Wearable cuffless blood pressure tracking: when will they be good enough?

GBD 2019 Risk Factors Collaborators. Global burden of 87 risk factors in 204 countries and territories, 1990-2019: a systematic analysis for the Global Burden of Disease Study 2019. Lancet. 2020;396:1223–49.

Article  Google Scholar 

Stergiou GS, Mukkamala R, Avolio A, Kyriakoulis KG, Mieke S, Murray A, et al. Cuffless blood pressure measuring devices: review and statement by the European Society of Hypertension Working Group on blood pressure monitoring and cardiovascular variability. J Hypertens. 2022;40:1449–60.

Article  CAS  PubMed  Google Scholar 

Mukkamala R, Shroff SG, Landry C, Kyriakoulis KG, Avolio AP, Stergiou GS. The Microsoft Research Aurora Project: important findings on cuffless blood pressure measurement. Hypertension. 2023;80:534–40.

Article  CAS  PubMed  Google Scholar 

Muntner P, Shimbo D, Carey RM, Charleston JB, Gaillard T, Misra S, et al. Measurement of blood pressure in humans: a scientific statement from the American Heart Association. Hypertension. 2019;73:e35–66.

Article  CAS  PubMed  Google Scholar 

Stergiou GS, Avolio AP, Palatini P, Kyriakoulis KG, Schutte AE, Mieke S, et al. European Society of Hypertension recommendations for the validation of cuffless blood pressure measuring devices: European Society of Hypertension Working Group on blood pressure monitoring and cardiovascular variability. J Hypertens. 2023;41:2074–87.

Article  CAS  PubMed  Google Scholar 

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

Article  PubMed  PubMed Central  Google Scholar 

Bo Y, Kwok KO, Chung VC, Yu CP, Tsoi KK, Wong SY, et al. Short-term reproducibility of ambulatory blood pressure measurements: a systematic review and meta-analysis of 35 observational studies. J Hypertens. 2020;38:2095–109.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Dolan E, Stanton A, Thijs L, Hinedi K, Atkins N, McClory S, et al. Superiority of ambulatory over clinic blood pressure measurement in predicting mortality: the Dublin outcome study. Hypertension. 2005;46:156–61.

Article  CAS  PubMed  Google Scholar 

Yang WY, Melgarejo JD, Thijs L, Zhang ZY, Boggia J, Wei FF, et al. Association of office and ambulatory blood pressure with mortality and cardiovascular outcomes. Jama. 2019;322:409–20.

Article  PubMed  PubMed Central  Google Scholar 

Hansen TW, Li Y, Boggia J, Thijs L, Richart T, Staessen JA. Predictive role of the nighttime blood pressure. Hypertension. 2011;57:3–10.

Article  CAS  PubMed  Google Scholar 

Gnanenthiran SR, Liu H, Tan I, Chan J, Schlaich MP, Schutte AE. Cuffless blood pressure devices: the gap between patient acceptability and need for validation. J Hypertens. 2022;40:2317–9.

Article  CAS  PubMed  Google Scholar 

Xie F, Wu Y, Liu H, Yu Z, Xu J, Su H. Anxiety is associated with higher blood pressure rise induced by cuff inflation. Blood Press Monit. 2022;27:168–72.

Article  PubMed  Google Scholar 

Fania C, Lazzaretto I, Fontana U, Palatini P. Accuracy of the WatchBP O3 device for ambulatory blood pressure monitoring according to the new criteria of the ISO81060-2 2018 protocol. Blood Press Monit. 2020;25:285–90.

Article  PubMed  Google Scholar 

Sola J, Vybornova A, Fallet S, Polychronopoulou E, Wurzner-Ghajarzadeh A, Wuerzner G. Validation of the optical Aktiia bracelet in different body positions for the persistent monitoring of blood pressure. Sci Rep. 2021;11:20644.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Almeida TP, Cortés M, Perruchoud D, Alexandre J, Vermare P, Sola J, et al. Aktiia cuffless blood pressure monitor yields equivalent daytime blood pressure measurements compared to a 24-h ambulatory blood pressure monitor: Preliminary results from a prospective single-center study. Hypertens Res. 2023;46:1456–61.

Article  PubMed  PubMed Central  Google Scholar 

Eisenkraft A, Goldstein N, Merin R, Fons M, Ishay AB, Nachman D, et al. Developing a real-time detection tool and an early warning score using a continuous wearable multi-parameter monitor. Front Physiol. 2023;14:1138647.

Article  PubMed  PubMed Central  Google Scholar 

Nachman D, Eisenkraft A, Kolben Y, Carmon E, Hazan E, Goldstein N, et al. Diurnal cardio-respiratory changes in ambulatory individuals deciphered using a multi-parameter wearable device. Digit Health. 2023;9:20552076231218885.

Article  PubMed  PubMed Central  Google Scholar 

Lee H, Park S, Kwon H, Cho B, Park JH, Lee HY. Feasibility and effectiveness of a ring-type blood pressure measurement device compared with 24-hour ambulatory blood pressure monitoring device. Korean Circ J. 2024;54:93–104.

Article  PubMed  Google Scholar 

Kim J, Chang SA, Park SW. First-in-human study for evaluating the accuracy of smart ring-based cuffless blood pressure measurement. J Korean Med Sci. 2024;39:e18.

Article  PubMed  Google Scholar 

Olsen P, Elliott JM, Frampton C, Bradley PS. Winning or losing does matter: acute cardiac admissions in New Zealand during Rugby World Cup tournaments. Eur J Prev Cardiol. 2015;22:1254–60.

Article  CAS  PubMed  Google Scholar 

Tan I, Gnanenthiran SR, Chan J, Kyriakoulis KG, Schlaich MP, Rodgers A, et al. Evaluation of the ability of a commercially available cuffless wearable device to track blood pressure changes. J Hypertens. 2023;41:1003–1.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Einstadter D, Bolen SD, Misak JE, Bar-Shain DS, Cebul RD. Association of repeated measurements with blood pressure control in primary care. JAMA Intern Med. 2018;178:858–60.

Article  PubMed  PubMed Central  Google Scholar 

留言 (0)

沒有登入
gif