in:(ZHENG, Xinmin)
Gesture information processing method and apparatus, electronic device, and storage medium
US17580545
[Xiaolin Hong, Qingqing Zheng, Xinmin Wang, Kai Ma, Yefeng Zheng]
CN Shenzhen
This application provides a gesture information processing method and apparatus, an electronic device, and a storage medium. The method includes: determining an electromyography signal collection target object in a gesture information usage environment; dividing the electromyography signal sample through a sliding window having a fixed window value and a fixed stride into different electromyography signals of the target object, and denoising the different electromyography signals of the target object; recognizing the denoised different electromyography signals, and determining probabilities of gesture information represented by the different electromyography signals; and weighting the probabilities of the gesture information represented by the different electromyography signals, so as to determine gesture information matching the target object.
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GESTURE INFORMATION PROCESSING METHOD AND APPARATUS, ELECTRONIC DEVICE, AND STORAGE MEDIUM
US18227857
[Xiaolin HONG, Qingqing ZHENG, Xinmin Wang, Kai MA, Yefeng ZHENG]
CN Shenzhen
This application provides a gesture information processing method and apparatus, an electronic device, and a storage medium. The method includes: acquiring an electromyography signal sample generated by an electromyography signal collection target object in connection with performing multiple gestures; dividing the electromyography signal sample through a sliding window having a fixed window value and a fixed stride into different electromyography signals of the target object; and applying the different electromyography signals to a first neural network model to determine gesture information matching the multiple gestures performed by the target object.
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GESTURE INFORMATION PROCESSING METHOD AND APPARATUS, ELECTRONIC DEVICE, AND STORAGE MEDIUM
PCT/CN2020/130567
[HONG, Xiaolin 洪晓林, ZHENG, Qingqing 郑青青, WANG, Xinmin 王新民, MA, Kai 马锴, ZHENG, Yefeng 郑冶枫]
35/F, Tencent Building, Kejizhongyi Road, Midwest District of Hi-Tech Park, Nanshan District 中国广东省深圳市南山区高新区科技中一路腾讯大厦35层, Guangdong 518057Shenzhen, Guangdong 518057
A gesture information processing method and apparatus, an electronic device, and a storage medium. The method comprises: a server determines an electromyographic signal collection target object in a gesture information usage environment (701); the server collects an electromyographic signal sample matched with the electromyographic signal collection target object, and a corresponding gesture information tag (702); the server cuts out an electromyographic signal sample by means of a sliding window having a fixed window value and a fixed step size, forms different electromyographic signals of the target object, and performs noise removal on different electromyographic signals of the target object (703); the server recognizes different electromyographic signals subjected to noise removal, and determines the probability of the gesture information represented by different electromyographic signals (704); and the server performs weighting processing on the probability of the gesture information represented by different electromyographic signals, so as to determine the gesture information matched with the target object (705). A gesture information processing method and apparatus, an electronic device, and a storage medium. The method comprises: a server determines an electromyographic signal collectio
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GESTURE INFORMATION PROCESSING METHOD AND APPARATUS, ELECTRONIC DEVICE, AND STORAGE MEDIUM
US17580545
[Xiaolin HONG, Qingqing ZHENG, Xinmin WANG, Kai MA, Yefeng ZHENG]
CN Shenzhen
This application provides a gesture information processing method and apparatus, an electronic device, and a storage medium. The method includes: determining an electromyography signal collection target object in a gesture information usage environment; dividing the electromyography signal sample through a sliding window having a fixed window value and a fixed stride into different electromyography signals of the target object, and denoising the different electromyography signals of the target object; recognizing the denoised different electromyography signals, and determining probabilities of gesture information represented by the different electromyography signals; and weighting the probabilities of the gesture information represented by the different electromyography signals, so as to determine gesture information matching the target object.
