FusionViewer is an application that was designed to be an open source medical image display package. It is designed to improve the physician’s ability to interpret the results of combined positron emission tomography (PET) and computed tomography (CT) studies.
As PET/CT combined studies are increasingly being used for the diagnosis, treatment decisions, and follow-up of cancer patients, improving the interpretive value of these studies would directly benefit cancer patients.
This display application is meant to validate and improve visualization. It facilitates the quantitative measurements on the fused image series.
An effective display of the fused data permits easy viewing of the anatomical information provided by the CT images while simultaneously displaying the functional data provided by PET.
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FusionViewer is a multimodal display that allows the user to overlay a “color” on a “black and white” image. This image can be either the CT or the PET image, or a combination of both. The user can easily select which image is the “source” image and which is the “target” image. This is achieved by activating the double click on the appropriate image. Alternatively, the user can click-and-drag an image from the source to the target.
An important aspect of FusionViewer is that it allows the user to change the brightness and contrast of the image and also to change the size of the image. FusionViewer was designed to be very flexible and easy to use, but maintain high performance.
FusionViewer is capable of reading, displaying, and analyzing images from three modalities. The PET image can be displayed in three different formats: relative activity, absolute activity, or activity in kBq/ml. The CT images can be displayed in axial, sagittal, and coronal views.
The display has a simple user interface. The user can click on any part of the image to display information about the CT image, which includes: thickness, brightness, and length. The same information is displayed for the PET image.
FusionViewer supports a number of other features such as volume rendering and display of color images. It can read and display MIPs (minimum intensity projection), Quicktime movie, tiff, jpg, bmp, PCX, TIFF, GIF, and TARGA images. The user can select the image to be displayed as the active image. This active image is displayed on top of the other images, however, the other images are still present. These other images may be hidden, or they may be visible depending on how the user selects the active image.
Using the volume rendering function, the user can select the contour around which the volume will be rendered. The user can select whether the volume is displayed using a region of interest or using a single voxel. The user can select which volumes to display and whether to display slices or a volume.
Several PET images may be displayed. The images can be displayed in either a 3-D format or a 2-D format.
Several interactive functions can be performed with the images:
(1) Several quantitative functions (area and volume measurements) may be performed on the displayed image.
(2) The user can perform an
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– Multiple 3D views of the PET-CT image series
– Display of structures from both PET and CT data sets
– Seamless overview of PET, CT, and fused PET-CT images
– Colour coding of the active and passive views
– Colouring of anatomic structures in active views
– Display of a 3D area of interest for quantitative measurements
– Display of 2D and 3D views of PET data sets in any transverse or coronal plane
PET and CT images are combined and color-coded based on intensity values.
Anatomic structures are automatically selected based on user-defined contours.
Fused images are reconstructed.
The 3D views of both PET and CT images are displayed.
A 3D view of an area of interest is displayed, where quantitative measurements are allowed.
Using the J.K.Rowling Lexicon, we can explore the use of the book as a medium for unearthing literature features and defining a sense, using the sense to explain related words and establish an association. This is of use in the learning of literature.
In this exercise, you’ll be given a short story, “Olivia” by Edgar Allan Poe.
Your task is to write an essay about the story as if you were the critic. That is, you’ll be critiquing the story and thinking about how you’d be criticising it as a reader.
It should be a good essay, one that discusses the writing in the story and explains why the author has done what he has. Remember to acknowledge the author.
Your essay should be a well-argued piece of writing, using good structure, grammar, and language, and that you have proof-read thoroughly before writing.
If you need help with the process, you can always ask a tutor. Just keep in mind that this is an exercise, not a tutorial!
Reading Analysis for Literature is a component of the First Language Curriculum.
It is taught in class using the following pedagogy:
Reading analysis is the process of understanding what the text is saying, not only in terms of the content of the text, but also in terms of the strategies and structures employed in the text.
Text and text analysis is a way of analysing a text. It involves both understanding the text and comparing it to other texts, which means, among other things, understanding the structural and rhetorical elements
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The FusionViewer display system uses the radiographic CT data from the clinical PET/CT exam to create a set of three-dimensional (3D) images. A series of 2D images from a PET exam and a single CT image from a previous exam (or several) are mapped to a single set of 3D images.
