstet. 2015;291:31–8.

    CAS 
    PubMed 
    Article 

    Google Scholar
     

  • 12.

    Levario-Carrillo M, Avitia M, Tufiño-Olivares E, Trevizo E, Corral-Terrazas M, Reza-López S. Body composition of patients with hypertensive complications during pregnancy. Hypertens Pregnancy. 2006;25:259–69.

    PubMed 
    Article 

    Google Scholar
     

  • 13.

    Da Silva EG, De Barros Leite Carvalhaes MA, Hirakawa HS, Da Silva EG, Peraçoli JC. Bioimpedance in pregnant women with preeclampsia. Hypertens Pregnancy. 2010;29:357–65.

    PubMed 
    Article 

    Google Scholar
     

  • 14.

    Berlit S, Tuschy B, Stojakowits M, Weiss C, Leweling H, Sütterlin M, et al. Bioelectrical impedance analysis in pregnancy: Reference ranges. Vivo. 2013;27:851–4.


    Google Scholar
     

  • 15.

    Valensise H, Andreoli A, Lello S, Magnani F, Romanini C, De Lorenzo A. Multifrequency bioelectrical impedance analysis in women with a normal and hypertensive pregnancy. Am J Clin Nutr. 2000;72:780–3.

    CAS 
    PubMed 
    Article 

    Google Scholar
     

  • 16.

    Ghezzi F, Franchi M, Balestreri D, Lischetti B, Mele MC, Alberico S, et al. Bioelectrical impedance analysis during pregnancy and neonatal birth weight. Eur J Obstet Gynecol Reprod Biol. 2001;98:171–6.

    CAS 
    PubMed 
    Article 

    Google Scholar
     

  • 17.

    Larciprete G, Valensise H, Vasapollo B, Altomare F, Sorge R, Casalino B, et al. Body composition during normal pregnancy: Reference ranges. Acta Diabetol. 2003;40:225–32.

    Article 

    Google Scholar
     

  • 18.

    Yasuda R, Takeuchi K, Funakoshi T, Maruo T. Bioelectrical impedance analysis in the clinical management of preeclamptic women with edema. J Perinat Med. 2003;31:275–80.

    PubMed 

    Google Scholar
     

  • 19.

    Mardones-Santander F, Salazar G, Rosso P, Villarroel L. Maternal body composition near term and birth weight. Obstet Gynecol. 1998;91:873–7.

    CAS 
    PubMed 

    Google Scholar
     

  • 20.

    Sanin Aguirre LH, Reza-López S, Levario-Carrillo M. Relation between maternal body composition and birth weight. Biol Neonate. 2004;86:55–62.

    PubMed 
    Article 

    Google Scholar
     

  • 21.

    Rodríguez Atristain A, Miranda-alatriste P, Sánchez-hernández O, Rodríguez-arellano M, Sánchez-trampe B. Vectores de impedancia bioeléctrica para analizar la composición corporal de mujeres mexicanas embarazadas Bioelectrical impedance vector analysis for mexican pregnant’ s body. Rev Espec Médico-Quirúrgicas. 2016;21:55–64.


    Google Scholar
     

  • 22.

    Lukaski HC, Hall CB, Siders WA. Assessment of change in hydration in women during pregnancy and postpartum with bioelectrical impedance vectors. Nutrition. 2007;23:543–50.

    PubMed 
    Article 

    Google Scholar
     

  • 23.

    Piccoli A, Rossi B, Pillon L, Bucciante G A new method for monitoring body fluid variation by bioimpedance analysis: The RXc graph. Vol. 46, Kidney international. 1994.

  • 24.

    Marini E, Campa F, Buffa R, Stagi S, Matias CN, Toselli S, et al. Phase angle and bioelectrical impedance vector analysis in the evaluation of body composition in athletes. Clin Nutr. 2020;39:447–54.

    PubMed 
    Article 

    Google Scholar
     

  • 25.

    Marini E, Sergi G, Succa V, Saragat B, Sarti S, Coin A, et al. Efficacy of specific bioelectrical impedance vector analysis (BIVA) for assessing body composition in the elderly. J Nutr Health Aging. 2013;17:515–21.

    CAS 
    PubMed 
    Article 

    Google Scholar
     

  • 26.

    Buffa R, Saragat B, Cabras S, Rinaldi AC, Marini E. Accuracy of specific BIVA for the assessment of body composition in the United States population. PLoS One. 2013;8:1–10.

    Article 

    Google Scholar
     

  • 27.

    Massari F, Scicchitano P, Potenza A, Sassara M, Sanasi M, Liccese M, et al. Supraventricular tachycardia, pregnancy, and water: a new insight in lifesaving treatment of rhythm disorders. Ann Noninvasive Electrocardiol 2018;23:1–5.

    Article 

    Google Scholar
     

  • 28.

    World Medical Association. World Medical Association declaration of Helsinki: ethical principles for medical research involving human subjects. JAMA. 2013;310:2191–4.

    Article 

    Google Scholar
     

  • 29.

    ISO 7250-1:2017. Basic human body measurements for technological design Body measurement definitions and landmarks. https://www.iso.org/standard/65246.html.

  • 30.

    Peebles L, Beverley N. Adultdata: the handbook of adult anthropometric and strength measurements. Data for Design Safety by Laura Peebles and Beverley Norris. UK Department of Trade and Industry (URN 98/736); Ergonomics in Design: The Quarterly of Human Factors Applications. UK: SAGE Publications; 1998. vol 7, p. 32–34.

  • 31.

    Piccoli A, Pastori G. BIVA Software background. 2002. http://www.renalgate.it/formule_calcolatori/BIVAguide.pdf.

  • 32.

    Toselli S, Marini E, Maietta Latessa P, Benedetti L, Campa F. Maturity related differences in body composition assessed by classic and specific bioimpedance vector analysis among male elite youth soccer players. Int J Environ Res Public Health. 2020;17:729

    PubMed Central 
    Article 

    Google Scholar
     

  • 33.

    Marini E, Buffa R, Saragat B, Coin A, Toffanello ED, Berton L, et al. The potential of classic and specific bioelectrical impedance vector analysis for the assessment of sarcopenia and sarcopenic obesity. Clin Inter Aging. 2012;7:585–91.

    Article 

    Google Scholar
     

  • 34.

    Wells JC, Williams JE, Ward LC, Fewtrell MS. Utility of specific bioelectrical impedance vector analysis for the assessment of body composition in children. Clin Nutr. 2021;40:1147–54.

    CAS 
    PubMed 
    PubMed Central 
    Article 

    Google Scholar
     

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