Digital Mammography X ray tests Phantoms spectra Bilateral Project (ICM-tube X-ray) Development...
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![Page 1: Digital Mammography X ray tests Phantoms spectra Bilateral Project (ICM-tube X-ray) Development of a silicon detector for photon counting to be.](https://reader038.fdocuments.in/reader038/viewer/2022103004/56649c7b5503460f9492e92d/html5/thumbnails/1.jpg)
Digital Mammography X ray tests Phantoms spectra Bilateral Project (ICM-tube X-ray)
Development of a silicon detector for photon counting to be used in dual energy
radiography in the range 18-40KeV
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Digital Mammography Vantages:• Better resolution • Image manipulation• Image Inversion• Identification of other tissues• Reduction of time in studies (half)
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Silicon strip detector
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Characteristics of SD
• Position identification
• Energy 8-30 KeV
• Spatial resolution 50-100 um
• Fast electronics
• Low noise
• Low dose
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Silicon strip detector
Key system issuesFully parallel signal processing for all channels.
Only binary (yes/no) information is extracted from each strip.
Data from each channel must be stored in a local buffer for the whole measurement period.
64
bond wires
PC
computer
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First prototype (1xRX64)
0.6 1.0 cm2
detector
RX64
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Detector Tests
• Calibration through an internal pulse to obtain gain and noise estimation of the system
• Calibration through radiactive sources to obtain gain, noise and the absolute energy scale
• Detector test using a X ray tube at CINVESTAV and a mammograph at Hospital Juárez
• Obtain spectra with phantoms made in laboratory and an official phantom (ACR).
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Calibration with radiation sources
0 2 0 4 0 6 0 8 0 1 0 0 1 2 0 1 4 0 1 6 0 1 8 0 2 0 0 2 2 0 2 4 0 2 6 0 2 8 0- 2 0 0
0
2 0 0
4 0 0
6 0 0
8 0 0
1 0 0 0
1 2 0 0
1 4 0 0
1 6 0 0
1 8 0 0
2 0 0 0
2 2 0 0
2 4 0 0
5 4 M n ( 5 , 4 k e V )3 3 , 6 8 9
1 3 3 B a ( 3 5 k e V )
1 3 3 B a ( 3 0 , 9 k e V )
1 0 9 C d ( 2 4 , 9 k e V )
1 0 9 C d ( 2 2 , 1 6 k e V )
5 7 C o ( 1 4 , 1 k e V )
5 7 C o ( 6 , 4 k e V )
2 4 3 , 0 9
2 1 4 , 6 5
1 7 7 , 3 2
1 5 7 , 5 1
4 0 , 4 7 8
1 0 0 , 7 2
d(N
) / d
(Um
bral
)
U m b r a l ( D A C )
5 0 1 0 0 1 5 0 2 0 0 2 5 0 3 0 0 3 5 0 4 0 0 4 5 0 5 0 0 5 5 0 6 0 0 6 5 02 , 5
5 , 0
7 , 5
1 0 , 0
1 2 , 5
1 5 , 0
1 7 , 5
2 0 , 0
2 2 , 5
2 5 , 0
2 7 , 5
3 0 , 0
3 2 , 5
3 5 , 0
3 7 , 5
L i n e a r R e g r e s s i o n : Y = A + B * X
A = 0 , 4 9 0 2 + / - 0 , 2 9 6 8B = 0 , 0 5 6 7 + / - 0 , 0 0 0 7
Ene
rgía
(ke
V)
U m b r a l ( m V )
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Gain of 64 channels
0 , 0 5 8 0 , 0 6 0 0 , 0 6 2 0 , 0 6 4 0 , 0 6 6 0 , 0 6 80
2
4
6
8
1 0
1 2
1 4
1 6
1 8
Nú
me
ro d
e c
an
ale
s
G a n a n c i a ( m V / e l )
0 1 0 2 0 3 0 4 0 5 0 6 00 , 0 4 0
0 , 0 4 5
0 , 0 5 0
0 , 0 5 5
0 , 0 6 0
0 , 0 6 5
0 , 0 7 0
0 , 0 7 5
0 , 0 8 0
Ga
na
nci
a (
mV
/ e
l)
C a n a le s
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Hospital Juárez-México
Fis. Enrique Gaona (UAM-Xochimilco)
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Scanning system – 2D image
Advantages compare to 2D-systems:-reduced scatter background,-small number of the electronics channel.
scanning slit
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Activities in Mexico
2004
- Caracterization and tests in hospital by A. Leyva (posdoc ALFA).
- Simulation of the system by a portuguese student (ALFA).
