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IBA Dosimetry matrixxpt ion chamber array device
Matrixxpt Ion Chamber Array Device, supplied by IBA Dosimetry, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/2d+array/the+matrixx+evolution+2d+ionization+chamber+array/pmc06142310-151-8-13
Average 90 stars, based on 1 article reviews
matrixxpt ion chamber array device - by Bioz Stars, 2026-09
90/100 stars

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Article Title: Luminescence phenomena from various materials in ultra-high dose rate proton beam irradiation: preliminary dose distribution measurement study
Article Snippet: Measurements of dose distributions Dose distribution measurements were performed using 2-dimensional ionization chamber detector arrays (MatriXX PT; IBA Dosimetry Co., Ltd., Schwarzenbruck, Germany).

Article Title: Investigation of linear energy transfer (LET)-dependence behavior and dosimetric response of a flat-panel detector in pencil beam scanning proton therapy.
Article Snippet: Purpose: This study aims to elucidate the dependence of the flat-panel detector’s response on the linear energy transfer (LET) and evaluate the practical viability of employing flat-panel detectors in proton dosimetry applications through LET-dependent correction factors.. Methods: The study assessed the flat-panel detector’s response across varying depths using solid water and distinct 100, 150, and 200 MeV proton beams by comparing the flat-panel readings against reference doses measured with an ionization chamber.. A Monte Carlo code was used to derive LET values, and an LET-dependent response correction factor was determined based on the ratio of the uncorrected flat-panel dose to the ionization chamber dose.

Article Title: Feasibility study of a scintillation sheet-based detector for fluence monitoring during external photon beam radiotherapy.
Article Snippet: Purpose: This study evaluated the properties of a scintillation sheet-based dosimetry system for beam monitoring with high spatial resolution, including the effects of this system on the treatment beam.. The dosimetric characteristics and feasibility of this system for clinical use were also evaluated.. Methods: The effects of the dosimetry system on the beam were evaluated by measuring the percentage depth doses, dose profiles, and transmission factors.

Article Title: Multi-task autoencoder based classification-regression model for patient-specific VMAT QA
Article Snippet: The PSQA measurement was performed with a MatriXX ion chamber array together with a Multicube phantom (IBA Dosimetry, Schwarzenbruck, Germany).

Article Title: First Clinical Implementation of Step-and-Shoot Proton Arc Therapy for Head and Neck Cancer Treatment
Article Snippet: QA procedures included measurement-based verification using a phantom setup to validate the dose distribution via 2D ionization chamber array (MatriXXONE, IBA dosimetry).

Article Title: Static proton arc therapy: Comprehensive plan quality evaluation and first clinical treatments in patients with complex head and neck targets.
Article Snippet: Correspondence Francesco Fracchiolla, UO Fisica Sanitaria, Trento Hospital APSS, Proton Therapy Center, Via al Desert 14, Trento 38123, Italy.. Email: francesco.fracchiolla@apss.tn.it Abstract Background: Proton Arc Treatment (PAT) has shown potential over Multi-Field Optimization (MFO) for out-of -target dose reduction in particular for head and neck (H&N) patients.. A feasibility test, including delivery in a clinical environment is still missing in the literature and a necessary requirement before clinical application of PAT.

Article Title: Evaluation and improvement of angular response for a commercial 2D detector array for patient‐specific QA
Article Snippet: Due to the complexity of IMRT and VMAT, thorough verification of planned radiation dose before treatment is necessary to ensure that the treatment plan can be executed accurately., 2D arrays with ionization chambers, such as the MatriXX QA system developed by IBA dosimetry (Schwarzenbruck, Germany), are widely used for dose verification of IMRT , , , , , , , , and VMAT., , , , , , , , , Dobler et al. investigated the angular dependence of the 2D ionization chamber array I'mRT MatriXX for oblique beam incidence and its effects for plan verification of IMRT with original gantry angles.

