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3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

Mar 26, 2015

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Page 1: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

3-D

Page 2: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3-D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER MONITOR TO GIVE THE ILLUSION OF DEPTH.

Page 3: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

APPLICATIONS OF 3-D IN RADIOLOGY

RAD. THERAPY CRANIOFACIAL IMAGING ORTHOPEDICS NEUROSURGERY CARDIOVASCULAR SURGERY ANGIOGRAPHY MRI ENDOSCOPY (VIRTUAL)

Page 4: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

RAD. THERAPY

Page 5: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

CRANIO-FACIAL IMAGING

Page 6: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

ORTHOPEDICS

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ANGIOGRAPHY

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NEUROSURGERY

Page 9: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

VIRTUAL IMAGING

Page 10: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

THE GENERATION OF 3-D OBJECT USING COMPUTER SOFTWARE IS CALLED MODELING

Page 11: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

EXTRUSION

IS A MODELING TECHNIQUE THAT GENERATES A 3-D OBJECT FROM A 2 –D PROFILE

ON THE COMPUTER SCREEN.

Page 12: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

EXTRUSION

Page 13: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

PIXEL AREA

A

B

A= WIDTH B= HEIGTH

AREA OF THE PIXEL = A x B

Page 14: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

VOXEL VOLUME

A

B

C

A= WIDTH B= HEIGTH

C-DEPTH (SLICE THICKNESS)

VOLUME OF THE VOXEL = A x B x C

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DATA ACQUSITION FOR 3-D

CONVENTIONAL SLICE BY SLICE

VOLUME DATA ACQUSITION

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PROBLEMS WITH CONVENTIONAL SLICE BY SLICE ACQUISITION IN 3-D GENERATION

MOTION - STAIR-STEP ARTIFACT

MIREGISTRATION

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STAIR-STEP ARTIFACT

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SEVER STAIR-STEP ARTIFACT

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PROCESSING FOR 3-D

SEGMENTATION TRESHOLDING OBJECT DELINEATION RENDERING

Page 20: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

SEGMENTATION

PROCESSING TECHNIQUE USED TO IDENTIFY THE STRUCTURE OF INTEREST IN A GIVEN IMAGE. IT DETERMINES WHICH VOXEL ARE PART OF THE OBJECT AND SHOULD BE DISPLAYED AND WHICH ARE NOT AND SHOULD BE DISCARDED.

Page 21: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

SEGMENTATION

Page 22: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

TRESHOLDING

METHOD OF CLASSIFYING THE TYPES OF TISSUES REPRESENTED BY EACH OF THE VOXELS. CT NUMBER IS USED TO DETERMINE THIS.

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TRESHOLDING (IN SEGMENTATION)

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DELINEATION

BOUNDARY EXTRACTION

VOLUME EXTRACTION

Page 25: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

DELINEATION

Page 26: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

RENDERING

3-D IMAGE IS TRANSFORMED INTO SIMULATED 3-D IMAGE SO IT CAN BE DISPLAYED ON THE 2-D MONITOR.

Page 27: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

RENDERING TECHNIQUES

SURFACE RENDERING – SHADED SURFACE DISPLAY (SSD)

VOLUME RENDERING

Page 28: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

SURFACE RENDERING-SSD

SIMPLER OF THE TWO METHODS. DISPLAYS THE IMAGE ACCORDING TO ITS CALCULATIONS OF HOW THE LIGHT RAYS WOULD BE REFLECTED TO THE VIEWERS EYES.

COMPUTER CREATES INTERNAL REPRESENTATION OF SURFACES

Page 29: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

ADVANTAGE OF SSD

NOT MUCH COMPUTING POWER REQUIRED

ONLY CONTOUR INF IS USED

Page 30: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

DISADVANTAGES OF SSD

INFO OF STRUCTURES INSIDE OR BEHIND THE SURFACE IS NOT DISPLAYED!!

Page 31: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

SSD

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SURGERY USING SSD

Page 33: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.
Page 34: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.
Page 35: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

VOLUME RENDERING

SOPHISTICATED TECHNIQUE. 3-D IMAGES HAVE BETTER QUALITY THAN IN SURFACE RENDERING. USES ENTIRE DATA SET FROM 3-D SPACE. IT REQUIRES MORE COMPUTING POWER.

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ADVANTAGES OF VOLUME RENDERING (VR) UNLIKE SSD, VOLUME RENDERING

ALLOWS SEEING THROUGH SURFACES. IT ALLOWS THE VIEWER TO SEE BOTH INTERNAL AND EXTERNAL STRUCTURES.

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DISADVANTAGE/S

IT REQUIRES GREAT COMPUTING POWER – SOPHISTICATED COMPUTER EQUIPMENT

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VR

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VR

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VR

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MAXIMUM INTENSITY PROJECTION VOLUME RENDERING 3-D

TECHNIQUE THAT IS NOW FREQUENTLY USED IN CTA ( CT ANGIO) IT USES LESS THAN 10% OF DATA IN 3-D SPACE. IT DOES NOT NEED SOPHISTICATED COMPUTING.

IT ORIGINATED IN MRA

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MIP ALLOWS ONLY THE VOXEL WITH THE BRIGHTEST VALUE TO BE SELECTED

Page 43: 3-D. 3-D IMAGING IN MEDICINE IS A METHOD IN WHICH A SET OF DATA IS COLLECTED FROM A 3- D OBJECT, PROCESSED BY A COMPUTER, AND DISPALAYED ON A 2-D COMPUTER.

MIP CAN ALSO BE DISPLAYED IN RAPID SEQUENCE- CINE

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ADVANTAGES OF MIP

NO NEED FOR SOPHISTICATED COMPUTER HARDWARE- IT USES LESS THAN 10% OF DATA

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DISADVANTAGE/S OF MIP

ARTIFACT- STRING OF BEADS

NO SUPERIMPOSED STRUCTURES DEMONSTRATION

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MIP IN MRI

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MIP OF THE HEAD???

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MIP

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MIP

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COMPARISON OF 3-D TECHNIQUES

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DEPICTION OF 3-D RELATIONSHIP IN 3-D TECHNIQUES

SSD – GOOD MIP – FAIR VR - GOOD

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EDGE DELINEATION

SSD – GOOD MIP – GOOD VR - FAIR

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VESSEL LUMEN DEPICTION

SSD – NO MIP – 1 PIXEL THICK VR - YES

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% OF DATA USED

SSD - < 10% MIP < 10% VR UP TO 100%

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ARTIFACTS

SSD – MANY FALSE SURFACES MIP – MIP ARTIFACT VR - FEW

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CT WORKSTATION

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3-D WORKSTATION FEATURES MPR- MULTIPLANAR RECONSTRUCTION TRANSPARENCY VISUALIZATION SURFACE RENDERING SLICE PLANE MAPPING SLICE CUBE CUTS MIP 4-D ANGIO DISARTICULATION VIRTUAL REALITY

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MPR

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TRANSPARENCY

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CUBE SLICE CUT

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4-D

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DISARTICULATION

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VIRTUAL REALITY