All Relations between planning and ct

Publication Sentence Publish Date Extraction Date Species
P Alaei, E Spezi, M Reynold. SU-E-J-15: Calculating the Dose from KV Cone Beam CT Within and Outside the Treatment Volume Using a Treatment Planning System. Medical physics. vol 39. issue 6Part6. 2019-11-20. PMID:28517567. su-e-j-15: calculating the dose from kv cone beam ct within and outside the treatment volume using a treatment planning system. 2019-11-20 2023-08-13 Not clear
K Matsubara, R Kohno, S Nishioka, T Shibuya, T Ariji, T Akimoto, H Saito. SU-E-J-31: Direct Point Dose Verification Using IGRT for Actual Beam Delivery. Medical physics. vol 39. issue 6Part6. 2019-11-20. PMID:28517591. in radiation therapy, treatment planning for patients is performed using pre-acquired ct images. 2019-11-20 2023-08-13 Not clear
B Winey, X Zhu, S Both, J Adam. MO-E-BRCD-01: Proton Treatment Planning Issues. Medical physics. vol 39. issue 6Part21. 2019-11-20. PMID:28518271. some issues such as patient setup uncertainty and ct number calibration are common with photon planning but have potentially greater effects on the treatment plan simulation and delivery for proton. 2019-11-20 2023-08-13 Not clear
J Hevez. MO-D-213AB-01: A Brief History of Medical Physics Reimbursement. Medical physics. vol 39. issue 6Part21. 2019-11-20. PMID:28518273. as we progressed from the use of ct planning images with 3d conventional therapy, brachytherapy -high and low dose rate systems, imrt planning and delivery (with concomitant plan verification work) to the latest procedures of srs and sbrt with image guided radiation therapy (igrt), each procedure has its own story surrounding how its reimbursement was developed. 2019-11-20 2023-08-13 Not clear
D Lovelock, S Lim, E Yorke, A Kirov, T LoSass. SU-E-T-532: Comparison of Dose Distributions Calculated Using Different Planning Systems with Radiochromic Film Measurements in an Inhomogeneous Phantom. Medical physics. vol 39. issue 6Part18. 2019-11-20. PMID:28518481. the phantom was ct scanned and the dicom study loaded into each of the treatment planning systems to calculate the dose distribution in the phantom. 2019-11-20 2023-08-13 Not clear
H Kim, A Chang, Y Park, S Y. SU-E-T-524: The Effect of CT Contrast on CyberKnife Treatment Planning. Medical physics. vol 39. issue 6Part18. 2019-11-20. PMID:28518499. su-e-t-524: the effect of ct contrast on cyberknife treatment planning. 2019-11-20 2023-08-13 Not clear
H Kim, A Chang, Y Park, S Y. SU-E-T-524: The Effect of CT Contrast on CyberKnife Treatment Planning. Medical physics. vol 39. issue 6Part18. 2019-11-20. PMID:28518499. to investigate the effect of ct contrast enhancement (ce) on the 3d dose distributions of non-coplanar small field beams in the cyberknife (ck) treatment planning system. 2019-11-20 2023-08-13 Not clear
W Xiong, D Huang, R Gewanter, C Burma. SU-E-T-545: Dose Comparison between Intravenous Contrast-Enhanced CT and Non Contrast CT in Treatment Planning. Medical physics. vol 39. issue 6Part18. 2019-11-20. PMID:28518515. su-e-t-545: dose comparison between intravenous contrast-enhanced ct and non contrast ct in treatment planning. 2019-11-20 2023-08-13 Not clear
W Xiong, D Huang, R Gewanter, C Burma. SU-E-T-545: Dose Comparison between Intravenous Contrast-Enhanced CT and Non Contrast CT in Treatment Planning. Medical physics. vol 39. issue 6Part18. 2019-11-20. PMID:28518515. with increasing concern for patient dose from ct scan, we are trying to reduce ct scan and use intravenous contrast-enhanced ct (contrast ct) in treatment planning. 2019-11-20 2023-08-13 Not clear
W Xiong, D Huang, R Gewanter, C Burma. SU-E-T-545: Dose Comparison between Intravenous Contrast-Enhanced CT and Non Contrast CT in Treatment Planning. Medical physics. vol 39. issue 6Part18. 2019-11-20. PMID:28518515. this study is to investigate dose calculation accuracy using contrast ct in treatment planning for lung, esophagus and pancreas cancer. 2019-11-20 2023-08-13 Not clear
