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J Jakubek

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Articles 141
Citations 885
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Recent Articles
1.
Felix-Bautista R, Gehrke T, Ghesquiere-Dierickx L, Reimold M, Amato C, Turecek D, et al.
Phys Med Biol . 2019 Jun; 64(17):175019. PMID: 31239428
The dose conformation and the sparing of neighboring critical healthy structures are improved in carbon-ion beam radiotherapy in comparison to conventional photon radiotherapy. Inter and intrafractional plan adaptation strategies may...
2.
Alnaghy S, Cutajar D, Safavi-Naeini M, George S, Howie A, Bece A, et al.
Phys Med Biol . 2019 Feb; 64(8):085002. PMID: 30808009
A prototype in-body gamma camera system with integrated trans-rectal ultrasound (TRUS) and associated real-time image acquisition and analysis software was developed for intraoperative source tracking in high dose rate (HDR)...
3.
Aad G, Abbott B, Abdallah J, Abdinov O, Aben R, Abolins M, et al.
Eur Phys J C Part Fields . 2017 Sep; 77(7):490. PMID: 28943797
The reconstruction of the signal from hadrons and jets emerging from the proton-proton collisions at the Large Hadron Collider (LHC) and entering the ATLAS calorimeters is based on a three-dimensional...
4.
Arico G, Gehrke T, Jakubek J, Gallas R, Berke S, Jakel O, et al.
Phys Med Biol . 2017 Aug; 62(20):8003-8024. PMID: 28825918
Currently there is a rising interest in helium ion beams for radiotherapy. For benchmarking of the physical beam models used in treatment planning, there is a need for experimental data...
5.
Aad G, Abbott B, Abdallah J, Abdinov O, Aben R, Abolins M, et al.
Eur Phys J C Part Fields . 2017 Jul; 76(10):538. PMID: 28747847
Measurements of normalized differential cross-sections of top-quark pair production are presented as a function of the top-quark, [Formula: see text] system and event-level kinematic observables in proton-proton collisions at a ...
6.
Gaa T, Reinhart M, Hartmann B, Jakubek J, Soukup P, Jakel O, et al.
Phys Med . 2017 Jun; 38:140-147. PMID: 28576582
Purpose: Non-invasive methods for monitoring of the therapeutic ion beam extension in the patient are desired in order to handle deteriorations of the dose distribution related to changes of the...
7.
Martisikova M, Jakubek J, Gwosch K, Hartmann B, Telsemeyer J, Soukup P, et al.
Med Phys . 2017 May; 39(6Part20):3861. PMID: 28517543
Purpose: Radiation therapy with ion beams provides highly conformal dose distributions. Therefore, monitoring the dose delivery within the patient in a non- invasive way is desired. The clinically available method...
8.
Gwosch K, Hartmann B, Jakubek J, Granja C, Soukup P, Jaekel O, et al.
Med Phys . 2017 May; 39(6Part3):3614-3615. PMID: 28517381
Purpose: Due to the high conformity of carbon ion therapy, unpredictable changes in the patient's geometry or deviations from the planned beam properties can result in changes of the dose...
9.
Aad G, Abbott B, Abdallah J, Abdinov O, Aben R, Abolins M, et al.
Eur Phys J C Part Fields . 2017 Mar; 76(11):581. PMID: 28316490
The large rate of multiple simultaneous proton-proton interactions, or pile-up, generated by the Large Hadron Collider in Run 1 required the development of many new techniques to mitigate the adverse...
10.
Aad G, Abbott B, Abdallah J, Abdinov O, Aben R, Abolins M, et al.
Eur Phys J C Part Fields . 2017 Mar; 76(5):295. PMID: 28280437
This paper presents a new method of reconstructing the individual charged and neutral hadrons in tau decays with the ATLAS detector. The reconstructed hadrons are used to classify the decay...