With high performance and an intuitive interactive user interface, OsiriX is the most widely used DICOM viewer in the world. It is the result of more than 17 years of research and development in digital imaging. It fully supports the DICOM standard for an easy integration in your workflow environment and an open platform for development of processing tools. It offers advanced post-processing techniques in 2D and 3D, exclusive innovative technique for 3D and 4D navigation and a complete integration with any PACS. OsiriX supports 64-bit computing and multithreading for the best performances on the most modern processors. OsiriX MD, the commercial version, is certified for medical use (FDA cleared and CE II labeled).

More than a medical images viewer, OsiriX MD is a powerful diagnosis tool. OsiriX has been developed to allow to efficiently view full radiology exams and allows full review images with ease of use for Radiologists, Medical care providers, Institutions and many others.


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OsiriX is an image processing application for the Apple MacOS operating system dedicated to DICOM images (".dcm" / ".DCM" extension) produced by equipment (MRI, CT, PET, PET-CT, ...). OsiriX is complementary to existing viewers, in particular to nuclear medicine viewers. It can also read many other file formats: TIFF (8,16, 32 bits), JPEG, PDF, AVI, MPEG and QuickTime. It is fully compliant with the DICOM standard for image communication and image file formats. OsiriX is able to receive images transferred by DICOM communication protocol from any PACS or medical imaging modality (STORE SCP - Service Class Provider, STORE SCU - Service Class User, and Query/Retrieve).

OsiriX HD is a medical images viewer for iOS (iPhone and iPad). It offers full image manipulation such as zoom, pan and window level using gesture, supports standard DICOM communications. It is a complement to OsiriX MD.

You can either display a unique viewer or two viewers on the screen. By displaying a second viewer, you can compare a different study of the same patient, or you can view two series of the same study.

If the series are from the same study, and if the 3D references are available in the DICOM files, the cross reference lines are displayed:The first and the last slice of the series is displayed with a yellow line.The current slice is displayed with an orange line.To change the content of the viewers, use the series selection button (see Series selection).You have to drag and drop the thumbnail to change the content of the second viewer by using the series selection button.

OsiriX HD supports DICOM C-Store SCU and STOW-RS protocol. That means you can send DICOM images stored on your OsiriX HD database to any DICOM nodes, including another OsiriX HD iOS device, OsiriX for macOS, a DICOM viewer, or a PACS server.

This richly illustrated manual contains the full description of all features included in OsiriX MD as well as some guidelines to use the program and integrate it in a DICOM environment.

Through more than 300 pages, the new user will learn how to use the 2D & 3D image viewers, the power user will understand how the database works and the technical user will learn the best practices to create a JPEG2000 DICOM network.

Computed tomography (CT) is an established method for evaluating dogs with suspected prostatic disease; however, publications assessing the effects of varying factors on prostate volume measurements are lacking. The objectives of this two-part, observer agreement, methods comparison study were to assess observer agreement and the effects of varying CT technical parameters for volume measurements of canine prostate glands on CT images using OsiriX DICOM viewer software. In the first retrospective study, two observers measured prostate volumes of 13 client-owned dogs thrice on noncontrast and contrast CT images. In the second prospective study, two observers measured the prostate volume of 10 cadavers using five different CT protocols and eight cadavers using three slice thicknesses. Observer agreement analyses were performed, and prostatic CT volume measurements were compared with water displacement volume measurements. Intra- and interobserver variability and the effect of contrast enhancement were found to be minimal when a one-way analysis of variance model and intraclass correlation coefficients were used. No significant differences emerged between different protocols and slice thicknesses using a linear mixed effects model. When the prostate CT volume was compared using a Bland-Altman plot with the reference volume acquired by the water displacement method, agreement without consistent bias between the methods was shown, and over 90% of measurements were located within the 95% limits of agreement. The findings supported using OsiriX software for CT prostatic volume measurements in dogs.

