计算模型
软件
心理干预
计算机科学
三维建模
模拟
人机交互
医学
人工智能
精神科
程序设计语言
作者
Nadeen Faza,Serge C. Harb,Dee Dee Wang,Mark van den Dorpel,Nicolas M. Van Mieghem,Stephen H. Little
标识
DOI:10.1016/j.jcmg.2024.01.014
摘要
Structural heart disease interventions rely heavily on preprocedural planning and simulation to improve procedural outcomes and predict and prevent potential procedural complications. Modeling technologies, namely 3-dimensional (3D) printing and computational modeling, are nowadays increasingly used to predict the interaction between cardiac anatomy and implantable devices. Such models play a role in patient education, operator training, procedural simulation, and appropriate device selection. However, current modeling is often limited by the replication of a single static configuration within a dynamic cardiac cycle. Recognizing that health systems may face technical and economic limitations to the creation of "in-house" 3D-printed models, structural heart teams are pivoting to the use of computational software for modeling purposes.
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