Optimizing the acquisition time profile for a planar integral measurement system with a spinning slat collimator

Autor: R. D. Earl, B. Zhang, Gengsheng L. Zeng
Rok vydání: 2005
Předmět:
Zdroj: Medical Physics. 32:2793-2798
ISSN: 0094-2405
DOI: 10.1118/1.2008447
Popis: This article considers a hypothetical imaging device with a spinning slat collimator that measures parallel-planar-integral data from an object. This device rotates around the object 180 deg. and stops at N positions uniformly distributed over this 180 deg. . At each stop, the device spins on its own axis 180 deg. and acquires measurements at M positions uniformly distributed over this 180 deg. . For a fixed total imaging time, an optimal distribution of the scanning time among the data measurement locations is searched by a nonlinear programming method: Nelder-Mead's simplex method. The optimal dwell time is approximately proportional to the weighting factor in the backprojector of the reconstruction algorithm. By using an optimal dwell-time profile, the reconstruction signal-to-noise ratio has a gain of 23%-24% for the filtered backprojection algorithm and a gain of 10%-18% for the iterative algorithms, compared with the situation when a constant dwell-time profile is used.
Databáze: OpenAIRE