In 2009, OsiriX became the official DICOM viewer for the Radiology Department of the Geneva University Hospital thanks to the support of Professor Ratib who had returned to Geneva a few years earlier as Chairman of the Nuclear Medicine service.

I have installed OsiriX is my computer which is an open source DICOM viewer. I was wondering what would make this different from a PACS (Picture archiving and communication system) or RIS (Radiology Information System). How could OsiriX be incorporated into one of them?

The viewer is an application that allows you to look at images. The PACS is a server that stores the images (they often have an accompanying viewer). The RIS is a workflow/record system for scheduling the time for the scanners, managing appointments, storing reports, etc.

OsiriX have both options means - Storage and viewer basically called Osirix was PACS but stand alone. Every PACS has its own viewer now a days either server client basis or web viewer. Dicom work station was different and PACS viewer was different.

Over the past 10 years, we have supported and implemented thousands of OsiriX viewer workstations. Our clients, who tried to use OsiriX for more than just image viewing and analysis, noticed these failures. Rather than rely on OsiriX, we suggest several safer and more productive alternatives for even small volumes of imaging study storage.

Horos and OsiriX are the top two medical image viewers for Apple computers. However, the products have different functionalities and work very differently in many respects. If you're looking for an alternative to your medical image viewing software, or are just interested in what's out there, here's what you need to know about the differences between the two.

DICOM (Digital Imaging and Communications in Medicine) is a standard format that enables medical professionals to view, store, and share medical images irrespective of their geographic location or the devices they use, as long as those devices support the format. DICOM images need to be viewed through specific software called DICOM viewers that can read and display the format. The images, along with the corresponding patient data, are often stored in a large database called the Picture Archiving and Communication System (PACS). The purpose of a DICOM application is to store information in the PACS about the imaging examination, along with patient details, and then when required, to view and interpret (and possibly edit) medical images that are retrieved from the PACS. DICOM images are unique in the fact that they contain patient information in addition to the image data.

Is it Windows, Mac OS X, or Linux-based? You might want to keep in mind that many viewers are designed to run on either Windows or Mac, but not both. Therefore, when deciding on an option, make sure that it runs on different operating systems, and if not, then at least on the one that you most frequently use.

Most doctors and students today use not only their desktops, but also laptops, tablets, and smartphones interchangeably. The ideal DICOM application would allow access to the same data from multiple devices with convenience. You want a viewer that you can access from any device, any time.

Keeping the above purposes in mind, and allowing for ease of use and installation by end users themselves, we have compiled the following list that includes the most convenient, useful, and affordable DICOM viewers out there:

PostDICOM is one of the best DICOM viewers that offers almost all of the above features. It is compatible with Windows, Mac OS X, and Linux. It can be operated from android devices and iOS-based systems. PostDICOM comes with a cloud-based PACS, which allows you to access data from any device, anywhere, at any time. The viewer allows advanced image manipulation, such as 3D reconstruction, 3D volume rendering and MIP, and image fusion. It also offers an interface for creating reports, sharing files, and immediate uploading of all patient data to the cloud PACS.

Horos is an open source DICOM viewer for Mac. It is actually the free version of an expensive DICOM viewer called Osirix MD, which is often considered to be the best DICOM viewer for Mac. It only runs on Mac OS, version 10.8 or higher. This software allows for most diagnostic techniques, including multiplanar reconstruction, maximum intensity projections, and volume rendering. It also has tools for manipulating images and making measurements.

The RadiAnt DICOM image viewer is a simple, fast platform that is compatible with Windows. It offers multiple features, including MPR, MIP, and image fusion. Images can be exported to JPEG, PNG, and other image formats. They can also be copy-pasted directly to presentations and word documents.

The application is just a viewer and does not offer storage space. Their website has a disclaimer explicitly stating that they do not have any certifications, and as such, the product is not intended for diagnostic use. However, it is handy for students and residents for studying medical images and research purposes. be457b7860

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