Literature DB >> 7861650

[The partial volume effect correction for pulmonary mass lesions using a 68Ga/68Ge transmission scan in PET study].

Y Akashi1, Y Kuwabara, Y Ichiya, M Sasaki, T Yoshida, T Fukumura, K Masuda.   

Abstract

We tried to correct the partial volume effect for pulmonary mass lesions using a 68Ga/68Ge transmission scan. Initially, a fundamental study was done using spherical phantoms and good results were obtained. Next, a clinical evaluation was performed on 28 pulmonary mass lesions ranging in diameter from 0.8 cm to 8.0 cm. The tissue fractions of the mass lesions were obtained by a 68Ga/68Ge transmission scan, where the tissue fraction in the back muscles was assumed to have a value of 1. The tissue fraction of the surrounding lung field was subtracted from that of each mass lesions, and the net tissue fraction was thereby obtained. When no correction was required, the tumor/muscle count ratio (TMR) became higher in proportion with an increase in the mass size. After performing a correction, however, no correlation was observed between them. This method was both easy to perform and reliable, and it is thus considered to be useful for overcoming the partial volume effect in pulmonary mass lesions, although an underestimation may still occur in cases with mass lesions either near the great vessels or the chest wall.

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Year:  1994        PMID: 7861650

Source DB:  PubMed          Journal:  Kaku Igaku        ISSN: 0022-7854


  2 in total

1.  [18F]FDG uptake and PCNA, Glut-1, and Hexokinase-II expressions in cancers and inflammatory lesions of the lung.

Authors:  Marcelo Mamede; Tatsuya Higashi; Masanori Kitaichi; Koichi Ishizu; Takayoshi Ishimori; Yuji Nakamoto; Kazuhiro Yanagihara; Mio Li; Fumihiro Tanaka; Hiromi Wada; Toshiaki Manabe; Tsuneo Saga
Journal:  Neoplasia       Date:  2005-04       Impact factor: 5.715

2.  FDG-PET in infectious lesions: The detection and assessment of lesion activity.

Authors:  Y Ichiya; Y Kuwabara; M Sasaki; T Yoshida; Y Akashi; S Murayama; K Nakamura; T Fukumura; K Masuda
Journal:  Ann Nucl Med       Date:  1996-05       Impact factor: 2.668

  2 in total

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