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1.
Pract Radiat Oncol ; 13(6): 510-516, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37516957

RESUMO

Carbon-fiber reinforced (CFR) polyetheretherketone hardware is an alternative to traditional metal hardware used for spinal fixation surgeries before postoperative radiation therapy for patients with spinal metastases. CFR hardware's radiolucency decreases metal artifact, improving visualization and accuracy of treatment planning. We present the first clinical use and proof of principle of CFR spinal hardware with tantalum markers used for successful tracking of intrafraction motion (IM) using Varian TrueBeam IMR (Intrafraction Motion Review) software module during postoperative spine stereotactic radiation. A 63-year-old woman with history of endometrial cancer presented with acute back pain. Imaging demonstrated pathologic T12 vertebral fracture with cord compression. She underwent T12 vertebrectomy with circumferential decompression and posterior instrumented T10-L2 fusion at our facility using CFR-polyetheretherketone hardware with tantalum screw markers followed by postoperative stereotactic body radiation therapy to 3000 cGy in 5 fractions delivered to T11-T12. Tantalum screw markers were used for IMR tracking. During irradiation, 260 kV images were acquired, and IMR software was able to identify and track markers. During the entire treatment, the IM motions were less than 3 mm. This is the first presented case of CFR spinal hardware with tantalum markers used for successful IMR tracking of IM during daily spine stereotactic treatment. Future work will be needed to improve workflow and create a spine-specific IMR protocol.


Assuntos
Radiocirurgia , Feminino , Humanos , Pessoa de Meia-Idade , Fibra de Carbono , Tantálio/uso terapêutico , Polímeros , Polietilenoglicóis , Cetonas
2.
Phys Imaging Radiat Oncol ; 25: 100422, 2023 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-36875327

RESUMO

Background and purpose: Mitigation of intrafraction motion (IM) is valuable in stereotactic radiotherapy (SRT) radiotherapy where submillimeter accuracy is desired. The purpose of this study was to investigate the application of triggered kilovoltage (kV) imaging for spine SRT patients with hardware by correlating kV imaging with patient motion and summarizing implications of tolerance for IM based on calculated dose. Materials and methods: Ten plans (33 fractions) were studied, correlating kV imaging during treatment with pre- and post-treatment cone beam computed tomography (CBCT). Images were taken at 20-degree gantry angle intervals during the arc-based treatment. The contour of the hardware with a 1 mm expansion was displayed at the treatment console to manually pause treatment delivery if the hardware was visually detected outside the contour. The treatment CBCTs were compared using retrospective image registration to assess the validity of contour-based method for pausing treatment. Finally, plans were generated to estimate dose volume objective differences in case of 1 mm deviation. Results: When kV imaging during treatment was used with the 1 mm contour, 100 % of the post-treatment CBCTs reported consistent results. One patient in the cohort exhibited motion greater than 1 mm during treatment which allowed intervention and re-setup during treatment. The average translational motion was 0.35 mm. Treatment plan comparison at 1 mm deviation showed little differences in calculated dose for the target and cord. Conclusions: Utilizing kV imaging during treatment is an effective method of assessing IM for SRT spine patients with hardware without increasing treatment time.

3.
Pract Radiat Oncol ; 12(3): e216-e220, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-34971793

RESUMO

PURPOSE: Radiation therapy (RT) is essential to managing many pediatric malignancies but can provoke anxiety, fear, and discomfort for children owing to prolonged treatment time, extended course, and restrictive immobilization. Patients younger than 10 years frequently require daily general anesthesia (GA), which is resource intensive, expensive, potentially toxic, and anxiety and fear provoking. Audio-Visual Assisted Therapeutic Ambience in Radiation Therapy (AVATAR), a video streaming device, has been proposed as an alternative to anesthesia in patients aged 3 to 10 years. A pilot study evaluating the efficacy of this novel innovation is accruing, but patients younger than 3 years are ineligible. METHODS AND MATERIALS: We simulated a 2-year-old with stage IV Wilms tumor for bilateral whole-lung and left-flank irradiation without GA. Using AVATAR, we attempted to deliver RT to this patient without sedation. Patient anxiety at the time of simulation and at the beginning, middle, and end of the treatment course was characterized using the validated Modified Yale Preoperative Anxiety Score (mYPAS) measurement tool. RESULTS: Although the patient tolerated computed tomography simulation without GA or AVATAR use, his mYPAS of 14 out of 18 indicated significant anxiety. Using AVATAR, all treatments were delivered without GA; his mYPASs were 5 and 4 (the lowest possible) and 4 at the first, midcourse, and final treatments, indicating no significant anxiety and a decrease from the pre-AVATAR baseline. Without GA, the time to deliver RT decreased by 66% from 90 to 30 minutes. CONCLUSIONS: We describe an expanded, previously unreported indication for AVATAR by demonstrating the feasibility of this approach to reduce or omit anesthesia in appropriate younger patients currently excluded from ongoing trials. The financial and quality-of-life benefits (including decreased stress, anxiety, toxic effects, cost, and appointment time) of AVATAR use may be extendable to a younger patient population than previously thought. In older children, prospective validation is ongoing, but additional study in patients younger than 3 years is needed.


