Top Banner
- Current Status of the Particle Beam Therapy in Korea - Hope, Starts Here Samsung PTC 의료입자방사선연구회 제1회 심포지엄 The Particle Beam Therapy and Research in Korea, A Step to the Future 2016.06.10
29

Samsung Proton Therapy Center

Jan 23, 2018

Download

Technology

Kwangzoo Chung
Welcome message from author
This document is posted to help you gain knowledge. Please leave a comment to let me know what you think about it! Share it to your friends and learn new things together.
Transcript
Page 1: Samsung Proton Therapy Center

- Current Status of the Particle Beam Therapy in Korea -

Hope, Starts Here – Samsung PTC

의료입자방사선연구회 제1회 심포지엄 The Particle Beam Therapy and Research in Korea, A Step to the Future

2016.06.10

Page 2: Samsung Proton Therapy Center

Introduction

Samsung Proton Therapy Center

Treatment Nozzles

Operation and Statistics

Summary

Contents

Page 3: Samsung Proton Therapy Center

“These properties make it possible to irradiate intensely a strictly localized region within the body, with but little skin dose.”

Introduction

Page 4: Samsung Proton Therapy Center

Samsung Proton Therapy Center

Page 5: Samsung Proton Therapy Center
Page 6: Samsung Proton Therapy Center

The 1st

Page 7: Samsung Proton Therapy Center
Page 8: Samsung Proton Therapy Center
Page 9: Samsung Proton Therapy Center

• SHI AVF (Azimuthally Varying Field) Cyclotron

• Energy: 70 MeV - 230 MeV

• Two isocentric Gantries

• IGRT using CBCT, CT-Sim and MRI imaging modalities

Samsung PTC - Space Layout

Page 10: Samsung Proton Therapy Center

• Multi-leaf Collimator

• Maximum Field 25x25 cm2

• Passive Scattering or Line Scanning

• Patient collimator downstream of compensator

G1 Multi-Purpose Nozzle

Page 11: Samsung Proton Therapy Center

• Extended Helium Chamber

• Maximum Field 30x40 cm2

• Scanning speed and Dose rate

• Line Scanning + Aperture in RayStation 6

• Scanning in y-direction in near future

G2 Dedicated Scanning Nozzle

Page 12: Samsung Proton Therapy Center

• Wobbling Magnets + Scatterer

• Ridge Filter

Wobbling

Page 13: Samsung Proton Therapy Center

Line Scanning

• Two Orthogonal Scanning Magnets

• Scan Patterns loaded on SCU

Page 14: Samsung Proton Therapy Center

• RayStation + MOSAIQ

• Remote access using Citrix server

RTP and OIS

Page 15: Samsung Proton Therapy Center

• TOPAS user since alpha version

• Contributions (MLC, Ridge filters, etc.)

• Modelled the full geometry of the Samsung PTC nozzles

Monte Carlo Simulation

Page 16: Samsung Proton Therapy Center
Page 17: Samsung Proton Therapy Center
Page 18: Samsung Proton Therapy Center

1. Physics

Rehearsal

2. Clinical

Rehearsal

3. Total

Rehearsal 4. Treatment

Rehearsal

Page 19: Samsung Proton Therapy Center

• Treatment schedule filled in step by step

Treatment

Page 20: Samsung Proton Therapy Center

1st Patient in G2 Line Scanning

Page 21: Samsung Proton Therapy Center

Statistics

- 2016. 05 -

Page 22: Samsung Proton Therapy Center

Statistics

- 2016. 05 -

Page 23: Samsung Proton Therapy Center
Page 24: Samsung Proton Therapy Center

2016.05.03

Page 25: Samsung Proton Therapy Center
Page 26: Samsung Proton Therapy Center

Timeline

Page 27: Samsung Proton Therapy Center

1. The 1st private-hospital based PTC in Korea

2. Two Gantries

3. Operation in 3 years

4. Step by step launch

5. Up and Running

Summary

Another step to the future.

Hope, starts here.

Page 28: Samsung Proton Therapy Center

Thank you

Page 29: Samsung Proton Therapy Center

• K. Chung et. al., “The first private-hospital based

proton therapy center in Korea; status of the Proton

Therapy Center at Samsung Medical Center”, Radiat

Oncol J. 2015 Dec; 33(4); 337-43.

• K. Chung et. al., “The Proton Therapy Nozzles at

Samsung Medical Center: A Monte Carlo Simulation

Study using TOPAS, Journal of the Korean Physical

Society, Vol. 67, No. 1, July 2015, pp. 170-174.

References