Accurate segmentation of male pelvic organs from computed tomography (CT) images is important in image guided radiotherapy (IGRT) of prostate cancer. The efficacy of radiation treatment highly depends on the segmentation accuracy of planning and treatment CT images. Clinically manual delineation is still generally performed in most hospitals. However, it is time consuming and suffers large inter-operator variability due to the low tissue contrast of CT images. To reduce the manual efforts and improve the consistency of segmentation, it is desirable to develop an automatic method for rapid and accurate segmentation of pelvic organs from planning and treatment CT images. This dissertation marries machine learning and medical image analysis fo...
Abstract Background This study aimed to (1) develop a fully residual deep convolutional neural netwo...
Purpose or ObjectiveTo evaluate two commercial, CE labeled deep learning-based models for automatic ...
Automatic segmentation of human organs allows more accurate calculation of organ doses in radiationt...
Segmenting male pelvic organs from CT images is a prerequisite for prostate cancer radiotherapy. The...
Computed Tomography (CT) imaging is used in Radiation Therapy planning, where the treatment is caref...
International audience: Accurate segmentation of the prostate and organs at risk in computed tomogra...
Purpose: In the segmentation of sequential treatment-time CT prostate images acquired in image-guide...
Accurate segmentation of prostate is the key to the success of external beam radiotherapy of prostat...
Purpose: In the external beam radiation treatment of prostate cancers, successful implementation of ...
Image-guided radiotherapy (IGRT) requires fast and accurate localization of the prostate in 3-D trea...
Prostate cancer is the second leading cause of cancer deaths in men, and external beam radiotherapy ...
Automatic and accurate segmentation of the prostate and rectum in planning CT images is a challengin...
Radiotherapy is the most widely used treatment for cancer, with 4 out of 10 cancer patients receivi...
In1 recent years, there has been a great interest in prostate segmentation, which is a important and...
Advanced model-based iterative reconstruction algorithms in quantitative computed tomography (CT) pe...
Abstract Background This study aimed to (1) develop a fully residual deep convolutional neural netwo...
Purpose or ObjectiveTo evaluate two commercial, CE labeled deep learning-based models for automatic ...
Automatic segmentation of human organs allows more accurate calculation of organ doses in radiationt...
Segmenting male pelvic organs from CT images is a prerequisite for prostate cancer radiotherapy. The...
Computed Tomography (CT) imaging is used in Radiation Therapy planning, where the treatment is caref...
International audience: Accurate segmentation of the prostate and organs at risk in computed tomogra...
Purpose: In the segmentation of sequential treatment-time CT prostate images acquired in image-guide...
Accurate segmentation of prostate is the key to the success of external beam radiotherapy of prostat...
Purpose: In the external beam radiation treatment of prostate cancers, successful implementation of ...
Image-guided radiotherapy (IGRT) requires fast and accurate localization of the prostate in 3-D trea...
Prostate cancer is the second leading cause of cancer deaths in men, and external beam radiotherapy ...
Automatic and accurate segmentation of the prostate and rectum in planning CT images is a challengin...
Radiotherapy is the most widely used treatment for cancer, with 4 out of 10 cancer patients receivi...
In1 recent years, there has been a great interest in prostate segmentation, which is a important and...
Advanced model-based iterative reconstruction algorithms in quantitative computed tomography (CT) pe...
Abstract Background This study aimed to (1) develop a fully residual deep convolutional neural netwo...
Purpose or ObjectiveTo evaluate two commercial, CE labeled deep learning-based models for automatic ...
Automatic segmentation of human organs allows more accurate calculation of organ doses in radiationt...