搜尋結果
2021
Lin, H. W. ,
Su, C. N. ,
Chen, T. A. ,
Chen, Y. C. ,
Syu, M. J. &
Wei, C. L. ,
2021 ,
於: IEEE Transactions on Instrumentation and Measurement. 70 , 9406039.
研究成果: Article › 同行評審
impedance measurement
100%
electrical impedance
89%
converters
83%
impedance
65%
frequency ranges
65%
2016
Ma, W. J. ,
Luo, C. H. ,
Lin, J. L. ,
Chou, S. H. ,
Chen, P. H. ,
Syu, M. J. ,
Kuo, S. H. &
Lai, S. C. ,
2016 4月 2 ,
於: Sensors (Switzerland). 16 ,
4 , 474.
研究成果: Article › 同行評審
Urease
100%
ureas
98%
Urea
98%
acquisition
71%
sensors
48%
2012
Wang, K. H. ,
Syu, M. J. ,
Chang, C. H. &
Lee, Y. L. ,
2012 3月 31 ,
於: Sensors and Actuators, B: Chemical. 164 ,
1 ,
p. 29-36 8 p. 研究成果: Article › 同行評審
Glucose oxidase
100%
oxidase
82%
Monolayers
77%
immobilization
74%
Biosensors
72%
2011
Huang, C. J. ,
Lin, J. L. ,
Chen, P. H. ,
Syu, M. J. &
Lee, G. B. ,
2011 4月 ,
於: Electrophoresis. 32 ,
8 ,
p. 931-938 8 p. 研究成果: Article › 同行評審
Microfluidics
100%
Creatinine
99%
Urea
78%
Technology
54%
Valve
22%
Wang, K. H. ,
Syu, M. J. ,
Chang, C. H. &
Lee, Y. L. ,
2011 6月 21 ,
於: Langmuir. 27 ,
12 ,
p. 7595-7602 8 p. 研究成果: Article › 同行評審
Glucose oxidase
100%
oxidase
82%
Monolayers
77%
liquid air
77%
Conformations
75%
Sol-gels
100%
Creatinine
91%
gel
64%
Adsorption
21%
Inorganic polymers
18%
2010
Creatinine
100%
Monomers
98%
Photoluminescence
67%
Polymers
30%
Ethylene glycol
26%
2009
Amylases
100%
Bacilli
88%
Polyethylene glycols
79%
Adsorbents
73%
Fermentation
68%
Potentiometric sensors
98%
Polypyrroles
89%
Urease
73%
Urea
71%
Surface morphology
65%
Chang, Y. S. ,
Ko, T. H. ,
Hsu, T. J. &
Syu, M. J. ,
2009 3月 15 ,
於: Analytical Chemistry. 81 ,
6 ,
p. 2098-2105 8 p. 研究成果: Article › 同行評審
Creatinine
100%
Isotherm
63%
Creatine
11%
Silanol
10%
Adsorption Isotherm
7%
methacrylic acid
100%
zinc protoporphyrin
90%
Glycols
90%
Protoporphyrin
76%
Bilirubin
72%
2008
Chen, C. Y. ,
Tsai, W. L. ,
Wu, H. C. ,
Syu, M. J. ,
Wu, C. C. &
Shiesh, S. C. ,
2008 4月 ,
於: Clinica Chimica Acta. 390 ,
1-2 ,
p. 82-89 8 p. 研究成果: Article › 同行評審
Pancreatic Elastase
100%
Cholestasis
95%
Bile
83%
Biological Marker
76%
Amylases
46%
Ju, J. F. ,
Syu, M. J. ,
Teng, H. S. ,
Chou, S. K. &
Chang, Y. S. ,
2008 5月 28 ,
於: Sensors and Actuators, B: Chemical. 132 ,
1 ,
p. 319-326 8 p. 研究成果: Article › 同行評審
Cyclodextrins
100%
Quartz crystal microbalances
94%
Xylene
80%
Polymer films
79%
xylene
77%
2007
Huang, C. Y. ,
Syu, M. J. ,
Chang, Y. S. ,
Chang, C. H. ,
Chou, T. C. &
Liu, B. D. ,
2007 3月 15 ,
於: Biosensors and Bioelectronics. 22 ,
8 ,
p. 1694-1699 6 p. 研究成果: Article › 同行評審
Molecular Imprinting
100%
Bilirubin
63%
Polymer films
47%
Electrodes
40%
Sensors
27%
2006
Syu, M. J. ,
Chiu, T. C. ,
Lai, C. Y. &
Chang, Y. S. ,
2006 10月 15 ,
於: Biosensors and Bioelectronics. 22 ,
4 SPEC. ISS. ,
p. 550-557 8 p. 研究成果: Article › 同行評審
methacrylic acid
100%
Glycols
90%
Bilirubin
72%
Glycol
56%
Acids
55%
Artificial Receptors
100%
Creatinine
57%
Monomers
56%
Molecularly Imprinted Polymer
50%
Polymers
42%
Syu, M. J. ,
Nian, Y. M. ,
Chang, Y. S. ,
Lin, X. Z. ,
Shiesh, S. C. &
Chou, T. C. ,
2006 7月 28 ,
於: Journal of Chromatography A. 1122 ,
1-2 ,
p. 54-62 9 p. 研究成果: Article › 同行評審
poly(methacrylic acid-ethylene glycol)
100%
Bilirubin
56%
Glycol
43%
Molecularly Imprinted Polymer
16%
Polymers
14%
Flow Injection Analysis
100%
Quartz Crystal Microbalance Techniques
87%
Quartz crystal microbalances
84%
Polymer films
70%
Bilirubin
63%
2005
poly(methacrylic acid-ethylene glycol)
100%
Bilirubin
56%
ethylene
46%
Glycol
43%
Biliverdine
36%
4-(Diethylamino)benzaldehyde
100%
methoxyamine
90%
Capillary Electrophoresis
64%
Capillary Zone Electrophoresis
