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首页> 外文期刊>Journal of endourology >Synthetic torso for training in and evaluation of urologic laparoscopic skills.
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Synthetic torso for training in and evaluation of urologic laparoscopic skills.

机译:用于训练和评估泌尿科腹腔镜检查技能的合成躯干。

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BACKGROUND: The expanding use of advanced minimally invasive surgical techniques demands more advanced training methods, objective measures of resident performance, and more realistic and anatomically correct training models. MATERIALS AND METHODS: A new synthetic torso for urologic laparoscopy training was developed and assessed. The trainer, Lapman, was based on the Visible Human Model and has the exact shape of a human torso. The torso models the outer shape of the body and the abdominal and pulmonary cavities. Animal or synthetic models of the abdominal organs may be placed in the abdominal cavity. An abdominal wall provides access and seals the cavity and can be replaced after repeated punctures with laparoscopic instruments. The thoracic cavity connects to a pneumatic pump to simulate breathing. In order to render realistic mechanic properties, the torso is cast of materials with elastic properties similar to those of soft tissue and incorporates a synthetic skeleton. These similar mechanical properties and the thoracic insufflation create realistic ventilatory motion simulation. RESULTS: Twenty-five individuals--medical students, residents, and attending urologists--participated in a study comparing Lapman with a standard training box. Lapman presented several advantages over the traditional training box, specifically with regard to internal and external views and the incorporation of a realistically shaped abdominal wall. A significant and recurrent theme was the value of the synthetic wall as a tool to gain a greater appreciation of the importance of port placement. Study participants at all levels of training appreciated that Lapman gives a more realistic approximation of the operative procedure. CONCLUSIONS: The novelty of the trainer consists in its anatomic shape, realistic mechanical properties, and ventilatory simulation. This paper reports on its design, construction, and preliminary tests.
机译:背景:先进的微创外科技术的广泛使用要求更先进的训练方法,住院医师表现的客观测量以及更切合实际和解剖学上正确的训练模型。材料与方法:开发并评估了一种用于泌尿外科腹腔镜训练的新型合成躯干。培训师拉普曼(Lapman)基于可见的人体模型,具有人体躯干的确切形状。躯干模拟身体的外部形状以及腹腔和肺腔。可以将腹腔器官的动物模型或合成模型放置在腹腔中。腹壁可通达并密封腔体,可通过腹腔镜器械反复穿刺后进行更换。胸腔连接到气动泵以模拟呼吸。为了呈现逼真的机械特性,躯干由具有类似于软组织的弹性特性的材料铸造而成,并包含合成骨架。这些相似的机械性能和胸部吹气创建了逼真的通风运动模拟。结果:有25位个体-医学生,住院医师和泌尿科专科医生-参加了一项将Lapman与标准培训箱进行比较的研究。 Lapman展示了优于传统训练箱的几个优点,特别是在内部和外部视图以及结合实际形状的腹壁方面。一个重要且经常性的主题是合成墙作为一种工具的价值,可以使人们更加了解港口的重要性。所有培训级别的研究参与者都赞赏Lapman对手术过程给出了更现实的近似。结论:该教练机的新颖之处在于其解剖学形状,逼真的机械性能和通气模拟。本文报告了其设计,构造和初步测试。

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