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Near-infrared spectroscopy demonstrates preserved and reproducible resting skeletal muscle oxygenation across anatomical sites in stable heart failure

  • Joanne Eng-Frost
  • , Rohanti Ravikulan
  • , Joel A. De Pasquale
  • , Lorenzo Antonio
  • , Clayton Sibbin
  • , Shailesh Bihari
  • , Andrew Bersten
  • , Carmine G. De Pasquale

Research output: Contribution to journalArticlepeer-review

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Abstract

Near-infrared spectroscopy (NIRS) enables noninvasive assessment of regional tissue oxygenation (StO2). Although impaired skeletal muscle oxygenation during stress is well documented in heart failure (HF), the reproducibility of resting StO2 and its potential utility for clinical monitoring remain unclear. Twenty adults (10 healthy; 10 chronic HF) underwent StO2 assessment using the Medtronic INVOS 7100 system at five sites: pectoralis major, deltoid, biceps, flexor carpi, and rectus femoris. Duplicate measurements were obtained over 1 min with sensor repositioning between recordings. Effects of time and group were evaluated using general linear models. Reproducibility was assessed using intraclass correlation coefficients (ICCs) and Bland–Altman analyses (P < 0.05). Resting StO2 was similar between healthy participants and those with HF across all anatomical sites (pectoralis major: P = 0.73; deltoid: P = 0.71; biceps: P = 0.12; flexor carpi: P = 0.20; rectus femoris: P = 0.32). No significant effects of time, group, or group-by-time interactions were observed (all P > 0.10), except for a small increase in biceps StO2 in HF (P = 0.04). Reproducibility remained high following sensor repositioning, with strong ICCs across all sites (all ≥ 0.84; P < 0.001) and minimal bias on Bland–Altman analyses. Resting skeletal muscle StO2 measured by NIRS is preserved and highly reproducible across anatomical sites in stable HF, despite inherent microvascular and oxygen delivery abnormalities. These findings support the feasibility of NIRS for longitudinal StO2 monitoring. However, resting StO2 alone does not discriminate HF status, suggesting that NIRS may have greater clinical utility for detecting dynamic changes during physiological stress or acute HF decompensation.

Original languageEnglish
Pages (from-to)H216-H222
Number of pages7
JournalAmerican Journal of Physiology - Heart and Circulatory Physiology
Volume331
Issue number1
DOIs
Publication statusPublished - Jul 2026

Keywords

  • heart failure
  • microvascular dysfunction
  • near-infrared spectroscopy
  • skeletal muscle oxygenation
  • tissue oxygen

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