Automatic radial distortion correction for endoscope image

Weijian Cong, Jian Yang, Weijiang Deng, Jianjun Zhu
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引用次数: 7

Abstract

Although medical endoscopy has been widely used in surgical procedures in clinical practice, radial distortion induced by the small size of the spherical lens in the endoscopic images generally lead to depth perception error and wrong position correlation of human tissues. The paper proposes a novel method for radial distortion correction using spherical projection model. First, a series of images of the designed marker board at different imaging orientations are captured by the endoscope. Then, the corners in all images are detected and matched automatically. The spherical model thus can be constructed by fitting the feature points in the projection images. Finally, the relationships of the source image, corrected image and the projection model can be obtained by optimization of the matched features. The process of distortion correction is fully automatic that requires no any human intervention. Experimental results demonstrate that the distortion correction method is very effective, which can achieve a mean RMS error of 0.81 pixel.
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内窥镜图像径向畸变自动校正
虽然医学内窥镜在临床上已广泛应用于外科手术,但由于内窥镜图像中球状体尺寸小而引起的径向畸变,通常会导致人体组织的深度感知误差和错误的位置相关性。提出了一种利用球面投影模型进行径向畸变校正的新方法。首先,设计的标记板在不同成像方向上的一系列图像被内窥镜捕获。然后,对所有图像中的角点进行自动检测和匹配。因此,可以通过拟合投影图像中的特征点来构建球面模型。最后,通过对匹配特征进行优化,得到源图像、校正图像和投影模型之间的关系。畸变校正过程是全自动的,不需要任何人为干预。实验结果表明,该方法是非常有效的,可以实现0.81像素的平均均方根误差。
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