596
Views
0
CrossRef citations to date
0
Altmetric
Research Article

A comparison between bioelectrical impedance analysis and air-displacement plethysmography in assessing fat-free mass in patients with motor neurone diseases: a cross-sectional study

ORCID Icon, , , , , & ORCID Icon show all
Pages 326-335 | Received 07 Sep 2023, Accepted 20 Dec 2023, Published online: 24 Jan 2024

References

  • Kruizenga H, Beijer S, Huisman-de Waal G, Jonkers-Schuitema C, Klos M, Remijnse-Meester W, et al. Richtlijn ondervoeding – Herkenning, diagnosestelling en behandleing van ondervoeding bij volwassenen. The Netherlands 2019; 1–39.
  • Roubeau V, Blasco H, Maillot F, Corcia P, Praline J. Nutritional assessment of amyotrophic lateral sclerosis in routine practice: Value of weighing and bioelectrical impedance analysis. Muscle Nerve. 2015; 51:479–84.
  • Janse Van Mantgem MR, Van Eijk RPA, Van Der Burgh HK, Tan HHG, Westeneng HJ, Van Es MA, et al. Prognostic value of weight loss in patients with amyotrophic lateral sclerosis: A population-based study. J Neurol Neurosurg Psychiatry. 2020;91:867–75.
  • Holdom CJ, Janse van Mantgem MR, van Eijk RPA, Howe SL, van den Berg LH, McCombe PA, et al. Venous creatinine as a biomarker for loss of fat-free mass and disease progression in patients with amyotrophic lateral sclerosis. Eur J Neurol. 2021;28:3615–25.
  • Ngo ST, van Eijk RPA, Chachay V, van den Berg LH, McCombe PA, Henderson RD, et al. Loss of appetite is associated with a loss of weight and fat mass in patients with amyotrophic lateral sclerosis. Amyotroph Lateral Scler Frontotemporal Degener. 2019;20:497–505.
  • Van Eijk RPA, Eijkemans MJC, Ferguson TA, Nikolakopoulos S, Veldink JH, Van Den Berg LH. Monitoring disease progression with plasma creatinine in amyotrophic lateral sclerosis clinical trials. J Neurol Neurosurg Psychiatry. 2018;89:156–61.
  • Fields DA, Goran MI, McCrory MA. Body-composition assessment via air-displacement plethysmography in adults and children: a review. Am J Clin Nutr. 2002;75:453–67.
  • Lowry DW, Tomiyama AJ. Air displacement plethysmography versus dual-energy X-ray absorptiometry in underweight, normal-weight, and overweight/obese individuals. PLoS One. 2015;10:e0115086.
  • Steyn FJ, Ioannides ZA, Van Eijk RPA, Heggie S, Thorpe KA, Ceslis A, et al. Hypermetabolism in ALS is associated with greater functional decline and shorter survival. J Neurol Neurosurg Psychiatry. 2018;89:1016–23.
  • Muntean P, Micloș-Balica M, Popa A, Neagu A, Neagu M. Reliability of repeated trials protocols for body composition assessment by air displacement plethysmography. Int J Environ Res Public Health 2021;18:10693.
  • Lee I, Kazamel M, McPherson T, McAdam J, Bamman M, Amara A, et al. Fat mass loss correlates with faster disease progression in amyotrophic lateral sclerosis patients: Exploring the utility of dual-energy X-ray absorptiometry in a prospective study. PLoS One 2021;16:e0251087.
  • Hills AP, Byrne NM. Bioelectrical impedance and body composition assessment. Mal J Nutr [Internet] 1998;4:107–12. Available from: https://www.researchgate.net/publication/225300934
  • Desport JC, Preux PM, Bouteloup-Demange C, Clavelou P, Beaufrère B, Bonnet C, et al. Validation of bioelectrical impedance analysis in patients with amyotrophic lateral sclerosis. Am J Clin Nutr. 2003;77:1179–85.
  • Ioannides ZA, Steyn FJ, Henderson RD, Mccombe PA, Ngo ST. Anthropometric measures are not accurate predictors of fat mass in ALS. Amyotroph Lateral Scler Frontotemporal Degener. 2017;18:486–91.
  • Gallagher D, Heymsfield SB, Heo M, Jebb SA, Murgatroyd PR, Sakamoto Y. Healthy percentage body fat ranges: An approach for developing guidelines based on body mass index. Am J Clin Nutr. 2000;72:694–701.
  • Sabounchi NS, Rahmandad H, Ammerman A. Best-fitting prediction equations for basal metabolic rate: Informing obesity interventions in diverse populations. Int J Obes (Lond). 2013;37:1364–70.
