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AR引导放疗摆位关键技术的应用评估
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作者 付小妮 王殊轶 +4 位作者 胡忞仁 杨双燕 梁巨宏 吴张檑 于佳琪 《生物医学工程研究》 2022年第3期285-292,共8页
为实现患者无体表物理标记、还原患者定位时的姿态,本研究开发了适用于HoloLens2的AR引导放疗摆位系统,研究了AR系统中的三维配准原理;并对识别图尺寸大小对三维注册误差的影响做了对比测试。利用前指针和激光测距仪测量以识别图为原点... 为实现患者无体表物理标记、还原患者定位时的姿态,本研究开发了适用于HoloLens2的AR引导放疗摆位系统,研究了AR系统中的三维配准原理;并对识别图尺寸大小对三维注册误差的影响做了对比测试。利用前指针和激光测距仪测量以识别图为原点的加速器等中心的坐标,使用肺部模体进行测试,以测试时间和主观问卷量表作为评价指标。8 cm×8 cm识别图的三维注册误差最小,为(4.45±0.23)mm;传统摆位花费的时间为(2.10±0.12)min,而AR引导放疗摆位花费的时间为(2.34±0.43)min(P<0.05)。AR引导放疗摆位在易学性、系统复杂度、全息投影清晰度三个方面的评分优于传统放疗摆位。 展开更多
关键词 增强现实 三维注册 等中心 放疗摆位 HoloLens2 注册误差
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Novel Visualization Tool for Percutaneous Renal Puncture Training Using Augmented Reality Technology
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作者 于佳琪 王殊轶 +4 位作者 王浴屺 谢华 吴张檑 付小妮 马邦峰 《Journal of Shanghai Jiaotong university(Science)》 EI 2023年第4期517-525,共9页
We aim to develop a novel visualization tool for percutaneous renal puncture training based on augmented reality(AR)and compare the needle placement performance of this AR system with ultrasound-guidedfreehand naviga... We aim to develop a novel visualization tool for percutaneous renal puncture training based on augmented reality(AR)and compare the needle placement performance of this AR system with ultrasound-guidedfreehand navigation in phantoms.A head-mounted display-based AR navigation system was developed usingthe Unity3D software and Visual Studio to enable the overlay of the preoperative needle path and the complexanatomical structures onto a phantom in real time.The spatial location of the stationary phantom and the percutaneous instrument motion were traced by a Qualisys motion capture system.To evaluate the tracking accuracy,15 participants(7 males and 8 females)performed a single needle insertion using AR navigation(the number ofpunctures n=75)and ultrasound-guided freehand navigation(n=75).The needle placement error was measuredas the Euclidean distance between the actual needle tip and the virtual target by MicronTracker.All participantsdemonstrated a superior needle insertion efficiency when using the AR-assisted puncture method compared withthe ultrasound-guided freehand method.The needle insertion error of the ultrasound-guided method showed anincreased error compared with the AR method(5.54 mm±2.59 mm,4.34 mm±2.10 mm,respectively,p<0.05).The ultrasound-guided needle placements showed an increased time compared with the AR method(19.08 s±3.59 s,15.14 s±2.72 s,respectively,p<0.0001).Our AR training system facilitates the needle placement performance and solves hand-eye coordination problems.The system has the potential to increase efficiency andeffectiveness of percutaneous renal puncture training. 展开更多
关键词 augmented reality(AR) visualization tool needle puncture navigation simulator training HoloLens
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