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NTIS 바로가기Physics in medicine & biology, v.55 no.17, 2010년, pp.5231 - 5248
Ding, George X (Department of Radiation Oncology, School of Medicine, Vanderbilt-Ingram Cancer Center, Vanderbilt University, B-902, TVC, 1301 Medical Center Drive, Nashville, TN 37232-5671, USA) , Coffey, Charles W (Department of Radiation Oncology, School of Medicine, Vanderbilt-Ingram Cancer Center, Vanderbilt University, B-902, TVC, 1301 Medical Center Drive, Nashville, TN 37232-5671, USA)
This study presents beam characteristics of five recently available x-ray beams produced by an on-board imager (OBI 1.4) for acquiring kilovoltage cone-beam computed tomography (kV-CBCT) and investigates suitable methods for the beam radiation output determination resulting from an image acquisition...
1999 10.1088/0031-9155/44/11/201 44 R99 0031-9155 Phys. Med. Biol. Ahnesjo A
Alaei, Parham, Ding, George, Guan, Huaiqun. Inclusion of the dose from kilovoltage cone beam CT in the radiation therapy treatment plans. Medical physics, vol.37, no.1, 244-248.
Ding, G, Coffey, C. SU‐GG‐T‐324: Characteristics and Dosimetric Parameters of Small Radiosurgery Photon Beams. Medical physics, vol.35, no.6, 2800-2800.
2002 10.1088/0031-9155/47/7/303 47 1025 0031-9155 Phys. Med. Biol. Ding G X
Ding, G.X., Coffey, C.W.. Is it Time to Include Imaging Doses in the Reportable Total Radiation Doses of Radiotherapy Patients?. International journal of radiation oncology, biology, physics, vol.72, no.1, S145-S146.
Ding, G.X., Coffey, C.W.. Radiation Dose From Kilovoltage Cone Beam Computed Tomography in an Image-Guided Radiotherapy Procedure. International journal of radiation oncology, biology, physics, vol.73, no.2, 610-617.
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Ding, George X., Duggan, Dennis M., Coffey, Charles W.. Accurate patient dosimetry of kilovoltage cone‐beam CT in radiation therapy. Medical physics, vol.35, no.3, 1135-1144.
1995 Ding G X Rogers D W O
Downes, P., Jarvis, R., Radu, E., Kawrakow, I., Spezi, E.. Monte Carlo simulation and patient dosimetry for a kilovoltage cone‐beam CT unit. Medical physics, vol.36, no.9, 4156-4167.
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Islam, Mohammad K., Purdie, Thomas G., Norrlinger, Bernhard D., Alasti, Hamideh, Moseley, Douglas J., Sharpe, Michael B., Siewerdsen, Jeffrey H., Jaffray, David A.. Patient dose from kilovoltage cone beam computed tomography imaging in radiation therapy : Patient dose from kilovoltage cone beam CT. Medical physics, vol.33, no.6, 1573-1582.
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Kawrakow, I., Rogers, D. W. O., Walters, B. R. B.. Large efficiency improvements in BEAMnrc using directional bremsstrahlung splitting : Directional bremsstrahlung splitting. Medical physics, vol.31, no.10, 2883-2898.
2002 Kawrakow I Rogers D W O
KOCH, H. W., MOTZ, J. W.. Bremsstrahlung Cross-Section Formulas and Related Data. Reviews of modern physics, vol.31, no.4, 920-955.
Ma, C.‐M., Coffey, C. W., DeWerd, L. A., Liu, C., Nath, R., Seltzer, S. M., Seuntjens, J. P.. AAPM protocol for 40-300 kV x‐ray beam dosimetry in radiotherapy and radiobiology. Medical physics, vol.28, no.6, 868-893.
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Rogers, D. W. O., Faddegon, B. A., Ding, G. X., Ma, C.‐M., We, J., Mackie, T. R.. BEAM: A Monte Carlo code to simulate radiotherapy treatment units. Medical physics, vol.22, no.5, 503-524.
Sharpe, Michael B., Moseley, Douglas J., Purdie, Thomas G., Islam, Mohammad, Siewerdsen, Jeffrey H., Jaffray, David A.. The stability of mechanical calibration for a kV cone beam computed tomography system integrated with linear acceleratora). Medical physics, vol.33, no.1, 136-144.
Sheikh‐Bagheri, Daryoush, Rogers, D. W. O.. Monte Carlo calculation of nine megavoltage photon beam spectra using the BEAM code. Medical physics, vol.29, no.3, 391-402.
Sheikh‐Bagheri, Daryoush, Rogers, D. W. O.. Sensitivity of megavoltage photon beam Monte Carlo simulations to electron beam and other parameters. Medical physics, vol.29, no.3, 379-390.
Shiu, Almon S, Chang, Eric L, Ye, Jin-Song, Lii, MingFwu, Rhines, Laurence D, Mendel, Ehud, Weinberg, Jeffrey, Singh, Sanjay, Maor, Moshe H, Mohan, Radhe, Cox, James D. Near simultaneous computed tomography image-guided stereotactic spinal radiotherapy: An emerging paradigm for achieving true stereotaxy. International journal of radiation oncology, biology, physics, vol.57, no.3, 605-613.
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Spezi, Emiliano, Downes, Patrick, Radu, Emil, Jarvis, Richard. Monte Carlo simulation of an x‐ray volume imaging cone beam CT unit. Medical physics, vol.36, no.1, 127-136.
Uematsu, Minoru, Fukui, Toshiharu, Shioda, Akira, Tokumitsu, Hideyuki, Takai, Kenji, Kojima, Tadaharu, Asai, Yoshiko, Kusano, Shoichi. A dual computed tomography linear accelerator unit for stereotactic radiation therapy: A new approach without cranially fixated stereotactic frames. International journal of radiation oncology, biology, physics, vol.35, no.3, 587-592.
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Walters, B. R. B., Ding, G. X., Kramer, R., Kawrakow, I.. Skeletal dosimetry in cone beam computed tomography. Medical physics, vol.36, no.7, 2915-2922.
2006 Walters B R Kawrakow I Rogers D W O
2007 10.1088/0031-9155/52/8/015 52 2267 0031-9155 Phys. Med. Biol. Wen N
Yenice, Kamil M., Lovelock, D.Michael, Hunt, Margie A., Lutz, Wendell R., Fournier-Bidoz, Nathalie, Hua, Chia-Ho, Yamada, Josh, Bilsky, Mark, Lee, Henry, Pfaff, Karl, Spirou, Spiridon V., Amols, Howard I.. CT image-guided intensity-modulated therapy for paraspinal tumors using stereotactic immobilization. International journal of radiation oncology, biology, physics, vol.55, no.3, 583-593.
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