中国科技论文
中國科技論文
중국과기논문
Sciencepaper Online
2012年
4期
286-289
,共4页
梁书立%张子明%施远征%杨延雷%卢旺
樑書立%張子明%施遠徵%楊延雷%盧旺
량서립%장자명%시원정%양연뢰%로왕
数据采集%几何建模%碰撞检测%磁性跟踪器
數據採集%幾何建模%踫撞檢測%磁性跟蹤器
수거채집%궤하건모%팽당검측%자성근종기
data acquisition%geometric modeling%collision detection%magnetic tracker
针对医学模拟教学和微创手术技能培训开发了虚拟腹部微创手术操作平台,可非常逼真地描绘腹部微创手术的真实环境并符合医学基本伦理,能够模拟常用手术器械和腹腔内器官组织,实现人机实时交互。平台分为硬件设计和软件设计两大部分。硬件设计包括主控制器、数据采集单元和操作平台结构单元。硬件部分主要负责数据采集及处理。软件设计包括主机单元、几何建模单元和碰撞检测单元。软件部分主要负责手术器械和器官以及病例的选择、几何建模,包括常用手术器械,例如手术剪刀、手术钳以及腹腔内器官组织。实验结果证明,虚拟腹部微创手术操作平台适用于高校的医学教学和医疗机构人员的培训,能提高我国医学模拟教学水平并与国际接轨。
針對醫學模擬教學和微創手術技能培訓開髮瞭虛擬腹部微創手術操作平檯,可非常逼真地描繪腹部微創手術的真實環境併符閤醫學基本倫理,能夠模擬常用手術器械和腹腔內器官組織,實現人機實時交互。平檯分為硬件設計和軟件設計兩大部分。硬件設計包括主控製器、數據採集單元和操作平檯結構單元。硬件部分主要負責數據採集及處理。軟件設計包括主機單元、幾何建模單元和踫撞檢測單元。軟件部分主要負責手術器械和器官以及病例的選擇、幾何建模,包括常用手術器械,例如手術剪刀、手術鉗以及腹腔內器官組織。實驗結果證明,虛擬腹部微創手術操作平檯適用于高校的醫學教學和醫療機構人員的培訓,能提高我國醫學模擬教學水平併與國際接軌。
침대의학모의교학화미창수술기능배훈개발료허의복부미창수술조작평태,가비상핍진지묘회복부미창수술적진실배경병부합의학기본윤리,능구모의상용수술기계화복강내기관조직,실현인궤실시교호。평태분위경건설계화연건설계량대부분。경건설계포괄주공제기、수거채집단원화조작평태결구단원。경건부분주요부책수거채집급처리。연건설계포괄주궤단원、궤하건모단원화팽당검측단원。연건부분주요부책수술기계화기관이급병례적선택、궤하건모,포괄상용수술기계,례여수술전도、수술겸이급복강내기관조직。실험결과증명,허의복부미창수술조작평태괄용우고교적의학교학화의료궤구인원적배훈,능제고아국의학모의교학수평병여국제접궤。
A virtual platform for minimally invasive abdominal surgery has been developed for medical simulation teaching and training of minimally invasive surgical skills. The platform can describe realistic environment of minimally invasive abdominal surgery and accord with basic medical ethics. It can also simulate commonly used surgical instruments as well as intra-abdominal organs organization, achieving real-time human-computer interactions. The platform is divided into two parts, i.e., hardware design and sottware design. The hardware design consists of a main controller, a data acquisition unit and an operating platform structure unit. The hardware part is mainly responsible for data acquisition and processing. The software design consists of a host unit, a geometric modeling unit and a collision detection unit. The software part is mainly responsible for choices of the major organs and surgical instruments and cases, and geometric modeling which includes surgical instruments, such as surgical scissors, forceps as well as intra-abdominal organs organization. Experimental results show that the virtual platform for minimally invasive abdominal surgery is suitable for teaching in medical universities and medical personnel training, and can improve China's medical simulation teaching standards to reach international levels.