Patents by Inventor Xin Ji

Xin Ji 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: 9767075
    Abstract: Embodiments of the present application relate to a system for implementing screen capture, a method for implementing screen capture, and a computer program product for implementing screen capture. A method for implementing screen capture is provided.
    Type: Grant
    Filed: January 20, 2015
    Date of Patent: September 19, 2017
    Assignee: Alibaba Group Holding Limited
    Inventors: Honghui He, Yukun Chen, Xin Ji, Pengjie Zhao, Bin Liu, Chunxia Li, Yali Wang, Wenlong Xie
  • Publication number: 20170252479
    Abstract: Provided herein are a biocompatible hemostatic product and a tissue sealant, including polyethylene oxide particles with a viscosity-average molecular weight ranging from 100,000 to 7,000,000 Daltons, a particle size ranging from 0.5 ?m to 2000 ?m and a water absorbency capacity ranging from 1 to 500 times of its own weight. Also provided herein is a method for preparing biocompatible hemostatic product and tissue sealant and the use of the biocompatible hemostatic product and tissue sealant in hemostasis, preventing adhesion, avoiding infection, promoting tissue healing, and sealing wound of tissues and organs either on animal's body surface, or inside body's cavity.
    Type: Application
    Filed: September 2, 2015
    Publication date: September 7, 2017
    Inventors: Xin Ji, Cheng Xing, Heng Zhang
  • Patent number: 9687501
    Abstract: A modified starch material is arranged for biocompatible hemostasis, biocompatible adhesion prevention, tissue healing promotion, absorbable surgical wound sealing and tissue bonding, when applied as a biocompatible modified starch to the tissue of animals. The modified starch material produces hemostasis, reduces bleeding of the wound, extravasation of blood and tissue exudation, preserves the wound surface or the wound in relative wetness or dryness, inhibits the growth of bacteria and inflammatory response, minimizes tissue inflammation, and relieves patient pain. Any excess modified starch not involved in hemostatic activity is readily dissolved and rinsed away through saline irrigation during operation. After treatment of surgical wounds, combat wounds, trauma and emergency wounds, the modified starch hemostatic material is rapidly absorbed by the body without the complications associated with gauze and bandage removal.
    Type: Grant
    Filed: May 14, 2013
    Date of Patent: June 27, 2017
    Inventors: Xin Ji, Cheng Xing, Xueshen Shi, Jianping Chen
  • Publication number: 20170165404
    Abstract: A modified starch material for biocompatible hemostasis, biocompatible adhesion prevention, tissue healing promotion, absorbable surgical wound sealing and tissue bonding, when applied as a biocompatible modified starch to the tissue of animals. The modified starch material produces hemostasis, reduces bleeding of the wound, extravasation of blood and tissue exudation, preserves the wound surface or the wound in relative wetness or dryness, inhibits the growth of bacteria and inflammatory response, minimizes tissue inflammation, and relieves patient pain. Any excess modified starch not involved in hemostatic activity is readily dissolved and rinsed away through saline irrigation during operation. After treatment of surgical wounds, combat wounds, trauma and emergency wounds, the modified starch hemostatic material is rapidly absorbed by the body without the complications associated with gauze and bandage removal.
    Type: Application
    Filed: February 8, 2017
    Publication date: June 15, 2017
    Inventor: Xin Ji
  • Publication number: 20170136054
    Abstract: A modified starch material for biocompatible hemostasis, biocompatible adhesion prevention, tissue healing promotion, absorbable surgical wound sealing and tissue bonding, when applied as a biocompatible modified starch to the tissue of animals. The modified starch material produces hemostasis, reduces bleeding of the wound, extravasation of blood and tissue exudation, preserves the wound surface or the wound in relative wetness or dryness, inhibits the growth of bacteria and inflammatory response, minimizes tissue inflammation, and relieves patient pain. Any excess modified starch not involved in hemostatic activity is readily dissolved and rinsed away through saline irrigation during operation. After treatment of surgical wounds, combat wounds, trauma and emergency wounds, the modified starch hemostatic material is rapidly absorbed by the body without the complications associated with gauze and bandage removal.
