anatomic and functional guidance of neurosurgery

63
Anatomic and Functional Guidance of Neurosurgery. Robert L. Galloway Jr. Associate Professor of Biomedical Engineering and Neurosurgery Director, Center for Technology- Guided Therapy TGT

Upload: twila

Post on 18-Jan-2016

58 views

Category:

Documents


0 download

DESCRIPTION

Anatomic and Functional Guidance of Neurosurgery. Robert L. Galloway Jr. Associate Professor of Biomedical Engineering and Neurosurgery Director, Center for Technology-Guided Therapy. TGT. Technology-Guided Therapy. - PowerPoint PPT Presentation

TRANSCRIPT

Page 1: Anatomic and Functional Guidance of Neurosurgery

Anatomic and FunctionalGuidance of Neurosurgery.

Robert L. Galloway Jr.Associate Professor of Biomedical

Engineering and NeurosurgeryDirector, Center for Technology-

Guided Therapy

TGT

Page 2: Anatomic and Functional Guidance of Neurosurgery

Technology-Guided Therapy

The use of technology to improve the spatial and temporal specificity of the

delivery of therapy

TGT

Page 3: Anatomic and Functional Guidance of Neurosurgery

Technology -Guided Therapy• Pre-therapeutic data (images, population

data, therapy plan…)

• Registration methodology (matching pre-therapeutic data to specific patient in specific position)

• Intraoperative guidance and data collection.

• Display of position, plan, anatomy, function and disease.

Page 4: Anatomic and Functional Guidance of Neurosurgery

TGT

History of Image-Guided Therapy

• 1896 J.H. Clayton. X-Ray use in surgery

• 1904 Horsley and Clarke. Stereotactic frame

• 1946 Spiegel and Wycis. Stereotactic frame using xrays.

• 1940’s~1950s: Leksell, Riechert-Mundinger, Talairach, Cooper...

Page 5: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 6: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 7: Anatomic and Functional Guidance of Neurosurgery

TGT

Problems with X-Ray film Stereotaxy

• Target must be clearly visible in both images

• Lack of apparent relationship between arc settings and position.

• Best for electrophysiology-based ablation

Page 8: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 9: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 10: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 11: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 12: Anatomic and Functional Guidance of Neurosurgery

TGT

Problems with Frame-Based Stereotaxy

• Still point-based

• Frame obstructs surgical field

• Arc-based approach obscures relationship between target points and arc settings.

Page 13: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 14: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 15: Anatomic and Functional Guidance of Neurosurgery

TGT

Registration

When the mathematical relationship between a point in one space and the homologous point in another space is known, the spaces are considered registered. If that relationship can be reduced to a single common translation and rotation, the registration is considered rigid,

Page 16: Anatomic and Functional Guidance of Neurosurgery

TGT

Translate

Rotate

Rigid Registration

Page 17: Anatomic and Functional Guidance of Neurosurgery

TGT

Point Based Registration

• Fiducial point (landmarks)

• Intrinsic Fiducials (anatomic landmarks)

• Extrinsic Fiducials (markers)

Page 18: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 19: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 20: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 21: Anatomic and Functional Guidance of Neurosurgery

Marker -Based Registration

Page 22: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 23: Anatomic and Functional Guidance of Neurosurgery

New Methods of Registration

Surface-Based Registration

Page 24: Anatomic and Functional Guidance of Neurosurgery

• Image to Physical Space Registration

• Use the outer surface of the skull

• Segmentation in CT forms a surface

• Measure points on the outer surface of the skull with ultrasound

Surface-based registration of physical space with CT images using A-mode ultrasound localization of the skull

Page 25: Anatomic and Functional Guidance of Neurosurgery

• Advantages – No separate surgical procedure – No additional imaging scans

• Disadvantages– Residual Error is less predictive of actual error– More time consuming in the OR

Comparison with Fiducial Markers

Page 26: Anatomic and Functional Guidance of Neurosurgery

OptotrakS ys temC ontro lle r

OptotrakInterfac e Card

Serial Port

P C

M ulti-s c anner RCV out

CL K in

Ga ge A /D

Page 27: Anatomic and Functional Guidance of Neurosurgery
Page 28: Anatomic and Functional Guidance of Neurosurgery
Page 29: Anatomic and Functional Guidance of Neurosurgery
Page 30: Anatomic and Functional Guidance of Neurosurgery

Tomographic Images

• Can show anatomy

• Can show function (PET and functional MR)

• Can show extent of disease.