  • Brooks BR, Miller RG, Swash M, Munsat TL, El Escorial revisited: Revised criteria for the diagnosis of amyotrophic lateral sclerosis. Amyotroph Lateral Scler Other Motor Neuron Disord. 2000;1:293–9.
  • Turner MR, Barohn RJ, Corcia P, Fink JK, Harms MB, Kiernan MC, et al. Primary lateral sclerosis: Consensus diagnostic criteria. J Neurol Neurosurg Psychiatry. 2020;91:373–7.
  • Quanjer PH, Stanojevic S, Cole TJ, Baur X, Hall GL, Culver BH, et al. Multi-ethnic reference values for spirometry for the 3-95-yr age range: The global lung function 2012 equations. Eur Respir J. 2012;40:1324–43.
  • Kimura F, Fujimura C, Ishida S, Nakajima H, Furutama D, Uehara H, et al. Progression rate of ALSFRS-R at time of diagnosis predicts survival time in ALS. Neurology 2006;66:265–7.
  • Devine MS, Ballard E, O'Rourke P, Kiernan MC, Mccombe PA, Henderson RD. Targeted assessment of lower motor neuron burden is associated with survival in amyotrophic lateral sclerosis. Amyotroph Lateral Scler Frontotemporal Degener. 2016; May 1817:184–90.
  • Ravits J, Paul P, Jorg C. Focality of upper and lower motor neuron degeneration at the clinical onset of ALS. Neurology 2007;68:1571–5.
  • Ottery F. PG-SGA/Pt-Global Platform. https://pt-global.org/. 2014.
  • COSMED – The Metabolic Company. Estimation of resting metabolic rate based on lean body mass with bod pod. 2012;(June):1.
  • Crapo RO, Morris AH, Clayton PD, Nixon CR. Lung volumes in healthy nonsmoking adults. Bull Eur Physiopathol Respir. 1982;18:419–25.
  • Fields DA, Hull HR, Cheline AJ, Yao M, Higgins PB. Child-specific thoracic gas volume prediction equations for air-displacement plethysmography. Obes Res. 2004;12:1797–804.
  • Hollander F, Hulshof P, Koster E. Measuring fat mass and fat free mas using plethysmography (BOD POD®). Standard Operating Procedure 2020; 1–11.
  • Stocks J, Marchal F, Kraemer R, Gutkowski P, Bar Yishay E, Godfrey S. Plethysmographic assessment of functional residual capacity and airway resistance. In: Infant Respiratory Function Testing. 1996. p. 191–238.
  • Siri WE. Body composition from fluid spaces and density: analysis of methods. 1961. Nutrition. 1993;9:480–91; discussion 480, 492.
  • Kyle UG, Genton L, Karsegard L, Slosman DO, Pichard C. Single prediction equation for bioelectrical impedance analysis in adults aged 20-94 years. Nutrition. 2001;17:248–53.
  • Lemos T, Gallagher D. Current body composition measurement techniques. Curr Opin Endocrinol Diabetes Obes. 2017;24:310–4.
  • Flack KD, Siders WA, Johnson LA, Roemmich JN. Cross-validation of resting metabolic rate prediction equations. J Acad Nutr Diet. 2016;116:1413–22. Available from:
  • Holdom CJ, Janse van Mantgem MR, He J, Howe S, McCombe PA, Fan D. Variation in resting metabolic rate impacts identification of metabolic change in geographically distinct cohorts of amyotrophic lateral sclerosis patients. Neurology 2023;Unpublished.
  • Weijs PJM. Hypermetabolism, is it real? The example of amyotrophic lateral sclerosis. J Am Diet Assoc. 2011;111:1670–3.
  • Lukaski HC, Bolonchuk WW, Hall CB, Siders WA. Validation of tetrapolar bioelectrical impedance method to assess human body composition. J Appl Physiol (1985). 1986;60:1327–32.
  • Nau KL, Dick AR, Peters K, Schloerb PR. Relative validity of clinical techniques for measuring the body composition of persons with amyotrophic lateral sclerosis. J Neurol Sci 1997;1:152.
  • Piccoli A, Pastori G. BIVA software. Department of Medical and Surgical Sciences. Padova, Italy: University of Padova. 2002;1:1–17.
  • Piccoli A, Nigrelli S, Caberlotto A, Bottazzo S, Rossi B, Pillon L, et al. Bivariate normal values of the bioelectrical impedance vector in adult and elderly populations. Am J Clin Nutr. 1995;61:269–70.
