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Deborah J. Rogers; Brennan P. Bergeron; Glen M. Watson; Karen Müller Smith – Journal of Biological Education, 2024
Live cell imaging is a standard technique in experimental biology that enables the observation of isolated cells and tissue slices in real time and the testing of cellular responses to changes in buffer composition. However, most live cell imaging devices require the use of dedicated microscopes and/or specialised stage adaptors, and come at a…
Descriptors: Laboratory Procedures, Science Instruction, Teaching Methods, Cytology
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Yang, Jack X.; DeYoung, Veronica; Xue, Yuanxin; Nehru, Amit; Hildebrand, Alexandra; Brewer-Deluce, Danielle; Wainman, Bruce – Anatomical Sciences Education, 2023
Three-dimensional (3D) scanning and printing technology has allowed for the production of anatomical replicas at virtually any size. But what size optimizes the educational potential of 3D printing models? This study systematically investigates the effect of model size on nominal anatomy learning. The study population of 380 undergraduate…
Descriptors: Manipulative Materials, Anatomy, Computer Peripherals, Undergraduate Students
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Grad, Piotr; Przeklasa-Bierowiec, Anna M.; Malinowski, Krzysztof P.; Witowski, Jan; Proniewska, Klaudia; Taton, Grzegorz – Anatomical Sciences Education, 2023
Tooth anatomy is fundamental knowledge used in everyday dental practice to reconstruct the occlusal surface during cavity fillings. The main objective of this project was to evaluate the suitability of two types of anatomical tooth reference models used to support reconstruction of the occlusal anatomy of the teeth: (1) a three-dimensional…
Descriptors: Dentistry, Medical Education, Graduate Students, Anatomy
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Harmon, Derek J.; Klein, Barbie A.; Im, Cecilia; Romero, Dylan – Anatomical Sciences Education, 2022
Three-dimensional (3D) printing technology has become more affordable, accessible, and relevant in healthcare, however, the knowledge of transforming medical images to physical prints still requires some level of training. Anatomy educators can play a pivotal role in introducing learners to 3D printing due to the spatial context inherent to…
Descriptors: Computer Peripherals, Printing, Anatomy, Spatial Ability
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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
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Yang, Mao-Yi; Tseng, Hsien-Chun; Liu, Chiung-Hui; Tsai, Shao-Yu; Chen, Jyun-Hsiung; Chu, Yin-Hung; Li, Shao-Ti; Lee, Jian-Jr; Liao, Wen-Chieh – Anatomical Sciences Education, 2023
Understanding the three-dimensional (3D) structure of the human skull is imperative for medical courses. However, medical students are overwhelmed by the spatial complexity of the skull. Separated polyvinyl chloride (PVC) bone models have advantages as learning tools, but they are fragile and expensive. This study aimed to reconstruct 3D-printed…
Descriptors: Computer Peripherals, Printing, Human Body, Anatomy
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Levi C. Ofoe – Perspectives of the ASHA Special Interest Groups, 2025
Purpose: This study examined the learning experiences of speech-language pathology students after creating three-dimensional (3D) anatomical models as part of an undergraduate Anatomy and Physiology course. Method: A total of 44 undergraduate students used 3D software programs to design anatomical components (e.g., larynx, brainstem, brain cortex,…
Descriptors: Speech Language Pathology, Allied Health Occupations Education, Student Attitudes, Anatomy
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Tanner, Jordan A.; Jethwa, Beeran; Jackson, Jeff; Bartanuszova, Maria; King, Thomas S.; Bhattacharya, Arunabh; Sharma, Ramaswamy – Anatomical Sciences Education, 2020
The pterygopalatine fossa (PPF) is a bilateral space deep within the skull that serves as a major neurovascular junction. However, its small volume and poor accessibility make it a difficult space to comprehend using two-dimensional illustrations and cadaveric dissections. A three-dimensional (3D) printed model of the PPF was developed as a visual…
Descriptors: Anatomy, Medical Education, Computer Peripherals, Printing
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Valverde, Israel; Gomez, Gorka; Byrne, Nick; Anwar, Shafkat; Silva Cerpa, Miguel Angel; Martin Talavera, Maria; Pushparajah, Kuberan; Velasco Forte, Maria Nieves – Anatomical Sciences Education, 2022
The utility of three-dimensional (3D) printed models for medical education in complex congenital heart disease (CHD) is sparse and limited. The purpose of this study was to evaluate the utility of 3D printed models for medical education in criss-cross hearts covering a wide range of participants with different levels of knowledge and experience,…
Descriptors: Medical Education, Anatomy, Computer Peripherals, Heart Disorders
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Backhouse, Simon; Taylor, Darci; Armitage, James A. – Anatomical Sciences Education, 2019
Understanding orbital anatomy is important for optometry students, but the learning resources available are often fragile, expensive, and accessible only during scheduled classes. Drawing on a constructivist, personalized approach to learning, this study investigated students' perceptions of an alternative learning resource: a three-dimensional…
Descriptors: Anatomy, Optometry, College Students, Student Attitudes
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Li, Fangzheng; Liu, Chunying; Song, Xuexiong; Huan, Yanjun; Gao, Shansong; Jiang, Zhongling – Anatomical Sciences Education, 2018
Access to adequate anatomical specimens can be an important aspect in learning the anatomy of domestic animals. In this study, the authors utilized a structured light scanner and fused deposition modeling (FDM) printer to produce highly accurate animal skeletal models. First, various components of the bovine skeleton, including the femur, the…
Descriptors: Anatomy, Animals, Models, Computer Peripherals
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Mogali, Sreenivasulu Reddy; Yeong, Wai Yee; Tan, Heang Kuan Joel; Tan, Gerald Jit Shen; Abrahams, Peter H.; Zary, Nabil; Low-Beer, Naomi; Ferenczi, Michael Alan – Anatomical Sciences Education, 2018
For centuries, cadaveric material has been the cornerstone of anatomical education. For reasons of changes in curriculum emphasis, cost, availability, expertise, and ethical concerns, several medical schools have replaced wet cadaveric specimens with plastinated prosections, plastic models, imaging, and digital models. Discussions about the…
Descriptors: Medical Students, Student Evaluation, Computer Peripherals, Printing
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Smith, Claire F.; Tollemache, Nicholas; Covill, Derek; Johnston, Malcolm – Anatomical Sciences Education, 2018
Understanding the three-dimensional (3D) nature of the human form is imperative for effective medical practice and the emergence of 3D printing creates numerous opportunities to enhance aspects of medical and healthcare training. A recently deceased, un-embalmed donor was scanned through high-resolution computed tomography. The scan data underwent…
Descriptors: Computer Peripherals, Printing, Technology Uses in Education, Anatomy
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Carleton, Renee E. – Bioscene: Journal of College Biology Teaching, 2012
Computer-aided learning (CAL) is used increasingly to teach anatomy in post-secondary programs. Studies show that augmentation of traditional cadaver dissection and model examination by CAL can be associated with positive student learning outcomes. In order to reduce costs associated with the purchase of skeletons and models and to encourage study…
Descriptors: Computer Assisted Instruction, Computers, Anatomy, Internet