    Type: Application
    Filed: November 22, 2016
    Publication date: May 18, 2017
    Inventor: Xin Ji
  • Patent number: 9629966
    Abstract: An internal dry powder delivery system through a working channel of an endoscopic cannula for directly applying the powder form medication to an internal tissue/organ site, includes an elongated tubular delivery channel and a powder supply device for producing pressurized gas mixing with the dry powder for feeding to form a mixture of dry powder and pressurized gas delivering to an internal tissue/organ site through the delivery channel via endoscopic cannula. It ensures a smooth powder release by preventing liquid from accumulation at the tip of the delivery channel and offers physicians a new powder form drug delivery method via endoscope. Also, it offers new minimal invasive application by directly and precisely applying the powder format drug to the internal sites of human gastrointestinal organ via endoscope to achieve hemostasis, anti-inflammation, anti-ulcer and anti-tumor treatment, etc.
    Type: Grant
    Filed: March 19, 2014
    Date of Patent: April 25, 2017
    Inventor: Xin Ji
  • Patent number: 9533005
    Abstract: A modified starch material for biocompatible hemostasis, biocompatible adhesion prevention, tissue healing promotion, absorbable surgical wound sealing and tissue bonding, when applied as a biocompatible modified starch to the tissue of animals. The modified starch material produces hemostasis, reduces bleeding of the wound, extravasation of blood and tissue exudation, preserves the wound surface or the wound in relative wetness or dryness, inhibits the growth of bacteria and inflammatory response, minimizes tissue inflammation, and relieves patient pain. Any excess modified starch not involved in hemostatic activity is readily dissolved and rinsed away through saline irrigation during operation. After treatment of surgical wounds, combat wounds, trauma and emergency wounds, the modified starch hemostatic material is rapidly absorbed by the body without the complications associated with gauze and bandage removal.
    Type: Grant
    Filed: July 2, 2014
    Date of Patent: January 3, 2017
    Inventor: Xin Ji
  • Publication number: 20160339143
    Abstract: A modified starch material is arranged for biocompatible hemostasis, biocompatible adhesion prevention, tissue healing promotion, absorbable surgical wound sealing and tissue bonding, when applied as a biocompatible modified starch to the tissue of animals. The modified starch material produces hemostasis, reduces bleeding of the wound, extravasation of blood and tissue exudation, preserves the wound surface or the wound in relative wetness or dryness, inhibits the growth of bacteria and inflammatory response, minimizes tissue inflammation, and relieves patient pain. Any excess modified starch not involved in hemostatic activity is readily dissolved and rinsed away through saline irrigation during operation. After treatment of surgical wounds, combat wounds, trauma and emergency wounds, the modified starch hemostatic material is rapidly absorbed by the body without the complications associated with gauze and bandage removal.
    Type: Application
    Filed: August 4, 2016
    Publication date: November 24, 2016
    Inventor: Xin Ji
  • Publication number: 20160320485
    Abstract: An image processing method for processing a plurality of holograms includes the steps of: performing a Fourier transform operation on the holograms to result in a plurality of corresponding spectra in a spectrum space; calculating a sum of the plurality of spectra to obtain the synthetic spectrum; multiplying the synthetic spectrum by a weight function associated with the spectrum space to obtain a normalized synthetic spectrum, each function value of the weight function corresponding to a respective position in the spectrum space and being associated with distribution of the plurality of spectra in the spectrum space; and performing the inverse Fourier transform operation on the normalized synthetic spectrum to result in a normalized synthetic hologram.
    Type: Application
    Filed: November 19, 2015
    Publication date: November 3, 2016
    Applicant: NATIONAL TAIWAN NORMAL UNIVERSITY
    Inventors: Chau-Jern CHENG, Yu-Chih LIN, Xin-Ji LAI
  • Patent number: 9205207
    Abstract: An internal dry powder delivery system through a working channel of an endoscopic cannula for directly applying the powder form medication to an internal tissue/organ site, includes an elongated tubular delivery channel and a powder supply device for producing pressurized gas mixing with the dry powder for feeding to form a mixture of dry powder and pressurized gas delivering to an internal tissue/organ site through the delivery channel via endoscopic cannula. It ensures a smooth powder release by preventing liquid from accumulation at the tip of the delivery channel and offers physicians a new powder form drug delivery method via endoscope. Also, it offers new minimal invasive application by directly and precisely applying the powder format drug to the internal sites of human gastrointestinal organ via endoscope to achieve hemostasis, anti-inflammation, anti-ulcer and anti-tumor treatment, etc.
