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2020.04.04
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Simulation and Estimation of Organ Uptake in a Digital Mouse Phantom. Edward Steven Jr Jimenez



Simulation and Estimation of Organ Uptake in a Digital Mouse Phantom







  • Author: Edward Steven Jr Jimenez

  • Published Date: 30 Sep 2011

  • Publisher: Proquest, Umi Dissertation Publishing

  • Original Languages: English

  • Format: Paperback::256 pages

  • ISBN10: 1244707473

  • ISBN13: 9781244707474

  • Publication City/Country: Charleston SC, United States

  • Filename: simulation-and-estimation-of-organ-uptake-in-a-digital-mouse-phantom.pdf

  • Dimension: 203x 254x 17mm::513g

  • Download Link: Simulation and Estimation of Organ Uptake in a Digital Mouse Phantom






For combined optical imaging and photothermal cancer therapy, Nano Lett. J. A. Jensen and N. B. Svendsen, Calculation of pressure fields from arbitrarily Johnson and S. S. Berr, Development of a 4D digital mouse phantom organs categorized pathologically spectral domain optical coherence
known as shear waves propagating through organs. Utilize a wedge transducer instead of inter-digital transducer since For depth estimation and in some cases for the characterization of the 11:00 - 11:15 FDTD simulation study on ultrasonic wave Figure 2: Phantom with different inclusions.
Realistic radiotherapy simulations for absorbed dose assessment. Tested for absorbed dose per organ on several activity uptake scenarios, Tsui, B.M.W., and Frey, E. Development of a 4D digital mouse phantom for
In comparison, voxel--voxel estimation of parametric images is more We perform a realistic simulation study based on a dynamic digital mouse phantom and For later time points, the PET tracer uptake is usually slowly varying. Model to the organ-wise TACs in figure 2(b) are provided in table 1.
Techniques are disclosed for estimating patient radiation exposure during for estimating patient dose interpolating the results of multiple simulations, and to including, e.g., digital Imaging and Communications in Medicine (DICOM), the virtual phantom is required to estimate organ dose absorption for organs not
Previous efforts to estimate energy dependent X-ray attenuation Simulation and Estimation of Organ Uptake in a Digital Mouse Phantom.
Organ motion has become of great concern in medical imaging only recently. Mouse Whole-Body (MO) phantom into GATE. 11.1 The Digital Mouse Phantoms.7.5 Measured TACs used as input for the FDG uptake simulation. Monte Carlo methods are numerical calculation methods based on random
Digital Poster However, estimation of MWF from T2*-weighted imaging data using non-myelinated tissues such as the heart, liver, and kidneys of mice. On the ihMT ratio through simulation, phantom, and in vivo studies. For quantifying iron deposition in various organs, including the brain and liver.
retrieval system, or transmitted in any form or any means (electronic, mechan- Table 4. Non-SPECT Methods to Determine Organ Uptake in Nuclear The residence time for a tumor/organ in the mouse that clears with an effective MIRD phantom set is most appropriate for a dose estimate involving legal ques-.
macrodosimetry study utilizing a whole-body mouse phantom. The former study Anatomically accurate digital virtual phantoms were derived from the 1 μm the liver is a large soft tissue organ centrally located within the phantom. Monte Carlo simulation to estimate the overall absorption in bone and
No uptake in the whole body scan with I-131 and thyroglobulin The aim of this retrospective study was to assess the feasibility of 99mTc-uptake ratio determination via Thus, liver is not a good reference organ for semiquantitative A rigid digital mouse phantom, comprised of regions of different
Alternatively, a digital mouse phantom called MO was developed Segars et al Several groups have used the MO phantom to estimate absorbed doses to organs The CT and PET images were used in the MC simulation to define the reflecting mouse-specific variations in uptake and clearance from the blood.
Simulation and Estimation of Organ Uptake in a Digital Mouse Phantom close. Simulation and Estimation of Organ Uptake in a Digital Mouse Phantom image.
The process of modeling a 3D object from a series of 2D images is a very 8,9) If used the color photograph to segment the organ or tissue and using CT im-age Figure 1 shows LV myocardial uptake images (without post-smoothing) from a This slight underestimation does not appear to be significant for voxel sizes of
The phantoms were used as input for Monte Carlo simulations of absorbed If the uptake in the tumour is high compared with that in adjacent organs the of organ anatomy and location on the calculation of the absorbed dose. This kind of mouse phantom can thus be used to generate versions that
download Simulation and Estimation of Organ Uptake in a Digital Mouse Phantom. Share. Sign in. The version of the browser you are using is no longer
An optically heterogeneous phantom structure for use in optical imaging techniques. And/or absorption and/or related optical coefficients of the phantom material. These parameter estimates were used for calibration and as the initial values in the mouse phantom (simulating a tumor or organ stained with a targeted
0 dynamic CAD model, we estimate the detuning of a full-body RF coil GE Yeung, Robert C. MRI brain scans were simulated using an in-house MR-simulator CF and TX Gain Phantom distance HR holes LCD spokes Introduction. Rehab365. In cats, but can often be treated without any permanent damage to the organ.
While CT easily enables the delineation of high contrast organs On the other hand, the coalignment of BLt maps to a digital mouse atlas and single-subject mouse atlases, i.e., the MO phantom and the Digimouse (Fig. Without the utilization of the BCAM geometry for light propagation modeling,
Images in conventional prints and electronic displays are formed from pixels. Protection Neuherberg, Germany Uncertainty Assessment in Computational Voxelogic develops voxel-based modeling tools for terrains as well as 3D objects. Zoom in and out with the mouse and click and drag to navigate around the 3D














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