New Technology in Radiation Oncology. James E. Gaiser, Ph.D. DABR Physics and Computer Planning Charlotte, NC

Similar documents
IMSURE QA SOFTWARE FAST, PRECISE QA SOFTWARE

FAST, precise. qa software

ADVANCING CANCER TREATMENT

Volumetric Modulated Arc Therapy - Clinical Implementation. Outline. Acknowledgement. History of VMAT. IMAT Basics of IMAT

Facility Questionnaire PART I (General Information for 3DCRT and IMRT)

ADVANCING CANCER TREATMENT

Real-time monitoring of linac performance using RT plans and logfiles

7/31/2011. Learning Objective. Video Positioning. 3D Surface Imaging by VisionRT

Photon beam dose distributions in 2D

Code of practice: Create a verification plan for OCTAVIUS Detector 729 in Philips Pinnacle³

Monaco VMAT. The Next Generation in IMRT/VMAT Planning. Paulo Mathias Customer Support TPS Application

IMRT and VMAT Patient Specific QA Using 2D and 3D Detector Arrays

Tomotherapy Physics. Machine Twinning and Quality Assurance. Emilie Soisson, MS

Acknowledgments. Ping Xia, Ph.D., UCSF. Pam Akazawa, CMD, UCSF. Cynthia Chuang, Ph.D., UCSF

Monte Carlo methods in proton beam radiation therapy. Harald Paganetti

Design and performance characteristics of a Cone Beam CT system for Leksell Gamma Knife Icon

Add a Healthy Dose of Innovation to Your Linac and CT Rooms

Disclosure. Outline. Acknowledgments. Ping Xia, Ph.D., Page 1. LINAC and MLC QA for IMRT. Received research support from Siemens Medical Solutions

Position accuracy analysis of the stereotactic reference defined by the CBCT on Leksell Gamma Knife Icon

Feasibility study of performing IGRT system daily QA using a commercial QA device

Initial Clinical Experience with 3D Surface Image Guidance

Use of Monte Carlo modelling in radiotherapy linac design. David Roberts, PhD Senior Physicist Elekta

Basic Radiation Oncology Physics

8/4/2016. Emerging Linac based SRS/SBRT Technologies with Modulated Arc Delivery. Disclosure. Introduction: Treatment delivery techniques

Digital phantoms for the evaluation of a software used for an automatic analysis of the Winston-Lutz test in image guided radiation therapy

Feasibility of 3D Printed Patient specific Phantoms for IMRT QA and Other Dosimetric Special Procedures

THE WIRELESS PHANTOM PERFORM ACCURATE PATIENT QA IN LESS TIME THAN EVER!

ICARO Vienna April Implementing 3D conformal radiotherapy and IMRT in clinical practice: Recommendations of IAEA- TECDOC-1588

1. Learn to incorporate QA for surface imaging

Dose Calculations: Where and How to Calculate Dose. Allen Holder Trinity University.

Hugues Mailleux Medical Physics Department Institut Paoli-Calmettes Marseille France. Sunday 17 July 2016

Op#miza#on of a Fast CT System for More Accurate Radiotherapy. Erica Cherry, Meng Wu, and Rebecca Fahrig

MapCHECK 2 & 3DVH. The Gold Standard for 2D Arrays

MapCHECK 2 & 3DVH The Gold Standard for 2D Arrays

Basics of treatment planning II

ph fax Deming Way Middleton WI USA

Calibration of Video Cameras to the Coordinate System of a Radiation Therapy Treatment Machine

Investigation of tilted dose kernels for portal dose prediction in a-si electronic portal imagers

Raising the Bar in IMRT QA

Thank-You Members of TG147 TG 147: QA for nonradiographic

Digital Imaging and Communications in Medicine (DICOM) Supplement 176: Second Generation Radiotherapy. Additional RT Treatment Modalities

DAILY LINAC QA BEAM QA

radiotherapy Andrew Godley, Ergun Ahunbay, Cheng Peng, and X. Allen Li NCAAPM Spring Meeting 2010 Madison, WI

3DVH FAQs. What is PDP questions

State-of-the-Art IGRT

CBCT Equivalent Source Generation Using HVL and Beam Profile Measurements. Johnny Little PSM - Medical Physics Graduate Student University of Arizona

Quick Reference Datasheet For All RIT113 Packages

Comparison of Two Phantoms for End-to-End SRS/SBRT Testing. Vikren Sarkar, Ph.D. Associate Professor University of Utah Huntsman Cancer Center

Image Guidance and Beam Level Imaging in Digital Linacs

Scatter Correction for Dual source Cone beam CT Using the Pre patient Grid. Yingxuan Chen. Graduate Program in Medical Physics Duke University

Artefakt-resistente Bewegungsschätzung für die bewegungskompensierte CT

Image Quality Assessment and Quality Assurance of Advanced Imaging Systems for IGRT. AAPM Penn-Ohio Chapter Sep 25, 2015 Soyoung Lee, PhD

Digital Imaging and Communications in Medicine (DICOM) Supplement 176: Second Generation Radiotherapy. Additional RT Treatment Modalities

Preface. Med. Phys. 35(9), , Mechanical QA. Radiation Survey Mechanical tests Light radiation Table, Collimator, Gantry Jaws.