    Type: Grant
    Filed: February 28, 2011
    Date of Patent: December 8, 2015
    Inventor: Xin Ji
  • Publication number: 20150294433
    Abstract: Generating a screenshot is disclosed, including: receiving a screenshot command from an application, wherein the screenshot command includes an application scenario parameter corresponding to the application; generating a screenshot object based at least in part on a screenshot class corresponding to the application scenario parameter; generating a screenshot from content displayed by the application using the screenshot object; and sending the screenshot to the application to be displayed.
    Type: Application
    Filed: April 8, 2015
    Publication date: October 15, 2015
    Inventors: Jiahuan Ye, Yukun Chen, Xin Ji, Pengjie Zhao, Linlin Liu, Wenlong Xie
  • Publication number: 20150212978
    Abstract: Embodiments of the present application relate to a system for implementing screen capture, a method for implementing screen capture, and a computer program product for implementing screen capture. A method for implementing screen capture is provided.
    Type: Application
    Filed: January 20, 2015
    Publication date: July 30, 2015
    Inventors: Honghui He, Yukun Chen, Xin Ji, Pengjie Zhao, Bin Liu, Chunxia Li, Yali Wang, Wenlong Xie
  • Publication number: 20150207764
    Abstract: Embodiments of the present application relate to a method sharing data, a device for sharing data, and a computer program product for sharing data. A method for sharing data is provided. The method includes detecting a shaking operation performed on a device by a user, in response to the detecting of the shaking operation, performing screenshot processing of current data of an application to obtain screenshot data, and sending a sharing request regarding the screenshot data to a server to share the screenshot data.
    Type: Application
    Filed: January 20, 2015
    Publication date: July 23, 2015
    Inventors: Honghui He, Yukun Chen, Xin Ji, Pengjie Zhao, Bin Liu, Chunxia Li, Yali Wang, Wenlong Xie
  • Publication number: 20150037426
    Abstract: A modified starch material for biocompatible hemostasis, biocompatible adhesion prevention, tissue healing promotion, absorbable surgical wound sealing and tissue bonding, when applied as a biocompatible modified starch to the tissue of animals. The modified starch material produces hemostasis, reduces bleeding of the wound, extravasation of blood and tissue exudation, preserves the wound surface or the wound in relative wetness or dryness, inhibits the growth of bacteria and inflammatory response, minimizes tissue inflammation, and relieves patient pain. Any excess modified starch not involved in hemostatic activity is readily dissolved and rinsed away through saline irrigation during operation. After treatment of surgical wounds, combat wounds, trauma and emergency wounds, the modified starch hemostatic material is rapidly absorbed by the body without the complications associated with gauze and bandage removal.
    Type: Application
    Filed: July 2, 2014
    Publication date: February 5, 2015
    Inventor: Xin Ji
  • Patent number: 8912168
    Abstract: A modified starch material for biocompatible hemostasis, biocompatible adhesion prevention, tissue healing promotion, absorbable surgical wound sealing and tissue bonding, when applied as a biocompatible modified starch to the tissue of animals. The modified starch material produces hemostasis, reduces bleeding of the wound, extravasation of blood and tissue exudation, preserves the wound surface or the wound in relative wetness or dryness, inhibits the growth of bacteria and inflammatory response, minimizes tissue inflammation, and relieves patient pain. Any excess modified starch not involved in hemostatic activity is readily dissolved and rinsed away through saline irrigation during operation. After treatment of surgical wounds, combat wounds, trauma and emergency wounds, the modified starch hemostatic material is rapidly absorbed by the body without the complications associated with gauze and bandage removal.
