Patents by Inventor Kang-Huai Wang

Kang-Huai Wang has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 10943342
    Abstract: A method and apparatus of processing images captured from human gastrointestinal (GI) tract by a capsule camera are disclosed. High frame-rate images captured from human gastrointestinal (GI) tract by a capsule camera are received for processing. The high frame-rate images comprise first images at a first spatial resolution corresponding to a regular frame rate and second images at a second spatial resolution, the first images and the second images are interleaved, and the second spatial resolution is lower than the first spatial resolution. Motion models among the high frame-rate images are derived by applying image registration to the high frame-rate images. The high frame-rate images are stitched according to the motion models to generate stitching outputs comprising stitched images and non-stitched images. The stitching outputs are provided.
    Type: Grant
    Filed: November 30, 2016
    Date of Patent: March 9, 2021
    Assignee: CapsoVision Inc.
    Inventors: Kang-Huai Wang, Yi Xu, Chenyu Wu
  • Patent number: 10881282
    Abstract: A capsule endoscopic system is disclosed, where the system comprises a capsule device and a docking device. The capsule device comprises a battery, a secondary coil, and a capsule housing to enclose the battery and the secondary coil in a sealed environment, where the capsule device consists of a first end and a second end in a longitudinal direction of the capsule device, and the battery is located in proximity to the first end and the secondary coil is located in proximity to the second end. The docking device comprises an opening on the docking device, a primary coil to generate an alternating magnetic field, and a primary core. The capsule endoscopic system is arranged so that at least a portion of the secondary coil is enclosed by the primary coil and the battery is outside the primary coil when the capsule device is at the docked position.
    Type: Grant
    Filed: April 18, 2019
    Date of Patent: January 5, 2021
    Assignee: CAPSOVISION INC.
    Inventors: Gordon C. Wilson, Jiafu Luo, Kang-Huai Wang, Chung-Ta Lee
  • Patent number: 10869594
    Abstract: A capsule endoscopic system is disclosed, where the system comprises a capsule device and a docking device. The capsule device comprises a battery, a secondary coil, and a capsule housing to enclose the battery and the secondary coil in a sealed environment, where the capsule device consists of a first end and a second end in a longitudinal direction of the capsule device, and the battery is located in proximity to the first end and the secondary coil is located in proximity to the second end. The docking device comprises an opening on the docking device, a primary coil to generate an alternating magnetic field, and a primary core. The capsule endoscopic system is arranged so that the primary coil is wrapped around at least a portion of the primary core.
    Type: Grant
    Filed: April 18, 2019
    Date of Patent: December 22, 2020
    Assignee: CAPSOVISION INC.
    Inventors: Gordon C. Wilson, Jiafu Luo, Kang-Huai Wang, Chung-Ta Lee
  • Patent number: 10835113
    Abstract: A method and system for determining a travelled distance by a capsule camera are disclosed. A current global motion vector for a current image in the image sequence is determined, where the current global motion vector corresponds to movement made by the capsule camera between the current image and a reference image associated with the image sequence. A travelled distance by the capsule camera in the GI tract is determined according to the current global motion vector and prior global motion vectors derived for prior images between an initial image and the current image, where the travelled distance is measured from an initial location associated with the initial image to a current location associated with the current image. A method and system for displaying an image sequence captured by a capsule camera are also disclosed. The travelled distances associated with the image sequence are displayed on a display.
    Type: Grant
    Filed: October 16, 2019
    Date of Patent: November 17, 2020
    Assignee: CapsoVision Inc.
    Inventor: Kang-Huai Wang
  • Publication number: 20200337533
    Abstract: A method for imaging a patient's gastrointestinal tract including upper parts of stomach using a capsule camera system are disclosed. According to the method, the capsule camera is administered to a patient by swallowing the capsule camera through patient's mouth. For each target examination position selected from a set of examination positions: the patient positioning system is adjusted to a target positioner bed position associated with the target examination position with the patient on the positioner be. Adjusting patient positioning system comprises adjusting the positioner bed to tilt at a tilt angle, and wherein the set of examination positions comprises at least two different tilt angles; and the patient positioning system still is held at the target examination position for a pre-defined period of dwelling time to allow the capsule camera to capture stable pictures. Image data captured by the capsule camera are then collected.
