This list contains a list of available images including format specification; links will display the selected image (probably in reduced quality and resolution)
![]() | Biplane
Angiographic Imaging Device |
![]() | Theory
of 3-D Point Reconstruction from biplane Angiograms |
![]() | Arterial
Switch Operation: Source Angiograms |
![]() | Results
of 3-D Reconstruction |
![]() | Detection
of Errors in Imaging Geometry |
![]() | Data
Structure for Tree Representation |
![]() | Coronary
Artery Systems without and with Diffuse Disease |
![]() | Modeling
and Visualization Process |
![]() | Generation
of Volume Elements |
![]() | Hierarchical
Decomposition |
![]() | Influence
of Vasoactive Medication |
![]() | Inter-Institutional
DICOM Communication |
![]() | Pure
DICOM Approach for Message Forwarding |
![]() | Demonstration
at XVIIIth Congress of the European Society of Cardiology |
![]() | Distorted
Grids of two Different Devices in two Different Angulations |
![]() | Automatic
Image Rectification |
![]() | Distortion
Patterns in three Levels |
![]() | Layout
of DICOM Applications and Environments at DHZB |
![]() | Prototypic
Database with HTTP Gateway |
![]() | Coefficients
relative to Angulation |
![]() | Coefficients
relative to Reference Rotation |
![]() | Angiograms
of Cadaveric Pig RCA with IVUS Catheter |
![]() | Geometrically
Correct Calculated IVUS Frames |
![]() | Sequential
Triangulation Algorithm |
![]() | Preliminary
Results of Validation using Metal Clips |
![]() | Angiograms
of Cadaveric Pig RCA with IVUS Catheter |
![]() | An
IVUS Image with Segmented Contours of the Wall |
![]() | Visualization
of the 3-D Reconstruction as VRML-2.0 Model |
![]() | Computer
Simulation of an Extremely Tortuous Path |
![]() | Calculated
Axial Twist of Computer Simulation |
![]() | Clip
used as Artificial Landmark for Validation |
![]() | Clip
Echo Tolerances within and between Pullbacks |
![]() | Results
from Manual Pullback Study |
![]() | Out-of-Center
Position of the IVUS Catheter |
![]() | Flow
Diagram of Absolute Orientation System |
![]() | Application
Example in Human LAD |
![]() | Performance
of the Absolute Orientation Method |
![]() | Correspondence
Matching Angio-IVUS |
![]() | Maximum-Intensity
vs. Energy-Complement Projections |
![]() | Data
Flow in Fusion Approach |
![]() | Torsion-Free
Generalized Joints |
![]() | Nail-Plate
as Torsion-Free Environment |
![]() | Friction
and NURD Effects on Bending |
![]() | In-Vivo
Angiograms and IVUS Segmentation |
![]() | Local
Orientation Error Strength and Angle |
![]() | Error
Strength, Angle, and Reliability Weight |
![]() | Absolute
Orientation Matching in Frontal View |
![]() | Automatically
Generated VRML Model |
![]() | Calculation
of Vessel Length and Volume from IVUS Contours |
![]() | Example
of a Simulated 90% Stenosis in a Bent Vessel Segment |
![]() | Worst
Case Scenario with Alternating Contours |
![]() | Segmentation
of Catheter and Vessel Outline in Angiograms |
![]() | Semi-Automated
Segmentation of the IVUS Data |
![]() | 3-D
Reconstructed Human Right Coronary Artery In-Vivo |
![]() | Viewpoint
Calculation for Fly-Through Trajectory |
![]() | Endoscopic
Observer and Semi-Transparent IVUS Data |
![]() | Endoscopic
View on Raw IVUS Data from Distal End |
![]() | VRML/JavaScript
Control Panel in Endoscopic Mode |
![]() | Aortic-Arc
Tube Model for Validation of CFD System |
![]() | Shear-Stress
Distribution in Tube |
![]() | Shear-Stress
Distribution in Stenosed Right Coronary Artery |
![]() | Endoscopic
View Distal of Stenosis with CFD Data Included |
![]() | Six
Phases as Wire-Frame in Anterior View |
![]() | VRML
Surface Model of 4-D Animated Right Coronary Artery |
![]() | Synchronous
Biplane DICOM Reader Applied to Angiographic Data |
![]() | 3-D
Scene Showing Lumen and Adventitia Contours |
![]() | Shear-Stress
Distribution in Artery Subjected to Brachytherapy |
![]() | Principle
of In-Stent Restenosis |
![]() | IVUS
Analysis and Treatment Area in Angiogram |
![]() | Four
Layers with 72 Dosage Points in Vessel Wall |
![]() | Impact
of Curvature on Dose Distribution |
![]() | Estimated
Doses in RCA and LAD Arteries |
![]() | Curvature
Direction, Magnitude, and Curvature Index from Frenet
Frame |
![]() | Determination
of Plaque-Thickness vs. Curvature-Index Regions |
![]() | Impact
of Selected Curvature Threshold |
![]() | 3-D
Fusion Model of RCA with In-Stent Restenosis |
![]() | Simplified
Tubular Model from Geometrically Correct Model |
![]() | Dose
Distribution Estimated from Geometrically Correct
Model |
![]() | Dose
Distribution Estimated from Simplified Tubular Model |
![]() | Model
of a Right Coronary Artery with Virtual Observer
and Path |
![]() | Virtual
Endoscopy with IVUS and Wall-Shear-Stress Data |
![]() | Pre-
and Post-Interventional Wall-Shear-Stress Distribution |
![]() | Endoscopic
View with Annotations for Curvature Magnitude and
Direction |
Note: The images in this Publications section are either shown in the respective paper, article, or book (in the original format or slightly changed), or they were added just for further information without being published in this specific reference.
Tue Nov 27, 2007