Dose Distributions. Purpose. Isodose distributions. To familiarize the resident with dose distributions and the factors that affect them

Data. ModuLeaf Mini Multileaf Collimator Precision Beam Shaping for Advanced Radiotherapy

THESIS NEUTRON PRODUCTION AND TRANSPORT AT A MEDICAL LINEAR ACCELERATOR. Submitted by. Amber Allardice

X-ray Target Reconstruction for Cyber Knife Radiosurgery Assignment for CISC/CMPE 330

Automated Quality Assurance for Image-Guided Radiation Therapy

8/3/2016. Image Guidance Technologies. Introduction. Outline

Hidenobu Tachibana The Cancer Institute Hospital of JFCR, Radiology Dept. The Cancer Institute of JFCR, Physics Dept.

The team. Disclosures. Ultrasound Guidance During Radiation Delivery: Confronting the Treatment Interference Challenge.

S. Guru Prasad, Ph.D., DABR

Monaco Concepts and IMRT / VMAT Planning LTAMON0003 / 3.0

Radiation Oncology treatment facility design. Simulators, CT scanners, HDR Brachytherapy

Integrated proton-photon treatment planning

Introduction to Biomedical Imaging

Computational modelling and analysis: IOP Medical Physics Group

Iterative regularization in intensity-modulated radiation therapy optimization. Carlsson, F. and Forsgren, A. Med. Phys. 33 (1), January 2006.

GPU applications in Cancer Radiation Therapy at UCSD. Steve Jiang, UCSD Radiation Oncology Amit Majumdar, SDSC Dongju (DJ) Choi, SDSC

PURE. ViSION Edition PET/CT. Patient Comfort Put First.

Laser Systems for Patient Alignment

UNCOMPROMISING QUALITY

Moving Metal Artifact Reduction for Cone-Beam CT (CBCT) Scans of the Thorax Region

Optical Guidance. Sanford L. Meeks. July 22, 2010

MEDICAL IMAGING 2nd Part Computed Tomography

Analysis of Radiation Transport through Multileaf Collimators Using BEAMnrc Code

A NEW LASER FOCUS ON PATIENT SAFETY

REAL-TIME ADAPTIVITY IN HEAD-AND-NECK AND LUNG CANCER RADIOTHERAPY IN A GPU ENVIRONMENT

CLASS HOURS: 4 CREDIT HOURS: 4 LABORATORY HOURS: 0

Radiology. Marta Anguiano Millán. Departamento de Física Atómica, Molecular y Nuclear Facultad de Ciencias. Universidad de Granada

Image Guided Multibeam Radiotherapy

Digital Imaging and Communications in Medicine (DICOM) Supplement 176: Second Generation Radiotherapy. Additional RT Treatment Modalities

8/2/2017. PerFRACTION from Sun Nuclear Automated Transit Dosimetry for In-Vivo QA

Choosing and Commissioning a Video Based Motion Management System

TEPZZ Z754_7A_T EP A1 (19) (11) EP A1 (12) EUROPEAN PATENT APPLICATION. (51) Int Cl.: A61N 5/10 ( )

Carestream s 2 nd Generation Metal Artifact Reduction Software (CMAR 2)

Mech. Engineering, Comp. Science, and Rad. Oncology Departments. Schools of Engineering and Medicine, Bio-X Program, Stanford University

Image Acquisition Systems

Machine and Physics Data Guide

Using a research real-time control interface to go beyond dynamic MLC tracking

Real Time Tumor Motion Tracking with CyberKnife

A SYSTEM OF DOSIMETRIC CALCULATIONS

IHE Radiation Oncology Technical Framework Supplement. Treatment Delivery Plan Content (TDPC) Rev. 1.1 Trial Implementation

SRI GURU RAMDAS INSTITUTE OF MEDICAL SCIENCES & RESEARCH MEHTA ROAD, VALLAH, SRI AMRITSAR

IAEA-TECDOC-1583 Commissioning of Radiotherapy Treatment Planning Systems: Testing for Typical External Beam Treatment Techniques

2D DOSE MEASUREMENT USING A FLAT PANEL EPID

Qalitätssicherung an Multileafkollimatoren. Dr. Lutz Müller Würzburg jan 2004

Financial disclosure. Onboard imaging modality for IGRT

Optimization of Image Guided Radiation Therapy Using. Limited Angle Projections

Transcription:

New Technology in Radiation Oncology James E. Gaiser, Ph.D. DABR Physics and Computer Planning Charlotte, NC

Technology s s everywhere From the imaging chain To the planning system To the linac To QA..it..it s s everywhere

Imaging 101 First there was X-rayX (back in the day.)

