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Bibliography

Akselrod MS, Agersnap-Larsen N, McKeever SWS. A procedure for the distinction between static and dynamic radiation exposures of personal radiation badges using pulsed optically stimulated luminescence. Radiation Measurements 2000; 32:215-225.

Akselrod MS, Agersnap Larsen N, Whitley V, McKeever SWS. Thermal quenching of F centre luminescence in Al2O3:C. Radiation Protection Dosimetry 1999; 84:39-42.

Akselrod A, Akselrod MS. Correlation between OSL and the distribution of TL traps in Al2O3:C. Radiation Measurements 2002; 100:217-220.

Akselrod MS, Akselrod AE, Agersnap-Larsen N, Banerjee D, Botter-Jensen L, Christensen P, Lucas AC, McKeever SWS, Yoder RC. Optically stimulated luminescence response of Al2O3 to beta radiation. Radiation Protection Dosimetry 1999; 85:125-128.

Akselrod MS, Kortov VS. Thermoluminescent and exoemission properties of new high sensitivity TLD *-Al2O3:C crystals. Proceedings of the 9th International Conference on Solid State Dosimetry, Vienna, November 1989. Radiation Protection Dosimetry 1990; 33:123-126.

Akselrod MS, Kortov VS. Combined aluminum oxide TSEE-TL detectors for skin dosimetry. Proceedings of the Workshop on Skin Dosimetry, Dublin, May 1991. Radiation Protection Dosimetry 1991; 39:135-138.

Akselrod MS, Kortov VS, Gorelova EA. Preparation and properties of a-Al2O3:C. Radiation Protection Dosimetry 1993:47:159-164.

Akselrod MS, Kortov VS, Kravetsky DJ, Gotlib VI. Highly sensitive thermoluminescent anion-defective *-Al2O3:C single crystal detectors. Radiation Protection Dosimeter 1990; 32:15-20.

Akselrod MS, Lucas AC, Polf JC, McKeever SWS. Optically stimulated luminescence of Al2O3. Radiation Measurements 1998; 29:391-399.

Akselrod MS, McKeever SWS. A radiation dosimetry method using pulsed optically stimulated luminescence. Radiation Protection Dosimetry 1999: 81:167-176.

Akselrod MS, Yoder RC, Akselrod GM. Confocal fluorescent imaging of tracks from heavy charged particles utilizing new Al2O3:C,Mg crystals. Radiation Protection Dosimetry 2005; in press.

Andersen CE, Aznar MC, Boetter-Jensen L, Back NL, Mattsson SAJ, Medin J. Development of optical fiber luminescence techniques for real-time in vivo dosimetry in radiotherapy. Standards and Codes of Practice in Medical Radiation Dosimetry. Proceedings of the International Symposium , Vienna, 2002. 2:353-360. http://www.pub.iaea.org/MTCD/publications/PDF/Pub1153/Start.pdf

Andersen CE, Aznar MC, Marckmann CJ, Edmund JM, Bøtter-Jensen L. An algorithm for real-time in vivo dose-rate measurements using the radioluminescence signal from Al2O3:C. Radiation Protection Dosimetry 2005; in press.

Aznar MC, Andersen CE, Bøtter-Jensen L, Bäck SAJ, Mattsson S, Kjær-Kristoffersen F, Medin J. Real-time optical-fiber luminescence dosimetry for radiotherapy: physical characteristics and applications in photon beams. Physics in Medicine and Biology 2004; 49:1655-1669.

Aznar MC, Hemdal B, Medin J, Marckmann CJ, Andersen CE, Bøtter Jensen L, Andersson I, Mattsson S. In vivo absorbed dose measurements in mammography using a new real-time luminescence technique. British Journal of Radiology 2005; in press.

Aznar MC, Medin J, Hemdal B, Thilander Klang A, Bøtter-Jensen L, Mattsson S. A Monte Carlo study of the energy dependence of Al2O3:C crystals for real time in vivo dosimetry in mammography. Radiation Protection Dosimetry 2005; in press.

Bøtter-Jensen L. Luminescence techniques: instrumentation and methods Radiation Measurements 1997; 17:749-768.

Bøtter-Jensen L, Agersnap Larsen N, Markey BG, McKeever SWS. Al2O3:C as a sensitive OSL dosemeter for rapid assessment of environmental photon dose rates. Radiation Measurements 1997; 27:295-298.

