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Michael Habermann Applications of CBM-Root Simulation of a medical probe for tumor localization.

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Presentation on theme: "Michael Habermann Applications of CBM-Root Simulation of a medical probe for tumor localization."— Presentation transcript:

1 Michael Habermann Applications of CBM-Root Simulation of a medical probe for tumor localization.

2 Michael Habermann Overview GF&E Medical Aspects Our Approach Phantom Simulations Electronic Simulation

3 Michael Habermann Gesellschaft für Forschungs- und Entwicklungsservice mbH GF&E delivers physical-technical R&D-services. Our goal ist to apply and transfer key-technologies – especially from GSI developed methods, techniques and qualifications.

4 Michael Habermann Positron Emission Tomography Uses 18 F (β + -Emitter, λ=110 minutes) 18 F is attached to tracer (Glucose) Glucose is enriched in body parts with high energy intake Tumors need much energy to grow fast

5 Michael Habermann Conventional Low Energy Probe with 99m Tc Water 1 kBq/ml Tumor 10kBq/ml Detektor Kollimator

6 Michael Habermann Conventional Low Energy Probe with 18 F

7 Michael Habermann Electronic Collimation

8 Michael Habermann Our Design

9 Michael Habermann γ-Locator DXI

10 Michael Habermann Phantom-Measurements Sphere

11 Michael Habermann Phantom-Measurements

12 Michael Habermann Real Scenario

13 Michael Habermann CBMRoot-Simulation

14 Michael Habermann Implementation

15 Michael Habermann Data analysis

16 Michael Habermann Data analysis

17 Michael Habermann Summary No redundance of application sourcecode for simulation Easy adaption of scenarios through text files Use of ROOT for presentation of analysis results


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