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SWINE MYOSTATIN LOCUS AND USE THEREOF
PCT/CN2011/001119
[BI, Yanzhen, ZHENG, Xinmin, QIAO, Xianfeng, LIU, Ximei, ZHANG, Liping, HUA, Wenjun, LI, Li, XIAO, Hongwei, ZHOU, Jingrong, WEI, Qingxin]
Institute of Animal Science and Veterinary Hubei Academy of Agricultural Science No. 1, Nanhu Yaoyuan, Hongshan District Wuhan, Hubei 430064;Institute of Animal Science and Veterinary Hubei Academy of Agricultural Science No. 1, Nanhu Yaoyuan, Hongshan District Wuhan, Hubei 430064;Institute of Animal Science and Veterinary Hubei Academy of Agricultural Science No. 1, Nanhu Yaoyuan, Hongshan District Wuhan, Hubei 430064;Institute of Animal Science and Veterinary Hubei Academy of Agricultural Science No. 1, Nanhu Yaoyuan, Hongshan District Wuhan, Hubei 430064;Institute of Animal Science and Veterinary Hubei Academy of Agricultural Science No. 1, Nanhu Yaoyuan, Hongshan District Wuhan, Hubei 430064;Institute of Animal Science and Veterinary Hubei Academy of Agricultural Science No. 1, Nanhu Yaoyuan, Hongshan District Wuhan, Hubei 430064;Institute of Animal Science and Veterinary Hubei Academy of Agricultural Science No. 1, Nanhu Yaoyuan, Hongshan District Wuhan, Hubei 430064;Institute of Animal Science and Veterinary Hubei Academy of Agricultural Science No. 1, Nanhu Yaoyuan, Hongshan District Wuhan, Hubei 430064;Institute of Animal Science and Veterinary Hubei Academy of Agricultural Science No. 1, Nanhu Yaoyuan, Hongshan District Wuhan, Hubei 430064;Institute of Animal Science and Veterinary Hubei Academy of Agricultural Science No. 1, Nanhu Yaoyuan, Hongshan District Wuhan, Hubei 430064;Institute of Animal Science and Veterinary Hubei Academy of Agricultural Science No. 1, Nanhu Yaoyuan, Hongshan District Wuhan, Hubei 430064
Provided are a swine myostatin locus and a use thereof. Also provided is an expression kit, consisting of a promoter, an exogenous gene and a terminator, wherein the promoter is the DNA molecule described in any of the following items: 1) the nucleotides at position No. 2642 to 3778, from 5' end, of the Sequence 1 in the Sequence Listing; 2) the nucleotides shown in the Sequence 1 in the Sequence Listing; 3) the DNA molecule hybridized to the DNA sequences defined in 1) or 2) under stringent conditions and having the same functions. The swine myostatin locus according to the present invention provides an valuable gene resource for gene targeting, transferring and expressing exogenous genes.
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GLYCURESIS RESISTANT MONOCLONAL ANTIBODY
PCT/CN2010/078946
[ZHENG, Xinmin]
Floor 5 Room504 Building. D, NO. 48, Jinqiu Road, BAO SHAN Shanghai 200436;Floor 5 Room504 Building. D, NO. 48, Jinqiu Road, BAO SHAN Shanghai 200436
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Human CD47-targeting single-domain antibody and use thereof
AU2021221001A
[HE XIANGYU, NIAN WEIHONG, XU CHUANYING, ZHENG XINTONG, ZHANG XINMIN, XIAO JING, HE FENG, ZHOU QING]
CN
The present invention relates to an anti-CD47 single-domain antibody and a use thereof, and a method for preparing the antibody. The single-domain antibody comprises a CDR selected from the following CDRs: (1) CDR1, CDR2, and CDR3 shown by SEQ ID NO: 1, SEQ ID NO: 2, and SEQ ID NO:3; or (2) CDR1, CDR2, and CDR3 shown by SEQ ID NO: 6, SEQ ID NO: 7, and SEQ ID NO: 8.
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Human CD47-targeting single-domain antibody and use thereof
AU2021221001A
[HE XIANGYU, NIAN WEIHONG, XU CHUANYING, ZHENG XINTONG, ZHANG XINMIN, XIAO JING, HE FENG, ZHOU QING]
CN
The present invention relates to an anti-CD47 single-domain antibody and a use thereof, and a method for preparing the antibody. The single-domain antibody comprises a CDR selected from the following CDRs: (1) CDR1, CDR2, and CDR3 shown by SEQ ID NO: 1, SEQ ID NO: 2, and SEQ ID NO:3; or (2) CDR1, CDR2, and CDR3 shown by SEQ ID NO: 6, SEQ ID NO: 7, and SEQ ID NO: 8.
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CLDN18.2 antibody and use thereof
AU2021220887A
[ZHOU QING, XU CHUANYING, NIAN WEIHONG, HE XIANGYU, ZHANG XINMIN, ZHENG XINTONG, HE FENG, XIAO JING]
CN
Provided are an antibody against claudin 18.2 (CLDN18.2) and a use thereof in diagnosing and treating cancer of the stomach, pancreas and esophagus.
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PIG MYOSTATIN GENE LOCUS AND USES THEREOF
US14128995
[Yanzhen Bi, Xinmin Zheng, Xianfeng Qiao, Ximei Liu, Liping Zhang, Wenjun Hua, Li Li, Hongwei Xiao, Jingrong Zhou, Qingxin Wei]
CN Wuhan
A pig myostatin gene locus and uses thereof are provided. Also provided includes an expression cassette comprising a promoter, a foreign gene and a following terminator; the promoter is a DNA molecule as set forth in any of 1)-4): 1) nucleotides at positions 2642-3778 starting from the 5′ end of SEQ ID NO. 1 in the sequence listing; 2) nucleotides as set forth in SEQ ID NO. 1 in the sequence listing; 3) a DNA molecule, hybridizing and having the same function with the DNA sequence as defined in 1) or 2) under stringent condition. Experiments show that the pig myostatin gene locus provides a valuable gene source for gene targeting, as well as introducing and expressing a foreign gene at this site.
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