Zobrazeno 1 - 10
of 58
pro vyhledávání: '"Sheng-feng Li"'
Publikováno v:
China Foundry; Nov2024, Vol. 21 Issue 6, p709-716, 8p
Autor:
Sheng-Feng Li, 李昇峰
101
This study aims to establish a system which can recognize the gestures of the head movement. Two real-time and effective methods are presented herein to identify the gestures of the head movement. The first method is to utilize the 3-axis se
This study aims to establish a system which can recognize the gestures of the head movement. Two real-time and effective methods are presented herein to identify the gestures of the head movement. The first method is to utilize the 3-axis se
Externí odkaz:
http://ndltd.ncl.edu.tw/handle/01243770277728862891
Autor:
Sheng-Feng Li, 李昇峰
97
Polyacrylonitrile (PAN) nanofibrous membrane with fiber diameter in the range of 150–300 nm could be manufactured by electrospinning, providing huge specific surface area for enzyme immobilization. Lipase from Candida rugosa was covalently
Polyacrylonitrile (PAN) nanofibrous membrane with fiber diameter in the range of 150–300 nm could be manufactured by electrospinning, providing huge specific surface area for enzyme immobilization. Lipase from Candida rugosa was covalently
Externí odkaz:
http://ndltd.ncl.edu.tw/handle/15226138749163505216
Autor:
Herzschuh Ulrike, Kai Li, Xing-Qi Liu, Xiang-Dong Yang, Xiao-Qiang Li, Xiang-Jun Sun, Xian-Yong Cao, Shun Yan, Ge Yu, Zhiyong Zhang, Ling-Yu Tang, De-Yu Xu, Bo Cheng, Zhuo Zheng, Haicheng Wei, Zhao-Chen Kong, Guang-Xiu Liu, Yun Zhang, Ke-Liang Zhao, Xiu-Dong Hao, Jinhua Mountain Observation, Sheng-Feng Li, Qing-Hai Xu, Jian Ni, Hai-Yan Chen, Ping-Mei Liu, Zhen-Jing Yang, Meng-Na Liao
Publikováno v:
Chinese Journal of Plant Ecology. 45:799-808
Autor:
Sheng-Feng Li, 李勝豐
104
In human-machine interface, the module of spoken input/output in human-machine interface will be a popular area of research in the future. On the other hand, the effectiveness of response generation is one of the important things. Even the u
In human-machine interface, the module of spoken input/output in human-machine interface will be a popular area of research in the future. On the other hand, the effectiveness of response generation is one of the important things. Even the u
Externí odkaz:
http://ndltd.ncl.edu.tw/handle/01275027827123973183
Autor:
Chih Yu Huang, Wan-Wen Ting, Jo Shu Chang, Sheng-Feng Li, I-Son Ng, Hung-Yi Lin, Pong-Yee Wu, Shih-Fang Huang
Publikováno v:
Enzyme and microbial technology. 148
Microbial production of industrial chemicals is a sustainable approach to reduce the dependence on petroleum-based chemicals such as acids, alcohols, and amines, in which the cadaverine is a natural diamide and serves as one of the key monomers for b
Publikováno v:
European Journal of Medical Research, Vol 28, Iss 1, Pp 1-11 (2023)
Abstract Background Unscheduled return visits (URVs) to the emergency department (ED) constitute a crucial indicator of patient care quality. Objective We aimed to analyze the clinical characteristics of patients who visited the ED with abdominal pai
Externí odkaz:
https://doaj.org/article/a76a3d74f7224b999f26397d462b542b
Autor:
Sheng Feng Li, Jo Shu Chang, Chih Yu Huang, Pong Yee Wu, Hung Yi Lin, Wan Wen Ting, Ying Chun Chen, I. Son Ng, Cheng Di Dong, Shih Fang Huang
Publikováno v:
Biochemical Engineering Journal. 165:107797
Autor:
Wan-Wen Ting, I-Son Ng, Jo Shu Chang, Kai-Min Hsu, Sheng-Feng Li, Hung-Yi Lin, Chengfeng Xue, Shih-Fang Huang
Publikováno v:
Biochemical Engineering Journal. 161:107659
Cadaverine is a five-carbon diamine which serves as an important biochemical for the synthesis of bio-based nylon. It can be produced by the bioconversion of l -lysine with lysine decarboxylase (CadA; EC 4.1.1.18) and relies on cofactor pyridoxal 5
Autor:
Chih Yu Huang, Wan-Wen Ting, Ying-Chun Chen, Pong-Yee Wu, Hung-Yi Lin, Shih-Fang Huang, Sheng-Feng Li, I-Son Ng, Jo Shu Chang, Cheng-Di Dong
Publikováno v:
Biochemical Engineering Journal. 156:107514
Cadaverine, also known as 1,5-diaminopentane, is a biogenic amine particularly used for the synthesis of nylon. Cadaverine can be efficiently synthesized through decarboxylation of lysine in microorganisms. However, the respective metabolic pathways