Title :
High-quality web-based volume rendering in real-time
Author :
Wangkaoom, Kongyot ; Ratanaworabhan, Paruj ; Thongvigitmanee, Saowapak S.
Author_Institution :
Dept. of Comput. Eng., Kasetsart Univ., Bangkok, Thailand
Abstract :
Three-dimension (3D) medical images on eHealth can facilitate early diagnosis and treatment planning for physicians and dentists anytime and anywhere. However, high-resolution 3D medical images created from most medical imaging devices are difficult to render interactively with high-quality in real-time on the client side. This paper tackles this problem. It presents a web-based client-server framework that provides apparent processing of high-quality volume rendering in real-time on personal computers and tablets. The framework employs the following technique. While zooming and rotating the volume rendered image, the graphic card on a client-side processes low-quality volume rendering. At the same time, images for performing high-quality rendering are being processed and streamed in from the server. When the interaction stops, the server completes the streaming process and the client can now display high-quality volume rendering. This would help visualizing 3D medical images in real-time and high-quality on web for fast diagnosis and treatment planning.
Keywords :
Internet; client-server systems; data visualisation; image resolution; medical image processing; patient diagnosis; patient treatment; real-time systems; rendering (computer graphics); 3D medical images visualization; Web-based client-server framework; dentists; early diagnosis; ehealth; graphic card; high-quality Web-based volume rendering; high-quality volume rendering; high-resolution 3D medical images; low-quality volume rendering; medical imaging devices; personal computers; physicians; real-time; streaming process; tablets; treatment planning; volume rendered image rotating; volume rendered image zooming; Biomedical imaging; Browsers; Computers; Real-time systems; Rendering (computer graphics); Servers; Three-dimensional displays; Volume rendering; biomedical imaging; web-based application for medical imaging;
Conference_Titel :
Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON), 2015 12th International Conference on
Conference_Location :
Hua Hin
DOI :
10.1109/ECTICon.2015.7207091