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Realization of real-time X-ray stereoscopic vision during interventional procedures

机译:介入手术过程中实时X射线立体视觉的实现

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摘要

During interventional procedures, the deficiencies of nonstereoscopic vision increase the difficulty of identifying the anteroposterior direction and pathways of vessels. Therefore, achieving real-time stereoscopic vision during interventional procedures is meaningful. Pairs of X-ray images were captured with identical parameter settings, except for different rotation angles (represented as the α angle). The resulting images at these α angles were used as left-eye and right-eye views and were horizontally merged into single left-right 3D images. Virtual reality (VR) glasses were used for achieving stereo vision. Pairs of X-ray images from four angiographies with different α angles (1.8–3.4°) were merged into left-right 3D images. Observation with VR glasses can produce realistic stereo views of vascular anatomical structure. The results showed that the optimal α angles accepted by the brain for generating stereo vision were within a narrow range (approximately 1.4–4.1°). Subsequent tests showed that during transcatheter arterial chemoembolization, 3D X-ray stereoscopic images provided significantly improved spatial discrimination and convenience for identifying the supply vessels of a liver tumor and its anteroposterior direction compared with plain X-ray images (all P < 0.01). Real-time X-ray stereoscopic vision can be easily achieved via the straightforward method described herein and has the potential to benefit patients during interventional procedures.
机译:在介入手术过程中,非立体视觉的缺陷增加了识别血管前后方向和血管通路的难度。因此,在介入手术过程中实现实时立体视觉是有意义的。使用相同的参数设置捕获了成对的X射线图像,除了不同的旋转角度(表示为α角度)。在这些α角处生成的图像用作左眼和右眼视图,并水平合并为单个左右3D图像。虚拟现实(VR)眼镜用于实现立体视觉。来自四个不同α角度(1.8-3.4°)的血管造影术的X射线图像对被合并为左右3D图像。使用VR眼镜进行观察可以产生逼真的血管解剖结构立体图。结果表明,大脑接受的产生立体视觉的最佳α角在一个狭窄的范围内(约1.4-4.1°)。随后的测试显示,在经导管动脉化疗栓塞过程中,与普通X射线图像相比,3D X射线立体图像可显着改善空间分辨力,并有助于识别肝肿瘤供血血管及其前后方向(所有P <0.01)。实时X射线立体视觉可以通过本文所述的简单方法轻松实现,并有可能在介入过程中使患者受益。

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