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Angioscopic system and method for dimensional measurement including measurement of the distance from angioscopic ends to designated planes

机译:用于尺寸测量的血管镜系统和方法,包括测量从血管镜末端到指定平面的距离

摘要

An angioscopic system includes image processing so as to determine the dimensions of an unknown dimensional feature within the field of view of the angioscope. The system is calibrated by placing a series of known images at known separation distances from the tip of the angioscope and measuring the size of the image which is produced upon a video monitor. This provides a series of data indicating the relationship between the actual size of the feature, the apparent size in pixels on the image, and the known separation distance from the tip of the scope to the feature plane in which the dimensional feature is disposed. Collection of this data allows one to generate, by curve fitting techniques, a functional relationship such that the size of an unknown dimensional feature may be determined when the angioscope is used upon an actual patient. The coefficients generated by the calibration technique are stored in the computer and called up during the measurement process which involves viewing a scene from several different points and using a Newton-Jordan or other minimization technique in order to generate the actual area or other dimensional aspect of the feature of interest. A modified system uses a stereoscopic angioscope in order to provide depth information with respect to an image without the necessity of moving an angioscope tip. A calibrated guidewire may be used to orient and stabilize the tip of the scope. Markings on the guidewire allow one to determine the amount of change in position of the tip.
机译:血管镜系统包括图像处理以便确定在血管镜的视场内的未知尺寸特征的尺寸。通过将一系列已知图像放置在距血管镜尖端的已知距离处并测量在视频监视器上产生的图像大小来对系统进行校准。这提供了一系列数据,这些数据指示特征的实际大小,图像上以像素为单位的视在大小以及从示波器的尖端到放置尺寸特征的特征平面之间的已知分隔距离。该数据的收集允许通过曲线拟合技术来生成一种功能关系,使得当在实际患者上使用血管镜时可以确定未知尺寸特征的大小。由校准技术生成的系数存储在计算机中,并在测量过程中调用,该过程涉及从几个不同的点查看场景,并使用Newton-Jordan或其他最小化技术来生成实际面积或尺寸的其他方面。感兴趣的功能。一种改进的系统使用立体血管镜,以提供关于图像的深度信息,而无需移动血管镜尖端。校准的导丝可用于定向和稳定示波器的尖端。导丝上的标记可以确定笔尖位置的变化量。

著录项

  • 公开/公告号US5036463A

    专利类型

  • 公开/公告日1991-07-30

    原文格式PDF

  • 申请/专利权人 UNIVERSITY OF FLORIDA;

    申请/专利号US19880275754

  • 发明设计人 GEORGE S. ABELA;STEPHAN E. FRIEDL;

    申请日1988-11-23

  • 分类号G06F15/42;

  • 国家 US

  • 入库时间 2022-08-22 05:46:10

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