55%
Antineoplastic Agent
43%
Syu, M. J. ,
Deng, J. H. ,
Nian, Y. M. ,
Chiu, T. C. &
Wu, A. H. ,
2005 8月 ,
於: Biomaterials. 26 ,
22 ,
p. 4684-4692 9 p. 研究成果: Article › 同行評審
poly(methacrylic acid-ethylene glycol)
100%
Ethylene glycol
61%
Bilirubin
56%
Glycol
43%
Acids
43%
Liao, Y. C. ,
Yang, S. ,
Syu, M. J. &
Xu, Y. ,
2005 9月 15 ,
於: Journal of Pharmaceutical and Biomedical Analysis. 39 ,
3-4 ,
p. 724-729 6 p. 研究成果: Article › 同行評審
4-(diethylamino)benzaldehyde
100%
4-(Diethylamino)benzaldehyde
88%
methoxyamine
79%
Benzil
14%
Calibration
12%
Penicillin Amidase
100%
Cephalosporanic Acid
98%
Cephalosporin
70%
Penicillin
64%
Cephalosporins
61%
Cyclodextrins
100%
Amylases
97%
Metal ions
85%
Adsorbents
71%
Adsorption
65%
Creatinine
100%
imprinting
93%
polymer
64%
polymerization
42%
adsorption
42%
Cyclodextrins
100%
Creatinine
71%
Monomers
46%
Adsorption
38%
Molar ratio
23%
2004
Penicillin Amidase
100%
Cephalosporanic Acid
98%
Cephalosporin
70%
Penicillin
64%
Cephalosporins
61%
Immobilized Cells
100%
Waste Water
87%
Biological Products
16%
Cell Death
12%
Kinetics
12%
poly(methacrylic acid-ethylene glycol)
100%
Bilirubin
56%
ethylene
46%
Glycol
43%
Polymerization
41%
2003
Benzoic acid
100%
Sedimentation
76%
Chemical Oxygen Demand
68%
Wastewater
62%
Chemical oxygen demand
62%
Biofilms
100%
Substrates
52%
Flow
47%
Simulation
46%
Parallel flow
32%
Biofilms
100%
Taguchi methods
87%
Liquid
40%
Liquid Film
35%
Substrates
34%
Affinity chromatography
100%
Enzymes
59%
Purification
58%
Cibacron Blue F 3GA
56%
Affinity Chromatography
55%
1999
2,3-butylene glycol
100%
Klebsiella oxytoca
87%
Fermentation
64%
Backpropagation
54%
Neural networks
35%
Penicillin Amidase
100%
Arthrobacter
90%
Penicillin
64%
Fermentation
63%
Backpropagation
53%
Biofilters
100%
Toluene
80%
Benzene
76%
Volatile organic compounds
74%
Volatile Organic Compound
63%
2,3-butylene glycol
100%
Klebsiella oxytoca
87%
Mass spectrometers
82%
Fermentation
64%
Membranes
48%
1998
Wastewater treatment
100%
Wastewater
90%
Backpropagation
79%
Benzoic acid
72%
Chemical Oxygen Demand
66%
Polyaniline
100%
sensitivity analysis
81%
Sensitivity analysis
60%
Membranes
57%
Electrodes
52%
Polyaniline
100%
sensitivity analysis
81%
Sensitivity analysis
60%
Membranes
57%
Electrodes
52%
signal detection
100%
Signal detection
93%
Sampling
69%
Electrodes
64%
electrodes
51%
1997
Fermentation
100%
Learning
66%
Neural networks
54%
Transfer functions
32%
2,3-butylene glycol
30%
Amylases
100%
Bacilli
88%
Starch
76%
Fermentation
68%
starch
64%
Penicillin
100%
Fermentation
98%
Backpropagation
82%
Neural networks
53%
Controllers
38%
Amylases
100%
Bacilli
88%
Enzyme activity
78%
Nutrients
76%
Fermentation
68%
1993
Cell growth
100%
Simulation
44%
Neural networks
42%
Growth
35%
Transfer functions
21%
1991
Hayward, M. J. ,
Riederer, D. E. ,
Kotiaho, T. ,
Cooks, R. G. ,
Austin, G. D. ,
Syu, M. J. &
Tsao, G. T. ,
1991 2月 ,
於: Process Control and Quality. 1 ,
2 ,
p. 105-116 12 p. 研究成果: Article › 同行評審
Mass spectrometry
100%
Bioreactors
94%
Ions
71%
Membranes
65%
Fermentation
65%
Tsai, G. J. ,
Austin, G. D. ,
Syu, M. J. ,
Tsao, G. T. ,
Hayward, M. J. ,
Kotiaho, T. &
Cooks, R. G. ,
1991 11月 1 ,
於: Analytical Chemistry. 63 ,
21 ,
p. 2460-2465 6 p. 研究成果: Article › 同行評審
Membrane-Introduction Mass Spectrometry
100%
Mass spectrometry
76%
Membranes
50%
Flow
38%
Concentration Profile
16%
1989
Kwong, C. W. ,
Hsieh, J. H. ,
Syu, M-J. &
Chou, S. S. ,
1989 6月 1 ,
於: Biotechnology Letters. 11 ,
6 ,
p. 377-382 6 p. 研究成果: Article › 同行評審
Monoclonal antibodies
100%
Anti Hepatitis
95%
Immobilized Cells
95%
Alginate
93%
Antigens
86%