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CDIO Experiences in Biomedical Engineering: Preparing Spanish Students for the Future of Medicine and Medical Device Technology

机译:CDIO在生物医学工程中的经验:为西班牙学生为医学和医疗器械技术的未来做准备

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摘要

Biomedical engineering is one of the more recent fields of engineering, aimed at the application of engineering principles, methods and design concepts to medicine and biology for healthcare purposes, mainly as a support for preventive, diagnostic or therapeutic tasks. Biomedical engineering professionals are expected to achieve, during their studies and professional practice, considerable knowledge of both health sciences and engineering. Studying biomedical engineering programmes, or combining pre-graduate studies in life sciences with graduate studies in engineering, or vice versa, are typical options for becoming qualified biomedical engineering professionals, although there are additional interesting alternatives, to be discussed.udAccording to our experience, the graduates and post-graduates from multidisciplinary engineering programmes, not just from biomedical engineering, but also from more traditional fields including industrial, mechanical and telecommunications engineering, can play varied and very relevant roles in the biomedical industry and in extremely complex biomedical device development projects. In spite of the different ways of becoming a professional of the biomedical engineering field, it is true that their impact as successful professionals can be importantly increased, by means of an adequate integration into their curricula of fundamental biomedical engineering design concepts, methodologies and good practices, applied to the development of biomedical devices.udIn this study we present the complete development and comparative study of three courses, belonging to different plans of study taught at the Technical University of Madrid and benefiting from using a CDIO approach focused on the development of biomedical devices. The three courses are “Development of Medical Devices”, “Bioengineering Design” and “Biomedical Engineering”, respectively belonging to theud“Bachelor’s Degree in Biomedical Engineering”, to the “Master’s Degree in Industrial Engineering” and to the “Master’s Degree in Mechanical Engineering”. During the courses, groups of students live through the development process of different biomedical devices aimed at providing answers to relevant social needs. Depending on their background and European credits assigned to the different courses, students carry out more conceptual projects or are able to live through more complete CDIO experiences. Main benefits, lessons learned and future challenges, linked to these courses, are analyzed, taking account of the results from 2014-2015 academic year.
机译:生物医学工程学是工程学的最新领域之一,旨在将工程学原理,方法和设计概念应用于医学和生物学以用于医疗保健目的,主要是作为预防,诊断或治疗任务的支持。预计生物医学工程专业人士将在他们的研究和专业实践中获得有关健康科学和工程学的大量知识。学习生物医学工程课程,或将生命科学的研究生课程与工程学的研究生课程相结合,反之亦然,是成为合格的生物医学工程专业人士的典型选择,尽管还有其他有趣的选择要讨论。 ud根据我们的经验,不仅涉及生物医学工程,而且来自包括工业,机械和电信工程在内的更多传统领域的跨学科工程计划的毕业生和研究生,在生物医学行业和极其复杂的生物医学设备开发中都可以发挥各种非常重要的作用项目。尽管成为生物医学工程领域专业人士的方式有所不同,但确实可以通过适当地将其基本生物医学工程设计概念,方法论和良好实践纳入其课程,从而显着提高其作为成功专业人士的影响力。 ud在本研究中,我们介绍了三门课程的完整开发和比较研究,属于马德里工业大学教授的不同学习计划,并且受益于使用专注于医学技术开发的CDIO方法生物医学设备。这三门课程分别是“医疗器械开发”,“生物工程设计”和“生物医学工程”,分别属于“生物医学工程学士学位”,“工业工程硕士学位”和“硕士学位”。机械工程”。在课程中,一群学生生活在不同生物医学设备的开发过程中,旨在为相关的社会需求提供答案。根据他们的背景知识和分配给不同课程的欧洲学分,学生可以开展更多概念性项目,或者能够度过更完整的CDIO体验。结合2014-2015学年的结果,分析了与这些课程相关的主要收益,经验教训和未来挑战。

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