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    • 3. 发明申请
    • Image Compression for X-Ray Imaging Devices
    • US20210093265A1
    • 2021-04-01
    • US16588410
    • 2019-09-30
    • Turner Imaging Systems, Inc.
    • Keith Decker
    • A61B6/00A61B6/03
    • Image compression techniques and image handling and display methods that can be used with imaging devices, including X-ray devices, are described in this application. In particular, this application describes a real-time imaging method by providing a portable x-ray imaging device containing an internal power source and an internal power supply, capturing a first x-ray image using the x-ray imaging device, compressing the first x-ray image using a compression process performed by a processor located within the portable x-ray imaging device and then wirelessly transmitting the compressed first x-ray image to a display device, capturing a second x-ray image using the x-ray imaging device, compressing the second x-ray image using the processor and then wirelessly transmitting the compressed second x-ray image to the display device; and then displaying the first and second x-ray images on the display device at a frame rate of more than about 8 frames per second. The application also relates to a hand-held X-ray imaging device, comprising a support arm with a housing enclosing an internal power supply and an internal, removable power source, the power source being replaceable and delivering 60 or more X-ray images using a single charge, the support arm being configured to rotate around an object to be analyzed while being held by a support structure, an X-ray source contained near one end of the support arm, an X-ray detector contained near the other end of the support arm, an internal processor and supporting electronics configured to compress an x-ray image and wirelessly transmit the compressed x-ray image to an external display device, and a trigger configured to be to be activated by hand after the imaging device is properly positioned, wherein the x-ray device is configured to be removable from the support structure and used in a stand-alone fashion for x-ray imaging. These devices and methods can deliver a fluoroscopy image sequence at a high frame rate while not losing the image quality required by the surgeon or radiologist, where the last image is often given a more in-depth analysis by the user (i.e., a surgeon or radiologist). Other embodiments are described.
    • 10. 发明申请
    • SUPPORT STAND FOR A PORTABLE X-RAY IMAGING DEVICE
    • US20200163634A1
    • 2020-05-28
    • US16198956
    • 2018-11-23
    • Turner Imaging Systems, Inc.
    • D. Clark TurnerThomas L. YoudCasey Messick
    • A61B6/00
    • Supporting devices for small and portable X-ray devices are described in this application. In particular, this application describes a supporting device for a portable X-ray device that contains a movable base unit containing multiple legs with different lengths and heights configured so that the legs have a nestable configuration, an adjustable member extending from the mobile base unit where the adjustable member is configured with an adjustable height, an extension arm connected to the adjustable member where the extension arm is configured to collapse toward and extend away from the adjustable arm, and a connecting member configured to connect the extension arm with a portable x-ray device where the connecting member is able to rotate up to 360 degrees in the x, y, or z direction. The connecting member can also be configured to connect the extension arm with a portable x-ray device so that the portable x-ray device being removable from the connecting member and capable of being operated independently by hand. X-ray systems that contain such a supporting device and such a portable x-ray device are light and easy to move from location to location by medical personnel. The x-ray systems are also extremely versatile during medical procedures because the support device provides a wide range of motion for images to be taken of a patient using the portable x-ray device. Other embodiments are described.