Automated 3D lung modeling involves analyzing 2D lung images and reconstructing a realistic 3D model of the lung. This paper presents a review of the existing works on automatic formation of 3D lung models from 2D lung images. A common framework for 3D lung modeling is proposed. It consists of eight components: image acquisition, image pre-processing, image segmentation, boundary creation, image recognition, image registration, 3D surface reconstruction, and 3D rendering and visualization. The algorithms used by the existing systems to implement these components are also reviewed.<br /
A quantitative description of the morphology of lung structure is essential prior to any form of pre...
The article is written for the benefit of hospitals in order to identify segments of the lungs and t...
A fully automated and three-dimensional (3D) segmentation method for the identification of the pulmo...
© Copyright 2008 IEEE. Personal use of this material is permitted. However, permission to reprint/re...
A mathematical description of the morphology of the lung is necessary for modeling and analyzing the...
Three-dimensional (3D) shape reconstruction is particularly important for computer assisted medical ...
This material is presented to ensure timely dissemination of scholarly and technical work. Copyright...
This work discusses a 4D lung reconstruction method from unsynchronized MR sequential images. The lu...
Because of increasing demand, rapid development of in vitro and in vivo models to be used to study l...
A mathematical description of the morphology of the lung is necessary for modeling and analyzing the...
Medical simulation has facilitated the understanding of complex biological phenomenon through its in...
The World Health Organization (WHO) has stated in its report that lung disease is a wide spread in M...
Over the last few years, there has been an increase in the clinical methods targeting the human trac...
Medical simulation has facilitated the understanding of complex biological phenomenon through its in...
The great density and structural complexity of pulmonary vessels and airways impose limi-tations on ...
A quantitative description of the morphology of lung structure is essential prior to any form of pre...
The article is written for the benefit of hospitals in order to identify segments of the lungs and t...
A fully automated and three-dimensional (3D) segmentation method for the identification of the pulmo...
© Copyright 2008 IEEE. Personal use of this material is permitted. However, permission to reprint/re...
A mathematical description of the morphology of the lung is necessary for modeling and analyzing the...
Three-dimensional (3D) shape reconstruction is particularly important for computer assisted medical ...
This material is presented to ensure timely dissemination of scholarly and technical work. Copyright...
This work discusses a 4D lung reconstruction method from unsynchronized MR sequential images. The lu...
Because of increasing demand, rapid development of in vitro and in vivo models to be used to study l...
A mathematical description of the morphology of the lung is necessary for modeling and analyzing the...
Medical simulation has facilitated the understanding of complex biological phenomenon through its in...
The World Health Organization (WHO) has stated in its report that lung disease is a wide spread in M...
Over the last few years, there has been an increase in the clinical methods targeting the human trac...
Medical simulation has facilitated the understanding of complex biological phenomenon through its in...
The great density and structural complexity of pulmonary vessels and airways impose limi-tations on ...
A quantitative description of the morphology of lung structure is essential prior to any form of pre...
The article is written for the benefit of hospitals in order to identify segments of the lungs and t...
A fully automated and three-dimensional (3D) segmentation method for the identification of the pulmo...