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    Chest - Pneumonia

    Pneumonia seen in these MPR images of this 49-year-old man with shortness of breath and BMI 25.4


    Courtesy South Coast Radiology Qld, Australia

    View Scan Parameters
    Scan Mode Ultra Helical
    Collimation 0.5 mm × 80
    kVp 120
    mAs SUREExposure
    Rotation Time 0.35 s
    Scan Range 409 mm
    Dose Reduction AiCE
    CTDIvol 4.5 mGy
    DLP 204.4 mGy·cm
    Effective Dose 2.9 mSv
    k-factor 0.014 (AAPM Report 96)

    Chest – Calcified Nodule

    82-year-old man, follow up chest CT demonstrates a calcified lung nodule in the right lung


    Courtesy South Coast Radiology Qld, Australia

    View Scan Parameters
    Scan Mode Ultra Helical
    Collimation 0.5 mm × 80
    kVp 120
    mAs SUREExposure
    Rotation Time 0.35 s
    Scan Range 364.5 mm
    Dose Reduction AiCE
    CTDIvol 5.2 mGy
    DLP 214 mGy·cm
    Effective Dose 3.0 mSv
    k-factor 0.014 (AAPM Report 96)

    Low dose chest with SilverBeam

    SilverBeam in combination with AiCE Deep Learning Reconstruction provides excellent image quality at dose levels more comparable to a chest x-ray.

    In this patient the DLP was only 24 mGy.cm with an effective dose of 0.3 mSv.


    Courtesy
    Medic Medical Center, HCMC Vietnam

    View Scan Parameters
    Scan Mode SilverBeam Ultra-Helical
    Collimation 0.5 mm x 80
    kVp 120
    mAs SUREExposure
    Rotation Time 0.5 s
    Scan Range 241 mm
    Dose Reduction AiCE
    CTDIvol 0.70 mGy
    DLP 24.70 mGy-cm
    Effective Dose 0.34 mSv
    k-factor 0.014 (AAPM Report 96)

    Pulmonary CTA - Iodine Mapping SCT

    Color iodine maps quickly and definitively show areas of hypoperfusion to enhance your diagnosis.

    Hyperperfused areas are commonly associated with pulmonary pathology as demonstrated in this case of a pulmonary embolism.


    Courtesy
    Royal Bournemouth Hospital, Bournemouth, UK

    View Scan Parameters
    Scan Mode Ultra-Helical
    Collimation 0.5 mm × 80
    kVp 120
    mAs SURE Exposure
    Rotation Time 0.35 s
    Scan Range 300 mm
    Dose Reduction AiCE
    CTDIvol 1.6, 2.0 mGy
    DLP 126.9 mGy-cm
    Effective Dose 1.78 mSv
    k-factor 0.014 (AAPM Report 96)

    Rib Fractures

    51-year-old woman with prior fall. Global Illumination rendering provides excellent depiction of multiple rib fractures


    Courtesy South Coast Radiology Qld, Australia

    View Scan Parameters
    Scan Mode Ultra Helical
    Collimation 0.5 mm × 80
    kVp 120
    mAs SUREExposure
    Rotation Time 0.35 s
    Scan Range 376 mm
    Dose Reduction AiCE
    CTDIvol 2.9 mGy
    DLP 123.5 mGy·cm
    Effective Dose 1.7 mSv
    k-factor 0.014 (AAPM Report 96)

    Portal Abdomen

    Low noise, excellent image quality in this portal phase abdomen scan


    Courtesy
    Royal Bournemouth Hospital, Bournemouth, UK

    View Scan Parameters
    Scan Mode Ultra-Helical
    Collimation 0.5 mm × 80
    kVp 120
    mAs SURE Exposure
    Rotation Time 0.5 s
    Scan Range 449 mm
    Dose Reduction AiCE
    CTDIvol 4.3 mGy
    DLP 213.9 mGy-cm
    Effective Dose 3.2 mSv
    k-factor 0.015 (AAPM Report 96)

    Multi Phase Abdomen – Iodine Mapping SCT

    Color iodine maps can be provided with every multiphase abdomen protocol to further enhance your diagnostic confidence.

    Iodine mapping can help to visualize and differentiate hypervascular lesions such as hepatocellular carcinoma (HCC) as seen in this case.
    Here a hyper-vascularized arterial lesion can be easily visualized in both the gray scale image and color iodine maps. The lesion also demonstrates a “washout” pattern in the venous and delayed phase consistent with imaging findings associated with HCC.


    Courtesy
    Medic Medical Center, HCMC Vietnam

    View Scan Parameters
    Scan Mode Ultra-Helical
    Collimation 0.5 mm × 80
    kVp 120
    mAs SURE Exposure
    Rotation Time 0.5 s
    Scan Range 456, 456, 456, 200 mm
    Dose Reduction AiCE
    CTDIvol 4.8, 4.8, 4.8, 4.8 mGy
    DLP 833 mGy-cm
    Effective Dose 12.49 mSv
    k-factor 0.015 (AAPM Report 96)

    Multi Phase Abdomen – Iodine Mapping SCT

    Iodine mapping can help to visualize and differentiate hypervascular lesions that may exhibit similar enhancements in the arterial phase.

    Here a hyper-vascularized arterial lesion can be easily visualized in both the gray scale image and color iodine maps.
    The iodine maps unequivocally show the lesion still retains some contrast material in the venous and delayed, but the enhancement is less intense compared to the arterial phase.


    Courtesy
    Medic Medical Center, HCMC Vietnam

    View Scan Parameters
    Scan Mode Ultra-Helical
    Collimation 0.5 mm x 80
    kVp 120
    mAs SUREExposure
    Rotation Time 0.5 s
    Scan Range 288, 280, 452, 333 mm
    Dose Reduction AiCE
    CTDIvol 4.8, 4.8, 4.8, 4.8 mGy
    DLP 876 mGy-cm
    Effective Dose 13.14 mSv
    k-factor 0.015 (AAPM Report 96)

    Aorta CTA + SEMAR

    SEMAR removes artifacts from the stent graft in this CTA of the abdominal aorta


    Courtesy Hakujyuji Hospital, Japan

    View Scan Parameters
    Scan Mode Ultra Helical
    Collimation 0.5 mm × 80
    kVp 120
    mAs SUREExposure
    Rotation Time 0.5 s
    Dose Reduction AiCE
    CTDIvol 7.9 mGy
    DLP 550.3 mGy·cm
    Effective Dose 8 mSv
    k-factor 0.0145 (AAPM Report 96)

    Lumbar Spine

    High quality soft tissue and bone reconstructions with AiCE


    Courtesy South Coast Radiology Qld, Australia

    View Scan Parameters
    Scan Mode Ultra Helical
    Collimation 0.5 mm × 80
    kVp 120
    mAs SUREExposure
    Rotation Time 0.5 s
    Scan Range 321 mm
    Dose Reduction AiCE
    CTDIvol 14 mGy
    DLP 507.4 mGy·cm
    Effective Dose 7.6 mSv
    k-factor 0.015 (AAPM Report 96)

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