首页> 外文期刊>Journal of hepato-biliary-pancreatic sciences >Roles of universal three-dimensional image analysis devices that assist surgical operations.
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Roles of universal three-dimensional image analysis devices that assist surgical operations.

机译:通用三维图像分析设备可协助外科手术的作用。

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摘要

The circumstances surrounding medical image analysis have undergone rapid evolution. In such a situation, it can be said that "imaging" obtained through medical imaging modality and the "analysis" that we employ have become amalgamated. Recently, we feel the distance between "imaging" and "analysis" has become closer regarding the imaging analysis of any organ system, as if both terms mentioned above have become integrated. The history of medical image analysis started with the appearance of the computer. The invention of multi-planar reconstruction (MPR) used in the helical scan had a significant impact and became the basis for recent image analysis. Subsequently, curbed MPR (CPR) and other methods were developed, and the 3D diagnostic imaging and image analysis of the human body have started on a full scale. Volume rendering: the development of a new rendering algorithm and the significant improvement of memory and CPUs contributed to the development of "volume rendering," which allows 3D views with retained internal information. A new value was created by this development; computed tomography (CT) images that used to be for "diagnosis" before that time have become "applicable to treatment." In the past, before the development of volume rendering, a clinician had to mentally reconstruct an image reconfigured for diagnosis into a 3D image, but these developments have allowed the depiction of a 3D image on a monitor. Current technology: Currently, in Japan, the estimation of the liver volume and the perfusion area of the portal vein and hepatic vein are vigorously being adopted during preoperative planning for hepatectomy. Such a circumstance seems to be brought by the substantial improvement of said basic techniques and by upgrading the user interface, allowing doctors easy manipulation by themselves. The following describes the specific techniques. Future of post-processing technology: It is expected, in terms of the role of image analysis, for better or worse, that computer-aided diagnosis (CAD) will develop to a highly advanced level in every diagnostic field. Further, it is also expected in the treatment field that a technique coordinating various devices will be strongly required as a surgery navigator. Actually, surgery using an image navigator is being widely studied, and coordination with hardware, including robots, will also be developed.
机译:医学图像分析周围的环境已经经历了快速发展。在这种情况下,可以说通过医学成像方式获得的“成像”和我们采用的“分析”已经融合在一起。最近,对于任何器官系统的成像分析,我们都觉得“成像”和“分析”之间的距离越来越近,好像上述两个术语已经整合在一起。医学图像分析的历史始于计算机的出现。螺旋扫描中使用的多平面重建(MPR)的发明产生了重大影响,并成为最近图像分析的基础。随后,开发了遏制MPR(CPR)和其他方法,并且人体的3D诊断成像和图像分析已全面开始。体积渲染:新的渲染算法的开发以及内存和CPU的显着改进,为“体积渲染”的发展做出了贡献,“体积渲染”允许保留内部信息的3D视图。这一发展创造了新的价值。在此之前曾经用于“诊断”的计算机断层扫描(CT)图像已“适用于治疗”。过去,在开发体绘制之前,临床医生必须在精神上将重构后的图像进行诊断以重建为3D图像,但是这些发展已允许在监视器上描绘3D图像。当前的技术:目前,在日本,在肝切除术的术前计划中大力采用对肝脏体积以及门静脉和肝静脉灌注面积的估计。这种情况似乎是由所述基本技术的实质性改进和用户界面的升级所带来的,从而使医生自己易于操作。下面介绍具体技术。后处理技术的未来:就图像分析的作用而言,无论其好坏,人们期望计算机辅助诊断(CAD)在每个诊断领域中都将发展到非常先进的水平。此外,还期望在治疗领域中强烈需要协调各种装置的技术作为手术导航仪。实际上,正在广泛研究使用图像导航器进行的手术,并且还将开发与硬件(包括机器人)的协调。

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