Escuela de Ingenieria y Ciencias, Instituto Tecnologico y de Estudios Superiores de Monterrey Campus Ciudad de Mexico, Distrito Federal, Mexico.
Escuela de Educacion, Humanidades y Ciencias Sociales, Instituto Tecnologico y de Estudios Superiores de Monterrey Campus Ciudad de Mexico, Distrito Federal, Mexico.
J Med Syst. 2016 Apr;40(4):104. doi: 10.1007/s10916-016-0459-8. Epub 2016 Feb 18.
Medical procedures often involve the use of the tactile sense to manipulate organs or tissues by using special tools. Doctors require extensive preparation in order to perform them successfully; for example, research shows that a minimum of 750 operations are needed to acquire sufficient experience to perform medical procedures correctly. Haptic devices have become an important training alternative and they have been considered to improve medical training because they let users interact with virtual environments by adding the sense of touch to the simulation. Previous articles in the field state that haptic devices enhance the learning of surgeons compared to current training environments used in medical schools (corpses, animals, or synthetic skin and organs). Consequently, virtual environments use haptic devices to improve realism. The goal of this paper is to provide a state of the art review of recent medical simulators that use haptic devices. In particular we focus on stitching, palpation, dental procedures, endoscopy, laparoscopy, and orthopaedics. These simulators are reviewed and compared from the viewpoint of used technology, the number of degrees of freedom, degrees of force feedback, perceived realism, immersion, and feedback provided to the user. In the conclusion, several observations per area and suggestions for future work are provided.
医疗程序通常涉及使用特殊工具通过触觉来操作器官或组织。医生需要进行广泛的准备才能成功地进行这些操作;例如,研究表明,需要进行至少 750 次手术才能获得足够的经验来正确执行医疗程序。触觉设备已成为一种重要的培训替代方法,并且被认为可以改善医学培训,因为它们允许用户通过向模拟添加触觉来与虚拟环境进行交互。该领域的先前文章指出,与医学院目前使用的培训环境(尸体,动物或合成皮肤和器官)相比,触觉设备增强了外科医生的学习能力。因此,虚拟环境使用触觉设备来提高逼真度。本文的目的是提供对使用触觉设备的最新医学模拟器的最新技术评估。特别是,我们专注于缝合,触诊,牙科手术,内窥镜检查,腹腔镜检查和矫形外科。从使用的技术,自由度的数量,力反馈的程度,感知的逼真度,沉浸感以及向用户提供的反馈的角度对这些模拟器进行了审查和比较。在结论中,针对每个领域提出了一些观察结果和对未来工作的建议。