Title : 
3D cell feature measurement with a diffraction imaging method
         
        
            Author : 
Zhang, Yu ; Sa, Yu ; Feng, Yuanming ; Hu, Xin-Hua
         
        
            Author_Institution : 
Dept. of Biomed. Eng., Tianjin Univ., Tianjin, China
         
        
        
        
        
        
            Abstract : 
Flow cytometry has been proven to be a very versatile tool for cell biology research and clinical applications. A drawback of conventional technique lies in the fundamental limit of extracting morphological characteristics of the interrogated cells. In this paper, we present recent results of instrumentation design of flow cytometer systems with a new diffraction imaging method for the of 3D cell features measurement consisting of a jet-in-fluid flow chamber, a dual-polarization imaging system and a friendly human-computer interaction interface. A precise fluid control unit has been developed for producing stable laminar flow that is critical for acquisition of dual-polarization diffraction images and cell classification. Virtual simulation and experiment test results of the flow control unit and the new system with polystyrene microspheres and cells indicated the strong correlations between the diffraction image patterns and the 3D morphology of the particles.
         
        
            Keywords : 
biology computing; cellular biophysics; diffraction; human computer interaction; image classification; virtual reality; 3D cell feature measurement; cell biology research; cell classification; clinical applications; diffraction imaging method; dual-polarization diffraction images; dual-polarization imaging system; flow cytometer systems; human-computer interaction interface; instrumentation design; jet-in-fluid flow chamber; virtual simulation; Diffraction; Feature extraction; Fluids; Imaging; Laser beams; Measurement by laser beam; Pumps; Jet-in-fluid; diffraction imaging; flow cytometer; human-computer interaction interface; laminar flow;
         
        
        
        
            Conference_Titel : 
Virtual Environments Human-Computer Interfaces and Measurement Systems (VECIMS), 2012 IEEE International Conference on
         
        
            Conference_Location : 
Tianjin
         
        
        
            Print_ISBN : 
978-1-4577-1758-1
         
        
        
            DOI : 
10.1109/VECIMS.2012.6273191