Beyond the pulse: Racial disparities in pulse oximetry readings and the influence on intensive care unit readmission rates
成果类型:
Article; Early Access
署名作者:
Zhang, He; Jetley, Gaurav
署名单位:
California State University System; California State Polytechnic University Pomona; Colorado State University System; Colorado State University Fort Collins
刊物名称:
PRODUCTION AND OPERATIONS MANAGEMENT
ISSN/ISSBN:
1059-1478
DOI:
10.1177/10591478261474395
发表日期:
2026
关键词:
experiential quality
sensitivity-analysis
risk-factors
IMPACT
DEFINITIONS
INFORMATION
strategies
admission
inference
sepsis
摘要:
Racial bias in pulse oximetry-a critical noninvasive diagnostic tool that estimates blood oxygen levels using light absorption-has been shown to systematically overestimate oxygen saturation in Black patients, potentially delaying the detection and treatment of hypoxemia. While prior work has focused narrowly on mortality within selected clinical populations or on immediate testing and treatment disparities in emergency department settings, this study investigates how pulse oximetry bias affects a broader and more representative intensive care unit (ICU) cohort, emphasizing highly consequential operational outcomes: supplemental oxygen delivery, within-hospitalization ICU readmission, and remaining hospital length of stay. Using patient-level data from the MIMIC-IV database, we apply a moderated mediation framework to trace the causal pathway from race to treatment to operational failure. We find that under peripheral oxygen saturation-only monitoring, Black patients are 5.2 percentage points less likely than White patients to receive supplemental oxygen. This undertreatment significantly increases the probability of an unplanned ICU readmission, with oxygen delivery reducing readmission risk by 4.8 percentage points, a 37% relative reduction. Furthermore, a separate operational load analysis using ordinary least squares regression indicates that such ICU bounce-backs are associated with an 86% increase in remaining hospital length of stay, pointing to a substantial downstream capacity penalty. To evaluate the mitigating effect of more accurate diagnostic information, we leverage arterial oxygen saturation (SaO2) measurements as a quasi-intervention. We find that the racial disparity in oxygen therapy is substantially attenuated and becomes statistically indistinguishable from zero when SaO2 readings are available, consistent with mitigation of the bias-treatment-outcome cascade. Our findings reveal how diagnostic inaccuracy is an upstream process defect that propagates through clinical decision-making, reinforcing structural disparities and degrading system performance. We contribute to healthcare operations management by modeling technological bias as a driver of costly clinical rework and demonstrating that targeted process changes-such as confirmatory SaO2 testing-can improve healthcare equity and hospital efficiency.