Quantitative analysis of the effect of clothing on the oscillometric waveform envelope and oscillometric blood pressure measurements

Schutte AE, Kollias A, Stergiou GS. Blood pressure and its variability: classic and novel measurement techniques. Nat Rev Cardiol. 2022;19:643–54.

Article  Google Scholar 

Ogedegbe G, Pickering T. Principles and techniques of blood pressure measurement. Cardiol Clin. 2010;28:571–86.

Article  MATH  Google Scholar 

Kallioinen N, Hill A, Horswill MS, et al. Sources of inaccuracy in the measurement of adult patients’ resting blood pressure in clinical settings: a systematic review. J Hypertens. 2017;35:421.

Article  Google Scholar 

Pickering TG, Hall JE, Appel LJ, et al. Recommendations for blood pressure measurement in humans and experimental animals: part 1: blood pressure measurement in humans: a statement for professionals from the Subcommittee of Professional and Public Education of the American Heart Association Council on High Blood Pressure Research. Hypertension. 2005;45:142–61.

Article  Google Scholar 

Liebl M, Holzgreve H, Schulz M, et al. The effect of clothes on sphygmomanometric and oscillometric blood pressure measurement. Blood Press. 2004;13:279–82.

Article  Google Scholar 

Seguret D, Gamelon D, Dourmap C, et al. Blood pressure measurements on a bare arm, over a sleeve or below a rolled-up sleeve: a systematic review and meta-analysis. J Hypertens. 2020;38:1650–8.

Article  Google Scholar 

Detection JNCo, Evaluation, Pressure ToHB, et al. Report of the joint national committee on detection, evaluation, and treatment of high blood pressure.1995.

Ozone S, Shaku F, Sato M, et al. Comparison of blood pressure measurements on the bare arm, over a sleeve and over a rolled-up sleeve in the elderly. Fam Pract. 2016;33:517–22.

Article  Google Scholar 

Thien T, Keltjens E, Lenders JW, et al. Should blood pressure be measured with the cuff on a bare arm?. Blood Press Monit. 2015;20:320–4.

Article  Google Scholar 

Ozone S, Sato M, Takayashiki A, et al. Blood pressure measurements over thin and thick sleeves in the frail elderly. Blood Press Monit. 2018;23:9–11.

Article  MATH  Google Scholar 

Ishak A, Juraschek SP, Cluett J. Clothing and blood pressure measurement precision. J Hypertens. 2021;39:381–2.

Article  Google Scholar 

Bursztyn M. Is there something up your. sleeve?. J Hypertens. 2020;38:1699–700.

Article  MATH  Google Scholar 

Mancia G. Highlights of the September issue. J Hypertens. 2020;38:1629–31.

Article  MATH  Google Scholar 

Ishay RT-B, Leiba A, Rappoprt V, et al. Comparison of blood pressure measurements on the bare and sleeved arms–what does it uncover?. Blood Press Monit. 2024;29:31–4.

MATH  Google Scholar 

Wołoszyn P, Baumberg I, Baker D. The reliability of noninvasive blood pressure measurement through layers of autumn/winter clothing: a prospective study.Wilderness Environ Med. 2019;30:227–35.

Article  MATH  Google Scholar 

Ng K-G, Small C. Changes in oscillometric pulse amplitude envelope with cuff size: implications for blood pressure measurement criteria and cuff size selection. J Biomed Eng. 1993;15:279–82.

Article  MATH  Google Scholar 

Gui Y, Chen F, Murray A et al. Effect of respiration on the characteristic ratios of oscillometric pulse amplitude envelope in blood pressure measurement. Paper presented at: 2018 40th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC); 2018.

Pan F, He P, Pu X, et al. Influence of aging and increased blood pressure on oscillometric cuff pressure waveform characteristics. J Hypertens. 2021;39:2157–63.

Article  MATH  Google Scholar 

Zheng D, Giovannini R, Murray A. Asymmetrical oscillometric pulse waveform envelopes in normotensive and hypertensive subjects. Paper presented at: 2010 Computing in Cardiology; 2010.

Baktash S. Ratio-independent arterial stiffness-based blood pressure estimation. Université d’Ottawa/University of Ottawa; 2014.

Ursino M. Cristalli C.A mathematical study of some biomechanical factors affecting the oscillometric blood pressure measurement. IEEE Trans Biomed Eng. 1996;43:761–78.

Article  MATH  Google Scholar 

Chandrasekhar A, Yavarimanesh M, Hahn J-O, et al. Formulas to explain popular oscillometric blood pressure estimation algorithms. Front Physiol. 2019;10:1415.

Article  Google Scholar 

Medero R. Determination of oscillometric blood pressure by linear approximation. In.). Google Patents 1996.

Amoore JN, Vacher E, Murray IC, et al. Effect of the shapes of the oscillometric pulse amplitude envelopes and their characteristic ratios on the differences between auscultatory and oscillometric blood pressure measurements. Blood Press Monit. 2007;12:297–305.

Article  Google Scholar 

Alvarez MA, Padwal R, Ringrose J, et al. Optimum waveform envelopes and amplitude ratios in oscillometric blood pressure estimation. Blood Press Monit. 2021;26:53–9.

Article  Google Scholar 

Amoore JN, Lemesre Y, Murray IC, et al. Automatic blood pressure measurement: the oscillometric waveform shape is a potential contributor to differences between oscillometric and auscultatory pressure measurements. J Hypertens. 2008;26:35–43.

Article  Google Scholar 

Lee J, Chee Y, Kim I, et al. High-fidelity digital recording and playback sphygmomanometry system: device description and proof of concept. Blood Press Monit. 2015;20:266–72.

Article  MATH  Google Scholar 

Lee J, Park D, Oh H, et al. Digital recording system of sphygmomanometry. Blood Press Monit. 2009;14:77–81.

Article  MATH  Google Scholar 

Hong SJ, Lee JS, Oh JH, et al. Automatic assessment of blood pressure for Korotkoff sounds on the basis of human hearing threshold. Blood Press Monit. 2017;22:364–70. https://doi.org/10.1097/MBP.0000000000000284.

Article  MATH  Google Scholar 

Hypertension ASo. Recommendations for routine blood pressure measurement by indirect cuff sphygmomanometry. Am J Hypertens. 1992;5:207–9.

Article  Google Scholar 

Instrumentation AftAoM. Non-invasive sphygmomanometers-part 2: clinical investigation of intermittent automated measurement type. ANSI/AAMI/ISO 81060-2. 2019. Available: https://webstore.ansi.org 2019

Chen S, Groza VZ, Bolic M et al. Assessment of algorithms for oscillometric blood pressure measurement. Paper presented at: 2009 IEEE Instrumentation and Measurement Technology Conference 2009.

Lim PK, Ng S-C, Jassim WA, et al. Improved measurement of blood pressure by extraction of characteristic features from the cuff oscillometric. Waveform Sens. 2015;15:14142–61.

Article  MATH  Google Scholar 

O’Brien E, Petrie J, Littler W, et al. The British Hypertension Society protocol for the evaluation of automated and semi-automated blood pressure measuring devices with special reference to ambulatory systems. J Hypertens. 1990;8:607–19.

Article  MATH  Google Scholar 

Comments (0)

No login
gif