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2007-02-20
10/166,000
2002-06-10
US 7,181,617 B2
2007-02-20
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Nasser Moazzami | Brandon Hoffman
2024-08-17
A image and data application service provider system provides a way of remotely viewing and manipulating images and data for diagnostic and visualization purposes by users unconstrained by geography. Images and data are stored on one or more servers running application service provider software along with meta-data such as access control information, origin of information and references to related data. A set of data consisting related information is sent as an encrypted stream to a viewing station running client software in a secure execution environment that is logically independent of the viewing station's operating system.
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This invention relates to an improved method for interactive remote viewing of medical image data over prior invention: U.S. Pat. No. 5,432,714—Novick—Jul. 11, 1995.
“Not Applicable”
“Not Applicable”
It is very desirable to obtain medical imaging data with CT, MRI, PET, or other diagnostic imaging systems or any type of image capture system and then to permit persons to view remotely all the images without having to transmit the actual image files or allow the image files to actually download into the receiving viewing computer. Physicians for example, or other imaging users have a need to quickly access and analyze large numbers of image files from remote image capture systems securely, without downloading or storing the image files onto their computer. Present methods for this all rely on transmitting a image file to the viewer which is prohibitively slow and uses too much transmission bandwidth.
A present embodiment of the invention for remote image viewing is U.S. Pat. No. 5,432,714 to Novik; (1995) which discloses a system of compressing and transmitting data to be decompressed and viewed by an experienced or trained viewer, however, for medical diagnostic imaging, this system is unacceptably slow and costly compared to our inventive method and system. Our invention, the Remote Virtual Medical Diagnostic Imaging Viewer, allows a patient or physician or any other user needing secure remote image or video viewing, to easily view and manipulate the images, video and files over a wide area network like the Internet, but in a secure execution environment, without downloading the actual image video or files onto the hard drive of the viewer which is the method of prior art systems.
U.S. Pat. No. 4,682,869 to Itoh et al.; U.S. Pat. Nos. 4,870,497 and 4,979,049 to Chamzas et al.; U.S. Pat. No. 4,999,715 to Porcellio et al.; U.S. Pat. No. 5,166,987 to Kageyama; U.S. Pat. No. 5,189,526 to Sasson; and U.S. Pat. No. 5,204,756 to Chevion et al. show prior art systems. However, the prior art methods of image data transmission and remote image viewing, particularly when applied to medical diagnostic imaging, do not make use of our novel method of using an image storing application provider server to enable a remote secure executable environment, independent of the operating system of a viewing computer to temporarily reconstruct image, video or files, rather than compressing, transmitting and then and uncompressing the actual image, video or files interactively.
In our study of image data transmission techniques we have identified a need for a system that significantly decreases the time and cost of viewing images remotely for medical diagnostic analysis and other applications. Since accurate reproduction of an entire medical image file with all of the rest of the captured frames of image data is very necessary for medical diagnostic purposes. Our inventive method is unique because by it's nature, it is secure, saves time, is loss-less, and provides all the images available on the server to be viewed interactively, not just a few of the images as with prior art systems. Instead of lossy compression and file transmission systems described in prior art, our inventive method preserves remotely viewed image data in a secure environment.
With our inventive method, the image files are never actually downloaded onto the remote viewer. The remote viewer only displays an exact representation of the actual file stored on the application server. Images can be viewed over a wide area network like the Internet by logging into our website and using our invention.
In the preferred embodiment of the invention, one or more servers with image, video or other files stored on them, run application service provider software and send streams of medical data and images, to temporarily reconstruct and manipulate the image files remotely in a secure execution environment on an authorized user's personal computer.
In the existing embodiment of the invention a computer or other capture device, captures a lossy image file then compresses and transmits the compressed image file which is then downloaded onto a computer hard drive and decompressed by the remote receiver for viewing. In contrast, the preferred embodiment of the invention does not require transmitting the actual image files to a receiver and is therefore a more efficient method of remote image viewing.
Besides the objectives and advantages of the preferred embodiment of the invention described above, there are objectives and advantages also which are:
The drawings shown are two flowcharts, which are
FIG. 1, representing the present invention and showing the steps of image data acquisition, compression and transmission of the image files for remote viewing. The second drawing,
FIG. 2 represents the preferred embodiment of the present invention showing the steps of sending streams of encoded data to a be reconstructed for viewing in a remote secure executing environment.
The present invention describes an apparatus for capturing and transmitting the image file for remote viewing interactively. The invention will be described in FIG. 1, which is a block diagram schematic of one preferred embodiment of the present invention. Medical image files or other files are captured (1) and then compressed (2) transmitted (3) over a network or the Internet (4) which are downloaded on a users computer (5) and uncompressed (6) and viewed remotely (7).
FIG. 2 is a flowchart of the preferred operation of the present invention, and will be explained with reference to the apparatus of FIG. 1, although other appropriate apparatus may be substituted in performing the inventive method. In this method for viewing a file remotely, the medical image files or other files are first captured (1) transmitted (3) over a network or the Internet (4) to one or more servers running application service provider software (8) which are stored with meta data including access control information, origin of the data, and references to related data. This data is encrypted and streamed (9) out on a network or the Internet (4). The encrypted image data streams are decrypted by software running in a secure execution environment (10), and can be remotely manipulated by real time matrix transformation of the reconstructed image files (11) viewed and analyzed remotely (7).
This preferred embodiment of the present invention as shown in FIG. 2 is thusly shown to be an improved method over the present invention offering a simpler and less costly secure method for remote viewing and analysis of large medical imaging files or other types of files.
1. A method of providing an image to a recipient while safeguarding the recipient from maintaining a copy of the image, comprising:
accessing a remote receiving computer that runs a remote virtual machine portion under control of an external device, and independently from an operating system of the remote receiving computer;
encrypting the image;
streaming the encrypted image to the remote virtual machine portion of the receiving computer;
using the remote virtual machine to decrypt the encrypted image;
using the remote virtual machine to display and interact with the decrypted image, such that a user of the remote receiving computer can interact with the decrypted image, but cannot use the remote receiving computer to store the decrypted image on a persistent memory device.
2. The method of claim 1 wherein the step of providing the image reconstructs an image from which the stream was created.
3. The method of claim 1 wherein the step of providing the image further comprises producing the image inside a buffer of the remote receiving computer.
4. The method of claim 1 further comprising a user utilizing a matrix transformation to modify the image.
5. The method of claim 1 further comprising using a matrix transformation to manipulate the image.
6. The method of claim 5 wherein the matrix transformation is applied interactively.
7. The method of claim 1 wherein the stream comprises only the single image.
8. The method of claim 1 wherein the image comprises a medical diagnostic image.
9. The method of claim 8 wherein the image is selected from the list consisting of an MRI image, a Cat Scan image, a PET image, and an X-Ray.