This process essentially creates a set of 3D “real-time” views of the subject which the radiologist or nuclear medicine physician can then interpret.
When a radiologist uses FusionViewer to assess the images, he or she will see a series of images that are static but with a series of images from different angles of the body. There is no doubt that the radiologist can find anything that is suspicious on these images. However, the radiologist may not be able to differentiate the abnormality from the anatomical landmarks.
The radiologist or nuclear medicine physician should refer to the CT scan to assess the structures. The CT images provide greater anatomical detail and thus the anatomical landmarks should be used to differentiate the lesion from the anatomical structure.
The PET data provides functional information. This data is represented as a color scale which the radiologist or nuclear medicine physician can use to assess the uptake of the tracer.
A biplane instrument can be used to view the images.
The entire series of PET images is displayed in a “real time” mode with the accompanying CT images. Since the PET images are not displayed in real time they do not move. Thus there is no need to constantly follow the moving structures.
The images can be viewed in two or three dimensions and can be rotated in all three dimensions. They can be flipped from side to side. The surgeon can view any plane of the body and all the corresponding planes.
The surgeon can scroll through the images quickly since the images are not displayed in real time. The surgeon may also zoom in on the images with the use of a set of zooming controls.
The number of CT planes can be configured by the user.
There are a set of tools available to the user. These tools include the ability to measure, look at the volume rendered view, read the text from a window, and export the data to other applications.
In the instance where PET and CT images of the same patient are combined, the tumor is in one of three planes (a, b, or c) with the CT data in one of two planes (a, or b). The fused image in the combination of all three planes.
What’s New in the FusionViewer?
FusionViewer is an application designed to visualize the results of a combined PET and CT study.
It was designed to improve the physician’s ability to interpret the results of combined PET and CT studies.
The combined PET and CT study can be obtained using the same CT machine that obtained the CT studies and the PET studies.
Or, the PET studies may be obtained using a different machine and then combined with the CT study obtained with the same machine.
FusionViewer displays a colorized CT image with an anatomical overlay of the PET studies. This allows a comparison between the CT and PET studies.
The PET studies can be displayed in arbitrary slices as multiple, independent images.
The user may mark regions of interest on the CT image and have the PET images automatically segmented. This allows easy viewing of the CT and PET images.
The user may overlay the segmented PET images on the CT image.
Several measures are available to the user.
The user may register the CT and PET images to create a three-dimensional surface of the CT image. The registered images are displayed in a work space where the positions and orientations of the images are arbitrary.
FusionViewer provides basic volume rendering and three-dimensional display of the CT image.
The CT images may be overlaid with the PET images and the PET images may be displayed in arbitrary slices.
FusionViewer was developed to make available to the medical community a software application that would make it easy for physicians to view the results of a combined PET and CT study.
Specific features of FusionViewer include:
Quick, efficient and easy-to-use visualization of combined PET and CT studies.
Image registration and three-dimensional displays of CT and PET images.
Segmentation of the PET images.
View of PET images overlaid on CT images.
Measurement of the PET images.
Segmentation and registration of CT images to reconstruct a three-dimensional surface.
Optional interactive display of the CT and PET images.
Optional color coding of the CT and PET images.
Risks and bugs:
FusionViewer is a beta software package. It is not yet fully stable.
The major risk associated with using FusionViewer is that the user may experience a crash of FusionViewer.
The user may experience a crash of FusionViewer if an incorrect PET study is selected for display.
This application was designed to view the PET data in both DICOM and NIFTI format.
However, the program allows the user to view the PET images in another format as well.
Download the latest FusionViewer application from the FusionViewer web site.
For information on the new FusionViewer application, click here.
Read the FusionViewer User’s Manual
Read the FusionViewer Readme file for further information.
FusionViewer is free
System Requirements For FusionViewer:
Region: USA, Europe, Asia
Language: English, Français
Gameplay: Free to Play
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