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Grid Environment for Fabricating Custom Artificial Human Bone

机译:用于制造定制人造人骨的网格环境

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摘要

Computer assisted instruction in biomedical engineering (BME) education has been explored and changed dramatically in decades. In this paper we presents a new educational Grid Environment for BME courses. It is designed to be suitable for supporting for the education of medical instrumentation. In emergent situation it helps students to manipulate Rapid Prototyping Machine to fabricate custom artificial human. A rapid prototyping process chain (RPPC), which combines time limits, cost of CT scans, parallelism in computer simulations and bone fabrication, was integrated as workflow in grid service. The grid involves a synthesis of coordinated examinations and large scale, parallel artificial human bones simulations. The portal at students sides need only a thin client and can be accessed by a standard web browser. To illustrate the application of our approach in the grid environment, a femur fabrication case is presented to show its fast and reliable results.
机译:数十年来,对生物医学工程(BME)教育中的计算机辅助教学进行了探索并发生了巨大变化。在本文中,我们为BME课程提供了一种新的教育网格环境。它旨在适合支持医疗仪器的教育。在紧急情况下,它可以帮助学生操纵快速成型机来制造定制的人造人。快速建模流程链(RPPC)结合了时间限制,CT扫描成本,计算机仿真和骨骼制造中的并行性,已作为网格服务中的工作流进行了集成。网格包括协调检查和大规模,并行的人造人骨模拟的综合。学生侧的门户仅需要一个瘦客户端,并且可以通过标准的Web浏览器访问。为了说明我们的方法在网格环境中的应用,提出了一种股骨制造案例,以显示其快速而可靠的结果。

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