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1.
Cancer Radiother ; 26(8): 1016-1026, 2022 Nov.
Article in English | MEDLINE | ID: mdl-35803860

ABSTRACT

PURPOSE: Radiotherapy with protons (PT) is a standard treatment of ocular tumors. It achieves excellent tumor control, limited toxicities, and the preservation of important functional outcomes, such as vision. Although PT may appear as one homogenous technique, it can be performed using dedicated ocular passive scattering PT or, increasingly, Pencil Beam Scanning (PBS), both with various degrees of patient-oriented customization. MATERAIAL AND METHODS: MEDICYC PT facility of Nice are detailed with respect to their technical, dosimetric, microdosimetric and radiobiological, patient and tumor-customization process of PT planning and delivery that are key. 6684 patients have been treated for ocular tumors (1991-2020). Machine characteristics (accelerator, beam line, beam monitoring) allow efficient proton extraction, high dose rate, sharp lateral and distal penumbrae, and limited stray radiation in comparison to beam energy reduction and subsequent straggling with high-energy PBS PT. Patient preparation before PT includes customized setup and image-guidance, CT-based planning, and ocular PT software modelling of the patient eye with integration of beam modifiers. Clinical reports have shown excellent tumor control rates (∼95%), vision preservation and limited toxicity rates (papillopathy, retinopathy, neovascular glaucoma, dry eye, madarosis, cataract). RESULTS: Although demanding, dedicated ocular PT has proven its efficiency in achieving excellent tumor control, OAR sparing and patient radioprotection. It is therefore worth adaptations of the equipments and practice. CONCLUSIONS: Some of these adaptations can be transferred to other PT centers and should be acknowledeged when using non-PT options.


Subject(s)
Neoplasms , Proton Therapy , Humans , Proton Therapy/methods , Radiotherapy Dosage , Radiotherapy Planning, Computer-Assisted/methods , Eye , Protons
2.
Appl Radiat Isot ; 184: 110190, 2022 Jun.
Article in English | MEDLINE | ID: mdl-35303628

ABSTRACT

A new proton beam-line dedicated to R&D programs has been developed at CentreAntoine Lacassagne (CAL), in Nice (France), in collaboration with the Centrenational d'études spatiales (CNES). This is the second beam-line of the MEDICYC 65 MeV cyclotron that is currently in operation, the first being the clinical 'eye-line' used for ocular proton therapy. The R&D beam-line is proposed with two configurations, the first producing a Gaussian narrow beam of a few mm width, the second a 100 mm diameter flat beam with a homogeneity better than ±3%. The energy range is (20 - ∼60) MeV, where the exact upper limit depends on the beam configuration being used. The energy spread of the non-degraded beam is (0.3 ± 0.1) MeV. A beam current between 10 pA and 10 µA can be produced with a stability better than 0.2% above 100 pA, and 2% below. The beam can be monitored online at a precision better than 5% in the flux range 1E5 (1E6) - 1E9 (1E10) p/cm2/s for a flat (Gaussian) configuration, although work is in progress to extend this range. Targeted applications for the R&D beam-line are instrumentation research, radiation tolerance tests of components and radiobiology.


Subject(s)
Proton Therapy , Protons , Cyclotrons , Proton Therapy/methods , Radiobiology , Radiotherapy Dosage , Research
3.
Bull Cancer Radiother ; 82(4): 365-9, 1995.
Article in French | MEDLINE | ID: mdl-8554889

ABSTRACT

The success of proton therapy depends on its cost. Hospital based equipment in fabrication for the Massachusetts General Hospital in Boston costs in the excess of 17 millions dollars, the accelerator being only a fraction of the cost. We think that price can be significantly decreased. We review the different new ways of accelerating protons currently under study in France in order to build a smaller, less expensive but reliable treatment device.


Subject(s)
Neoplasms/radiotherapy , Protons , Radiotherapy/methods , Cyclotrons , Humans , Radiation Dosage , Radiotherapy/economics , Radiotherapy/instrumentation , Radiotherapy/trends
4.
Bull Cancer ; 73(5): 596-9, 1986.
Article in English | MEDLINE | ID: mdl-3022851

ABSTRACT

The major goal of MEDICYC, the medical cyclotron programme of the Antoine-Lacassagne Cancer Center (Nice, France) is radiotherapy based on protons and fast neutrons. This cyclotron has also been designed to meet the medical requirements for the Center's Nuclear Medicine Department. Technical specifications and anticipated applications are discussed. The construction of the machine is nearly finished and a first axially injected beam is scheduled for early 1987.


Subject(s)
Particle Accelerators , Radiotherapy, High-Energy/instrumentation , Deuterium , Equipment Design , Fast Neutrons , France , Lithium , Protons
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