Validity and success rate of noninvasive mean arterial blood pressure measurements in cf-LVAD patients: A technical review

Artif Organs. 2022 Dec;46(12):2361-2370. doi: 10.1111/aor.14367. Epub 2022 Aug 3.

Abstract

Background: The life expectancy of patients with a continuous flow left ventricular assist device (cf-LVAD) is increasing. Adequate determination and regulation of mean arterial pressure (MAP) is important to prevent adverse events. Given the low pulsatility characteristics in these patients, standard blood pressure equipment is inadequate to monitor MAP and not recommended. We provide an overview of currently available noninvasive techniques, using an extensive search strategy in three online databases (Pubmed, Scopus and Google Scholar) to find validation studies using invasive intra-arterial blood pressure measurement as a reference. Mean differences with the reference values smaller than 5 ± 8 mm Hg were considered acceptable.

Observations: After deduplication, screening, and exclusion of incorrect sources, eleven studies remained with 3139 successful MAP measurements in 386 patients. Four noninvasive techniques, using Doppler, pulse oximetry, finger cuff volume clamp, or slow upper arm cuff deflation, were identified and evaluated for validity and success rate in cf-LVAD patients. Here, a comprehensive technical background of the blood pressure measurement methods is provided in combination with a clinical use comparison. Of the reported noninvasive techniques, slow cuff devices performed most optimally (mean difference 1.3 ± 5.2 mm Hg).

Conclusions: Our results are encouraging and indicate that noninvasive blood pressure monitoring options with acceptable validity and success rate are available. Further technical development and validation is warranted for the growing population of patients on long-term cf-LVAD support.

Keywords: LVAD; blood pressure; noninvasive measurement; technical review.

Publication types

  • Review

MeSH terms

  • Arterial Pressure
  • Arteries
  • Blood Pressure / physiology
  • Blood Pressure Determination / methods
  • Heart Failure*
  • Heart-Assist Devices* / adverse effects
  • Humans