Jennifer N Avari Silva, Michael K Southworth, Christopher M Andrews, Mary Beth Privitera, Alexander B Henry, Jonathan R Silva
{"title":"在虚拟、增强和混合现实医疗应用中与二维和三维医学图像交互和导航的设计考虑。","authors":"Jennifer N Avari Silva, Michael K Southworth, Christopher M Andrews, Mary Beth Privitera, Alexander B Henry, Jonathan R Silva","doi":"10.1007/978-3-030-77599-5_10","DOIUrl":null,"url":null,"abstract":"<p><p>The extended realities, including virtual, augmented, and mixed realities (VAMR) have recently experienced significant hardware improvement resulting in an expansion in medical applications. These applications can be classified by the target end user (for instance, classifying applications as patient-centric, physician-centric, or both) or by use case (for instance educational, diagnostic tools, therapeutic tools, or some combination). When developing medical applications in VAMR, careful consideration of both the target end user and use case must heavily influence design considerations, particularly methods and tools for interaction and navigation. Medical imaging consists of both 2-dimensional and 3-dimensional medical imaging which impacts design, interaction, and navigation. Additionally, medical applications need to comply with regulatory considerations which will also influence interaction and design considerations. In this manuscript, the authors explore these considerations using three VAMR tools being developed for cardiac electrophysiology procedures.</p>","PeriodicalId":93505,"journal":{"name":"Virtual, augmented and mixed reality : 13th International Conference, VAMR 2021, held as part of the 23rd HCI International Conference, HCII 2021, Virtual event, July 24-29, 2021, Proceedings. VAMR (Conference) (13th : 2021 : Online)","volume":"12770 ","pages":"117-133"},"PeriodicalIF":0.0000,"publicationDate":"2021-07-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8786214/pdf/nihms-1769125.pdf","citationCount":"2","resultStr":"{\"title\":\"Design Considerations for Interacting and Navigating with 2 Dimensional and 3 Dimensional Medical Images in Virtual, Augmented and Mixed Reality Medical Applications.\",\"authors\":\"Jennifer N Avari Silva, Michael K Southworth, Christopher M Andrews, Mary Beth Privitera, Alexander B Henry, Jonathan R Silva\",\"doi\":\"10.1007/978-3-030-77599-5_10\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>The extended realities, including virtual, augmented, and mixed realities (VAMR) have recently experienced significant hardware improvement resulting in an expansion in medical applications. These applications can be classified by the target end user (for instance, classifying applications as patient-centric, physician-centric, or both) or by use case (for instance educational, diagnostic tools, therapeutic tools, or some combination). When developing medical applications in VAMR, careful consideration of both the target end user and use case must heavily influence design considerations, particularly methods and tools for interaction and navigation. Medical imaging consists of both 2-dimensional and 3-dimensional medical imaging which impacts design, interaction, and navigation. Additionally, medical applications need to comply with regulatory considerations which will also influence interaction and design considerations. 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Design Considerations for Interacting and Navigating with 2 Dimensional and 3 Dimensional Medical Images in Virtual, Augmented and Mixed Reality Medical Applications.
The extended realities, including virtual, augmented, and mixed realities (VAMR) have recently experienced significant hardware improvement resulting in an expansion in medical applications. These applications can be classified by the target end user (for instance, classifying applications as patient-centric, physician-centric, or both) or by use case (for instance educational, diagnostic tools, therapeutic tools, or some combination). When developing medical applications in VAMR, careful consideration of both the target end user and use case must heavily influence design considerations, particularly methods and tools for interaction and navigation. Medical imaging consists of both 2-dimensional and 3-dimensional medical imaging which impacts design, interaction, and navigation. Additionally, medical applications need to comply with regulatory considerations which will also influence interaction and design considerations. In this manuscript, the authors explore these considerations using three VAMR tools being developed for cardiac electrophysiology procedures.