Siemens biography 16 hi rez designs

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  • The Biograph Perception 600 anticipation a antilepton emission picturing (PET) sports ground computed picturing (CT) arrangement designed unmixed medical tomography. It combines high-resolution Darling and End result technologies in depth provide complete diagnostic expertise. The silhouette is qualified of getting PET bear CT statistics simultaneously, sanctionative efficient pole accurate co-registration of morphology and serviceable information.

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    24 protocols using biograph vision 600

    1

    PET/CT Imaging reproach 18F-FDG Uptake

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    Biograph mCTClearly going beyond

    Innovative technology for better care

    Accelerate your potential with technologies that go beyond the standard level of imaging. Serve more patients and grow your business with enhanced technological and clinical efficiencies that empower you to access more steps across the entire patient journey. With intelligent imaging and the ability to accommodate all patients,1 Biograph mCT moves the patient and user experience to a new level of care.

    The high 78-mm3 volumetric resolution2 and 4 x 4-mm LSO crystal elements of Biograph mCT bring enhanced detectability with accurate and reproducible quantification. True TOF capabilities and innovative technologies such as FlowMotion™ help you lead the way in technological and medical advancement. Powerful CT solutions ranging from 40 to 128 slices with low-dose technologies give you the flexibility to go beyond standard care.

    Biograph mCT supports the clinical development of PET/CT imaging in oncology, cardiology, and neurology. Delivering customizable solutions for diagnostics, theranostics, radiation therapy planning, and research imaging, Biograph mCT lets you redefine clinical decision-making.

    The large bore and high weight capacity of Biograph mCT combined with intelligent im

    . Author manuscript; available in PMC: 2014 Aug 21.

    Published in final edited form as: Phys Med Biol. 2013 Jul 29;58(16):10.1088/0031-9155/58/16/5567. doi: 10.1088/0031-9155/58/16/5567

    Abstract

    Whole-body PET/CT scanners are important clinical and research tools to study tracer distribution throughout the body. In whole-body studies, respiratory motion results in image artifacts. We have previously demonstrated for brain imaging that, when provided accurate motion data, event-by-event correction has better accuracy than frame-based methods. Therefore, the goal of this work was to develop a list-mode reconstruction with novel physics modeling for the Siemens Biograph mCT with event-by-event motion correction, based on the MOLAR platform (Motion-compensation OSEM List-mode Algorithm for Resolution-Recovery Reconstruction). Application of MOLAR for the mCT required two algorithmic developments. First, in routine studies, the mCT collects list-mode data in 32-bit packets, where averaging of lines of response (LORs) by axial span and angular mashing reduced the number of LORs so that 32 bits are sufficient to address all sinogram bins. This degrades spatial resolution. In this work, we proposed a probabilistic assignment of LOR positions (pLOR) that addresses axial and transax

  • siemens biography 16 hi rez designs