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Three dimensional ophthalmic ultrasonography and diagnostic support system using wavelet transforms

机译:三维眼科超声波和诊断支持系统使用小波变换

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The existing three dimensional imaging algorithm (B. Donal et al., "Three dimensional ultrasound imaging of eye", Royal College of Opthalmologists, p. 75-81, 1996) focuses only on a 3D image, viewed exterior to the globe of the eye, whereas the proposed 3D algorithm can also provide a view as perceived from the interior. This algorithm provides a realistic textured multispatial perspective view and helps in unravelling the intricacies of the eye. Until now 3D treatment of multidefectual eyes has not been studied. So specific regions of the globe are made transparent to evaluate the less conspicuous contours of the hidden defects. The views presented are helpful in forestalling the postoperative complications. The diagnostic support system is achieved by performing multiresolution decomposition of ultrasonograms using orthogonal wavelet transforms to localize and detect the defects in the globe of the eye. Thus the 3D reconstruction and multiresolution analysis complement each other to provide an integral decision support system.
机译:现有的三维成像算法(B.敦尔等人,“眼睛的三维超声波成像”,Opthalmologists的皇家学院,第75-81,1996)只集中于3D图像,观看外部的全球眼,而所提出的3D算法还可以提供作为从内部感知的图。该算法提供了现实纹理multispatial立体图和在解开的眼睛的复杂性有帮助。直到现在的3D处理multidefectual的眼睛还没有进行研究。因此,全球的特定区域由透明的评估隐藏的缺陷的不太显眼的轮廓。提出的意见是在预先阻止术后并发症有帮助。诊断支持系统是通过执行使用正交小波变换定位和检测在所述眼睛的地球缺陷声像的多分辨率分解来实现的。因此,三维重建和多分辨率分析相得益彰,以提供一个整体的决策支持系统。

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