Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

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Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar
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Transcript of Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

Page 1: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

Bimonthly Meeting on July 22, 2008

Mathematical Model for MRS

Amarjeet Bhullar

Page 2: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

S9.6 S19.6 S29.6

3 scans from the patient Patient Name: AD Exam ID: 4465

Page 3: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

Metabolite Concentrations: Choline and Creatine

Page 4: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

NAA Distribution

Page 5: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

Metabolite Ratios: Choline/Creatine

Page 6: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

Metabolite Ratios: Choline/NAA and NAA/Choline

Page 7: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

Metabolite Ratios

Cre

Cho

NAA

ChoCho

NAA

Page 8: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

PRESS ROI Superimposed on S19.6 Image: Ratio of the Cho/Cre

Page 9: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

PRESS ROI Superimposed on S19.6 Image: Ratio of the Cho/NAA

Page 10: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

Mathematical Model: Gaussian function

2

2)(2

02/

w

xx c

ew

Ayy

),( cc yx

0yy 2

)( 0yyc

1w2/

0 w

Ayyc

)4ln(1ww

Full width at half maximum

Page 11: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5

-400

-200

0

200

400

600

SI

PPM

3 Gaussian functions Real Data

Choline

Creatine

NAA

Cre

Cho

NAA

Cho

Spectrum from 3 Gaussian functions

Page 12: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5-200

0

200

400

600Voxel # 25

SI

PPM

Real Data

4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5

-200

0

200

400

600 Voxel # 26

SI

PPM

Real Data

4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5

-200

0

200

400

600Voxel # 27

Real Data

SI

PPM

4.0 3.6 3.2 2.8 2.4 2.0 1.6 1.2 0.8-600

-400

-200

0

200

400

600

800SI

PPM

Real Data

Voxel # 24

Page 13: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5-200

0

200

400

600Voxel # 30

SI

PPM

Real Data

4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5-300

-200

-100

0

100

200

300 Voxel # 31

SI

PPM

Real Data

4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5-200

0

200

400Voxel # 32

SI

PPM

Real Data

4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5

-200

0

200

400

Voxel # 33

SI

PPM

Real Data

Page 14: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

0.0

0.5

1.0

1.5

2.025

49

76

54

32

1

1413

1211

109

8

35

33

32

15

40

34

1817

16

282120

2423

22

4241

27

26

31

29

43

48

47

464544

30Cho/Cre

Voxel Wise Distribution

Page 15: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

0.0

0.5

1.049

48

47

45 46

42

41

40

35

34

3231

30

29

2827

26252423

22

2120

19

1817

1615

1413

1211

109

8

76

54

32

Cho/NAA

1

Voxel Wise Distribution

Page 16: Bimonthly Meeting on July 22, 2008 Mathematical Model for MRS Amarjeet Bhullar.

Conclusion:

Analytical expression to compute the area which represents the concentration of the metabolites.

Next Step:

To compare with our ratios with Functoolratios

Suggestions are welcome