An Audit to Assess Electronic Portal Imaging (EPI) and Cone Beam CT (CBCT) Image Verification Methods in 16 Breast Patients

2012 ◽  
Vol 84 (3) ◽  
pp. S246-S247
Author(s):  
A. Woolley ◽  
S. Dawoud ◽  
A. Needham ◽  
H. Summers ◽  
S. Kirwin ◽  
...  
2005 ◽  
Vol 76 ◽  
pp. S4 ◽  
Author(s):  
E. White ◽  
D. Moseley ◽  
C. Catton ◽  
K. Wiltshire ◽  
M. Sharpe ◽  
...  

2010 ◽  
Vol 22 (10) ◽  
pp. 850-861 ◽  
Author(s):  
M.S. Zaghloul ◽  
A.G. Mousa ◽  
E. Eldebawy ◽  
E. Attalla ◽  
H. Shafik ◽  
...  

2017 ◽  
Vol 42 (1) ◽  
pp. E11 ◽  
Author(s):  
Andrés Monserrate ◽  
Benjamin Zussman ◽  
Alp Ozpinar ◽  
Ajay Niranjan ◽  
John C. Flickinger ◽  
...  

OBJECTIVE Cone-beam CT (CBCT) image guidance technology has been widely adopted for spine radiosurgery delivery. There is relatively little experience with spine radiosurgery for intradural tumors using CBCT image guidance. This study prospectively evaluated a series of intradural spine tumors treated with radiosurgery. Patient setup accuracy for spine radiosurgery delivery using CBCT image guidance for intradural spine tumors was determined. METHODS Eighty-two patients with intradural tumors were treated and prospectively evaluated. The positioning deviations of the spine radiosurgery treatments in patients were recorded. Radiosurgery was delivered using a linear accelerator with a beam modulator and CBCT image guidance combined with a robotic couch that allows positioning correction in 3 translational and 3 rotational directions. To measure patient movement, 3 quality assurance CBCTs were performed and recorded in 30 patients: before, halfway, and after the radiosurgery treatment. The positioning data and fused images of planning CT and CBCT from the treatments were analyzed to determine intrafraction patient movements. From each of 3 CBCTs, 3 translational and 3 rotational coordinates were obtained. RESULTS The radiosurgery procedure was successfully completed for all patients. Lesion locations included cervical (22), thoracic (17), lumbar (38), and sacral (5). Tumor histologies included schwannoma (27), neurofibromas (18), meningioma (16), hemangioblastoma (8), and ependymoma (5). The mean prescription dose was 17 Gy (range 12–27 Gy) delivered in 1–3 fractions. At the halfway point of the radiation, the translational variations and standard deviations were 0.4 ± 0.5, 0.5 ± 0.8, and 0.4 ± 0.5 mm in the lateral (x), longitudinal (y), and anteroposterior (z) directions, respectively. Similarly, the variations immediately after treatment were 0.5 ± 0.4, 0.5 ± 0.6, and 0.6 ± 0.5 mm along x, y, and z directions, respectively. The mean rotational angles were 0.3° ± 0.4°, 0.3° ± 0.4°, and 0.3° ± 0.4° along yaw, roll, and pitch, respectively, at the halfway point and 0.5° ± 0.5°, 0.4° ± 0.5°, and 0.2° ± 0.3° immediately after treatment. CONCLUSIONS Radiosurgery offers an alternative treatment option for intradural spine tumors in patients who may not be optimal candidates for open surgery. CBCT image guidance for patient setup for spine radiosurgery is accurate and successful in patients with intradural tumors.


2019 ◽  
Vol 13 (1) ◽  
pp. 99
Author(s):  
Leandro Rodrigues Fairbanks ◽  
Laura Furnari

A radioterapia é uma modalidade de tratamento em constante evolução que procura atingir o seguinte objetivo: irradiar, com precisão cada vez maior, o alvo, poupando ao máximo as estruturas vizinhas. Para alcançar esse objetivo em tratamentos complexos como radioterapia de intensidade modulada (IMRT), radiocirurgia estereotática (SRS) e radioterapia estereotática de corpo (SBRT), surgiu a radioterapia guiada por imagem (image guided radiotherapy — IGRT). Neste artigo, são descritos os princípios de funcionamento e as características dos seguintes principais dispositivos utilizados: Electronic portal imaging, Cone beam, ExacTrac e Calypso. Como todo o sistema que executa procedimentos que envolvem pacientes, os dispositivos de IGRT também precisam ser submetidos a testes de controle de qualidade que garantam a segurança dos pacientes e a precisão dos tratamentos. Para os diferentes dispositivos apresentamos testes com foco na geometria, na qualidade da imagem, no sistema de operação e na segurança. Também são apresentadas a frequência recomendada e a tolerância aceitável.


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