Comparative Analysis of Stress Responses in Medical Students Using Virtual Reality Versus Traditional 3D-Printed Mannequins for Pericardiocentesis Training

Alberto Rubio-Lopez, Rodrigo García Carmona, Laura Zarandieta Román, Alejandro Rubio-Navas, Ángel González Pinto, Pablo Cardinal-Fernández
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Abstract

Background: As medical education evolves, innovative methods like virtual reality (VR) and 3D-printed mannequins are increasingly used to simulate high-stress medical scenarios realistically. This study investigates the effectiveness of VR and 3D-printed mannequins in replicating stress levels during pericardiocentesis training, comparing their impact on the emotional and physiological responses of learners. Methods: We enrolled 108 final-year medical students who were randomized to train with both VR and 3D-printed mannequins. Heart rate variability (HRV) analysis was employed to assess stress responses. Additionally, a secondary analysis examined the influence of demographic factors, lifestyle, medication use, and academic stress on these responses. Results: Both VR and traditional mannequin-based training methods proved equally effective in simulating the stress levels encountered in real medical procedures. Our findings indicate significant interactions between stress markers and demographic factors, which highlights the complex nature of stress responses in medical education and underscores the necessity for personalized training approaches. Conclusion: The study validates the use of VR as a viable alternative to traditional mannequins, capable of simulating the technical skills and emotional pressures of medical procedures such as pericardiocentesis. Incorporating VR into medical training programs may enhance learning outcomes and accessibility, particularly in settings constrained by resources.
在心包穿刺术培训中使用虚拟现实与传统 3D 打印人体模型对医科学生应激反应的比较分析
背景:随着医学教育的发展,虚拟现实(VR)和三维打印人体模型等创新方法越来越多地被用于真实模拟高压力医学场景。本研究调查了 VR 和 3D 打印人体模型在复制心包穿刺术培训过程中的压力水平方面的有效性,比较了它们对学习者情绪和生理反应的影响。培训方法我们招募了 108 名应届医科学生,随机让他们使用 VR 和 3D 打印人体模型进行培训。采用心率变异性(HRV)分析评估压力反应。此外,我们还对人口统计因素、生活方式、药物使用和学习压力对这些反应的影响进行了二次分析。研究结果在模拟真实医疗过程中遇到的压力水平方面,VR 和传统人体模型培训方法证明同样有效。我们的研究结果表明,压力标记与人口统计学因素之间存在明显的相互作用,这突出了医学教育中压力反应的复杂性,并强调了个性化培训方法的必要性。结论这项研究证实了使用 VR 替代传统人体模型是可行的,它能够模拟心包穿刺术等医疗程序中的技术技能和情绪压力。将虚拟现实技术融入医学培训项目可提高学习效果和可及性,尤其是在资源有限的情况下。
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