142 results on '"Wolthaus, J."'
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2. PO-1703 Impact of Gun Grid Voltage on beam characteristics for a 1.5T Unity MRLinac
3. PD-0751 Experimental verification of accumulated dose of multifraction plan adaptations on the MR-linac
4. Towards validation of treatment record file as an input for time-resolved dosimetry
5. Reference Dosimetry in External MR-Guided Radiotherapy
6. PO-1557 Towards validation of treatment record file as an input for time-resolved dosimetry
7. PD-0588 Performance characterization of the Blue Physics scintillator in the 1.5T MR-linac
8. Component structure of the Positive And Negative Syndrome Scale (PANSS) in patients with recent-onset schizophrenia and spectrum disorders
9. Technical Note : Consistency of PTW30013 and FC65-G ion chamber magnetic field correction factors
10. Technical Note: Consistency of PTW30013 and FC65-G ion chamber magnetic field correction factors
11. Cannabis use: a challenge for vulnerability of schizophrenia. The Amsterdam experience
12. 'First in man' treatments with the MRI-linac provide clinical proof of the concept
13. Technical Note: Consistency of PTW30013 and FC65‐G ion chamber magnetic field correction factors
14. OC-0289 A water calorimeter as a primary standard for absorbed dose in magnetic fields
15. EP-1759 Patient plan QA using EBT3 GafChromic film for the Unity MRI-Linac system
16. OC-0290 Consistency of PTW30013 and FC65-G ion chamber magnetic field correction factors
17. 'First in man' treatments with the MRI-linac provide clinical proof of the concept
18. Duration of untreated psychosis and the long-term course of schizophrenia
19. The characterization of a large multi-axis ionization chamber array in a 1.5 T MRI linac
20. A formalism for reference dosimetry in photon beams in the presence of a magnetic field
21. Spiraling contaminant electrons increase doses to surfaces outside the photon beam of an MRI-linac with a perpendicular magnetic field
22. Beam characterisation of the 1.5 T MRI-linac
23. PV-0141: Contaminant electrons increase doses to surfaces outside the photon beam of the MRI-linac
24. Performance of a PTW 60019 microDiamond detector in a 1.5 T MRI-linac
25. Characterization of a prototype MR-compatible Delta4 QA system in a 1.5 tesla MR-linac
26. First patients treated with a 1.5 T MRI-Linac : Clinical proof of concept of a high-precision, high-field MRI guided radiotherapy treatment
27. First patients treated with a 1.5 T MRI-Linac: Clinical proof of concept of a high-precision, high-field MRI guided radiotherapy treatment
28. Consequences of air around an ionization chamber : Are existing solid phantoms suitable for reference dosimetry on an MR-linac?
29. First patients treated with a 1.5 T MRI-Linac: clinical proof of concept of a high-precision, high-field MRI guided radiotherapy treatment
30. Minimizing the magnetic field effect in MR-linac specific QA-tests : The use of electron dense materials
31. Performance of a cylindrical diode array for use in a 1.5 T MR-linac
32. Performance of a cylindrical diode array for use in a 1.5 T MR-linac
33. Minimizing the magnetic field effect in MR-linac specific QA-tests: The use of electron dense materials
34. Consequences of air around an ionization chamber: Are existing solid phantoms suitable for reference dosimetry on an MR-linac?
35. TH-CD-BRA-03: Direct Measurement of Magnetic Field Correction Factors, KQB, for Application in Future Codes of Practice for Reference Dosimetry
36. TH-CD-BRA-05: First Water Calorimetric Dw Measurement and Direct Measurement of Magnetic Field Correction Factors, KQ,B, in a 1.5 T B-Field of An MRI Linac
37. SU‐F‐J‐148: A Collapsed Cone Algorithm Can Be Used for Quality Assurance for Monaco Treatment Plans for the MR‐Linac
38. TH-CD-BRA-10: Towards Reference Dosimetry of MR-Linacs Using a Clinical Probe-Format Calorimeter
39. EP-1919: A cost-effective and fast end-to-end test for treatment accuracy evaluation
40. EP-1515: Difference in dose to water for photon beams with and without the presence of a magnetic field.
41. OC-0075: Impact of air around an ion chamber: solid water phantoms not suitable for dosimetry on an MR-linac
42. Performance of a cylindrical diode array for use in a 1.5 T MR-linac
43. Minimizing the magnetic field effect in MR-linac specific QA-tests: the use of electron dense materials
44. TH-CD-304-08: Small Air-Gaps Affect the Response of Ionization Chambers in the Presence of a 1.5 T Magnetic Field
45. SU‐E‐J‐202: Performance of the Patient QA Systems in a Hybrid MRI‐Linac
46. TH-CD-204-04: Automated Beam Modeling for a Hybrid MRI Radiotherapy System
47. SU-E-T-745: The Use of Electron Dense Materials for Quality Assurance Testing in a Magnetic Field
48. On-the-fly motion-compensated cone-beam CT using an a priori model of the respiratory motion
49. Reconstruction of a time-averaged midposition CT scan for radiotherapy planning of lung cancer patients using deformable registration
50. EP-1522: 3D reconstruction of 1D water tank profile series to enable volumetric evaluation of beam models
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