O Morin, M Held, N Kirby, A Perez-Andujar, C Chuang, J Poulio. SU-E-T-556: Integration of Lung Blocks in the Inverse Planning Process of Modulated Arc Total Body Irradiation Using Cone Beam CT. Medical physics. vol 39. issue 6Part18. 2019-11-20. PMID:28518517. su-e-t-556: integration of lung blocks in the inverse planning process of modulated arc total body irradiation using cone beam ct. 2019-11-20 2023-08-13 Not clear
B Rasmussen, K Chu, S Ton. SU-E-T-530: Relative Electron Density Phantom Comparison. Medical physics. vol 39. issue 6Part18. 2019-11-20. PMID:28518536. the purpose of this work is to illustrate the impact of using different model ct phantoms to determine hu to red curves for treatment planning. 2019-11-20 2023-08-13 Not clear
Y Qin, F Zhang, C Kelsey, D Yoo, F Yin, J Ca. TU-E-BRB-04: Adaptive Stereotactic-Body Radiation Therapy (SBRT) Planning for Lung Cancer. Medical physics. vol 39. issue 6Part24. 2019-11-20. PMID:28518661. in this study, we investigated dosimetric effects of adaptive lung sbrt planning using cone-bean ct (cbct) images. 2019-11-20 2023-08-13 Not clear
O Craciunescu, J Cai, A de Leeuw, C Kirisit. TU-E-213CD-01: Image Guided Adaptive Brachytherapy for Cervical Cancer. Medical physics. vol 39. issue 6Part24. 2019-11-20. PMID:28518703. in recent years, with the advent of high/pulsed dose rate (hdr/pdr) afterloading technology, advanced treatment planning systems and ct and mri compatible applicators, image-guided adaptive brachytherapy treatments are now achievable. 2019-11-20 2023-08-13 Not clear
O Craciunescu, J Cai, A de Leeuw, C Kirisit. TU-E-213CD-01: Image Guided Adaptive Brachytherapy for Cervical Cancer. Medical physics. vol 39. issue 6Part24. 2019-11-20. PMID:28518703. in such settings, ct or us-based planning can be used despite lacking the desired soft tissue resolution to accurately depict the target. 2019-11-20 2023-08-13 Not clear
D Serratore, B Hartl, P Chan, T Neicu, S L. SU-E-J-134: Motion Modeling of Non-Small Cell Lung Nodules Based on Respiratory Mechanics. Medical physics. vol 39. issue 6Part8. 2019-11-20. PMID:28518891. to quantify the movements of non-small cell lung nodules using 4d cone-beam computed tomography (4d-cbct) that is automatically registered with planning ct, and to develop a mathematical model to predict the motion trajectory. 2019-11-20 2023-08-13 Not clear
W Mao, L Jiang, L Arhjoul, R Foster, T Solber. SU-E-J-127: An Initial Application of Evaluating Lung Tumor Motion Throughout Radiotherapy. Medical physics. vol 39. issue 6Part8. 2019-11-20. PMID:28518894. we present a novel method for evaluating lung tumor motion incorporating planning ct scan, imaging for patient localization, and during treatment delivery. 2019-11-20 2023-08-13 Not clear
N Eclov, B Loo, E Graves, P Maxi. SU-E-J-177: Characterization of the Effect of 'Lung Detail' CT Reconstruction Algorithm on Radiation Therapy Dose Calculation. Medical physics. vol 39. issue 6Part8. 2019-11-20. PMID:28518919. precise tumor delineation is important in thoracic radiation therapy planning, and using a 'lung detail' computed tomography (ct) reconstruction algorithm can assist in visualizing the tumor. 2019-11-20 2023-08-13 Not clear
H Li, C Noel, W Thorstad, H Li, L Yu, D Low, K Moore, S Muti. SU-E-J-176: Clinical Evaluations of a Novel Metal Artifact Reduction Technique for Treatment Planning in Radiation Therapy. Medical physics. vol 39. issue 6Part8. 2019-11-20. PMID:28518933. to evaluate the effects of a ct on-board commercially available metal artifact reduction (mar) algorithm for the use in radiation therapy treatment planning. 2019-11-20 2023-08-13 Not clear
S Chungbi. SU-E-J-171: Evaluation of Cervical Spine and Mandible Reproducibility of the CDR Mayo Mold and Civco Type-S Head and Neck Immobilization Systems. Medical physics. vol 39. issue 6Part8. 2019-11-20. PMID:28518941. to evaluate whether the initial difference between the planning ct and the first kv setup image is larger than subsequent daily imaging variations, the difference in the image registration of the drr was compared to the variation in subsequent image registrations. 2019-11-20 2023-08-13 Not clear