METHOD AND SYSTEM FOR COMBINING COMPUTER VISION TECHNIQUES TO IMPROVE SEGMENTATION AND CLASSIFICATION OF A SURGICAL SITE
Edges of areas of interest within a surgical site are detected using a combination of image segmentation techniques based on color, brightness or other differences in the image data captured of the surgical site. Edges of the areas of interest are also determined through an analysis of depth data derived from stereoscopic images or other 3D images of surgical site. The image data is displayed with overlays marking both edges as detected using the image segmentation techniques and edges as determined from the depth data.
1 . A system for using computer vision to identify an area of interest within a body cavity, comprising:
a camera positionable to capture image data corresponding to a treatment site that includes the area of interest;
at least one processor and at least one memory, the at least one memory storing instructions executable by said at least one processor to:
analyze the image data to identify edges of at least a portion of the area of interest within images captured using the camera based on image segmentation techniques;
obtain depth data from images captured by the camera and identify edges in the depth data;
generate an overlay marking edges identified by analyzing the image data and edges identified in the depth data;
display the overlay over displayed image data.
2 . The system of claim 1 , wherein the image segmentation technique is at least one of color differentiation, brightness differentiation, active contour model, or region growing.
3 . The system of claim 1 , wherein the camera is a stereoscopic camera.
4 . A method for using computer vision to identify an area of interest within a body cavity, comprising:
capturing image data corresponding to a treatment site that includes an area of interest;
using computer vision analyzing the image data to identify edges of at least a portion of the area of interest within images captured using the camera based on image segmentation techniques;
obtaining depth data from images captured by the camera and identifying edges in the depth data; and
generating an overlay marking edges identified in the analyzing step and edges identified in the depth data.