All of the above are qualified statements

Page 31: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 32: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 33: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 34: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 35: Anatomic and Functional Guidance of Neurosurgery

TGT

Surface Normal Uncertainty

Surface

Page 36: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 37: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 38: Anatomic and Functional Guidance of Neurosurgery

TGT

Tomographic Angiography

Page 39: Anatomic and Functional Guidance of Neurosurgery

Surgically Appropriate MIPs

1) Threshold image, make binary image2) Calculate center of mass from binary image3) Fit center of mass points from each slice to a line4) Extend plane from the line perpendicular to MIP trajectory

Page 40: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 41: Anatomic and Functional Guidance of Neurosurgery

Depth-Buffer Based Targeting

Page 42: Anatomic and Functional Guidance of Neurosurgery

Depth-Buffer Based Targeting

Page 43: Anatomic and Functional Guidance of Neurosurgery

TGT

Originals

Globaltransformation

Localtransformation

Page 44: Anatomic and Functional Guidance of Neurosurgery

TGT

Implantation of Thalamic Stimulators

Page 45: Anatomic and Functional Guidance of Neurosurgery

Population Data

• Goal - to provide information from multiple subjects during surgery

• Create a functional Atlas (MR or CT)

Page 46: Anatomic and Functional Guidance of Neurosurgery

Tglobal

Tlocal

Tlocal + Tglobal

Page 47: Anatomic and Functional Guidance of Neurosurgery

Optical Flow

• Differences between images considered as motion from one time frame to the next

• This motion is observed as a change in intensity, represented as a field of velocity vectors called the optical flow

constant]),(),(),([ ttztytxE

tzyx EvE.

,,

Page 48: Anatomic and Functional Guidance of Neurosurgery

Atlas

Atlas Patient

Patient

Page 49: Anatomic and Functional Guidance of Neurosurgery
Page 50: Anatomic and Functional Guidance of Neurosurgery

3D Visualization Display

Page 51: Anatomic and Functional Guidance of Neurosurgery

Intraoperative Tracking and Data Collection

Page 52: Anatomic and Functional Guidance of Neurosurgery

Interactive, Image Guided Endoscopic Surgery

Tomographic Volume Endoscopic View

Page 53: Anatomic and Functional Guidance of Neurosurgery

Image to Physical Space Registration

• Endoscopic image space (u,v) was registered with physical space (x,y,z).

• If distortions are minimized, registration from physical space points to image space points can be described by the direct linear transformation (DLT):

1

z

y

x

aaaa

aaaa

aaaa

w

v *w

u *w

34333231

24232221

14131211

Page 54: Anatomic and Functional Guidance of Neurosurgery

TGT

Integration of Intraoperative Imaging

Page 55: Anatomic and Functional Guidance of Neurosurgery

TGT

Page 56: Anatomic and Functional Guidance of Neurosurgery

Tracked Ultrasound

Page 57: Anatomic and Functional Guidance of Neurosurgery

Preliminary Experiments• Vertebral surface point extraction using tracked

U/S on phantom spine

• Spinal CT surface extraction• Point-to-surface registration• Qualitative assessment of registration accuracy

Page 58: Anatomic and Functional Guidance of Neurosurgery

Visual Results: Phantom Ultrasound Points

Page 59: Anatomic and Functional Guidance of Neurosurgery

New Software Design

Video

Tomogram

Rotational

2-D Images

DisplayOptotrak

Polaris

Art. Arms

Magnetic

Localizer

Render

Biopsy

Preop Plan

Transparency

GraphicA-Mode US

Electrophys.

Biomechanical

Optical Biopsy

IO

Quaternion

SVD

HTM

ICP

Registration

Deformation

Functional

Correction

ORION

Page 60: Anatomic and Functional Guidance of Neurosurgery

TGT

What’s Next?• Functional Mapping

• Deformable Models

• In-Vivo Tissue Identification

• Image-Guided Delivery of FEL Beam

• Direct Injection Chemotherapy

• Guided Gene Therapy Delivery

• Brachytherapy seed placement

Page 61: Anatomic and Functional Guidance of Neurosurgery

The Center For Technology-Guided Therapy

• Robert L. Galloway BME&Neurosurgery• Cynthia B. Paschal BME &Radiology• Anita Mahadevan-Jansen BME• E. Duco Jansen BME• J. Michael Fitzpatrick EECS&Radiology

&Neurosurgery• Benoit M. Dawant EECS

TGT

Page 62: Anatomic and Functional Guidance of Neurosurgery

The Center For Technology-Guided Therapy

• William C. Chapman, MD Surgery

• Anthony Cmelak, MD Radiation Oncology

• Charles Coffey, PhD Radiation Oncology

• Dennis Duggan, PhD Radiation Oncology

• Dennis Hallahan, MD Radiation Oncology & BME

• Robert M. Kessler, MD Radiology

• Peter E. Konrad, MD, PhD Neurosurgery & BME

• Steven Toms, MD, MPH Neurosurgery TGT

Page 63: Anatomic and Functional Guidance of Neurosurgery

The Center For Technology-Guided Therapy

Andy BassJim Stefansic

Diane MuratoreSteve Hartmann

David CashTuhin Sinha

Steve Gebhart

BME

Jeannette HerringJay West

Duane YoderRui Li

Yi Quiao

EECS

Alan Herline, MD

Surgery

Blake Arrington Gwen Banks Ryan Beasley Caryl Brzymialkiewicz Calley Hardin Elaine Isom Tammy McCreary Kristjan Onu

Danielle Pinson Stacey Scheib Chee Xiong

REU