Clinical simulation can integrate knowledge, skills, communication, emotions, and decision-making within a protected environment. However, its educational value is not guaranteed by simulator fidelity or scenario complexity. This article analyzes and integrates theoretical frameworks that explain the transition from supported performance to progressively autonomous clinical action. A conceptual narrative review combined foundational works on the zone of proximal development, scaffolding, cognitive load, experiential learning, reflective practice, skill acquisition, deliberate practice, and social cognitive theory with contemporary evidence and best-practice standards in simulation. The synthesis indicates that learning depends on the calibration among challenge, prior knowledge, cognitive and emotional resources, faculty support, and opportunities for reflection and renewed practice. Based on this integration, a five-moment framework is proposed: diagnosis of the learner’s developmental level; preparation and prebriefing; simulated experience with contingent scaffolding; reflection and conceptualization through debriefing; and renewed practice and transfer. The framework is neither a linear protocol nor a validated model, but a heuristic to guide instructional decisions and adapt support to learners’ progression. Its main contribution is to shift attention from technology to instructional coherence. Clinical autonomy is more likely to develop when simulation design reduces extraneous load, maintains productive difficulty, protects psychological safety, links feedback to performance criteria, and provides repeated opportunities to apply learning.
Keywords (MeSH): Simulation Training; Learning; Self-Efficacy; Clinical Competence; Professional Education.
Citation: Avendaño, R., Cabrera, J., & Arancibia, J. M. (2026). Learning and Autonomy in Clinical Simulation: An Integrative Conceptual Framework. J Nurs Care Repo, 7(3), 1–7. DOI : https://doi.org/10.47485/3065-7636.1053