发明名称 System and method for treatment planning of organ disease at the functional and anatomical levels
摘要 The present disclosure relates to a system and method for planning treatment of soft organs utilizing CT and SPECT image technology. The systems and method combine the segmented CT images with the SPECT image to form a combined image and treatment plan utilizing the images of both systems.
申请公布号 US9492124(B2) 申请公布日期 2016.11.15
申请号 US201213343795 申请日期 2012.01.05
申请人 EDDA TECHNOLOGY, INC.;EDDA TECHNOLOGY MEDICAL SOLUTIONS (SUZHOU) LTD. 发明人 Qian Jian-Zhong;Zeng Xiaolan;Wei Guo-Qing;Fan Li
分类号 A61B6/03;A61B6/00;A61N5/10;G06T7/00;G06F19/00 主分类号 A61B6/03
代理机构 Pillsbury Winthrop Shaw Pittman LLP 代理人 Pillsbury Winthrop Shaw Pittman LLP
主权项 1. A method implemented on a machine having at least one processor comprising hardware, storage, and a communication platform connected to a network for generating a treatment plan for an organ disease, the method comprising: segmenting, by the at least one processor, an organ on a first image in a first imaging modality obtained from a first imaging device, the first imaging modality providing anatomical information of the organ; mapping, by the at least one processor, the segmented organ including a boundary of the organ from the first image onto a second image in a second imaging modality obtained from a second imaging device, the second imaging modality providing functional information of the organ; determining, by the at least one processor, a boundary of the organ on the second image based on the boundary of the organ mapped from the first image by geometrically transforming the boundary of the organ from the first image to the second image; identifying, by the at least one processor, one or more defective organ regions of the organ on the second image; segmenting, by the at least one processor, the one or more defective organ regions on the second image based on intensity of the second image and the boundary of the organ to the second image; mapping, by the at least one processor, the segmented one or more defective regions from the second image onto the first image; identifying, by the at least one processor, a target object on the first image based on a combination of intensity and intensity gradient of the one or more defective regions mapped from the second image and intensity and intensity gradient of the organ on the first image, wherein the identifying the target object is based on an optimization that maximizes a combined intensity gradient of the first image in the first imaging modality and the second image in the second imaging modality and minimizes an intensity variance within the target object; identifying, by the at least one processor, anatomical structures on the first image; combining, by the at least one processor, the segmented first image and the second image into a combined image; generating, by the at least one processor, one or more treatment plans based on the combined image, the target object, and the anatomical structures; determining, by the at least one processor, remnant organ function for each of the one or more treatment plans; and displaying the remnant organ function for each of the one or more treatment plans.
地址 Princeton NJ US