    Type: Application
    Filed: December 18, 2017
    Publication date: October 29, 2020
    Inventors: Kang-Huai Wang, Gordon C. Wilson
  • Patent number: 10785428
    Abstract: A method and apparatus for imaging a body lumen are disclosed. According to the method, an imaging apparatus is induced into the body lumen. Structured light from the imaging apparatus is projected into the body lumen. The structured light reflected from anatomical features in the body lumen is detected by the imaging apparatus. A first structured light image is generated from the detected structured light by the imaging apparatus. Non-structured light is emitted from the imaging apparatus into the body lumen. The non-structured light reflected from the anatomical features in the body lumen is detected by the imaging apparatus. A non-structured light image is generated from the detected non-structured light by the imaging apparatus. The frame period of the first structured light image is shorter than the frame period of the non-structured light image. In one embodiment, the imaging apparatus corresponds to a capsule endoscope.
    Type: Grant
    Filed: September 30, 2019
    Date of Patent: September 22, 2020
    Assignee: CapsoVision Inc.
    Inventors: Kang-Huai Wang, Yi Xu, Gordon C. Wilson, Chenyu Wu
  • Patent number: 10736559
    Abstract: A method and apparatus for estimating or measuring a physical area or physical volume of an object of interest in one or more images captured using an endoscope are disclosed. According to the present method, one or more structured-light images and one or more regular images captured using an imaging apparatus are received. An object of interest in the regular images is determined. Distance information associated with the object of interest with respect to the imaging apparatus is derived from the structured-light images. The physical area size or physical volume size of the object of interest is determined based on the regular images and the distance information. The imaging apparatus can be a capsule endoscope or an insertion endoscope.
    Type: Grant
    Filed: August 19, 2019
    Date of Patent: August 11, 2020
    Assignee: CAPSOVISION INC
    Inventors: Kang-Huai Wang, Mark Hadley, Chenyu Wu
  • Patent number: 10742909
    Abstract: A method and device for improving the accuracy of depth information derived from a structured-light image for a regular image are disclosed. In one example, an additional structured-light image is captured before a first structured-light image or after a regular image. The depth information for the regular image can be derived from the first structured-light image and corrected by incorporating depth information from the additional structured-light image. A model for depth information can be used to predict or interpolate depth information for the regular image. In another example, two regular sub-images may be captured with a structured-light image in between. If substantial frame differences or substantial global motion vector/block motion vectors are detected, the two regular sub-images will not be combined in order to avoid possible motion smear. Instead, one of the two sub-images will be selected and scaled as the output regular image.
    Type: Grant
    Filed: September 21, 2019
    Date of Patent: August 11, 2020
    Assignee: CAPSOVISION INC.
    Inventors: Kang-Huai Wang, Yi Xu, Gordon C. Wilson, Chenyu Wu
  • Patent number: 10638920
    Abstract: A method and apparatus of aligning a lens module with respect to an image sensor device for a capsule camera are disclosed. The image sensor device comprises multiple pixel arrays and the lens module comprises multiple lens sets to form multiple images corresponding to multiple fields of view associated with the multiple lens sets, and each lens set forms one image for one corresponding pixel array associated with one field of view. A method according to the present invention present invention, one or more test images are presented in the multiple fields of view associated with the lens module. Multiple images in the multiple fields of view are captured using the multiple pixel arrays. Metric measurement is derived based on the multiple images captured by the multiple pixel arrays. Lens alignment between the lens module and the image sensor device is then adjusted based on the metric measurement.
    Type: Grant
    Filed: June 1, 2017
    Date of Patent: May 5, 2020
    Assignee: CAPSOVISION INC
    Inventors: Ganyu Lu, Gordon C. Wilson, Kang-Huai Wang
  • Publication number: 20200137374
    Abstract: Disclosed herein are systems, methods, and structures providing accurate and easy to use size measurement of physiological features identified from endoscopic examination. In sharp contrast to the prior art, systems, methods, and structures according to the present disclosure employ structured light that advantageously enables size and/or distance information about lesions and/or other physiological features in a gastrointestinal (GI) tract. Advantageously, systems, methods, and structures according to the present disclosure are applicable to both capsule endoscopes and insertion endoscopes.
