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Feasibility of a beta-gamma digital imaging probe for radioguided surgery

Publication ,  Journal Article
Tipnis, SV; Nagarkar, VV; Shestakova, I; Gaysinskiy, V; Entine, G; Tornai, MP; Stack, BC
Published in: IEEE Transactions on Nuclear Science
February 1, 2004

We report here on a novel design of a digital, intraoperative imaging probe intended for use in radio-guided surgical procedures in conjunction with radiolabels such as 131I and 18F. The probe allows the user to rapidly localize tumors by detecting the highly penetrating gamma rays, and then image the tumor with the short-range beta rays. The system provides a rapid, high-resolution, image of the interrogated area, fulfilling the need for clear delineation of tumors during radio-guided surgical procedures. The beta imaging sensor consists of a micro-columnar CsI(Tl) scintillator screen capable of providing very high detection efficiency, high light output and excellent spatial resolution coupled to a CCD via a flexible, coherent fiberoptic bundle. The gamma sensor is a shielded piece of crystalline CsI(Tl) coupled to a photodiode located behind the image sensitive front end. The feasibility of this design was studied by separately testing the beta imaging and gamma detection components. The operation of the components was characterized with intrinsic performance measurements of count rates, signal-to-noise ratios, spatial resolution, as well as time for acquiring useful images using radionuclide and anthropomorphic phantoms.

Duke Scholars

Published In

IEEE Transactions on Nuclear Science

DOI

ISSN

0018-9499

Publication Date

February 1, 2004

Volume

51

Issue

1 I

Start / End Page

110 / 116

Related Subject Headings

  • Nuclear & Particles Physics
  • 5106 Nuclear and plasma physics
  • 0903 Biomedical Engineering
  • 0299 Other Physical Sciences
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
 

Citation

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Tipnis, S. V., Nagarkar, V. V., Shestakova, I., Gaysinskiy, V., Entine, G., Tornai, M. P., & Stack, B. C. (2004). Feasibility of a beta-gamma digital imaging probe for radioguided surgery. IEEE Transactions on Nuclear Science, 51(1 I), 110–116. https://doi.org/10.1109/TNS.2003.823022
Tipnis, S. V., V. V. Nagarkar, I. Shestakova, V. Gaysinskiy, G. Entine, M. P. Tornai, and B. C. Stack. “Feasibility of a beta-gamma digital imaging probe for radioguided surgery.” IEEE Transactions on Nuclear Science 51, no. 1 I (February 1, 2004): 110–16. https://doi.org/10.1109/TNS.2003.823022.
Tipnis SV, Nagarkar VV, Shestakova I, Gaysinskiy V, Entine G, Tornai MP, et al. Feasibility of a beta-gamma digital imaging probe for radioguided surgery. IEEE Transactions on Nuclear Science. 2004 Feb 1;51(1 I):110–6.
Tipnis, S. V., et al. “Feasibility of a beta-gamma digital imaging probe for radioguided surgery.” IEEE Transactions on Nuclear Science, vol. 51, no. 1 I, Feb. 2004, pp. 110–16. Scopus, doi:10.1109/TNS.2003.823022.
Tipnis SV, Nagarkar VV, Shestakova I, Gaysinskiy V, Entine G, Tornai MP, Stack BC. Feasibility of a beta-gamma digital imaging probe for radioguided surgery. IEEE Transactions on Nuclear Science. 2004 Feb 1;51(1 I):110–116.

Published In

IEEE Transactions on Nuclear Science

DOI

ISSN

0018-9499

Publication Date

February 1, 2004

Volume

51

Issue

1 I

Start / End Page

110 / 116

Related Subject Headings

  • Nuclear & Particles Physics
  • 5106 Nuclear and plasma physics
  • 0903 Biomedical Engineering
  • 0299 Other Physical Sciences
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics