Title :
Improving the speed of 3D information presentation in a microhabitat
Author :
Takagi, Shinichi ; Ohara, Kenichi ; Kojima, Masaru ; Mae, Yasushi ; Arai, Tamio
Author_Institution :
Dept. of Syst. Innovation, Osaka Univ., Toyonaka, Japan
Abstract :
Construction of an activated three-dimensional (3D) tissue at outside of the living body is desired, and expectations about the micro-manipulation to construct a 3D organization is growing. Although an object is usually observed using an optical microscope in the micro-manipulation, it is difficult to obtain the depth of field information of the object only from the visual information obtained via a microscope, so the micro-manipulation requires hard practice. In order to develop a measurement system for depth of field information aiming at micro-manipulation support, a system that can present 3D information in real time is indispensable. This paper reports an improvement in the speed of 3D information presentation in a microhabitat which would eventually lead to the easy micro-manipulation and construction of 3D cellular organization.
Keywords :
biological tissues; biomedical optical imaging; cellular biophysics; graphics processing units; measurement systems; medical image processing; microfabrication; micromanipulators; optical microscopy; tissue engineering; 3D cellular organization; 3D information presentation speed; 3D organization construction; activated three-dimensional tissue construction; depth-of-field information; graphics processing unit; living body; measurement system; microhabitat; micromanipulation; optical microscopy; visual information; Frequency-domain analysis; Graphics processing units; Image processing; Laplace equations; Microscopy; Optical microscopy; Three-dimensional displays; All-In-Focus image; FFT; GPGPU; Real time three-dimensional reconstruction;
Conference_Titel :
Mechatronics and Automation (ICMA), 2013 IEEE International Conference on
Conference_Location :
Takamatsu
Print_ISBN :
978-1-4673-5557-5
DOI :
10.1109/ICMA.2013.6617926