  • Kruizenga H, Beijer S, Huisman-de-Waal G, Jonkers-Schuitema C, Klos M, Remijnse-Meester W, et al. Richtlijn Ondervoeding - Herkenning, diagnosestelling en behandeling van ondervoeding bij volwassenen. Stuurgroep Ondervoeding 2009;1:1–39.
  • Azcona C, Köek N, Frühbeck G. Fat mass by air-displacement plethysmography and impedance in obese/non-obese children and adolescents. Int J Pediatr Obes. 2006;1:176–82.
  • Flakoll PJ, Kent P, Neyra R, Levenhagen D, Chen KY, Ikizler TA. Bioelectrical impedance vs air displacement plethysmography and dual-energy X-ray absorptiometry to determine body composition in patients with end-stage renal disease. JPEN J Parenter Enteral Nutr. 2004;28:13–21.
  • Foucart L, De Decker A, Sioen I, De Henauw S, Michels N. Hand-to-foot bioelectrical impedance analysis to measure fat mass in healthy children: A comparison with air-displacement plethysmography. Nutr Diet. 2017;74:516–20.
  • Rodrigues NCL, Sala PC, Horie LM, Dias MCG, Torrinhas R d M, Romão JE, et al. Bioelectrical impedance analysis and skinfold thickness sum in assessing body fat mass of renal dialysis patients. J Renal Nutr. 2012;22:409–15.e2.
  • Benton MJ, Swan PD, Schlairet MC, Sanderson S. Comparison of body composition measurement with whole body multifrequency bioelectrical impedance and air displacement plethysmography in healthy middle-aged women. Health Care Women Int. 2011;32:1068–78.
  • Ferri-Morales A, Nascimento-Ferreira MV, Ubago-Guisado E, De Moraes ACF, Vlachopoulos D, Torres-Costoso A, et al. Agreement between standard body composition methods to estimate percentage of body fat in young male athletes. Pediatr Exerc Sci. 2018;30:402–10.
  • Von Hurst PR, Walsh DCI, Conlon CA, Ingram M, Kruger R, Stonehouse W. Validity and reliability of bioelectrical impedance analysis to estimate body fat percentage against air displacement plethysmography and dual-energy X-ray absorptiometry. Nutr Dietetics. 2016;73:197–204.
  • Jawaid A, Murthy SB, Wilson AM, Qureshi SU, Amro MJ, Wheaton M, et al. A decrease in body mass index is associated with faster progression of motor symptoms and shorter survival in ALS. Amyotroph Lateral Scler. 2010;11:542–8.
  • Altinkaynak M, Gok GK, Ozmen B, Buyukdemir S, Akpinar TS, Erten SN, et al. Prognostic value of regular nutritional treatment in patients with amyotrophic lateral sclerosis. Neurologist. 2023;28:166–72.
  • Burkhardt C, Neuwirth C, Sommacal A, Andersen PM, Weber M. Is survival improved by the use of NIV and PEG in amyotrophic lateral sclerosis (ALS)? A post-mortem study of 80 ALS patients. PLoS One. 2017;12:e0177555.
  • Kasarskis EJ, Berryman S, Vanderleest JG, Schneider AR, McClain CJ. Nutritional status of patients with amyotrophic lateral sclerosis: relation to the proximity of death. Am J Clin Nutr. 1996;63:130–7.
  • Scaricamazza S, Salvatori I, Amadio S, Nesci V, Torcinaro A, Giacovazzo G, et al. Repurposing of Trimetazidine for amyotrophic lateral sclerosis: A study in SOD1G93A mice. Br J Pharmacol. 2022;179:1732–52.
  • Jensen B, Braun W, Both M, Gallagher D, Clark P, González DL, et al. Configuration of bioelectrical impedance measurements affects results for phase angle. Med Eng Phys. 2020;84:10–5.
  • Saberi S, Stauffer JE, Schulte DJ, Ravits J. Neuropathology of Amyotrophic Lateral Sclerosis and Its Variants. Neurol Clin. 2015;33:855–76.
  • Janse van Mantgem MR, van Eijk RPA, Holdom CJ, Meyjes M, Ngo ST, Steyn FJ, et al. Assessing the metabolic rate in patients with amyotrophic lateral sclerosis, progressive muscular atrophy, and primary lateral sclerosis. Eur J Neurol. 2023. Unpublished but submitted work.
  • Barazzoni R, Jensen GL, Correia MITD, Gonzalez MC, Higashiguchi T, Shi HP, et al. Guidance for assessment of the muscle mass phenotypic criterion for the Global Leadership Initiative on Malnutrition (GLIM) diagnosis of malnutrition. Clin Nutr. 2022;41:1425–33. Apr;