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Общее количество найденных документов : 39
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 1-20    21-39 
1.
A Monte Carlo study of grid performance in diagnostic radiology: Task-depentent optimization for digital imaging // Phys. Med. and Biol., 1994. Vol. 39, N 10.-С.1659-1676

2.
A Monte Carlo study of grid performance in diagnostic radiology: Task-depentent optimization for digital imaging // Phys. Med. and Biol., 1994. Vol. 39, N 10.-С.1659-1676

3.
A voxel phantom based Monte Carlo computer program for optimisation of chest and lumbar spine X ray imaging systems // Radiat. Prot. Dosim., 2000. Vol. 90, N 1-2.-С.105-108

4.
A voxel phantom based Monte Carlo computer program for optimisation of chest and lumbar spine X ray imaging systems // Radiat. Prot. Dosim., 2000. Vol. 90, N 1-2.-С.105-108

5.
Amorphous silicon EPID calibration for dosimetric applications. Comparison of a method based on Monte Carlo prediction of response with existing techniques // Phys. Med. and Biol., 2007. Vol. 52, N 12.-С.3351-3368

6.
Average glandular dose in digital mammography and digital breast tomoxynthesis: Comparison of phantom and patient data // Phys. Med. and Biol., 2015. Vol. 60, N 20.-С.7893-7907

7.
Carlsson G.Alm Breast absorbed doses in mammography: Evaluation of experimental and theoretical approaches // Radiat. Prot. Dosim., 1992. Vol. 43, N 1-4.-С.197-200

8.
Castellano I.A. CT dosimetry: Getting the best from the adult Cristy phantom // Radiat. Prot. Dosim., 2005. Vol. 114, N 1-3 Spec. Issue.-С.321-325

9.
Comparison of different materials for test phantoms in diagnostic radiology // Radiat. Prot. Dosim., 1993. Vol. 49, N 1-3.-С.345-347

10.
Comparison of model predictions of image quality with results of clinical trials in chest and lumbar spine screen-film imaging // Radiat. Prot. Dosim., 2000. Vol. 90, N 1-2.-С.173-176

11.
Comparison of model predictions of image quality with results of clinical trials in chest and lumbar spine screen-film imaging // Radiat. Prot. Dosim., 2000. Vol. 90, N 1-2.-С.173-176

12.
Comparison of the x-ray attenuation properties of breast calcifications, aluminium, hydroxyapatite and calcium oxalate // Phys. Med. and Biol., 2013. Vol. 58, N 7.-С.N103-N113

13.
Dance D.R. Estimation of mean glandular dose for contrast enhanced digital mammography: Factors for use with the UK, European and IAEA breast dosimetry protocols // Phys. Med. and Biol., 2014. Vol. 59, N 9.-С.2127-2137

14.
Dance D.R. Further factors for the estimation of mean glandular dose using the United Kingdom, European and IAEA breast dosimetry protocols // Phys. Med. and Biol., 2009. Vol. 54, N 14.-С.4361-4372

15.
Dance D.R. Monte Carlo calculation of conversion factors for the estimation of mean glandular breast dose // Phys. Med. and Biol., 1990. Vol. 35, N 9.-С.1211-1219

16.
Dance D.R. Monte Carlo simulation ot mammography // Phys. Med. and Biol., 1990. Vol. 35, N 2.-С.282

17.
Dance D.R. Photon transport simulation // Phys. Med. and Biol., 1990. Vol. 35, N 2.-С.281

18.
Davies D.H. Automatic computer detection of clustered calcifications in digital mammograms // Phys. Med. and Biol., 1990. Vol. 35, N 8.-С.1111-1118

19.
Davies D.H. The automatic computer detection of subtle calcifications in radiographically dense breasts // Phys. Med. and Biol., 1992. Vol. 37, N 6.-С.1385-1390

20.
Dose assessment in contrast enhanced digital mamography using simple phatoms simulating standard model breasts // Phys. Med. and Biol., 2015. Vol. 60, N 1.-С.N1-N7

 1-20    21-39 
 




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