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Journal of Nuclear Medicine Technology

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Research ArticleImaging

Practical Clinical Measurement of Radiotracer Concentration in Blood: Initial Device Concept and Feasibility Testing

Josh Knowland, Ronald Lattanze, Jesse Kingg and Steven Perrin
Journal of Nuclear Medicine Technology December 2018, 46 (4) 373-377; DOI: https://doi.org/10.2967/jnmt.118.212266
Josh Knowland
Lucerno Dynamics, Cary, North Carolina
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Ronald Lattanze
Lucerno Dynamics, Cary, North Carolina
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Jesse Kingg
Lucerno Dynamics, Cary, North Carolina
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Steven Perrin
Lucerno Dynamics, Cary, North Carolina
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Figures

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    FIGURE 1.

    Cross-section diagram of proposed scintillation catheter consisting of intravenous catheter (A), scintillation fiber (B), SiPM (C), and electrical signal wires (D).

  • FIGURE 2.
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    FIGURE 2.

    Cross-section diagram of prototype detector consisting of scintillation fiber (A), mounting screw (B), acrylic light guide (C), SiPM (D), and electronic circuitry (E).

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    FIGURE 3.

    Detector linearity (A) and absolute sensitivity (B). cps = counts per second.

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    FIGURE 4.

    Background counts as function of vein diameter at 2 different depths of insertion. cps = counts per second.

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    FIGURE 5.

    Impact of vein diameter. cps = counts per second.

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Journal of Nuclear Medicine Technology: 46 (4)
Journal of Nuclear Medicine Technology
Vol. 46, Issue 4
December 1, 2018
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Practical Clinical Measurement of Radiotracer Concentration in Blood: Initial Device Concept and Feasibility Testing
Josh Knowland, Ronald Lattanze, Jesse Kingg, Steven Perrin
Journal of Nuclear Medicine Technology Dec 2018, 46 (4) 373-377; DOI: 10.2967/jnmt.118.212266

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Practical Clinical Measurement of Radiotracer Concentration in Blood: Initial Device Concept and Feasibility Testing
Josh Knowland, Ronald Lattanze, Jesse Kingg, Steven Perrin
Journal of Nuclear Medicine Technology Dec 2018, 46 (4) 373-377; DOI: 10.2967/jnmt.118.212266
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