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20240329122006.0 |
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180929s2018 gw o 000 0 eng d |
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|a EBLCP
|b eng
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|a 1050587834
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|a 9783832590611
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|a 3832590617
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|z 3832547460
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|z 9783832547462
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|b 000075612413
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|a (OCoLC)1055048571
|z (OCoLC)1050587834
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|a QD116.I57
|b .R637 2018
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0 |
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|a 681.757
|q OCoLC
|2 23/ger/20230216
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|a UAMI
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|a Rodriguez, Juan Jose Montero.
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|a Impedance Spectroscopy for Characterization of Biological Matter.
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260 |
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|a Berlin :
|b Logos Verlag Berlin,
|c 2018.
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300 |
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|a 1 online resource (182 pages)
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336 |
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|a online resource
|b cr
|2 rdacarrier
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|a Wissenschaftliche Beiträge Zur Medizinelektronik Ser. ;
|v v. 8
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|a Print version record.
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|a Intro; 1 Introduction; 1.1 Structure and classification of cells; 1.2 History of animal electricity; 1.3 Field exposure of cells and biological samples; 1.4 Purpose of the work; 1.5 Outline; 2 Impedance spectroscopy; 2.1 Impedance, permittivity and conductivity; 2.2 Cellular impedance recording; 2.3 Electrode configurations for EIS; 2.4 Equivalent circuit components; 2.5 Equivalent circuit models; 2.6 Simulation of a 3D cell culture; 2.7 Commercial tools for fitting; 2.8 Impedance fitting toolbox; 2.9 Chapter conclusion; 3 Applications of impedance spectroscopy.
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|a 3.1 Impedance response of tumor and healthy cells3.2 Liquid samples infected with bacteria; 3.3 Fruit ripening; 3.4 Cell viability; 3.5 Lactate concentration in athletes; 3.6 Chapter conclusion; 4 Impedance measurement circuits; 4.1 Wheatstone bridge; 4.2 Auto-balancing bridge method; 4.3 Frequency response analysis method; 4.4 Network analysis method; 4.5 Chapter conclusion; 5 Demonstrator of a portable impedance spectrometer; 5.1 Block diagram; 5.2 Design of the analog circuitry; 5.3 Design of the digital logic; 5.4 Frequency response measurements; 5.5 Experiments with constant known loads.
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|a 5.6 Experiments with yeast5.7 Chapter conclusion; 6 Miniaturized portable impedance measurement system; 6.1 Chip architecture; 6.2 Impedance calculation example; 6.3 LabVIEW Implementation; 6.4 Impedance measurements; 6.5 Phase measurements; 6.6 Biological experiments; 6.7 Chapter conclusion; 7 High frequency stimulation; 7.1 Chip architecture; 7.2 Impedance calculation; 7.3 Simulations of an RC impedance load; 7.4 DC operating point of the VCO; 7.5 Inductor S-parameters; 7.6 Oscillator measurements; 7.7 Chapter conclusion; 8 High frequency stimulation redesign.
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|a 8.1 Chip architecture and simulations8.2 Assembly technologies for bare die ASICs; 8.3 Test board assembly; 8.4 Oscillator frequency and amplitude; 8.5 DC operating point of the VCO; 8.6 Simulation of an ESD error; 8.7 Measurement of cell cultures; 8.8 Simulation of the microstrip line; 8.9 Chapter conclusion; 9 Conclusions and outlook; A ASIC bonding plans; Bibliography; List of Figures; List of Tables; List of Abbreviations; List of Symbols.
|
590 |
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|a ProQuest Ebook Central
|b Ebook Central Academic Complete
|
650 |
|
0 |
|a Impedance spectroscopy.
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650 |
|
0 |
|a Cytology.
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650 |
|
6 |
|a Spectroscopie d'impédance.
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650 |
|
6 |
|a Cytologie.
|
776 |
0 |
8 |
|i Print version:
|a Rodriguez, Juan Jose Montero.
|t Impedance Spectroscopy for Characterization of Biological Matter.
|d Berlin : Logos Verlag Berlin, ©2018
|z 9783832547462
|
830 |
|
0 |
|a Wissenschaftliche Beiträge Zur Medizinelektronik Ser.
|
856 |
4 |
0 |
|u https://ebookcentral.uam.elogim.com/lib/uam-ebooks/detail.action?docID=5520798
|z Texto completo
|
938 |
|
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|a ProQuest Ebook Central
|b EBLB
|n EBL5520798
|
938 |
|
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|a YBP Library Services
|b YANK
|n 15678638
|
994 |
|
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|a 92
|b IZTAP
|