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Research ArticleImaging

Development of a 2-Layer Double-Pump Dynamic Cardiac Phantom

Hara Narihiro, Onoguchi Masahisa, Hojyo Osamu, Kawaguchi Hiroyuki, Murai Masakazu and Matsushima Noriko
Journal of Nuclear Medicine Technology March 2016, 44 (1) 31-35; DOI: https://doi.org/10.2967/jnmt.115.168252
Hara Narihiro
1Sumitomo Hospital, Radiological Technology, Nakanoshima, Kita-ku, Osaka, Japan; and
2Kanazawa University, Graduate School of Medical Sciences, Kodatsuno, Kanazawa, Japan
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Onoguchi Masahisa
2Kanazawa University, Graduate School of Medical Sciences, Kodatsuno, Kanazawa, Japan
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Hojyo Osamu
1Sumitomo Hospital, Radiological Technology, Nakanoshima, Kita-ku, Osaka, Japan; and
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Kawaguchi Hiroyuki
1Sumitomo Hospital, Radiological Technology, Nakanoshima, Kita-ku, Osaka, Japan; and
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Murai Masakazu
1Sumitomo Hospital, Radiological Technology, Nakanoshima, Kita-ku, Osaka, Japan; and
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Matsushima Noriko
1Sumitomo Hospital, Radiological Technology, Nakanoshima, Kita-ku, Osaka, Japan; and
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  • Article
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  • FIGURE 1.
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    FIGURE 1.

    (A) Schematic diagram of conventional dynamic cardiac phantom for nuclear medicine. (B) Schematic diagram of new dynamic cardiac phantom for nuclear medicine.

  • FIGURE 2.
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    FIGURE 2.

    (A) Our new dynamic cardiac phantom. (B) Appearance of 2 cylinder pumps. (C) Appearance of outlet (front). (D) Scale of stroke.

  • FIGURE 3.
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    FIGURE 3.

    Results of statistical analysis of actual measurement values and SPECT analysis values. (A) EDV. (B) ESV. (C) LVEF.

  • FIGURE 4.
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    FIGURE 4.

    Results of stroke ratios and wall motion. (A) Matrix size, 128 × 128. (B) Matrix size, 64 × 64.

  • FIGURE 5.
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    FIGURE 5.

    Results of stroke ratios and changes in myocardial wall thickness. (A) Matrix size, 128 × 128. (B) Matrix size, 64 × 64.

Tables

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    TABLE 1

    Actual Measurement Values and SPECT Analysis Values (EDV, ESV, and LVEF) at Different Stroke Ratios

    EDV (mL)ESV (mL)LVEF (%)
    SPECTSPECTSPECT
    Stroke rateActual measurement value128 × 12864 × 64Actual measurement value128 × 12864 × 64Actual measurement value128 × 12864 × 64
    20:20495.76506.00489.00294.80276.00257.0040.6045.5047.40
    20:10495.76473.00465.00294.80271.00262.0040.6042.7043.70
    20:5495.76468.00450.00294.80286.00269.0040.6038.9040.20
    15:15470.64459.00430.00319.90289.00264.0032.0337.0038.60
    15:10470.64451.00438.00319.90292.00285.0032.0335.3034.90
    15:5470.64445.00414.00319.90303.00270.0032.0331.9034.80
    10:10445.52430.00416.00345.00319.00304.0022.5625.8026.90
    10:5445.52425.00410.00345.00333.00317.0022.5621.6022.70
    10:20445.52440.00416.00345.00311.00282.0022.5629.3032.20
    10:15445.52432.00421.00345.00306.00297.0022.5629.2029.50
    5:10420.40404.00385.00370.16336.00321.0011.9516.8016.60
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Journal of Nuclear Medicine Technology: 44 (1)
Journal of Nuclear Medicine Technology
Vol. 44, Issue 1
March 1, 2016
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Development of a 2-Layer Double-Pump Dynamic Cardiac Phantom
Hara Narihiro, Onoguchi Masahisa, Hojyo Osamu, Kawaguchi Hiroyuki, Murai Masakazu, Matsushima Noriko
Journal of Nuclear Medicine Technology Mar 2016, 44 (1) 31-35; DOI: 10.2967/jnmt.115.168252

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Development of a 2-Layer Double-Pump Dynamic Cardiac Phantom
Hara Narihiro, Onoguchi Masahisa, Hojyo Osamu, Kawaguchi Hiroyuki, Murai Masakazu, Matsushima Noriko
Journal of Nuclear Medicine Technology Mar 2016, 44 (1) 31-35; DOI: 10.2967/jnmt.115.168252
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Keywords

  • Dynamic cardiac phantom
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