22 results on '"Vens, C."'
Search Results
2. Micro cone beam computed tomography for sensitive assessment of radiation-induced late lung toxicity in preclinical models
3. Rapid Fluorescence Ratio Assay for Detecting Changes in Radiosensitivity
4. Cellular Radiosensitivity of Soft Tissue Sarcoma.
5. SP-1026 Against the motion.
6. Study protocols of three parallel phase 1 trials combining radical radiotherapy with the PARP inhibitor olaparib.
7. OC-0483: DNA repair defects in squamous cell carcinomas of the head and neck.
8. SP-0390: Radiotherapy and targeted drugs: which and how many pathway(s) to target?
9. P0-42: Targeting NAD+ Biosynthesis Combined with Radiation to Enhance Cell Death.
10. 888P Phase I study of olaparib combined with loco-regional radiotherapy in patients with head and neck squamous cell carcinoma.
11. OC-0339: More acute proctitis symptoms with hypofractionation (3.4 Gy) than 2 Gy fractions.
12. OC-0692: Phase 1 study of olaparib as radiosensitizer for locally advanced non-small cell lung cancer.
13. OC-0438: Clinical pharmacodynamics support biological effectivity of low dose olaparib as radiosensitizer.
14. OC-0463: In vitro prediction of DNA repair defects reveals association with poor clinical outcome in HNSCC.
15. OC-0258: Linear-quadratic modeling of acute rectum toxicity in a prostate hypo-fractionation trial.
16. SP-0208: Validation of imaging with histology: implications for dose prescriptions.
17. SP-0297 - Results of phase I trials combining PARP inhibition and radiotherapy in multiple sites.
18. PO-0713: Pathology of CTV of prostate cancer: implications for the dose to the tumor and the gland.
19. OC-0617: The PARP inhibitor olaparib is effective as radiosensitizer at 10-fold lower doses than as single agent.
20. PD-0427: A pharmacodynamic assay to assess the radiosensitizing potential of PARP inhibitors in clinical trials.
21. OC-0051: Towards the clinic: application of μ-IGRT for assessment of radiationinduced pneumonitis and pulmonary fibrosis.
22. PD-0426: Homologous recombination repair deficient tumor cells exhibit increased radiosensitization by PARP inhibition.
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