Scientific Reports (Mar 2023)

Evaluation of transcutaneous near-infrared spectroscopy for early detection of cardiac arrest in an animal model

  • Katharina Raschdorf,
  • Arman Mohseni,
  • Kaavya Hogle,
  • Amanda Cheung,
  • Kitty So,
  • Neda Manouchehri,
  • Mahsa Khalili,
  • Saud Lingawi,
  • Brian Grunau,
  • Calvin Kuo,
  • Jim Christenson,
  • Babak Shadgan

DOI
https://doi.org/10.1038/s41598-023-31637-1
Journal volume & issue
Vol. 13, no. 1
pp. 1 – 13

Abstract

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Abstract Sudden cardiac arrest (SCA) is a leading cause of mortality worldwide. The SCA-to-resuscitation interval is a key determinant of patient outcomes, highlighting the clinical need for reliable and timely detection of SCA. Near-infrared spectroscopy (NIRS), a non-invasive optical technique, may have utility for this application. We investigated transcutaneous NIRS as a method to detect pentobarbital-induced changes during cardiac arrest in eight Yucatan miniature pigs. NIRS measurements during cardiac arrest were compared to invasively acquired carotid blood pressure and partial oxygen pressure (PO2) of spinal cord tissues. We observed statistically significant decreases in mean arterial pressure (MAP) 64.68 mmHg ± 13.08, p 0.99) and following pentobarbital administration (p = 0.97). Transcutaneous NIRS demonstrated the potential to identify rapid hemodynamic changes due to cardiac arrest in periods similar to invasive indices. We conclude that transcutaneous NIRS monitoring may present a novel, non-invasive approach for SCA detection, which warrants further investigation.