Assuntos
Ansiedade , Neoplasias , Anestesia Geral , Ansiedade/etiologia , Criança , Pré-Escolar , Humanos , Neoplasias/radioterapia , Projetos Piloto , Cuidados Pré-Operatórios
4.
Technol Cancer Res Treat ; 20: 15330338211063033, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-34855577

RESUMO

Purpose: To monitor intrafraction motion during spine stereotactic body radiotherapy(SBRT) treatment delivery with readily available technology, we implemented triggered kV imaging using the on-board imager(OBI) of a modern medical linear accelerator with an advanced imaging package. Methods: Triggered kV imaging for intrafraction motion management was tested with an anthropomorphic phantom and simulated spine SBRT treatments to the thoracic and lumbar spine. The vertebral bodies and spinous processes were contoured as the image guided radiotherapy(IGRT) structures specific to this technique. Upon each triggered kV image acquisition, 2D projections of the IGRT structures were automatically calculated and updated at arbitrary angles for display on the kV images. Various shifts/rotations were introduced in x, y, z, pitch, and yaw. Gantry-angle-based triggering was set to acquire kV images every 45°. A group of physicists/physicians(n = 10) participated in a survey to evaluate clinical efficiency and accuracy of clinical decisions on images containing various phantom shifts. This method was implemented clinically for treatment of 42 patients(94 fractions) with 15 second time-based triggering. Result: Phantom images revealed that IGRT structure accuracy and therefore utility of projected contours during triggered imaging improved with smaller CT slice thickness. Contouring vertebra superior and inferior to the treatment site was necessary to detect clinically relevant phantom rotation. From the survey, detectability was proportional to the shift size in all shift directions and inversely related to the CT slice thickness. Clinical implementation helped evaluate robustness of patient immobilization. Based on visual inspection of projected IGRT contours on planar kV images, appreciable intrafraction motion was detected in eleven fractions(11.7%). Discussion: Feasibility of triggered imaging for spine SBRT intrafraction motion management has been demonstrated in phantom experiments and implementation for patient treatments. This technique allows efficient, non-invasive monitoring of patient position using the OBI and patient anatomy as a direct visual guide.


Assuntos
Fracionamento da Dose de Radiação , Movimento (Física) , Planejamento da Radioterapia Assistida por Computador/métodos , Radioterapia Guiada por Imagem/métodos , Radioterapia de Intensidade Modulada/métodos , Coluna Vertebral/diagnóstico por imagem , Coluna Vertebral/efeitos da radiação , Humanos , Processamento de Imagem Assistida por Computador , Imageamento Tridimensional , Aceleradores de Partículas , Imagens de Fantasmas , Dosagem Radioterapêutica , Radioterapia Guiada por Imagem/normas , Radioterapia de Intensidade Modulada/efeitos adversos , Radioterapia de Intensidade Modulada/normas , Tomografia Computadorizada por Raios X
5.
J Appl Clin Med Phys ; 21(10): 97-108, 2020 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-32920991

RESUMO

Complexity in MLC-based radiosurgery treatment delivery can be characterized by the efficiency of monitor unit (MU) utilization and the average MLC leaf separation distance for a treatment plan. A reduction in plan complexity may be desirable if plan quality is not impacted. In this study, a number of strategies are explored to determine how plan quality is affected by efforts to reduce plan complexity. Ten radiosurgery cases of varying complexity are retrospectively planned using six optimization strategies: an unconstrained volumetric modulated arc therapy (VMAT) technique, a MU-constrained VMAT technique, three techniques using various strengths of the aperture shape controller (ASC), and a hybrid technique consisting of a final-stage VMAT optimization applied to a dynamic conformal arc leaf sequence (ODCA). The plans are compared in terms of MU efficiency, MLC leaf-separation, conformity index (CI), gradient index (GI), and QA measurement results. The five VMAT techniques exhibited only minor differences in CI and GI values, though the ASC and MU-constrained techniques did require 6-20% fewer MU and had mean field apertures 5-19% larger. On average, the ODCA technique had CI values 3.5% lower and GI values 1.0-2.5% higher than the VMAT techniques, but also had a mean field aperture 24-47% larger and required 16-32% fewer MU. The QA measurement results showed a 0.61% variation in mean per-field 2%/1 mm gamma passing rates across all techniques (range 96.81%-97.42%), with no observed correlation between passing rate and technique. For simple targets, the ODCA technique achieved CI results that were equivalent to the unconstrained VMAT technique with an average 30% reduction in required MU, an average 50% increase in mean leaf separation distance, and brain V12Gy values within 0.38 cc of the VMAT technique for targets up to approximately 2 cm diameter. For MLC-based single-target radiosurgery, plan complexity can often be significantly reduced without an equivalent reduction in plan quality.


