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Liu Liu; Yue Chen; Yubin Cao; Lei Yang; Yiyan Yang; Yantong Li; Dingming Huang; Ling Ye; Qinghua Zheng – Anatomical Sciences Education, 2025
Anatomy forms the foundation for the training and execution of routine surgical procedures. However, a gap persists in effectively bridging anatomical knowledge with the confident performance of procedures. Virtual simulation (VS) techniques, based on experiential and situated learning theory, hold promise in addressing this challenge.…
Descriptors: Anatomy, Surgery, Medical Education, Computer Simulation
Bogomolova, Katerina; Vorstenbosch, Marc A. T. M.; El Messaoudi, Inssaf; Holla, Micha; Hovius, Steven E. R.; van der Hage, Jos A.; Hierck, Beerend P. – Anatomical Sciences Education, 2023
Binocular disparity provides one of the important depth cues within stereoscopic three-dimensional (3D) visualization technology. However, there is limited research on its effect on learning within a 3D augmented reality (AR) environment. This study evaluated the effect of binocular disparity on the acquisition of anatomical knowledge and…
Descriptors: Anatomy, Visualization, Technology, Difficulty Level
Labranche, Leah; Wilson, Timothy D.; Terrell, Mark; Kulesza, Randy J. – Anatomical Sciences Education, 2022
Three-dimensional (3D) digital anatomical models show potential to demonstrate complex anatomical relationships; however, the literature is inconsistent as to whether they are effective in improving the anatomy performance, particularly for students with low spatial visualization ability (Vz). This study investigated the educational effectiveness…
Descriptors: Spatial Ability, Computer Simulation, Anatomy, Visualization
Birbara, Nicolette S.; Sammut, Claude; Pather, Nalini – Anatomical Sciences Education, 2020
Technologies such as virtual reality are used in higher education to develop virtual learning resources (VLRs). These VLRs can be delivered in multiple modalities, from truly immersive involving wearable devices to less immersive modalities such as desktop. However, research investigating perceptions of VLRs in anatomy has mainly focused on a…
Descriptors: Anatomy, Computer Simulation, Delivery Systems, Science Instruction
Henssen, Dylan J. H. A.; van den Heuvel, Loes; De Jong, Guido; Vorstenbosch, Marc A. T. M.; van Cappellen van Walsum, Anne-Marie; Van den Hurk, Marianne M.; Kooloos, Jan G. M.; Bartels, Ronald H. M. A. – Anatomical Sciences Education, 2020
Neuroanatomy education is a challenging field which could benefit from modern innovations, such as augmented reality (AR) applications. This study investigates the differences on test scores, cognitive load, and motivation after neuroanatomy learning using AR applications or using cross-sections of the brain. Prior to two practical assignments, a…
Descriptors: Anatomy, Neurology, Brain, Computer Uses in Education
Remmele, Martin; Schmidt, Elena; Lingenfelder, Melissa; Martens, Andreas – Anatomical Sciences Education, 2018
Gross anatomy is located in a three-dimensional space. Visualizing aspects of structures in gross anatomy education should aim to provide information that best resembles their original spatial proportions. Stereoscopic three-dimensional imagery might offer possibilities to implement this aim, though some research has revealed potential impairments…
Descriptors: Anatomy, Visualization, Computer Simulation, Motion
Küçük, Sevda; Kapakin, Samet; Göktas, Yüksel – Anatomical Sciences Education, 2016
Augmented reality (AR), a new generation of technology, has attracted the attention of educators in recent years. In this study, a MagicBook was developed for a neuroanatomy topic by using mobile augmented reality (mAR) technology. This technology integrates virtual learning objects into the real world and allow users to interact with the…
Descriptors: Anatomy, Medical Education, Undergraduate Students, Medical Students