发明名称 METHOD AND SYSTEM FOR MEASURING A VOLUME FROM AN ULTRASOUND IMAGE
摘要 Methods and systems for measuring a volume of an organ of interest (OOI) from an ultrasound image are provided. The methods and systems acquire a first ultrasound image of an OOI at a first plane and a second ultrasound image of the OOI at a second plane, and identify the OOI within the first ultrasound image and the second ultrasound image by executing a classification model stored on a memory. The methods and systems further determine a first boundary of the OOI within the first ultrasound image and a second boundary of the OOI within the second ultrasound image by executing a contour model stored in the memory, determine a first second dimensional length of the OOI from the first boundary and a third dimensional length of the OOI from the second boundary, and calculate a volume of the OOI derived from the first, second, and third dimensional links.
申请公布号 US2017124700(A1) 申请公布日期 2017.05.04
申请号 US201514928241 申请日期 2015.10.30
申请人 General Electric Company 发明人 Sarojam Subin Sundaran Baby;Annangi Pavan Kumar V.;Eshelman Tricia;Torp Anders Herman
分类号 G06T7/00;G06T7/60;G06F3/0484;A61B8/08 主分类号 G06T7/00
代理机构 代理人
主权项 1. A method of using a mobile ultrasound imaging system to determine a volume of an organ of interest (OOI) from a plurality of ultrasound images comprising: acquiring a first ultrasound image of an OOI at a first plane and a second ultrasound image of the OOI at a second plane, wherein the first plane is orthogonal to the second plane; using one or more processors to identify the OOI within the first ultrasound image and the second ultrasound image by executing a classification model stored in memory, the classification model having a feature vector corresponding to the OOI; using the one or more processors to determine a first boundary of the OOI within the first ultrasound image and a second boundary of the OOI within the second ultrasound image by executing a contour model stored in the memory; determining first and second dimensional lengths of the OOI from the first boundary and a third dimensional length of the OOI from the second boundary; and calculating a volume of the OOI derived from the first, second, and third dimensional lengths.
地址 Schenectady NY US