3D-DOCTOR is an advanced 3D image modeling, processing and measurement software for PET and microscope imaging applications.
This Software supports images in grayscale and in colors stored in DICOM, TIFF, Interfile, GIF, JPEG, PNG, BMP, PGM, MRC, RAW or other image formats. 3D-DOCTOR creates 3D surface models and volume rendering from real-time cross-section 2D images on your PC. You can export polygonal mesh models to STL (ASCII and Binary), DXF, IGES, 3DS, OBJ, VRML, PLY, XYZ, and other formats for surgical planning, simulation, quantitative analysis, finite element analysis (FEA) and rapid prototyping applications. You can calculate the 3D volume and make other 3D measurements for quantitative analysis. 3D-DOCTOR vector-based tools support easy manipulation, measurement and analysis of image data.
3D TC/MRI images can be cropped easily along an arbitrary axis. Multi-mode images can be recorded to create image fusions. Misaligned slices can be aligned automatically or semi-automatically using the 3D-DOCTOR image alignment functions. Other image processing functions include model-based film cropping, image cooling to correct irregular thickness slices, volume resizing, and image rotation. The 3DBasic scripting tool makes it easy to create basic sophisticated 3D imaging programs. Get 3D-DOCTOR today and view your 3D.3D-DOCTOR images is FDA approved (US Food and Drug Administration 510K clearance) for medical imaging and 3D visualization applications. It was named the Top 3D Imaging Software by Scientific Computing & Instrumentation Magazine in 2002 and 2000.
3D-DOCTOR is currently being used by leading hospitals, medical schools and research organizations around the world.
Functions:
Targeting tools:
fully automatic texture-based segmentation for grayscale and color images, thresholding-based interactive segmentation for CT images, region-based object segmentation, and easy-to-use polygon-based manual tracking.
3D model export:
STL (ASCII and binary), AutoCAD DXF, 3D Studio (3DS), IGES, VRML, Wavefront OBJ, PLY, raw triangles and other 3D graphics file formats for rapid prototyping, 3D printing, finite element analysis, animation and visualization applications. Because object boundaries are generated from segmentation, object models are generated
3D mesh are created using one of the surface rendering functions. An unlimited number of objects representing different fabrics are supported.
Measurement and Quantitative Analysis Measurements include area, 3D surface area, 3D volume, distance, profile and histogram of the image region. Quantitative reporting of objects (number of pixels, pixel density, statistical data) is easily obtained for research and analysis.
3D view:
Real-time 3D surface representation and volume rendering for visualization applications. 3D animation. Create 3D models from TC, MRI, and microscopy images, and use 3D-DOCTOR's advanced animation control function to move each object independently and generate an AVI film file.
Registration and merger
Images of different modalities can be recorded using the 3D image logging function and merged to create a new fusion image. The Reslice command takes an image with variable spacing between slices to create a new image of even space slices, or simply create a new image with a different slice thickness. An image can be resiled along a user-defined axis so that more precise measurements can be made for certain features.
Fusion of a CT Image and PET Advanced 3D Image Processing 3D Computed Tomography in 3D:
create parallel cross-section and volume images using x-ray images at angles around an object. Turn your x-ray machine into a complete CT system using 3D-DOCTOR. Other image processing functions include: model-based scanned film cropping, volume resizing, 3D image filtering, image rotation, orientation adjustment, contrast adjustment, background removal, image matching, linear feature extraction, pattern recognition, segmentation, image mosaic, and color classification Everyone can run on your 3D images. 3D image restoration by Deconvolution: 3D-DOCTOR provides two highly efficient deconvolution methods for restoring and rebuilding 3D images, a faster neighborhood algorithm, and a maximum iterating entropy algorithm. The 3DBasic scripting language will allow you to create your own basic sophisticated programs, using advanced 3D-DOCTOR rendering and rendering functions quickly.
Minimum System Requirements Operating systems:
version of Windows XP, Vista, 7 or newer. Other operating systems, including Macintosh and Unix, are not currently supported.
CPU: Pentium, Pentium compatible or better.
RAM: A minimum of 128 MB is required, although 512 MB or more is recommended to provide better performance for processing larger images.
HARD DRIVE: 50 MB is required for the software and additional space is required to store your images in 3D.
DISPLAY: at least one 16-bit screen or better with OpenGL support. This typically requires setting up your screen using the device driver provided by the video card manufacturer. Use the Start/Settings/Control Panel option or right-click on the PC screen and use the Properties/Settings option to configure or change display settings.
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