Atlas of PET/MR Imaging in Oncology by O. Ratib, M. Schwaiger (auth.), Osman Ratib, Markus

By O. Ratib, M. Schwaiger (auth.), Osman Ratib, Markus Schwaiger, Thomas Beyer (eds.)

This new venture on PET-MR imaging in oncology contains electronic interactive software program matching the circumstances within the e-book. The interactive model of the atlas is predicated at the most up-to-date net usual, HTML5, making sure compatibility with any laptop working process in addition to a committed model for Apple iPad.

The e-book opens with an creation to the rules of hybrid imaging that can pay specific consciousness to PET/MR imaging and conventional PET/MR acquisition protocols. quite a lot of illustrated scientific case stories are then provided. each one case examine contains a brief medical heritage, findings, and instructing issues, through illustrations, legends, and comments.

The multimedia model of the ebook contains dynamic video clips that let the reader to flick thru sequence of rotating 3D photographs (MIP or quantity rendered), demonstrate mixing among puppy and MR, and dynamic visualization of 3D picture volumes. the films might be performed both constantly or sequentially for greater exploration of units of images.

The editors of this cutting-edge book are key opinion leaders within the box of multimodality imaging. Professor Osman Ratib (Geneva) and Professor Markus Schwaiger (Munich) have been the 1st in Europe to start up the medical adoption of PET/MR imaging. Professor Thomas Beyer (Zurich) is an across the world well known pioneering physicist within the box of hybrid imaging. person medical situations offered during this e-book are co-authored by way of prime overseas radiologists and nuclear physicians specialists within the use of puppy and MRI.

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Br J Radiol 75 Spec No:S6–S15 3. Pichler BJ, Kolb A, Nagele T, Schlemmer HP (2010) PET/MRI: paving the way for the next generation of clinical multimodality imaging applications. J Nucl Med 51(3):333–336 4. Schiepers C, Dahlbom M (2011) Molecular imaging in oncology: the acceptance of PET/CT and the emergence of MR/PET imaging. Eur Radiol 21(3):548–554 5. Zaidi H, Del Guerra A (2011) An outlook on future design of hybrid PET/MRI systems. Med Phys 38(10):5667–5689 6. Kielstra P (2009) Doctor innovation: shaking up the health system.

Griswold M et al (2002) Generalized autocalibrating partially parallel acquisitions (GRAPPA). Magn Reson Med 47(6):1202–1210 36. Barkhausen J et al (2001) Whole-body MR imaging in 30 seconds with real-time true FISP and a continuously rolling table platform: feasibility study. Radiology 220(1):252–256 37. Quick H et al (2004) High spatial resolution whole-body MR angiography featuring parallel imaging: initial experience. Fortschr Roentgenstr 176(2):163–169 38. Veit-Haibach P et al (2013) PET/MR imaging using a Tri-modality PET/CT – MR system with a dedicated shuttle in clinical routine.

Unfortunately, such sequences require long acquisition time [108] while the resulting images do not have clinically relevant information for most examinations. This is an on-going area of research and several academic and industry groups are trying to improve MRAC with clinically sensible MR acquisition times. g. metal implants A. Kalemis Fig. e. signal void areas and bright signals in the tissues surrounding the implants [110]. Such artefacts propagate in the MRAC map in a relatively arbitrary fashion, depending on the location and extent of the artefact (Fig.

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