论文标题

开发新型算法以在肝手术期间在3D超声图像上可视化血管

Development of novel algorithm to visualize blood vessels on 3D ultrasound images during liver surgery

论文作者

Salehihafshejani, Fatemeh, Ahmadian, Alireza, Shoeibi, Afshin, Alizadehsani, Roohallah, Dashti, Habibollah, Yazdi, Niloofar Ayoobi, Khosravi, Abbas, Nahavandi, Saeid

论文摘要

音量可视化是一种在二维(2D)空间中显示三维(3D)数据的方法。使用3D数据集代替2D传统图像可以改善解剖结构的可视化,并且体积可视化有助于放射学家和外科医生全面审查大型数据集,以增强诊断和治疗。在肝手术中,血管检测很重要。肝容器具有各种形状,并且由于超声图像中存在噪声,因此可以与噪声混淆。次优的图像有时会导致外科医生可能会误认为血管的手术误差。超声系统具有通用性和便携性,并且具有能够在手术室中使用的优势。由于B模式超声的性质,图像的1-D传递函数容量可视化无法消除阴影伪像。虽然多维传递函数提高了定义感兴趣的特征的能力,但参数域中的高维度使临床医生很难与之合作。为了克服这些局限性,提出了一种用于可视化的算法,该算法可以提供有效的3D可视化噪声B模式超声图像的3D可视化,这对临床医生可能很有用。我们提出了一种适用于关注血管和肿瘤的肝脏超声图像的方法(如果存在),以清晰地描绘出其结构和位置,以在手术过程中清楚地划定其结构和位置。这种方法可以通过为临床医生提供更详细的高质量3D图像来防止肝脏手术期间可能的错误。关键词:可视化,3D超声图像,体积渲染,肝脏手术,肝血管。

Volume visualization is a method that displays three-dimensional (3D) data in two-dimensional (2D) space. Using 3D datasets instead of 2D traditional images improves the visualization of anatomical structures, and volume visualization helps radiologists and surgeons to review large datasets comprehensively so that diagnosis and treatment can be enhanced. In liver surgery, blood vessel detection is important. Liver vessels have various shapes and due to the presence of noise in the ultrasound images, they can be confused with noise. Suboptimal images can sometimes lead to surgical errors where the surgeon may cut the blood vessel in error. The ultrasound system is versatile and portable and has the advantage of being able to be used in the operating theatre. Due to the nature of B-mode ultrasound, 1-D transfer function volume visualization of images cannot abrogate shadow artifacts. While multi-dimensional transfer function improves the ability to define features of interest, the high dimensionality in the parameter domain renders it unwieldy and difficult for clinicians to work with. To overcome these limitations, an algorithm for volume visualization that can provide effective 3D visualization of noisy B-mode ultrasound images, which can be useful for clinicians, is proposed. We propose a method that is appropriate for liver ultrasound images focusing on vessels and tumors (if present) in order to delineate their structure and positions clearly to preempt surgical error during operation. This method can prevent possible errors during liver surgery by providing more detailed high quality 3D images for clinicians. Key Words: Visualization, 3D ultrasound image, Volume Rendering, Liver surgery, Liver vessels.

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