Article Title: Proton minibeam (pMBRT) radiation therapy: experimental validation of Monte Carlo dose calculation in the RayStation TPS.
Article Snippet: Background: Proton minibeam radiation therapy (pMBRT) is a spatially fractionated radiation therapy (SFRT) modality that uses a multi-slit collimator (MSC) to create submillimeter slit openings for spatial dose modulation.. The pMBRT dose profile is characterized by highly heterogeneous dose in the plane perpendicular to the beam and rapidly changing depth dose profiles.. Dose measurements are typically benchmarked against in-house Monte Carlo simulation tools.



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Image Search Results


Signal amplitude from the CROSSmini detector with signal fitting and zoomed in views. Figures A, B and C, on the left, shows the signal amplitude from the CROSSmini detector of a spill duration for energy level 70.2, 150.2, and 228.7 MeV, respectively, with nominal beam current 8 MU/s. The red line represents the original signal from CROSSmini and the black line represents the piecewise fitting for the edges. On the right is the zoomed in view of the fitting. The piecewise fitting quantifies the risetime ( t rise ) and measured nominal beam current ( I 0 , measured ).

Journal: International Journal of Particle Therapy

Article Title: Phenomenological Study of Intra-Spill Break Spots in Dose-Driven Continuous Scanning Proton Therapy

doi: 10.1016/j.ijpt.2026.101315

Figure Lengend Snippet: Signal amplitude from the CROSSmini detector with signal fitting and zoomed in views. Figures A, B and C, on the left, shows the signal amplitude from the CROSSmini detector of a spill duration for energy level 70.2, 150.2, and 228.7 MeV, respectively, with nominal beam current 8 MU/s. The red line represents the original signal from CROSSmini and the black line represents the piecewise fitting for the edges. On the right is the zoomed in view of the fitting. The piecewise fitting quantifies the risetime ( t rise ) and measured nominal beam current ( I 0 , measured ).

Article Snippet: The beam current was measured using a CROSSmini 2D strip ionization chamber detector array (Liverage Biomedical Inc, Taiwan) positioned at the isocenter plane.

Techniques:

Signal amplitude from the CROSSmini detector with signal fitting. shows the signal amplitude as a function of time measured by the CROSSmini detector and the piecewise fittings. Figures A, B, and C are measurements for energy level 70.2 MeV with nominal beam current 8, 14, and 20 MU/s, respectively. Figures D, E, and F are the measurements for energy level 228.7 MeV with nominal beam current 8, 14, and 20 MU/s, respectively.

Journal: International Journal of Particle Therapy

Article Title: Phenomenological Study of Intra-Spill Break Spots in Dose-Driven Continuous Scanning Proton Therapy

doi: 10.1016/j.ijpt.2026.101315

Figure Lengend Snippet: Signal amplitude from the CROSSmini detector with signal fitting. shows the signal amplitude as a function of time measured by the CROSSmini detector and the piecewise fittings. Figures A, B, and C are measurements for energy level 70.2 MeV with nominal beam current 8, 14, and 20 MU/s, respectively. Figures D, E, and F are the measurements for energy level 228.7 MeV with nominal beam current 8, 14, and 20 MU/s, respectively.

Article Snippet: The beam current was measured using a CROSSmini 2D strip ionization chamber detector array (Liverage Biomedical Inc, Taiwan) positioned at the isocenter plane.

Techniques:

t rise comparison between analytical and measured. The blue and red plots represent the analytically derived t rise and CROSSmini measured t rise , respectively, across the various nominal beam current settings.

Journal: International Journal of Particle Therapy

Article Title: Phenomenological Study of Intra-Spill Break Spots in Dose-Driven Continuous Scanning Proton Therapy

doi: 10.1016/j.ijpt.2026.101315

Figure Lengend Snippet: t rise comparison between analytical and measured. The blue and red plots represent the analytically derived t rise and CROSSmini measured t rise , respectively, across the various nominal beam current settings.

Article Snippet: The beam current was measured using a CROSSmini 2D strip ionization chamber detector array (Liverage Biomedical Inc, Taiwan) positioned at the isocenter plane.

Techniques: Comparison, Derivative Assay