Invention Grant
- Patent Title: Method and apparatus for simultaneously measuring a three dimensional position of a particle in a flow
- Patent Title (中): 用于同时测量流中颗粒的三维位置的方法和装置
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Application No.: US11804589Application Date: 2007-05-18
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Publication No.: US07772579B2Publication Date: 2010-08-10
- Inventor: William D. Herzog , Antonio Sanchez-Rubio , Gregory G. Cappiello , Ronald H. Hoffeld , Shane M. Tysk , Vincenzo Daneu , Thomas H. Jeys
- Applicant: William D. Herzog , Antonio Sanchez-Rubio , Gregory G. Cappiello , Ronald H. Hoffeld , Shane M. Tysk , Vincenzo Daneu , Thomas H. Jeys
- Applicant Address: US MA Cambridge
- Assignee: Massachusetts Institute of Technology
- Current Assignee: Massachusetts Institute of Technology
- Current Assignee Address: US MA Cambridge
- Agency: Hamilton, Brook, Smith & Reynolds, P.C.
- Main IPC: G01N15/06
- IPC: G01N15/06 ; G01N21/49 ; G01N21/85

Abstract:
Particle detection systems without knowledge of a location and velocity of a particle passing through a volume of space, are less efficient than if knowledge of the particle location is known. An embodiment of a particle position detection system capable of determining an exact location of a particle in a fluid stream is discussed. The detection system may employ a patterned illuminating beam, such that once a particle passes through the various portions of the patterned illuminating beam, a light scattering is produced. The light scattering defines a temporal profile that contains measurement information indicative of an exact particle location. However, knowledge of the exact particle location has several advantages. These advantages include correction of systematic particle measurement errors due to variability of the particle position within the sample volume, targeting of particles based on position, capture of particles based on position, reduced system energy consumption and reduced system complexity.
Public/Granted literature
- US20080068605A1 Method and apparatus for simultaneously measuring a three dimensional position of a particle in a flow Public/Granted day:2008-03-20
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