Simulations to design an online motion compensation system for scanned particle beams

scientific article published on 6 July 2006

Simulations to design an online motion compensation system for scanned particle beams is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1088/0031-9155/51/14/016
P698PubMed publication ID16825746

P50authorChristoph BertQ42424271
P2093author name stringQiang Li
Gerhard Kraft
Thomas Haberer
Eike Rietzel
Sven Oliver Grözinger
P433issue14
P1104number of pages15
P304page(s)3517-3531
P577publication date2006-07-06
P1433published inPhysics in Medicine and BiologyQ7189694
P1476titleSimulations to design an online motion compensation system for scanned particle beams
P478volume51

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cites work (P2860)
Q419984804D treatment planning for scanned ion beams
Q26829381Advances in 4D treatment planning for scanned particle beam therapy - report of dedicated workshops
Q61448342An effective method to reduce the interplay effects between respiratory motion and a uniform scanning proton beam irradiation for liver tumors: A case study
Q40159104Commissioning of an integrated platform for time-resolved treatment delivery in scanned ion beam therapy by means of optical motion monitoring.
Q51023365Design study of a raster scanning system for moving target irradiation in heavy-ion radiotherapy.
Q92187151Dosimetric comparison of distal esophageal carcinoma plans for patients treated with small-spot intensity-modulated proton versus volumetric-modulated arc therapies
Q43104741Effect of novel amplitude/phase binning algorithm on commercial four-dimensional computed tomography quality
Q36805626Exploratory Study of 4D versus 3D Robust Optimization in Intensity Modulated Proton Therapy for Lung Cancer.
Q52650857Impact of Spot Size and Spacing on the Quality of Robustly Optimized Intensity Modulated Proton Therapy Plans for Lung Cancer.
Q35163969Impact of respiratory motion on worst-case scenario optimized intensity modulated proton therapy for lung cancers
Q41851904Interplay effects in proton scanning for lung: a 4D Monte Carlo study assessing the impact of tumor and beam delivery parameters
Q46804908Locating and targeting moving tumors with radiation beams.
Q47123767Management of organ motion in scanned ion beam therapy
Q43248501Motion compensation with a scanned ion beam: a technical feasibility study
Q90187467Optimization of motion management parameters in a synchrotron-based spot scanning system
Q38885414Particle therapy of moving targets-the strategies for tumour motion monitoring and moving targets irradiation
Q36736612Radiotherapy-induced malignancies: review of clinical features, pathobiology, and evolving approaches for mitigating risk
Q38039264Real-time tumour tracking in particle therapy: technological developments and future perspectives.
Q39891772Respiratory motion management in particle therapy.
Q57453413Small-spot intensity-modulated proton therapy and volumetric-modulated arc therapies for patients with locally advanced non-small-cell lung cancer: A dosimetric comparative study
Q47976080Target motion tracking with a scanned particle beam
Q37379098The future of heavy ion radiotherapy
Q34086830The risk of developing a second cancer after receiving craniospinal proton irradiation
Q36294862Treatment planning optimisation in proton therapy.
Q28082401Tumour Movement in Proton Therapy: Solutions and Remaining Questions: A Review
Q51223526Upgrade and benchmarking of a 4D treatment planning system for scanned ion beam therapy.

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