References | 1. de González AB., Darby S. Risk of cancer from diagnostic X-rays: estimates for the UK and 14 other countries. The Lancet 2004;363(9406):345–51. Doi: 10.1016/S0140-6736(04)15433-0. 2. NHS England. Diagnostic Imaging Dataset Statistical Release 2021/2022. , London; 2023. 3. Laurier D., Billarand Y., Klokov D., Leuraud K. The scientific basis for the use of the linear no-threshold (LNT) model at low doses and dose rates in radiological protection. Journal of Radiological Protection 2023;43(2):024003. Doi: 10.1088/1361-6498/acdfd7. 4. Calabrese EJ. Origin of the linearity no threshold (LNT) dose–response concept. Arch Toxicol 2013;87(9):1621–33. Doi: 10.1007/s00204-013-1104-7. 5. UK Government. Ionising Radiation (Medical Exposure) Regulations (IR(ME)R) 2017 (SI 2017/1322), London: HMSO; 2017. 6. Martin C. The importance of radiation quality for optimisation in radiology. Biomed Imaging Interv J 2007;3(2). Doi: 10.2349/biij.3.2.e38. 7. Seeram E. Dose Optimization in Digital Radiography. Digital Radiography, Singapore: Springer Singapore; 2019, p. 213–27. 8. Bunt CW., Jonas CE., Chang JG. Knee Pain in Adults and Adolescents: The Initial Evaluation. Am Fam Physician 2018;98(9):576–85. 9. Ridley U., Ridley L. Imaging of the knee: Common acute presentations to general practice. Aust J Gen Pract 2020;49(6):344–9. Doi: 10.31128/AJGP-10-19-5120. 10. Hayre CM., Cox WAS. General Radiography, First edition. | Boca Raton : CRC Press, 2020. |: CRC Press; 2020. 11. Hayre CM. ‘Cranking up’, ‘whacking up’ and ‘bumping up’: X-ray exposures in contemporary radiographic practice. Radiography 2016;22(2):194–8. Doi: 10.1016/j.radi.2016.01.002. 12. Gibson DJ., Davidson RA. Exposure Creep in Computed Radiography. Acad Radiol 2012;19(4):458–62. Doi: 10.1016/j.acra.2011.12.003. 13. Ma WK., Hogg P., Tootell A., Manning D., Thomas N., Kane T., et al. Anthropomorphic chest phantom imaging – The potential for dose creep in computed radiography. Radiography 2013;19(3):207–11. Doi: 10.1016/j.radi.2013.04.002. 14. Williams MB., Krupinski EA., Strauss KJ., Breeden WK., Rzeszotarski MS., Applegate K., et al. Digital Radiography Image Quality: Image Acquisition. Journal of the American College of Radiology 2007;4(6):371–88. Doi: 10.1016/j.jacr.2007.02.002. 15. Benfield S., Hewis JD., Hayre CM. Investigating perceptions of ‘dose creep’ amongst student radiographers: A grounded theory study. Radiography 2021;27(2):605–10. Doi: 10.1016/j.radi.2020.11.023. 16. Health Management. Dose Creep: Unnoticed Variations in Diagnostic Radiation Exposures. , Limassol; 2015. 17. Ching W., Robinson J., McEntee M. Patient‐based radiographic exposure factor selection: a systematic review. J Med Radiat Sci 2014;61(3):176–90. Doi: 10.1002/jmrs.66. 18. Power KL. A simple measuring device for the busy department. . Radiographer 1959;7:16–7. 19. McLean D., Targett C. Exposure determination: examining the validity of the 25%/cm rule. Radiographer 2001;48(1):5–8. 20. Eastman T. Open forum. Exposure technique documentation. Radiol Technol 2011;83(2):202–3. 21. Bontrager K. Textbook of Radiographic Positioning and Related Anatomy, 7th ed., St. Louis: Mosby/Elsevier; 2010. 22. Fauber T. Radiographic Imaging & Exposure, 3rd ed., St Louis: Mosby/Elsevier; 2009. 23. Lança L., Franco L., Ahmed A., Harderwijk M., Marti C., Nasir S., et al. 10 kVp rule – An anthropomorphic pelvis phantom imaging study using a CR system: Impact on image quality and effective dose using AEC and manual mode. Radiography 2014;20(4):333–8. Doi: 10.1016/j.radi.2014.04.007. 24. Al-Balool G., Newman D. The relationships between kV, mAs and thickness in film-based radiography: 25% and 15% rules. OK? Radiography 1998;4:129–34. 25. Schueler BA. Clinical applications of basic x-ray physics principles. RadioGraphics 1998;18(3):731–44. Doi: 10.1148/radiographics.18.3.9599394. 26. Chesney D., Chesney M. Radiographic Photography, 3rd ed., Oxford: BlackweI1 Scientific Publications; 1971. 27. Coffey H., Chanopensiri V., Ly B., Nguyen D. Comparing 10 kVp and 15% Rules in Extremity Radiography. Radiol Technol 2020;91(6):516–24. 28. Allen E., Hogg P., Ma WK., Szczepura K. Fact or fiction: An analysis of the 10 kVp ‘rule’ in computed radiography. Radiography 2013;19(3):223–7. Doi: 10.1016/j.radi.2013.05.003. 