Title :
Robot-assisted automatic cell sorting with combined optical tweezer and microfluidic chip technologies
Author :
Wang, Xiaolin ; Chen, Shuxun ; Sun, Dong
Author_Institution :
Dept. of Manuf. Eng. & Eng. Manage., City Univ. of Hong Kong, Hong Kong, China
Abstract :
This paper presents a robot-assisted methodology that integrates optical tweezer and microfluidic chip technologies to realize automatic cell sorting from small sample population. The microfluidic chip used for cell sorter is designed and fabricated, and the flow environment within the microfluidic channel is investigated with simulation. Two image processing methods, depending on size and fluorescence label respectively, are used to recognize the target cells. With robotic manipulation of optical tweezers, the target cells can be moved to the desired area. Motions of optical tweezers are further analyzed for improvement of transportation efficiency. The relationship between the laser power and the cell maximum moving velocity is analyzed such that the robust cell sorting with as low power as possible can be achieved. Experiments on sorting yeast cells are performed to demonstrate the effectiveness of the proposed cell sorting approach.
Keywords :
cellular biophysics; flow simulation; flow visualisation; fluorescence; manipulators; medical robotics; microchannel flow; microfabrication; object detection; radiation pressure; robot vision; sorting; cell maximum moving velocity; fluorescence label; image processing method; laser power; microfluidic channel; microfluidic chip technologies; motion analysis; optical tweezer; robot assisted automatic cell sorting; robotic manipulation; target cell recognization; transportation efficiency; yeast cells; Charge carrier processes; Force; Microfluidics; Optical buffering; Optical device fabrication; Optical imaging; Sorting;
Conference_Titel :
Robotics and Automation (ICRA), 2011 IEEE International Conference on
Conference_Location :
Shanghai
Print_ISBN :
978-1-61284-386-5
DOI :
10.1109/ICRA.2011.5979662