一种多维时序生物力学有限元结果沉浸式可视化方法

By using medical image 3D reconstruction and augmented reality technology, finite element result data is mapped into augmented reality scenes, solving the problem of insufficient visualization in human tissue biomechanical analysis using finite element software. This enables immersive visualization and cross-platform data sharing, improving doctors' diagnostic efficiency.

CN115984507BActive Publication Date: 2026-07-17KUNMING UNIV OF SCI & TECH

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
KUNMING UNIV OF SCI & TECH
Filing Date
2022-12-29
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing finite element software suffers from insufficient visualization capabilities when handling large-scale human tissue biomechanical analysis, failing to achieve immersive 3D display. Furthermore, data format incompatibility between different software programs leads to low data processing efficiency, making it difficult to meet the diagnostic and treatment needs of doctors.

Method used

A three-dimensional finite element model is constructed using medical image 3D reconstruction technology. Combined with augmented reality technology, the finite element result data is mapped onto the augmented reality scene. Through multi-dimensional temporal model fusion and virtual visualization module, the model is dynamically loaded and sectioned, providing an immersive visualization experience.

Benefits of technology

It enables immersive visualization of human tissue structures under load, providing an immersive experience with virtual-real comparison, improving doctors' understanding of the model and the efficiency of diagnosis and treatment planning, breaking down data barriers between different platforms, and supporting smooth visualization and dissection operations.

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Abstract

本发明涉及医疗辅助领域,具体涉及一种多维时序生物力学有限元结果沉浸式可视化方法,具体涉及:医学图像三维重建模块将图像重建为三维模型;医用生物力学分析模块进行有限元仿真,获得所需的动态几何模型及对应的物理属性数据;多维时序模型融合构建及映射模块对有限元结果数据进行有效提取,融合构建的时序模型,并映射到虚拟场景中;虚拟可视化模块实现模型相关功能;沉浸式可视化模块结合UI,根据需要发布至目标平台。本发明能够实现人体组织结构的有限元结果沉浸式可视化。通过本发明,改变了传统上医生通过二维图像查看患者病情的情形,极大促进了数字医疗的应用,有效解决了病人术前规划和术后康复指导措施难的问题。
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