ADMIT - Advanced Medical Physics in Imaging and Therapy

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    • Project Area A | Range modulator and neutrons in particle therapy with protons
    • Project Area D | Monte Carlo simulations to describe the radiation effect of carbon ions and protons at the cellular level
    • Project Area M | Adaptive radiotherapy: deep learning for the analysis of daily imaging
    • Project Area T | MR imaging-assisted deep brain stimulation therapy
    • Project Area I | Spectral computed tomography and low-dose image reconstruction techniques
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  • Nenadić I, Schröder Y, Hoffmann J, Evermann U, Pfarr JK, Bergmann A, Hohmann DM, Keil B, Abu-Akel A, Stroth S, Kamp-Becker I, Jansen A, Grezellschak S, Meller T. (8.10.2024). Superior temporal sulcus folding, functional network connectivity, and autistic-like traits in a non-clinical population Mol Autism. 15 (1). 44. DOI: 10.1186/s13229-024-00623-3
  • Baumann KS; Lourenco A; Wulff J; Vilches-Freixas G; Palmans H. (27.12.2024). Investigating the impact of the effective point of measurement for plane-parallel ionization chambers in clinical proton beams Physics in Medicine & Biology. 70 (1). 70. DOI: 10.1088/1361-6560/ad9e7c
  • Witt M; Weber U; Flatten V; Stolzenberg J; Engenhart-Cabillic R; Zink K; Baumann K-S. (25.10.2024). On the Way to Accounting for Lung Modulation Effects in Particle Therapy of Lung Cancer Patients - A Review Cancers. 16 (21). 3598. DOI: 10.3390/cancers16213598
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LOEWE Schwerpunkt ADMIT
c/o Technische Hochschule Mittelhessen
Wiesenstraße 14
35390 Gießen

admit@medical-physics-hessen.de