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February 2, 2026Journal of Clinical Medicine0 citationsOpen Access

Pulse Waveform Changes During Vasopressor Therapy Assessed Using Remote Photoplethysmography: A Case Series

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MKMara KlibusVSViktorija SerovaURUldis Rubīns

Key Points

  • The aim was to evaluate the feasibility of remote photoplethysmography (rPPG) in detecting pulse waveform changes during norepinephrine administration in septic shock.
  • Conducted a prospective case series involving three adults with septic shock.
  • Patients received standard sepsis treatment, including norepinephrine to maintain MAP ≥ 65 mmHg.
  • rPPG signals were acquired from the palmar skin under controlled lighting while continuously monitoring invasive arterial pressure.
  • Analyzed averaged rPPG waveforms to extract parameters like perfusion index, dicrotic notch amplitude, and diastolic wave amplitude.
  • Increased norepinephrine doses were linked to higher mean arterial pressure (MAP) and perfusion index (PI).
  • Dicrotic notch and diastolic wave amplitude consistently decreased with increasing norepinephrine administration.
  • These changes aligned with macrocirculatory stabilization, indicating increased vascular tone and modified arterial compliance.

Abstract

Background/Objectives: Septic shock involves severe circulatory and microcirculatory dysfunction and often requires vasopressors to maintain adequate mean arterial pressure (MAP). Conventional monitoring mainly reflects macrocirculation and may not capture changes in vascular tone or microcirculation. Remote photoplethysmography (rPPG) is a contactless optical method that analyzes peripheral pulse waveforms and may offer additional physiological insight during vasopressor therapy. The aim of this study was to assess the feasibility of rPPG for detecting pulse waveform changes associated with norepinephrine administration in septic shock. Methods: Prospective case series included three adult patients (n = 3) with septic shock admitted to the intensive care unit at Pauls Stradins Clinical University Hospital, Riga, Latvia. All patients received standard sepsis treatment, including fluid resuscitation and titrated norepinephrine to maintain MAP ≥ 65 mmHg. Continuous invasive arterial pressure monitoring was performed alongside rPPG signal acquisition from the palmar skin surface under controlled lighting. From averaged rPPG waveforms, perfusion index (PI), dicrotic notch amplitude (c-wave), and diastolic wave amplitude (d-wave) were extracted. Correlations between norepinephrine dose, MAP, and rPPG parameters were explored. Results: Increasing norepinephrine doses were associated with higher MAP and PI in all patients. Dicrotic notch and diastolic wave amplitude decreased consistently. These changes occurred alongside macrocirculatory stabilization and are consistent with increased vascular tone and altered arterial compliance. Conclusions: rPPG demonstrated feasibility for detecting pulse waveform changes during norepinephrine therapy in septic shock; however, larger controlled studies are required for validation.

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Cite This Study

Klibus et al. (2026) studied this question.

synapsesocial.com/papers/6980fe8ac1c9540dea810a86https://doi.org/10.3390/jcm15031118
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