Assuntos
Radiocirurgia , Radioterapia de Intensidade Modulada , Dosagem Radioterapêutica , Planejamento da Radioterapia Assistida por Computador , Estudos Retrospectivos
6.
J Appl Clin Med Phys ; 21(3): 184-191, 2020 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-31981305

RESUMO

BACKGROUND: Fiducial markers are frequently used before treatment for image-guided patient setup in radiation therapy (RT), but can also be used during treatment for image-guided intrafraction motion detection. This report describes our implementation of automatic marker detection with periodic kV imaging (TrueBeam v2.5) to monitor and correct intrafraction motion during prostate RT. METHODS: We evaluated the reproducibility and accuracy of software fiducial detection using a phantom with 3 implanted fiducial markers. Clinical implementation for patients with intraprostatic fiducials receiving volumetric modulated arc therapy (VMAT) utilized periodic on-board kV imaging with 10 s intervals during treatment delivery. For each image, the software automatically identified fiducial locations and determined whether their distance relative to planned locations were within a 3 mm tolerance. Motion was corrected if either ≥2 fiducials in a single image or ≥1 fiducial in sequential images were out of tolerance. RESULTS: Phantom studies demonstrated poorer performance of linear fiducials compared to collapsible fiducials, and wide variability to accurately detect fiducials across eight software settings. For any given setting, results were relatively reproducible and precise to ~0.5 mm. Across 17 patients treated with a median of 20 fractions, the software recommended a shift in 44% of fractions, and a shift was actually implemented after visual confirmation of movement greater than the 3 mm threshold in 20% of fractions. Adjustment of our approach led to improved accuracy for the latter (n = 7) patient subset. On average, table repositioning added 3.0 ± 0.3 min to patient time on table. Periodic kV imaging increased skin dose by an estimated 1 cGy per treatment arc. CONCLUSIONS: Periodic kV imaging with automatic detection of motion during VMAT prostate treatments is commercially available, and can be successfully implemented to mitigate effects of intrafraction motion with careful attention to software settings.


Assuntos
Marcadores Fiduciais , Movimento , Imagens de Fantasmas , Neoplasias da Próstata/radioterapia , Planejamento da Radioterapia Assistida por Computador/métodos , Radioterapia Guiada por Imagem/métodos , Software , Humanos , Processamento de Imagem Assistida por Computador/métodos , Masculino , Órgãos em Risco/efeitos da radiação , Neoplasias da Próstata/metabolismo , Neoplasias da Próstata/patologia , Dosagem Radioterapêutica , Radioterapia de Intensidade Modulada/métodos , Tomografia Computadorizada por Raios X/métodos
7.
Radiat Res ; 171(1): 9-21, 2009 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-19138055

RESUMO

The molecular mechanisms governing acquired tumor resistance during radiotherapy remain to be elucidated. In breast cancer patients, overexpression of HER2 (human epidermal growth factor receptor 2) is correlated with aggressive tumor growth and increased recurrence. In the present study, we demonstrate that HER2 expression can be induced by radiation in breast cancer cells with a low basal level of HER2. Furthermore, HER2-postive tumors occur at a much higher frequency in recurrent invasive breast cancer (59%) compared to the primary tumors (41%). Interestingly, NF-kappaB is required for radiation-induced HER2 transactivation. HER2 was found to be co-activated with basal and radiation-induced NF-kappaB activity in radioresistant but not radiosensitive breast cancer cell lines after long-term radiation exposure, indicating that NF-kappaB-mediated HER2 overexpression is involved in radiation-induced repopulation in heterogeneous tumors. Finally, we found that inhibition of HER2 resensitizes the resistant cell lines to radiation. Since HER2 is shown to activate NF-kappaB, our data suggest a loop-like HER2-NF-kappaB-HER2 pathway in radiation-induced adaptive resistance in breast cancer cells.


Assuntos
Adaptação Fisiológica/genética , Neoplasias da Mama/patologia , Regulação Neoplásica da Expressão Gênica/efeitos da radiação , Genes erbB-2/genética , Genes erbB-2/efeitos da radiação , NF-kappa B/metabolismo , Tolerância a Radiação/genética , Animais , Benzamidas/farmacologia , Neoplasias da Mama/genética , Neoplasias da Mama/prevenção & controle , Neoplasias da Mama/radioterapia , Linhagem Celular Tumoral , Raios gama/efeitos adversos , Humanos , Camundongos , NF-kappa B/antagonistas & inibidores , Fenótipo , Regiões Promotoras Genéticas/genética , Regiões Promotoras Genéticas/efeitos da radiação , RNA Interferente Pequeno/genética , RNA Interferente Pequeno/metabolismo , Recidiva , Transdução de Sinais/genética , Transdução de Sinais/efeitos da radiação , Regulação para Cima/efeitos da radiação
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