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Three-dimensional printing models in congenital heart disease education for medical students: a controlled comparative study

机译:医学生先天性心脏病教育的三维打印模型:对照比较研究

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This study sought to assess, using subjective (self-assessment) and objective (MCQ) methods, the efficacy of using heart models with ventricular septal defect lesions produced with three-dimensional printing technology in a congenital heart disease curriculum for medical students. Three computed tomography datasets of three subtypes of ventricular septal defects (perimembranous, subarterial and muscular, one for each) were obtained and processed for building into and printing out 3D models. Then a total of 63 medical students in one class were randomly allocated to two groups (32 students in the experimental, and 31 the control). The two groups participated in a seminar with or without a 3D heart model, respectively. Assessment of this curriculum was carried out using Likert-type questionnaires as well as an objective multiple choice question test assessing both knowledge acquisition, and structural conceptualization. Open-ended questions were also provided for getting advice and suggestion on 3D model utilization in CHD education. With these 3D models, feedback shown in the questionnaires from students in experimental group was significantly more positive than their classmates in the control. And the test results also showed a significant difference in structural conceptualization in favor of the experimental group. It is effective to use heart models created using current 3D printing technology for congenital heart disease education. It stimulates students’ interest in congenital heart disease and improves the outcomes of medical education.
机译:本研究试图通过主观(自我评估)和客观(MCQ)方法评估在医学生的先天性心脏病课程中使用通过三维打印技术产生的具有室间隔缺损病变的心脏模型的功效。获得了三个室间隔缺损亚型的三个计算机断层摄影数据集(膜周围,动脉下和肌肉各一种),并进行了处理,以建立和打印3D模型。然后将一班总共63名医学生随机分配到两组中(实验组32名,对照组31名)。两组分别参加了有或没有3D心脏模型的研讨会。该课程的评估是使用李克特型问卷以及客观的多项选择题测验来评估知识获取和结构概念化的。还提供了开放式问题,以便在CHD教育中获得有关3D模型使用的建议。使用这些3D模型,实验组学生的问卷调查表中显示的反馈比对照组的同学积极得多。测试结果还显示出结构概念上的显着差异,有利于实验组。将使用当前3D打印技术创建的心脏模型用于先天性心脏病教育是有效的。它激发了学生对先天性心脏病的兴趣,并改善了医学教育的成果。

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