    Type: Application
    Filed: December 25, 2019
    Publication date: April 30, 2020
    Applicant: CapsoVision, Inc.
    Inventors: Gordon C. WILSON, Kang-Huai WANG, Ganyu LU
  • Patent number: 10624533
    Abstract: A method and apparatus for processing gastrointestinal (GI) images are disclosed. According to this method, a regular image is received, where the regular image is captured using an imaging apparatus by projecting non-structured light onto a body lumen when the imaging apparatus is in the body lumen. One or more structured-light images captured using the imaging apparatus by projecting the body lumen with structured light are received. A target distance for a target region in the regular image is derived based on said one or more structured-light images. A filter is determined based on the target distance and camera parameters associated with the imaging apparatus. A first processed target region is generated by applying the filter to the target region to improve sharpness of the target region. A first processed regular image comprising the first processed target region is provided.
    Type: Grant
    Filed: August 19, 2019
    Date of Patent: April 21, 2020
    Assignee: CAPSOVISION INC
    Inventors: Kang-Huai Wang, Gordon C. Wilson
  • Publication number: 20200113422
    Abstract: A method and system for determining a travelled distance by a capsule camera are disclosed. A current global motion vector for a current image in the image sequence is determined, where the current global motion vector corresponds to movement made by the capsule camera between the current image and a reference image associated with the image sequence. A travelled distance by the capsule camera in the GI tract is determined according to the current global motion vector and prior global motion vectors derived for prior images between an initial image and the current image, where the travelled distance is measured from an initial location associated with the initial image to a current location associated with the current image. A method and system for displaying an image sequence captured by a capsule camera are also disclosed. The travelled distances associated with the image sequence are displayed on a display.
    Type: Application
    Filed: October 16, 2019
    Publication date: April 16, 2020
    Inventor: Kang-Huai Wang
  • Publication number: 20200104983
    Abstract: A method and apparatus for sharpening gastrointestinal (GI) images are disclosed. A target distance between the target region and the imaging apparatus is determined for a target region in the regular image. One or more filter parameters of a de-blurring filter are selected from stored filter parameters according to the target distance. A processed target region is generated by applying the de-blurring filter to the target region to improve sharpness of the target region. A method for characterizing an imaging apparatus is also disclosed. The imaging apparatus is placed under a controlled environment. Test pictures for one or more test patterns are captured at multiple test distances in a range including a focus distance using the imaging apparatus. One or more parameters associated a target point spread function are determined from each test picture for characterizing image formation of the imaging apparatus at the selected distance.
    Type: Application
    Filed: December 4, 2019
    Publication date: April 2, 2020
    Applicant: CAPSO VISION, Inc.
    Inventors: Kang-Huai Wang, Gordon C Wilson, Chenyu Wu
  • Patent number: 10602913
    Abstract: A capsule endoscopic system is disclosed, where the system comprises a capsule device and a docking device. The capsule device comprises a battery, a secondary coil, an optical transmitter all enclosed in a capsule housing. The docking device comprises a primary coil to generate an alternating magnetic field, a primary core and optical receiver to receive an optical signal. The alternating magnetic field is coupled to the secondary coil to supply power to the capsule device when the capsule device is at a docked position in the docking device. The primary core is arranged to concentrate the alternating magnetic field on the secondary coil when the capsule device is at the docked position. Furthermore, the capsule endoscopic system is arranged so that an optical path is formed between the optical transmitter and the optical receiver when the capsule device is at the docked position.
    Type: Grant
    Filed: April 18, 2019
    Date of Patent: March 31, 2020
    Assignee: CAPSOVISION INC.
    Inventors: Gordon C. Wilson, Jiafu Luo, Kang-Huai Wang, Chung-Ta Lee
  • Patent number: 10593055
    Abstract: A method and apparatus of capturing non-structured light images and structured light images for deriving depth information are disclosed. According to the method, one or more non-SL (non-structured light) images without structured light and one or more initial SL (structured light) images formed on a common image plane are captured by projecting structured light patterns in a visible spectrum with the structured light source adjusted to generate initial structured light at an initial intensity level. The signal quality of structured light patterns reflected from one or more objects is evaluated based on the non-SL images and the initial SL images. If the signal quality of structured light patterns is below a threshold, a next set of SL images are captured by increasing the structured light level from a previous level until the signal of the structured light patterns is satisfactory.
