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Image noise, resolution, and lesion detectability in single photon emission CI

Publication ,  Journal Article
Bin Lim, C; Han, KS; Hawman, EG; Jaszczak, RJ
Published in: IEEE Trans. Nucl. Sci. (USA)
1982

Single photon emission computed tomography (SPECT) based on rotational scintillation gamma cameras in combination with filtered back-projection allows full 3-D imaging of isotope uptake in an organ volume. The authors treat the physical dependence of lesion detectability in SPECT imaging on the lesion uptake, lesion size, object size, and the number of photons collected. The lesion contrast depends of both camera resolution and reconstruction filtering. The relative photon-limited image noise is proportional to the three halves power of the number of linear samples covering the object, inversely proportional to the square root of the number of photons collected, and is also affected by the reconstruction filter chosen. Based on signal-to-noise analysis, the total number of counts necessary for lesion detection is determined

Duke Scholars

Published In

IEEE Trans. Nucl. Sci. (USA)

Publication Date

1982

Volume

ns-29

Issue

1

Start / End Page

500 / 505

Location

San Francisco, CA, USA
 

Citation

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Bin Lim, C., Han, K. S., Hawman, E. G., & Jaszczak, R. J. (1982). Image noise, resolution, and lesion detectability in single photon emission CI. IEEE Trans. Nucl. Sci. (USA), ns-29(1), 500–505.
Bin Lim, C., Kyung Sun Han, E. G. Hawman, and R. J. Jaszczak. “Image noise, resolution, and lesion detectability in single photon emission CI.” IEEE Trans. Nucl. Sci. (USA) ns-29, no. 1 (1982): 500–505.
Bin Lim C, Han KS, Hawman EG, Jaszczak RJ. Image noise, resolution, and lesion detectability in single photon emission CI. IEEE Trans Nucl Sci (USA). 1982;ns-29(1):500–5.
Bin Lim, C., et al. “Image noise, resolution, and lesion detectability in single photon emission CI.” IEEE Trans. Nucl. Sci. (USA), vol. ns-29, no. 1, 1982, pp. 500–05.
Bin Lim C, Han KS, Hawman EG, Jaszczak RJ. Image noise, resolution, and lesion detectability in single photon emission CI. IEEE Trans Nucl Sci (USA). 1982;ns-29(1):500–505.

Published In

IEEE Trans. Nucl. Sci. (USA)

Publication Date

1982

Volume

ns-29

Issue

1

Start / End Page

500 / 505

Location

San Francisco, CA, USA