Bøtter-Jensen L, Andersen CE, Duller GAT, Murray AS. Developments in radiation, stimulation and observation facilities in luminescence measurements. Radiation Measurements 2003; 37:535-541.

Bøtter-Jensen L, Banerjee D, Jungner H, Murray AS. Retrospective assessment of environmental dose rates using optically stimulated luminescence from Al2O3:C and quartz. Radiation Protection Dosimetry 1999; 84:537-542.

Bøtter-Jensen L, Bulur E, Duller GAT, Murray AS. Advances in luminescence instrument systems. Radiation Measurements 2000; 32:523-528.

Bøtter-Jensen L, Bulur E, Murray AS, Poolton NRJ. Enhancements in luminescence measurement techniques. Radiation Protection Dosimetry 2002; 101:119-124.

Bøtter-Jensen L. Duller GAT, Murray AS, Banerjee D. Blue light emitting diodes for optical stimulation of quartz and aluminium oxide in retrospective dosimetry and dating. Radiation Protection Dosimetry 1999; 84:335-340.

Bøtter-Jensen L, McKeever SWS. Optically stimulated luminescence dosimetry using natural and synthetic materials. Radiation Protection Dosimetry 1996; 65:273-280.

Bøtter-Jensen L, McKeever SWS, Wintle AG. Optically stimulated luminescence dosimetry Elsevier, Amsterdam, 2003.

Bøtter-Jensen L, Mejdahl V, Murray AS. New light on OSL. Quarterly Scientific Reviews 1999; 18:303-309.

Bøtter-Jensen L, Murray AS. Developments in optically stimulated luminescence techniques for dating and retrospective dosimetry. Radiation Protection Dosimetry 1999; 84:307-316.

Bøtter-Jensen L, Murray AS. Optically stimulated luminescence techniques in retrospective dosimetry. Radiation Physics and Chemistry 2001; 61:181-190.

Edmund JM, Andersen CE, Marckmann CJ, Aznar MC, Akselrod MS, Bøtter-Jensen L. CW-OSL measurement protocols using optical fibre Al2O3:C dosemeters. Radiation Protection Dosimetry 2005; in press.

Colyott LE, McKeever SWS, Akselrod MS. An integrating UVB dosimeter system, Radiation Protection Dosimetry 1999; 85:309-312.

Gaza R, McKeever SWS, Akselrod MS, Akselrod A, Underwood T, Yoder C, Andersen CE, Aznar MC, Marckmann CJ, Botter-Jensen L, A fiber-dosimetry method based on OSL from Al2O3:C for radiotherapy applications, Radiation Measurements 2004; 38:809-812.

Gaza R, Yukihara EG, McKeever SWS. The use of optically stimulated luminescence from Al2O3:C in the dosimetry of high-energy heavy charged particle fields. Radiation Protection Dosimetry 2004; in press.

Gaza R, Yukihara EG, McKeever SWS. The response of thermally and optically stimulated luminescence from Al2O3:C to relativistic heavy charged particles. Radiation Measurements 2004; 38:417-420.

Gaza R, Yukihara EG, McKeever SWS, Ávila O, Buefil AE, Gamboa-deBuen I, Rodríguez-Villafuerte, Ruiz-Trejo MC, Brandan ME. Ionization density dependence of the optically stimulated luminescence dose response of Al2O3:C to low-energy charged particles. Radiation Protection Dosimetry 2004; in press.

Goosens,Vanhavere OF, Leys N, De Boever P, O’Sullivan D, Zhou D, Spurny F, Yukihara EG, Gaza R, McKeever SWS. Radiation dosimetry for microbial experiments in the International Space Station using different track-etch and luminescent detectors. Radiation Protection Dosimetry 2004; in press.

Klein DM, Yukihara EG, Bulur E, Durham JS, Akselrod MS, McKeever SWS. An optical fiber radiation sensor for remote detection of radiological materials. IEEE Sensors 2004; in press.

Klein DM, Yukihara EG, Durham JS, Akselrod MS, McKeever SWS. In-situ, long-term monitoring system for radioactive contaminants. Radiation Protection Dosimetry 2004; in press.

