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Dose Reduction in Pediatric Molecular Imaging Project Summary The radiation exposure resulting from medical imaging has become a public safety concern. Nuclear medicine imaging provides potentially life-saving information regarding physiological processes. Such imaging is particularly valuable in children and infants wherein the rapid and unequivocal diagnosis of developmental or pathological concerns is essential for the health of these patients. Our overall objective is to reduce pediatric patient absorbed dose while maintaining and even improving the diagnostic quality of nuclear medicine images. Dose reduction for pediatric patients is particularly important since such patients are at increased risk owing to the enhanced radiosensitivity of their tissues and the longer time-period over which stochastic radiation effects may manifest. We will accomplish this overall objective by: 1. Optimizing image acquisition, reconstruction, and processing methods to achieve the best image quality at the lowest possible administered activity; 2. Collecting imaging-based pharmacokinetic data for agents commonly used in pediatric patients; 3. We will develop online tools that compare dose and image quality for patients of different weights and heights at different administered activities with dose and image quality metrics obtained using the current consensus guidelines and; 4., investigate the sensitivity of the results obtained in aims 1 and 3 to changes in instrumentation. Collectively, these aims will substantially impact dosing of pediatric patients for molecular imaging procedures. Aims 1 and 2 will provide the data needed to evaluate whether consensus guidelines lead to dose reduction for all pediatric patients. We already demonstrated in the prior grant period that optimal dose reduction (i.e., reduction that preserves diagnostic image quality) requires an accounting of both patient height and weight. Aim 3 will provide the tools to enable professional organizations to rigorously evaluate and likely refine or provide alternatives to consensus dose guidelines. Any guideline or dose- reduction effort that endeavors to maintain diagnostic image quality will be susceptible to imaging instrumentation variability. In Aim 4, we examine the impact of this variability on both already established consensus guidelines and also on the optimization scheme that we propose to develop via aims 1-3. By using state-of-the-art computational simulation, image quality evaluation, and radiation dosimetry tools (many of which were developed by the investigators), the work proposed in this grant application will apply dose reduction methods in a much more rigorous and scientifically validated manner. We expect that completion of the proposed studies will allow the molecular imaging community to introduce and, consistent with the realities of clinical practice, implement pediatric dose-reduction approaches that substantially improve upon current guidelines and that also point to future technological advances that could yield even greater dose-reduction while simultaneously improving diagnostic image quality.
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Re-evaluation of pediatric 18F-FDG dosimetry: Cristy-Eckerman versus UF/NCI hybrid computational phantoms.
儿科 18F-FDG 剂量测定的重新评估:Cristy-Eckerman 与 UF/NCI 混合计算模型。
DOI: 10.1088/1361-6560/aad47a
发表时间: 2018
期刊: Physics in medicine and biology
影响因子: 3.5
作者: [Khamwan,Kitiwat, O'Reilly,ShannonE, Plyku,Donika, Goodkind,Alison, Josefsson,Anders, Cao,Xinhua, Fahey,FredericH, Treves,STed, Bolch,WesleyE, Sgouros,George]
通讯作者: Sgouros,George
Dosimetric considerations of 99mTc-MDP uptake within the epiphyseal plates of the long bones of pediatric patients.
儿科患者长骨骨骺板内 99mTc-MDP 吸收的剂量学考虑因素。
DOI: 10.1088/1361-6560/abb1db
发表时间: 2020
期刊: Physics in medicine and biology
影响因子: 3.5
作者: [Brown,JustinL, Sexton-Stallone,Briana, Li,Ye, Frey,EricC, Treves,STed, Fahey,FredericH, Plyku,Donika, Cao,Xinhua, Choi,Chansoo, Kim,ChanHyeong, Sgouros,George, Aris,JohnP, Bolch,WesleyE]
通讯作者: Bolch,WesleyE
Assessment of different patient-to-phantom matching criteria applied in Monte Carlo-based computed tomography dosimetry.
评估基于蒙特卡罗的计算机断层扫描剂量测定中应用的不同患者与体模匹配标准。
DOI: 10.1002/mp.12502
发表时间: 2017
期刊: Medical physics
影响因子: 3.8
作者: [Stepusin,ElliottJ, Long,DanielJ, Marshall,EmilyL, Bolch,WesleyE]
通讯作者: Bolch,WesleyE
Body morphometry appropriate computational phantoms for dose and risk optimization in pediatric renal imaging with Tc-99m DMSA and Tc-99m MAG3.
身体形态测量适当的计算模型,用于使用 Tc-99m DMSA 和 Tc-99m MAG3 进行儿科肾脏成像的剂量和风险优化。
DOI: 10.1088/1361-6560/abb1da
发表时间: 2020
期刊: Physics in medicine and biology
影响因子: 3.5
作者: [Brown,JustinL, Sexton-Stallone,Briana, Li,Ye, Frey,EricC, Treves,STed, Fahey,FredericH, Plyku,Donika, Cao,Xinhua, Sgouros,George, Bolch,WesleyE]
通讯作者: Bolch,WesleyE
Quantitative SPECT of Difficult to Image Therapeutic Radionuclides: An Extensible Cloud-Based Framework
Development and Validation of a Collaborative Web/Cloud-Based Dosimetry System for Radiopharmaceutical Therapy.
Development and Validation of a Collaborative Web/Cloud-Based Dosimetry System for Radiopharmaceutical Therapy.
Development and Validation of a Collaborative Web/Cloud-Based Dosimetry System for Radiopharmaceutical Therapy.
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