By O. Ratib, M. Schwaiger (auth.), Osman Ratib, Markus Schwaiger, Thomas Beyer (eds.)
This new venture on PET-MR imaging in oncology comprises electronic interactive software program matching the situations within the booklet. The interactive model of the atlas relies at the most modern internet average, HTML5, making sure compatibility with any computing device working process in addition to a devoted model for Apple iPad.
The e-book opens with an advent to the foundations of hybrid imaging that can pay specific cognizance to PET/MR imaging and conventional PET/MR acquisition protocols. quite a lot of illustrated scientific case studies are then offered. every one case examine encompasses a brief medical historical past, findings, and educating issues, by way of illustrations, legends, and comments.
The multimedia model of the publication comprises dynamic videos that permit the reader to flick through sequence of rotating 3D pictures (MIP or quantity rendered), exhibit mixing among puppy and MR, and dynamic visualization of 3D photograph volumes. the flicks will be performed both constantly or sequentially for larger exploration of units of images.
The editors of this state of the art booklet 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 begin 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 scientific instances offered during this booklet are co-authored by means of major overseas radiologists and nuclear physicians specialists within the use of puppy and MRI.
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Additional info for Atlas of PET/MR Imaging in Oncology
2 Comprehensive sequential PET/MR imaging protocol for assessing myocardial viability Heart protocol M2D-B-TFE B-TFE 2 chamber (LV) B-TFE 2 chambers (RV) B-TFE 4 chambers B-TFE short axis (×8 to cover all LV) Dynamic sTFE 3 slices PSIR-TFE-2 chambers PSIR-TFE-4 chambers PSIR-TFE-short axis IR-TFE-LL 3D-IRTFE 4 chambers 3D-IRTFE 2 chambers 3D-IRTFE short axis atMR cardiac Gated FDG-PET (10 cardiac phases) Total time Acq. time (min) 00:00:09 00:00:09 00:00:11 00:00:11 00:01:15 00:00:59 00:00:06 00:00:06 00:00:06 00:00:10 00:00:09 00:00:09 00:00:09 00:01:06 00:10:00 00:14:45 Effective acq.
2 for simultaneous and sequential acquisitions. In both cases, the MR scans can start before or after PET depending on the workflow of the department and, in some occasions, MR scans may start during the radiotracer’s uptake time . T1/T2 fMRI DTI CSI UTE ce-T1 Dynamic FET PET Time 50 min Fig. 1 Example protocol for PET/MR scan in neuro-oncology, comprising a dynamic 18F-FET PET and several MR acquisitions, where CSI Chemical Shift Imaging, UTE Ultra-Short Time Echo, ce contrast enhanced scan (Adapted from Neuner et al.
Reported that high- temporal-resolution MRI-derived motion estimates acquired simultaneously on the hybrid BrainPET system (Siemens Healthcare) can be used to improve PET image quality, thus increasing its reliability, reproducibility, and quantitative accuracy . Likewise, novel 3D cine sequences are under development to track spatio-temporal deformation of organs such as the heart and the thorax. Subsequently, deformation fields are generated and incorporated into the PET reconstruction [51, 82–85].
Atlas of PET/MR Imaging in Oncology by O. Ratib, M. Schwaiger (auth.), Osman Ratib, Markus Schwaiger, Thomas Beyer (eds.)