Marckmann CJ, Aznar MC, Andersen CE, Bøtter-Jensen L. The influence of stem effect on radioluminescence signals from optical fibre Al2O3:C dosimeters. Radiation Protection Dosimetry 2005; in press.

Markey BG, McKeever SWS, Akselrod MS, Botter-Jensen L, Agersnap Larsen N, Colyott LE. The temperature dependence of optically stimulated luminescence from *-Al2O3:C, Radiation Protection Dosimetry 1996; 65:185-189.

McKeever SWS. Thermoluminescence of solids. Cambridge University Press, Cambridge. 1985.

McKeever SWS. Optically stimulated luminescent dosimetry. Nuclear Instruments and Methods B. 2001; 184:29-54.

McKeever SWS, Akselrod MS, Colyott LE, Agersnap-Larsen N, Polf JC, Whitley V, Characterization of Al2O3 for use in thermally and optically stimulated luminescence dosimetry. Radiation Protection Dosimetry 1999; 84:163-168.

McKeever SWS, Akselrod MS and Markey BG. Pulsed optically stimulated luminescence dosimetry using *-Al2O3:C. Radiation Protection Dosimetry 1996; 65:267-272.

McKeever SWS, Akselrod MS. Radiation dosimetry using pulsed optically stimulated luminescence of Al2O3:C. Radiation Protection Dosimetry 1999; 84:317-320.

McKeever SWS, Blair MW, Bulur E, Gaza R, Kalchgruber, Klein DM, Yukihara EG. Recent advances in dosimetry using the optically stimulated luminescence of Al2O3:C. Radiation Protection Dosimetry 2004; 109:269-276.

McKeever SWS, Moscovitch M. On the advantages and disadvantages of optically stimulated luminescence dosimetry and thermoluminescent dosimetry. Radiation Protection Dosimetry 2003; 104:263-270.

Polf JC, Yukihara EG, Akselrod MS, McKeever SWS. Real-time luminescence from Al2O3 fiber dosimeters. Radiation Measurements 2004; 38:227-240.

Yukihara EG, Gaza R, McKeever SWS. The potential of optically stimulated luminescence for dosimetry of astronauts. Radiation Research 2004; in press.

E. G. Yukihara, R. Gaza, S. W. S. McKeever, C. G. Soares. Optically stimulated luminescence and thermoluminescence efficiencies for relativistic heavy charged particle irradiation in Al2O3:C. Radiation Measurements 2004; 38:59-70.

Yukihara EG, McKeever SWS. Ionization density dependence of the optically and thermally stimulated luminescence from Al2O3:C. Radiation Protection Dosimetry 2004; inpress.

Yukihara EG, Whitley VW, McKeever SWS, Akselrod AE, Akselrod MS. Effect of high dose irradiation on the optically stimulated luminescence of Al2O3:C. Radiation Measurements 2004; 38:317-330.

Yukihara EG, Whitley VH, Polf JC, Klein DM, McKeever SWS, Akselrod AE, Akselrod MS. The effects of deep trap population on the thermoluminescence of Al2O3:C. Radiation Measurements 2003; 37:627-368.

Patents

US Patent #5,354,997: Miller SD. Method for increased sensitivity of radiation detection and measurement. October 11, 1994.

US Patent #5,567,948: Miller SD. Composite material dosimeters. October 22, 1996.

US Patent #5,569,927: Miller SD. Composite material dosimeters. October 29, 1996.

US Patent #5,731,590: Miller SD. Metal oxide composite dosimeter method and material. March 24, 1998.

US Patent #5,892,234: McKeever SWS, Akselrod MS, Markey BG. Method for determining an unknown absorbed dose of radiation using optically stimulated luminescence. April 6, 1999.

US Patent #5,962,857: McKeever SWS, Akselrod MS, Markey BG. Method for the fast determination of an unknown absorbed dose of radiation with high sensitivity using optically stimulated luminescence. October 5, 1999.

US Patent #6,316,782: Akselrod MS, McKeever SWS. System and method for the detection of abnormal radiation exposures using pulsed optically stimulated luminescence. November 13, 2001.

US Patent #6,414,324: Colyott LE, Akselrod MS, McKeever SWS. Method of preparing detection materials for use in UV detection using phototransferred thermoluminescence. July 2, 2002.


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