    Type: Grant
    Filed: September 5, 2013
    Date of Patent: December 16, 2014
    Inventor: Xin Ji
  • Patent number: 8827980
    Abstract: An internal dry powder delivery system through a working channel of an endoscopic cannula for directly applying the powder form medication to an internal tissue/organ site, includes an elongated tubular delivery channel and a powder supply device for producing pressurized gas mixing with the dry powder for feeding to form a mixture of dry powder and pressurized gas delivering to an internal tissue/organ site through the delivery channel via endoscopic cannula. It ensures a smooth powder release by preventing liquid from accumulation at the tip of the delivery channel and offers physicians a new powder form drug delivery method via endoscope. Also, it offers new minimal invasive application by directly and precisely applying the powder format drug to the internal sites of human gastrointestinal organ via endoscope to achieve hemostasis, anti-inflammation, anti-ulcer and anti-tumor treatment, etc.
    Type: Grant
    Filed: October 23, 2012
    Date of Patent: September 9, 2014
    Inventor: Xin Ji
  • Publication number: 20140207097
    Abstract: An internal dry powder delivery system through a working channel of an endoscopic cannula for directly applying the powder form medication to an internal tissue/organ site, includes an elongated tubular delivery channel and a powder supply device for producing pressurized gas mixing with the dry powder for feeding to form a mixture of dry powder and pressurized gas delivering to an internal tissue/organ site through the delivery channel via endoscopic cannula. It ensures a smooth powder release by preventing liquid from accumulation at the tip of the delivery channel and offers physicians a new powder form drug delivery method via endoscope. Also, it offers new minimal invasive application by directly and precisely applying the powder format drug to the internal sites of human gastrointestinal organ via endoscope to achieve hemostasis, anti-inflammation, anti-ulcer and anti-tumor treatment, etc.
    Type: Application
    Filed: March 19, 2014
    Publication date: July 24, 2014
    Inventor: Xin Ji
  • Patent number: 8721582
    Abstract: An internal dry powder delivery system through a working channel of an endoscopic cannula for directly applying the powder form medication to an internal tissue/organ site, includes an elongated tubular delivery channel and a powder supply device for producing pressurized gas mixing with the dry powder for feeding to form a mixture of dry powder and pressurized gas delivering to an internal tissue/organ site through the delivery channel via endoscopic cannula. It ensures a smooth powder release by preventing liquid from accumulation at the tip of the delivery channel and offers physicians a new powder form drug delivery method via endoscope. Also, it offers new minimal invasive application by directly and precisely applying the powder format drug to the internal sites of human gastrointestinal organ via endoscope to achieve hemostasis, anti-inflammation, anti-ulcer and anti-tumor treatment, etc.
    Type: Grant
    Filed: January 15, 2010
    Date of Patent: May 13, 2014
    Inventor: Xin Ji
  • Patent number: 8634199
    Abstract: A connection device is used to mount a computer mini-card. The connection device includes a board, an edge connector formed a bottom side of the board, a socket, and a pole. The socket is mounted on a first side surface of the board to connect to the computer mini-card, and is electrically connected to the edge connector. The pole extends from the first side surface of the board to fix an end of the computer mini-card opposite to the socket.
    Type: Grant
    Filed: December 17, 2011
    Date of Patent: January 21, 2014
    Assignees: Hong Fu Jin Precision Industry (ShenZhen) Co., Ltd, Hon Hai Precision Industry Co., Ltd.
    Inventors: Yong-Hua Xiao, Tsung-Hsien Lin, Xin Ji
  • Publication number: 20140010887
    Abstract: A modified starch material for biocompatible hemostasis, biocompatible adhesion prevention, tissue healing promotion, absorbable surgical wound sealing and tissue bonding, when applied as a biocompatible modified starch to the tissue of animals. The modified starch material produces hemostasis, reduces bleeding of the wound, extravasation of blood and tissue exudation, preserves the wound surface or the wound in relative wetness or dryness, inhibits the growth of bacteria and inflammatory response, minimizes tissue inflammation, and relieves patient pain. Any excess modified starch not involved in hemostatic activity is readily dissolved and rinsed away through saline irrigation during operation. After treatment of surgical wounds, combat wounds, trauma and emergency wounds, the modified starch hemostatic material is rapidly absorbed by the body without the complications associated with gauze and bandage removal.
    Type: Application
    Filed: September 5, 2013
    Publication date: January 9, 2014
    Inventor: Xin Ji