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Clinical Validation of Smartphone-Enabled Pulse Oximetry for Objective Pulp Vitality Assessment: A Diagnostic
Celso Luiz Caldeira1, Stephanie Isabel Diaz Zamalloa1, Claudia Regina Guimaro Sakitani1
1Department of Endodontics, School of Dentistry, University of Sao Paulo, Sao Paulo, São Paulo, Brazil.
Introduction:
Pulse oximetry exhibits great potential for use in endodontic diagnosis as an effective method to assess pulp vitality. Cell phone-integrated oximeters represent an emerging alternative that may offer greater accessibility. This study aimed to investigate the relation between pulp oxygenation rates (%SpO2) and clinical diagnosis of healthy pulp (HP), reversible pulpitis (RP), symptomatic irreversible pulpitis (IP), or pulp necrosis (PN), comparing 2 pulse oximeters (conventional [PO1] and mobile-connected).
Methods:
Thirty affected premolars were grouped according to the clinical diagnosis of RP, IP, or PN and compared to vitality diagnosis by %SpO2 obtained by both pulse oximeters: PO1 and by smartphone-based (PO2). For each affected tooth, 2 additional teeth (adjacent and contralateral) with HP were tested. Statistical analysis was performed using one-way ANOVA with Tukey's post-hoc test.
Results:
The mean %SpO2 values measured by PO1 were 87.7% for RP, 80.5% for IP, 73.2% for PN, and 91.89% for HP. Corresponding values obtained with PO2 were 85.6% (RP), 79.3% (IP), 72.1% (PN), and 90.1% (HP). Significant differences in %SpO2 were observed among RP, IP, and PN groups (P < .05), but not between healthy control subgroups (adjacent and contralateral). PO1 consistently recorded higher oxygen saturation than PO2 across all clinical conditions (P < .05), demonstrating superior discriminatory capability.
Conclusions:
Both pulse oximeters demonstrated significant clinical value for pulp vitality assessment and differentiation of pulpal inflammation stages and necrosis. The smartphone-adapted oximeter has proven to be comparable to PO1 in diagnostic performance, while offering data collection efficiency and clinical workflow integration.
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