Then there was CT Imaging 102

Now there s s PET-CT Imaging 103

Linac 101 The linac has been the backbone of therapy since the mid 80 s. First they were analog Then digital

Now they re robotic Linac 102

Planning systems

Targeting Intensity Modulated Radiation Therapy (IMRT) has been with us for about 7 years. Conformality is one thing.hitting the target is another Image Guided Radiation Therapy (IGRT) is the new paradigm. IGRT has been here for 7 or more years as well, it s s just that we can do it right now.

Imaging on the linac The X-ray X tubes and flat panel imagers are now attached to the linac.or.or

Imaging near the linac Mounted about the linac in a known geometry, allowing for unparalleled precision in targeting the tumor.

How do you keep it all straight? QAQAQAQAQAQAQAQAQAQAQAQAQA QAQAQAQAQAQAQAQAQAQAQAQAQA QAQAQAQAQAQAQAQAQAQAQAQAQA There s s never enough QA.or time.

Technology in QA Some things don t even need a battery Others require power supplies, computers and software

Imaging Plane films (actually plane images) are used either on (or in conjunction with) the linac on a daily basis. This calls for substantial investment in image acquisition and storage. X-ray tube and flat panel imagers provide stereo images for target localization in 3D space. You need to use digital techniques (instead of film) due to patient motion.

Gantry Mounted The imaging system has to have positional encoders that update continuously, due to gravity, as the gantry rotates. +/- 1 mm reproducibility is the minimum requirement.

Gantry Mounted The imaging system can also generates cone beam CT data, for comparison with planning CT dataset. Can be useful in soft tissue situations, as tumor volumes or nodal volumes change during treatment.

Gantry Mounted The mechanical isocenter is the limiting factor in determining the CT quality. A tight isocenter results in a better image quality.

Room mounted Geometry is well known and stable. Oblique images a visualization issue. Uses IR reflective spheres to get you close (+/- 2 mm). Limited to plane images.

Both technologies Use robotic couches to move patient s target to isocenter. Room mounted uses IR spheres to monitor patient motion during treatment. Linac can be sync d to patient breathing cycle, if desired.

Imaging for planning Scanners are now faster and better than even 2-32 3 years ago. 64 slice scanners are the state of the art, but not for long. Radiation Oncology departments typically have their own 4 slice scanner.

Imaging for planning Even the little things like the table tops are standard across all machines and and they re indexed, so patient setup reproducibility is now better than ever.

Planning systems Algorithms that were previously CPU bound can now be implemented, as processors are now fast enough to allow timely calculations. Convolution style algorithms are now standard fare for all commercial systems. Photon pencil beam algorithms are still used for some small fields (radiosurgery( radiosurgery) Shortcuts that had been used previously can now be eliminated (e.g. - larger grid size, with interpolation) Monte Carlo algorithms are commercially available for electrons, photons will hit the shelves this year.

Linacs Fully computer controlled, multiple embedded processors and a variety of OS s and platforms. Up to 7 dedicated CPUs are required to run some vendors machines.

Linacs Let s s keep this in perspective though we went to the moon on 4k or RAM and 32k of ROM. Remember, more isn t t always better.

Linacs Failure of any one of the computers can render the accelerator non-functional, resulting in suboptimal treatment for the patient. The days of treating without a R&V are pretty much over.

Technology in QA IMRT QA, both fluence maps and point doses can now be measured without the use of film or ion chamber. Darkrooms are becoming a thing of the past, just like my old friend (sigh)

Multiple detector arrays Several vendors offer either diode or ion chamber arrays. Useful for both IMRT QA, as well as standard QA, light- rad shots, FS, flatness and symmety

Materials Composite materials have increased in strength, with minimal attenuation to the x-rays x used in therapy. New uses for thermoplastics continue be found in the clinic. We now can do frameless SRS with sub-millimeter accuracy. Some vendors take it to the extreme, layers of composites that are stronger, yet they result in increased attenuation and increased skin dose both not good.

Summary New computer technology has allowed us to do things in the clinic we only dreamed about 10 years ago. New computer technology has maddened us as well, because application and operating system stability has not kept up with the demands of the field. Material technology has allowed us to increase patient positioning accuracy, but at a price.