Enhancing anatomy education using anatomical sign language: expanding its expressive capabilities to the upper and lower extremities, face, and brain structures.

IF 1.4 Q3 ANATOMY & MORPHOLOGY
Mi-Sun Hur, Dong-Su Jang, Chang-Seok Oh
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引用次数: 0

Abstract

Various information technologies have been introduced for anatomy education in the current digital era, including three-dimensional (3D) virtual reality, mobile augmented reality, and 3D printing. While these technologies enhance educational effectiveness, their high cost often restricts their accessibility. Conversely, low-cost methods using everyday items have proven effective in anatomy education. The anatomical sign language (ASL) method has been introduced, and uses the fingers, hands, and arms to represent anatomical structures to leverage muscle memory to aid the retention and understanding of complex anatomical structures and provide a comprehensive and interactive approach to anatomy education. This study was performed to expand ASL to include the expressive capabilities of the upper and lower extremities, and the face and brain. The results indicate that ASL effectively illustrates the anatomy of various structures. The educational benefits of ASL for anatomy and radiologic anatomy education are discussed.

利用解剖学手语加强解剖学教育:将其表达能力扩展到上下肢、面部和大脑结构。
在当今的数字时代,解剖学教育已经引入了各种信息技术,包括三维(3D)虚拟现实、移动增强现实和3D打印。虽然这些技术提高了教育效果,但其高昂的成本往往限制了其可及性。相反,使用日常用品的低成本方法在解剖学教育中被证明是有效的。介绍了解剖手语(ASL)方法,该方法使用手指、手和手臂来表示解剖结构,利用肌肉记忆来帮助保留和理解复杂的解剖结构,并为解剖学教育提供了一种全面和互动的方法。本研究旨在扩大美国手语的表达能力,包括上肢和下肢,面部和大脑。结果表明,ASL有效地说明了各种结构的解剖。本文讨论了美国手语在解剖学和放射学解剖学教学中的教学效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Anatomy & Cell Biology
Anatomy & Cell Biology ANATOMY & MORPHOLOGY-
CiteScore
1.80
自引率
9.10%
发文量
75
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