29. NHS England Supply Chain. Static X-Ray and Associated Options and Related Services. Ne Contracts 2021/s 000-007768. Available from: https://www.supplychain.nhs.uk/product-information/contract-launch-b... [accessed November 6, 2023]. 30. Bertolini M., Nitrosi A., Rivetti S., Lanconelli N., Pattacini P., Ginocchi V., et al. A comparison of digital radiography systems in terms of effective detective quantum efficiency. Med Phys 2012;39(5):2617–27. Doi: 10.1118/1.4704500. 31. Seeram E. Digital Radiography: A Technical Review. Dose Optimization in Digital Radiography and Computed Tomography, Cham: Springer International Publishing; 2023, p. 13–24. 32. Siemens Healthineers AG. X-ray tube Opti 150/30/50HC-100 2009. 33. Vosper M. Dosimetry 13.6-13.11 . In: Ramlaul A, editor. Medical Imaging and Radiotherapy Research: Skills and Strategies. 2nd ed., Springer International Publishing AG ; 2020, p. 243–51. 34. Fluke Biomedical LLC. TNT 12000 system, (TNT 12000) DoseMate Dosimeter (Ion Chamber (96020C) 150cc; (TNT 12000D) Wireless Display 2010. 35. Landauer. ⅛" x ⅛" x 0.15" TLD-100H . TLD Chip: Single Point Radiation Assessments. Available from: https://www.landauer.co.uk/produit/tld-chip-single-point-radiation-a... [accessed October 4, 2022]. 36. Carbolite Gero. TLD/3 Rapid Cooling Oven n.d. 37. Lockwood P., Mitchell M. An assessment of the dose and image quality difference between AP and PA positioned adult radiographic knee examinations. J Med Imaging Radiat Sci 2023;54(1):123–34. Doi: 10.1016/j.jmir.2022.12.004. 38. Bos AJJ. High sensitivity thermoluminescence dosimetry. Nucl Instrum Methods Phys Res B 2001;184(1–2):3–28. Doi: 10.1016/S0168-583X(01)00717-0. 39. Saint-Gobain crystals and detectors. Thermo Fisher WinREMS software (v.PL-26732.8.1.0.0) 2012. 40. Thermo Electron Corporation. Thermo Fisher Scientific Harshaw TLD Model 5500 Reader with WinREMS Operator’s Manual (5500-W-O-0805-006). , 2005. 41. Microsoft 365. Excel 2022. 42. Alderson SW., Lanzl LH., Rollins M., Spira J. An instrumented phantom system for analog computation of treatment plans. Am J Roentgenol Radium Ther Nucl Med 1962;87:185–95. 43. AGFA Healthcare. NX3.0 Muscia Acquisition Workstation, AGFA DX-D 40C cassette 43x35cm 2015. 44. Whitley AS., Jefferson G., Holmes K., Sloane C., Anderson C., Hoadley G. Clark’s Positioning in Radiography 13E, 13th ed., CRC Press; 2015. 45. Mothiram U., Brennan PC., Lewis SJ., Moran B., Robinson J. Digital radiography exposure indices: A review. J Med Radiat Sci 2014;61(2):112–8. Doi: 10.1002/jmrs.49. 46. Image Information Systems. IQ-Web. IQ-Web 2022. 47. Random.Org. Random Sequence Generator . Random Sequence Generator . Available from: https://www.random.org/sequences/ [accessed October 10, 2022]. 48. Microsoft 365. Forms 2022. 49. Tingberg A., Herrmann C., Besjakov J., Almen A., Sund P., Adliene D., et al. What is worse: decreased spatial resolution or increased noise? In: Chakraborty DP, and Krupinski EA, editors., 2002, p. 338–46. 50. European Guidelines on Quality Criteria for Diagnostic Radiographic Images. European Guidelines on Quality Criteria for Diagnostic Radiographic Images, 1996. 51. Tello R., Crewson PE. Hypothesis Testing II: Means. Radiology 2003;227(1):1–4. Doi: 10.1148/radiol.2271020085. 52. Norman G. Likert scales, levels of measurement and the “laws” of statistics. Advances in Health Sciences Education 2010;15(5):625–32. Doi: 10.1007/s10459-010-9222-y. 53. Mowbray FI., Fox-Wasylyshyn SM., El-Masri MM. Univariate Outliers: A Conceptual Overview for the Nurse Researcher. Canadian Journal of Nursing Research 2019;51(1):31–7. Doi: 10.1177/0844562118786647. 54. Mukaka MM. Statistics corner: A guide to appropriate use of correlation coefficient in medical research. Malawi Med J 2012;24(3):69–71. 55. Mifsud K., Portelli JL., Zarb F., Couto JG. Evaluating the use of higher kVp and copper filtration as a dose optimisation tool in digital planar radiography. Radiography 2022;28(3):586–92. Doi: 10.1016/j.radi.2022.04.002. 56. Hayre CM., Eyden A., Blackman S., Carlton K. Image acquisition in general radiography: The utilisation of DDR. Radiography 2017;23(2):147–52. Doi: 10.1016/j.radi.2016.12.010. 57. Tompe A., Sargar K. X-Ray Image Quality Assurance, 2023. |
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