Patents by Inventor Ke JI

Ke 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: 12276809
    Abstract: Disclosed are a super-resolution imaging system (1, 41, 51), a super-resolution imaging method, a biological sample identification system (4, 61) and method, a nucleic acid sequencing imaging system (5) and method, and a nucleic acid identification system (6) and method. The super-resolution imaging system (1, 41, 51) includes an illumination system (A) and an imaging system (B). The illumination system (A) outputs excitation light to irradiate a biological sample to generate excited light, and the imaging system (B) collects and records the excited light to generate an excited light image. The illumination system (A) includes an excitation light source (10, 10a) and a structured light generation and modulation device (11, 11a). The excitation light source (10, 10a) outputs the excitation light, and the structured light generation and modulation device (11, 11a) modulates the excitation light into structured light to irradiate the biological sample to generate the excited light.
    Type: Grant
    Filed: March 9, 2020
    Date of Patent: April 15, 2025
    Assignee: BGI SHENZHEN
    Inventors: Jielei Ni, Ming Ni, Fan Zhou, Zeyu Su, Ke Ji, Dong Wei, Mengzhe Shen, Yuanqing Liang, Mei Li, Xun Xu
  • Publication number: 20240085717
    Abstract: Disclosed are a super-resolution imaging system (1, 41, 51), a super-resolution imaging method, a biological sample identification system (4, 61) and method, a nucleic acid sequencing imaging system (5) and method, and a nucleic acid identification system (6) and method. The super-resolution imaging system (1, 41, 51) includes an illumination system (A) and an imaging system (B). The illumination system (A) outputs excitation light to irradiate a biological sample to generate excited light, and the imaging system (B) collects and records the excited light to generate an excited light image. The illumination system (A) includes an excitation light source (10, 10a) and a structured light generation and modulation device (11, 11a). The excitation light source (10, 10a) outputs the excitation light, and the structured light generation and modulation device (11, 11a) modulates the excitation light into structured light to irradiate the biological sample to generate the excited light.
    Type: Application
    Filed: March 9, 2020
    Publication date: March 14, 2024
    Inventors: JIELEI NI, MING NI, FAN ZHOU, ZEYU SU, KE JI, DONG WEI, MENGZHE SHEN, YUANQING LIANG, MEI LI, XUN XU
  • Publication number: 20240034168
    Abstract: Provided is a liquid-cooled charging device, relating to the technical field of vehicle charging. The liquid-cooled charging device includes a charging base, a cooling assembly, and at least one wiring terminal. The cooling assembly has a cooling flow channel and at least one mounting hole. The cooling flow channel is formed inside the cooling assembly and surrounds the at least one mounting hole. The least one wiring terminal has an end inserted into the charging base and another end inserted into the at least one mounting hole, enabling the at least one wiring terminal to be cooled by the cooling assembly. A charging gun is also provided.
    Type: Application
    Filed: October 12, 2023
    Publication date: February 1, 2024
    Inventors: Yingyong HE, Kang YANG, Lizhu DAI, Qiang WANG, Ke JI, Zhichao SHI
  • Publication number: 20210241147
    Abstract: An embodiment of the present application provides a method and a device for predicting a pair of similar questions and an electronic equipment, wherein a pair of similar questions to be predicted are input into multiple different prediction models, and a prediction result output by each of the prediction models is obtained; a random disturbance parameter is added into an embedding layer of at least one of the prediction models; and voting operation is performed on multiple prediction results to obtain a final prediction result of the pair of similar questions to be predicted. According to the present application, the a random disturbance parameter is added into the embedding layer of the prediction model, so that over-fitting caused by over-learning of sample knowledge by the prediction model can be effectively prevented, and the prediction accuracy can be effectively improved by predicting the pair of similar questions utilizing the prediction model.
    Type: Application
    Filed: April 22, 2021
    Publication date: August 5, 2021
    Applicant: Beijing More Health Technology Group Co. Ltd.
    Inventors: Dejie CHANG, Bangchang LIU, Shufeng GU, Hongwen ZHAO, Xiaobin LUO, Yikun ZHANG, Yunzhao WU, Chaozhen LIU, Hai WANG, Hangfei ZHANG, Ke JI