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  3. Microfluidic technologies for ex vivo tissue biopsies: A review
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  11. In vitroassays for investigating the FLASH effect
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  12. Approaches for Head and Neck Cancer Research – Current Status and the Way Forward
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  14. Radiotherapy on-chip: microfluidics for translational radiation oncology
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  15. Cancer‐on‐Chip and Integrative Tumor Microenvironment Sensor Technologies for Progressing Precision Radiotherapy
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  16. A patient tumour-on-a-chip system for personalised investigation of radiotherapy based treatment regimens
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  18. In Vitro Models of Head and Neck Cancer: From Primitive to Most Advanced
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  19. Addressing Patient Specificity in the Engineering of Tumor Models
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  20. Isolation and characterisation of graves’ disease-specific extracellular vesicles from tissue maintained on a bespoke microfluidic device
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  21. Microfluidic Technologies for Head and Neck Cancer: From Single-Cell Analysis to Tumor-on-a-Chip
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  22. Biomimetic microfluidic chips for toxicity assessment of environmental pollutants
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  23. Brachytherapy on-a-chip: a clinically-relevant approach for radiotherapy testing in 3d biology
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  25. Oncoimmunology Meets Organs-on-Chip
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