Abstract

Cardiac atlases play an important role in the computer-aided diagnosis of cardiovascular diseases, in particular they need to deal with large and highly variable image datasets. In this paper, we propose a new nonrigid registration algorithm incorporating shape information, to produce comprehensive atlases. For one thing, the multiscale gradient orientation features of images are combined to form the construction of multifeature mutual information. Additionally, the shape information of multiple-objects in images is incorporated into the cost function for registration. We demonstrate the merits of the new registration algorithm on the 3D data sets of 15 patients. The experimental results show that the new registration algorithm can outperform the conventional intensity-based registration method. The obtained atlas can represent the cardiac structures more accurately.

Highlights

  • Cardiovascular diseases are the most significant cause of death in China [1]

  • Cardiac atlases play an important role in computer-aided diagnoses of angiocardiopathy [5]

  • We propose a novel nonrigid registration algorithm for cardiac atlas construction

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Summary

Introduction

Cardiovascular diseases are the most significant cause of death in China [1]. Their early diagnosis and treatment is crucial in order to reduce mortality and to improve patients’ quality of life. Among them, Computed Tomography(CT) has been widely used in the acquisition of 3D images which describe the cardiac anatomy and the acquisition of 3D+time image sequences which describe the cardiac anatomy as well as function [2]. Both the multislice CT(MSCT) and dual-source CT(DSCT) have a demonstrated high sensitivity and specificity in diagnoses [3, 4]. Cardiac atlases play an important role in computer-aided diagnoses of angiocardiopathy [5] Their abilities mainly focus on three profiles: First of all, the patient-specific biomarkers

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