- Test with ACR phantom by Roxana de la Mora (Bil. Proj. Cuba)
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Phantom 1 (First tests)
0 1 0 2 0 3 0 4 0 5 0 6 00 , 0
0 , 5
1 , 0
1 , 5
2 , 0
2 , 5
3 , 0
3 , 5
4 , 0
4 , 5
5 , 0
C a n a le s
Lo
ng
itud
(m
m)
1 0 , 0 0
1 5 , 0 0
2 0 , 0 0
2 5 , 0 0
3 0 , 0 0
3 5 , 0 0
4 0 , 0 0
4 5 , 0 0
5 0 , 0 0
5 5 , 0 0
6 0 , 0 0
6 5 , 0 0
7 0 , 0 0
7 5 , 0 0
8 0 , 0 0
8 5 , 0 0
9 0 , 0 0
9 5 , 0 0
1 0 0 , 0
Colimator: 250umSteps: 2Time: 3600s/stepCd-109 (22,24keV)
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Semiconductor diode Image
0 10 20 30 40 50 601
2
3
4
5
6
7
8
Canales
Lon
gitu
d
(mm
)
0
43.75
87.50
131.3
175.0
218.8
262.5
306.3
350.0
Colimador: 1mmPasos: 16Tiempo: 600s/pasoCd-109 (22,24keV)
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Internal image LED
60 50 40 30 20 10 06
7
8
9
10
11
12
13
0 10 20 30 40 50 60
Canales
Lo
ng
itu
d
(mm
)
0
30.00
60.00
90.00
120.0
150.0
180.0
210.0
240.0Collimator: 1mmSteps: 26Time: 3600s/stepCd-109 (22,24keV)
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Structures Images with Cd-109
0 1 0 2 0 3 0 4 0 5 0 6 0
5 0
6 0
7 0
8 0
9 0
1 0 0
1 1 0
1 2 0
1 3 0
1 4 0
1 5 0
1 6 0
1 7 0
1 8 0
1 9 0
2 0 0
2 1 0
C a n a le s
Pas
os
0
3 , 0 0 0
6 , 0 0 0
9 , 0 0 0
1 2 , 0 0
1 5 , 0 0
1 8 , 0 0
2 1 , 0 0
2 4 , 0 0
Collimator: 0.5mmSteps: 26Time: 2400s/stepCd-109 (22,24keV)
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ACR Phantom
The ACR phantom has structures that simulate microcalcifications of several sizes.
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Internal details
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BEDE X ray Tube Anode: Cu, window: Be
ICM Project
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Spectrum (64 strips) phantom 1 X ray tube
0 5 1 0 1 5 2 0 2 5 3 0 3 5 4 0 4 5 5 0 5 5 6 0 6 50
1 0 0 0
2 0 0 0
3 0 0 0
4 0 0 0
5 0 0 0
6 0 0 0
7 0 0 02 0 k V + 0 . 5 m Ac o l im a d o r - 2 0 0 m
Co
nte
os
C a n a le s
ta d q
= 5 s t
a d q = 2 s
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Mass profile (13) X ray tube
0 5 1 0 1 5 2 0 2 5 3 0 3 5 4 0 4 5 5 0 5 5 6 0 6 58 8 0 0
9 0 0 0
9 2 0 0
9 4 0 0
9 6 0 0
9 8 0 0
1 0 0 0 0
1 0 2 0 0
1 0 4 0 0
Co
nte
os
C a n a le s
mass 1mm
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Characteristics of mammographin Hospital Juárez
• Elscint, made in Israel
• Model MAM-CH225
• X ray tube model : XRHAVA
• Range: 22-35 kV
• Automatic adjustment of current
• Anodo-filter: Mo/Mo
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Detail 12 and phantom 1First results
0 5 1 0 1 5 2 0 2 5 3 0 3 5 4 0 4 5 5 0 5 5 6 0 6 53 0 0 0
3 5 0 0
4 0 0 0
4 5 0 0
5 0 0 0
5 5 0 0
6 0 0 0
Co
nte
os
C a n a le s0 6 1 2 1 8 2 4 3 0 3 6 4 2 4 8 5 4 6 0
1 0 0 0
1 0 5 0
1 1 0 0
1 1 5 0
1 2 0 0
1 2 5 0
1 3 0 0
1 3 5 0
1 4 0 0
1 4 5 0
1 5 0 0
Co
nte
os
C a n a le s
mass 2mm Phantom 1
Time:0.8s, 28kV, 90 mAs
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International Collaboration
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Publication
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Biological Tissue (uterus)
Analysis in progress…
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Activities-Ricardo
• 1(*)- Estudio de:• a) Interacción de las radiaciones con la materia.• b) Detección de las radiaciones ionizantes.• d) Detectores semiconductores de silicio• 2- Calibración 2 chips RX64.• a) Determinación de la linealidad de los
contadores.• b) Determinar Ampl DAC y Shaper DAC para el
sistema.• c) Medición de la ganancia, offset y el ruido.
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Activities…
• 3- Calibración energética del sistema de detección empleando fuentes patrones radioactivas.
• 4- Obtención de imágenes de objetos en el laboratorio
• 5- Simulacion del sistema con Geant
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Activities done so far• 1- Study of radiation interaction with matter
(silicon) (*)
• 2- Study simulation programs (Litrani, Geant) (*)
• 3- Measurement of gain, noise and offset through calibration pulse and radiation sources. (see report)
• 4- Programs to obtain mean and sigma of data (developed in C) (*)
* Should be in the report
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Future activities…
• Most of the measurement done sofar with edge-on configuration
• Poisson test.
• Biológical tissues measurementwith both front and edge on configutations.
• Measurements with X ray tube and Mammograph.