CADAVIZTM presented research papers at the International Conference on Energy, Materials, and Information Technology
01st January 2025
We are pleased to inform you that three abstracts submitted by Immersive Labz were selected for a reputed global conference organized by Amity University: The International Conference on Energy, Materials, and Information Technology, which took place in Ranchi, Jharkhand. These abstracts focus on how our technologically advanced product: CADAVIZ, helps in reshaping medical education.
It is an annual event focusing on state-of-the-art technologies pertaining to digital information and communications. The applications of advanced information technology to such domains as astronomy, biology, education, geosciences, security, and health care are among topics of relevance to ITNG. This conference serves as a platform for esteemed researchers, industry professionals, and academicians to share their latest findings, discuss emerging trends, and explore the intersection of these vital domains.
Revolutionizing Medical Education and Research: The Role of Virtual Dissection Tables in Biomaterial Evaluation
The authors emphasize the integration of Virtual Dissection Tables (VDTs) into biomaterial evaluation representing a forward-thinking approach that leverages information technology to address limitations in traditional testing methods. We explore realistic input interactions with virtual models, using VDT in unison with haptics.
Feedback Study Exploring Human-Computer Interaction and UX Design of CADAVIZ (a Virtual Dissection Table)
A study was conducted aiming to assess the medical faculties’ user experience on Cadaviz. Designed with advanced human-computer interaction and UX design principles, Cadaviz facilitates interactive student engagement to help students grasp intricate details of human anatomy.
Cadaviz’s likability was gauged through direct questions and users were asked to comment on the overall product. Based on the analyzed data, it was found that such interactive tools could supplement traditional cadaver-based education. Additionally, the realistic visualization offered by these tables, with detailed and life-size 3D models, was greatly appreciated. The versatility of virtual dissection tables, useful for teaching, research, and surgical planning, was also noted. Overall, virtual dissection tables, enhanced by human-computer design and UX design, were seen as valuable tools in modernizing anatomy education, providing a comprehensive, interactive, and effective means of studying the human body.
Smart Materials and Structures: Revolutionizing Medical Education through Virtual Dissection Technology
The authors highlight the incorporation of smart materials, such as haptic feedback helping educators simulate tactile sensations akin to real tissue, enhancing the cutting and dissection experience. Additionally, adaptive learning features, tailored for virtual organs to respond to student performance, offering targeted feedback that fosters individualized learning. Smart materials replicate critical tissue properties like elasticity and compressibility, deepening students’ understanding of anatomy and physiology.
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