Condition: Nociception · Artificial Intelligence (AI) · Target Controlled Infusion (TCI) · Sponsor: Pontificia Universidad Catolica de Chile
The primary objective of the SEASCAPE project is to design, develop, and to apply a clinical implementation tool of a machine learning (ML) and artificial intelligence (AI)-based co-pilot system for the real-time monitoring and control of nociception during general anesthesia (GA). The ultimate clinical purpose is to optimize individualized pain management by achieving precise titration of intravenous opioids (specifically remifentanil), thereby minimizing the incidence of over- and under-dosing. This optimization is projected to enhance patient outcomes, reduce opioid-related complications, and improve overall cost-effectiveness of anesthetic procedures. The main scientific question guiding this work is: Can a novel algorithm be generated and validated to provide superior analytical precision for analgesic management by reliably differentiating genuine nociceptive responses from confounding physiological variables-such as inadequate neuromuscular blockade or changes in depth of anesthesia-thereby significantly improving the clinical decision-making framework for intraoperative nociception control? This project addresses the recognized challenge in anesthesiology: defining an objective measure to quantify nociception and antinociception during GA. Study Population: Patients scheduled for elective surgical procedures requiring general anesthesia (GA). Existing Intervention: The standard anesthetic regimen includes continuous intravenous infusion of the remifentanil for int…
This description comes directly from the study's public registry record.
Victor Contreras, RN, MSN · +56955049217 · vecontre@uc.cl
Karen Azagra, RA · +56955049217 · karen.azagra@uc.cl
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| Division de Anestesiologia | Santiago, Chile | Not Yet Recruiting |
| Hospital Clinico UC Christus | Santiago, Chile | Recruiting |
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Source record: clinicaltrials.gov/study/NCT07253012