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Geetika Ail; Frances Freer; Chui Shan Chan; Melissa Jones; John Broad; Gian Paulo Canale; Pedro Elston; Jessica Leeney; Paula Vickerton – Anatomical Sciences Education, 2024
Immersive virtual reality (i-VR) is a powerful tool that can be used to explore virtual models in three dimensions. It could therefore be a valuable tool to supplement anatomical teaching by providing opportunities to explore spatial anatomical relationships in a virtual environment. However, there is a lack of consensus in the literature as to…
Descriptors: Computer Simulation, Models, Anatomy, Premedical Students
Malak A. Alghamdi; Reem Bu Saeed; Waad Fudhah; Danah Alqarni; Shahad Albarzan; Sheifa Alamoudi; Muhammad Anwar Khan – Cogent Education, 2024
Anatomy education employs diverse teaching techniques worldwide, causing debates over the effectiveness of traditional versus newer methods. This study sought to investigate medical students' preferences for teaching methods in their institutions and provide recommendations for an optimal anatomy education model. In this cross-sectional study, all…
Descriptors: Student Attitudes, Medical Students, Teaching Methods, Anatomy
Jinga, Maria-Ruxandra; Lee, Rachel B. Y.; Chan, Kai Lok; Marway, Prabhvir S.; Nandapalan, Krishan; Rhode, Kawal; Kui, Christopher; Lee, Matthew – Anatomical Sciences Education, 2023
Three-dimensional (3D) segmentation, a process involving digitally marking anatomical structures on cross-sectional images such as computed tomography (CT), and 3D printing (3DP) are being increasingly utilized in medical education. Exposure to this technology within medical schools and hospitals remains limited in the United Kingdom. M3dicube UK,…
Descriptors: Computer Simulation, Computer Peripherals, Printing, Anatomy
Lindokuhle Ubisi; Wandile Tsabedze – Health Education Journal, 2024
Background: Despite anatomically correct models (ACMs) being recommended internationally for their ability to serve as real-life, age-appropriate, and practical models in comprehensive sexuality education (CSE) for learners with visual impairment, there is still limited research exploring South African teachers' views regarding their use.…
Descriptors: Visual Impairments, Students with Disabilities, Models, Anatomy
Kazoka, Dzintra; Pilmane, Mara; Edelmers, Edgars – Education Sciences, 2021
Combining classical educational methods with interactive three-dimensional (3D) visualization technology has great power to support and provide students with a unique opportunity to use them in the study process, training, and/or simulation of different medical procedures in terms of a Human Anatomy course. In 2016, Riga Stradinš University (RSU)…
Descriptors: Visual Aids, Manipulative Materials, Anatomy, Foreign Countries
Utami, Sekar Wiji; Sunandar, Ari; Kurniawan, Arif Didik – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2020
Two problem solving cycles are problem-based learning with two learning cycles that can improve students' higher order thinking skills. The knowledge of reproductive health is needed by the student, due to the student as future generation must be ready to facing the reproductive health problem in the future. This study aimed to determine the…
Descriptors: Problem Solving, Thinking Skills, Anatomy, Foreign Countries
Teresa Zamalloa; Araitz Uskola; Ainara Achurra – Journal of Baltic Science Education, 2023
The human nutrition model is relevant in Biology education. Researchers and policymakers propose the introduction of modelling practices in science education, including the representation of the model. Despite being scarce, previous studies have shown that the guideline given to students conditions their performance when representing their models.…
Descriptors: Nutrition, Biology, Science Instruction, Preservice Teachers
Andrade, Eric Francelino; Zaine Teixeira Debortoli, Gabriele; Gomes Batista, Victor Luiz; Newton Bizetto Meira de Andrade, James; Orlando, Débora Ribeiro; Rocha Lobo-Junior, Adalfredo – Journal of Biological Education, 2022
Learning the physiology of the cardiovascular system can be difficult for students, but the use of active teaching methodologies can help and enhance learning. To facilitate the understanding of how the cardiovascular system works, we built a functional model for Veterinary Medicine students attending a cardiovascular physiology lecture and…
Descriptors: Physiology, Veterinary Medical Education, Teaching Methods, Active Learning
Turan Güntepe, Ebru; Dönmez Usta, Necla – Journal of Science Learning, 2021
The study aimed to examine AR-based teaching material's effect on viscera learning through algorithmic thinking by the primary school teacher candidates who are sophomores in the classroom teaching department in the spring term of the 2018-2019 academic year at a state university in the Eastern Black Sea and selected by convenience method. Viscera…
Descriptors: Computer Simulation, Teaching Methods, Thinking Skills, Computation
Balta, Joy Y.; Cronin, Michael; Cryan, John F.; O'Mahony, Siobhain M. – Anatomical Sciences Education, 2017
Utilizing reality anatomy such as dissection and demonstrating using cadavers has been described as a superior way to create meaning. The chemicals used to embalm cadavers differentially alter the tissue of the human body, which has led to the usage of different processes along the hard to soft-fixed spectrum of preserved cadavers. A questionnaire…
Descriptors: Teaching Methods, Human Body, Anatomy, Questionnaires
Fernandes, Jacks; Teles, Ariel; Teixeira, Silmar – Education Sciences, 2020
Health education is one of the knowledge areas in which augmented reality (AR) technology is widespread, and it has been considered as a facilitator of the learning process. In literature, there are still few studies detailing the role of mobile AR in neuroanatomy. Specifically, for the spinal cord, the teaching-learning process may be hindered…
Descriptors: Health Education, Computer Simulation, Telecommunications, Handheld Devices
Remmele, Martin; Martens, Andreas – Advances in Physiology Education, 2019
Sculpting representations of human organs out of modeling clay is an acknowledged method of teaching anatomical structures. Because of its potential to provide detailed spatial information, stereoscopic imagery can be understood to function as a suitable template for such sculpting tasks. Currently, it is unknown whether the advantages of…
Descriptors: Visualization, Spatial Ability, Hands on Science, Science Education
Gnidovec, Tanja; Žemlja, Mojca; Dolenec, Andreja; Torkar, Gregor – Journal of Science Education and Technology, 2020
Learning the basics of human anatomy is challenging for schoolchildren due to its three-dimensional nature and complexity as a system. This study created educational materials for learning about and teaching the human circulatory system based on augmented reality (AR) technology and a structure-behavior-function (SBF) model, including 2D/3D…
Descriptors: Computer Simulation, Anatomy, Human Body, Teaching Methods
Validation of Clay Modeling as a Learning Tool for the Periventricular Structures of the Human Brain
Akle, Veronica; Peña-Silva, Ricardo A.; Valencia, Diego M.; Rincón-Perez, Carlos W. – Anatomical Sciences Education, 2018
Visualizing anatomical structures and functional processes in three dimensions (3D) are important skills for medical students. However, contemplating 3D structures mentally and interpreting biomedical images can be challenging. This study examines the impact of a new pedagogical approach to teaching neuroanatomy, specifically how building a…
Descriptors: Anatomy, Visualization, Brain, Medical Education
Hidayati, Nuril; Irmawati, Farizha – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2019
The development of multimedia based on science, technology, engineering, and mathematics (STEM) to empower students critical thinking skills has not been optimally carried out. The purpose of this research was to develop multimedia of human anatomy and physiology material based on STEM which improve students' critical thinking skills. This…
Descriptors: Physiology, Anatomy, Science Instruction, Likert Scales