1Botvinick EH, Zhu YY, O'Connel WJ, et al. A quantitative as- sessment of patient motion and its effect on myocardial perfusion SPECT imaging. J Nucl Med, 1993,34(2) :303-310.
2Eisner R, Churchwell A, Noever T, et al. Quantitative analysis of the tomographic thallium-201 myocardial bullseye display: Critical role of correcting for patient motion. J Nuel Med, 1988, 29(1) :91-97.
3Eisner RL, Noever T, Nowak D, et al. Use of cross-correction function to detect patient motion during SPECT imaging. J Nucl Med. 1987,28(1):97-101.
4Geck[e WJ, Frank TL, Links JM, et al. Correction for patient and organ movement in SPECT: Application of exercise thallium- 201 cardiac imaging. J NuclMed, 1988,29(4) :441-450.
5Cooper JA, Neumann PH, McCandless BK. Detection of patient motion during tomographic myocardial perfusion imaging. J Nucl Med, 1993,34(8):1341-1348.
6Bai C, Maddahi J, Kindem J, et al. Development and evaluation of a new fully automatic motion detection and correction technique in cardiac SPECT imaging. J Nucl Cardiol, 2009, 16(4) :580-589.
7Ando R, Ogawa K. Correction of patient movement with a phase --only correlation method ina SPECT study. E2012-02-20~. ht- tp://ieeexplore, ieee. org/xpls/abs _ all. jsp arnumber = 5874194 tag= 1.
8Matsumoto N, Berman DS, Kavanagh PB, et al. Quantitative as sessment of motion artifacts and validation of a new motion-cor rection program for myocardial perfusion SPECT. J Nucl Med 2001,42(5) :687-694.
9Sarkar S, Oghabian MA, Mohammadi I, et al. A linogram/si- nogram cross-correlation method for motion correction in planar and SPECT imaging. IEEE Trans Nucl Sci, 2007,54(1) :71-79.