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γ-射线血管内照射治疗计划系统的研制 被引量:1
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作者 於文雪 李松毅 +3 位作者 Pascal Haigron 罗立民 antoine lucas Cecile Moisan 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2002年第4期586-589,共4页
介绍了研究开发的三维血管内照射治疗计划系统 .该治疗计划系统建立在三维医学图像和临床上常用的γ射线源基础之上 ,集成了放射源剂量学数据管理、三维图像处理、治疗计划设计、剂量分布计算与显示、治疗计划评估和打印输出等功能模块 ... 介绍了研究开发的三维血管内照射治疗计划系统 .该治疗计划系统建立在三维医学图像和临床上常用的γ射线源基础之上 ,集成了放射源剂量学数据管理、三维图像处理、治疗计划设计、剂量分布计算与显示、治疗计划评估和打印输出等功能模块 .为了验证治疗计划的有效性 ,文中给出了 2组实验数据 ,一组是与GammaMed治疗计划系统的对比结果 。 展开更多
关键词 血管内照射 治疗计划系统 剂量分布计算 三维图像处理 冠状动脉粥样硬化性心脏病 γ-射线 研制
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VIRTUAL REALITY BASED THREE-DIMENSIONAL GUIDE WIRE PROPAGATION SIMULATION FOR ENDOVASCULAR INTERVENTION 被引量:3
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作者 周正东 Pascal Haigron +1 位作者 Vincent Guilloux antoine lucas 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2010年第1期62-69,共8页
The virtual reality based motion simulation of the guide wire and the catheter inside specific vascular structures can benefit a lot for the endovascular intervention. A fast and well-performed collision cancellation ... The virtual reality based motion simulation of the guide wire and the catheter inside specific vascular structures can benefit a lot for the endovascular intervention. A fast and well-performed collision cancellation algorithm is proposed based on the geometric analysis and the angular propagation (AP), and a 3-D real-time interactive system is developed for the motion simulation of the guide wire and the catheter inside the specific patient vascular. The guide wire or the catheter is modeled as the "multi-body" representation and properties are defined by its intrinsic characteristics. The motion of the guide wire or the catheter inside the vascular is guided by the collision detection and the collision cancellation algorithm. Finally, a relaxation procedure is used to achieve more realistic status. Experimental results show that the behavior of the guide wire or the catheter depends on the defined parameters. The real-time simulation can be achieved. The result shows that the simulation system is effective and promising. 展开更多
关键词 CATHETERS virtual reality guide wire multi-body model endovascular intervention
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