    Type: Grant
    Filed: March 23, 2018
    Date of Patent: March 17, 2020
    Assignee: CAPSOVISION INC
    Inventors: Kang-Huai Wang, Gordon C. Wilson, Mark A. Hadley
  • Publication number: 20200082510
    Abstract: A method and apparatus for sharpening gastrointestinal (images are disclosed. A target distance between the target region and the imaging apparatus is determined for a target region in the regular image. One or more filter parameters of a de-blurring filter are selected from stored filter parameters according to the target distance. A processed target region is generated by applying the de-blurring filter to the target region to improve sharpness of the target region. A method for characterizing an imaging apparatus is also disclosed. The imaging apparatus is placed under a controlled environment. Test pictures for one or more test patterns are captured at multiple test distances in a range including a focus distance using the imaging apparatus. One or more parameters associated a target point spread function are determined from each test picture for characterizing image formation of the imaging apparatus at the selected distance.
    Type: Application
    Filed: November 13, 2019
    Publication date: March 12, 2020
    Inventors: Kang-Huai Wang, Gordon C. Wilson, Chenyu Wu
  • Patent number: 10580157
    Abstract: A method and apparatus for estimating or measuring a physical area or physical volume of an object of interest in one or more images captured using an endoscope are disclosed. According to the present method, an object of interest in an image or images is determined. Also, the endoscope captures one or more structured-light images to derive distance information associated with the object of interest with respect to the camera of the endoscope. The physical area size or physical volume size of the object of interest is then determined based on the image or images, and the distance information.
    Type: Grant
    Filed: May 20, 2019
    Date of Patent: March 3, 2020
    Assignee: CAPSOVISION INC
    Inventors: Kang-Huai Wang, Mark Hadley, Chenyu Wu
  • Publication number: 20200045283
    Abstract: A display device includes (a) a non-volatile memory containing corrective data for compensating input image data received; (b) display hardware receiving control and data signals for displaying an image; and (c) an image processing circuit that retrieves the corrective data from the non-volatile memory to generate the data signals for the display hardware, after applying the corrective data to each color component of each pixel in the input image data.
    Type: Application
    Filed: September 30, 2019
    Publication date: February 6, 2020
    Inventors: Kang-Huai Wang, Gordon C. Wilson
  • Publication number: 20200036919
    Abstract: A method and device for improving the accuracy of depth information derived from a structured-light image for a regular image are disclosed. In one example, an additional structured-light image is captured before a first structured-light image or after a regular image. The depth information for the regular image can be derived from the first structured-light image and corrected by incorporating depth information from the additional structured-light image. A model for depth information can be used to predict or interpolate depth information for the regular image. In another example, two regular sub-images may be captured with a structured-light image in between. If substantial frame differences or substantial global motion vector/block motion vectors are detected, the two regular sub-images will not be combined in order to avoid possible motion smear. Instead, one of the two sub-images will be selected and scaled as the output regular image.
    Type: Application
    Filed: September 21, 2019
    Publication date: January 30, 2020
    Inventors: Kang-Huai Wang, Yi Xu, Gordon C. Wilson, Chenyu Wu
  • Patent number: RE48181
    Abstract: An endoscopy capsule having an image collecting capacity includes a deformable member configured to inflate when exposed to body liquid. The deformable member includes an effervescent material. When the effervescent reacts with water the resulting Carbon-Dioxide gas reduces the specific gravity of the endoscopy capsule. The capsule is contained within a shell or dome when swallowed. The shell or dome is configured dissolve in either a low or high pH environment.
    Type: Grant
    Filed: December 27, 2018
    Date of Patent: September 1, 2020
    Assignee: CAPSOVISION INC
    Inventors: Mikael Trollsas, Phat Trinh, Mark Hadley, Kang-Huai Wang, Gordon Cook Wilson, Ganyu Lu