Search
Leader | 00000nz a2200037n 45 0 | ||
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001 | WKP|Q51560315 (VIAF cluster) (Authority/Source Record) | ||
003 | WKP | ||
005 | 20241221010718.0 | ||
008 | 241221nneanz||abbn n and d | ||
035 | ‡a (WKP)Q51560315 | ||
024 | ‡a 0000-0002-7178-8275 ‡2 orcid | ||
035 | ‡a (OCoLC)Q51560315 | ||
100 | 0 | ‡a Isabel Rodriguez ‡9 ast ‡9 es ‡9 sl | |
375 | ‡a 2 ‡2 iso5218 | ||
400 | 0 | ‡a Isabel Rodriguez ‡c researcher ORCID: 0000-0002-7178-8275 ‡9 en | |
400 | 0 | ‡a Isabel Rodriguez ‡c wetenschapper ‡9 nl | |
670 | ‡a Author's A novel nanostructured poly(lactic-co-glycolic-acid)-multi-walled carbon nanotube composite for blood-contacting applications: thrombogenicity studies | ||
670 | ‡a Author's A portable lab-on-a-chip instrument based on MCE with dual top-bottom capacitive coupled contactless conductivity detector in replaceable cell cartridge. | ||
670 | ‡a Author's Biomechanical Cell Regulation by High Aspect Ratio Nanoimprinted Pillars | ||
670 | ‡a Author's Capacitively coupled contactless conductivity detection with dual top-bottom cell configuration for microchip electrophoresis | ||
670 | ‡a Author's Capillary electrophoresis separation of p-sulfonated calix[n]arenes, n=4,6,8 | ||
670 | ‡a Author's Cell motion model for moving dielectrophoresis. | ||
670 | ‡a Author's Conformational behavior of fibrinogen on topographically modified polymer surfaces | ||
670 | ‡a Author's Conventional capillary electrophoresis in comparison with short-capillary capillary electrophoresis and microfabricated glass chip capillary electrophoresis for the analysis of fluorescein isothiocyanate anti-human immunoglobulin G. | ||
670 | ‡a Author's DC-biased AC-electrokinetics: a conductivity gradient driven fluid flow. | ||
670 | ‡a Author's Direct detection of heroin metabolites using a competitive immunoassay based on a carbon-nanotube liquid-gated field-effect transistor | ||
670 | ‡a Author's Dynamic cell fractionation and transportation using moving dielectrophoresis. | ||
670 | ‡a Author's Enantiomeric separation of amino acids derivatized with fluoresceine isothiocyanate isomer I by micellar electrokinetic chromatography using beta- and gamma-cyclodextrins as chiral selectors | ||
670 | ‡a Author's Experimental study and numerical estimation of current changes in electroosmotically pumped microfluidic devices | ||
670 | ‡a Author's Fabrication and analysis of gecko-inspired hierarchical polymer nanosetae | ||
670 | ‡a Author's Fabrication of lab-on chip platforms by hot em Boss ing and photo patterning. | ||
670 | ‡a Author's Femtomolar detection of 2,4-dichlorophenoxyacetic acid herbicides via competitive immunoassays using microfluidic based carbon nanotube liquid gated transistor | ||
670 | ‡a Author's Flexible all-polymer waveguide for low threshold amplified spontaneous emission. | ||
670 | ‡a Author's High-speed chiral separations on microchip electrophoresis devices | ||
670 | ‡a Author's Investigation of sensing mechanism and signal amplification in carbon nanotube based microfluidic liquid-gated transistors via pulsating gate bias | ||
670 | ‡a Author's Ion-pair solid-phase extraction of biogenic amines before micellar electrokinetic chromatography with laser-induced fluorescence detection of their fluorescein thiocarbamyl derivatives | ||
670 | ‡a Author's Microchannel electrophoretic separation of biogenic amines by micellar electrokinetic chromatography | ||
670 | ‡a Author's Microfluidic cell trap array for controlled positioning of single cells on adhesive micropatterns | ||
670 | ‡a Author's Micropatterns of cell adhesive proteins with poly(ethylene oxide)-block-Poly(4-vinylpyridine) diblock copolymer | ||
670 | ‡a Author's Moth eye mimetic cytocompatible bactericidal nanotopography: A convergent design. | ||
670 | ‡a Author's Numerical study of dc-biased ac-electrokinetic flow over symmetrical electrodes. | ||
670 | ‡a Author's Practical integration of polymerase chain reaction amplification and electrophoretic analysis in microfluidic devices for genetic analysis. | ||
670 | ‡a Author's Single-imprint moth-eye anti-reflective and self-cleaning film with enhanced resistance | ||
670 | ‡a Author's The effect of topography of polymer surfaces on platelet adhesion. | ||
909 | ‡a (orcid) 0000000271788275 ‡9 1 | ||
919 | ‡a novelnanostructuredpolylacticcoglycolicacidmultiwalledcarbonnanotubecompositeforbloodcontactingapplicationsthrombogenicitystudies ‡A A novel nanostructured poly(lactic-co-glycolic-acid)-multi-walled carbon nanotube composite for blood-contacting applications: thrombogenicity studies ‡9 1 | ||
919 | ‡a biomechanicalcellregulationbyhighaspectrationanoimprintedpillars ‡A Biomechanical Cell Regulation by High Aspect Ratio Nanoimprinted Pillars ‡9 1 | ||
919 | ‡a micropatternsofcelladhesiveproteinswithpolyethyleneoxideblockpoly4vinylpyridinediblockcopolymer ‡A Micropatterns of cell adhesive proteins with poly(ethylene oxide)-block-Poly(4-vinylpyridine) diblock copolymer ‡9 1 | ||
919 | ‡a capacitivelycoupledcontactlessconductivitydetectionwithdualtopbottomcellconfigurationformicrochipelectrophoresis ‡A Capacitively coupled contactless conductivity detection with dual top-bottom cell configuration for microchip electrophoresis ‡9 1 | ||
919 | ‡a microfluidiccelltraparrayforcontrolledpositioningofsinglecellsonadhesivemicropatterns ‡A Microfluidic cell trap array for controlled positioning of single cells on adhesive micropatterns ‡9 1 | ||
919 | ‡a capillaryelectrophoresisseparationofpsulfonatedcalixarenesn468 ‡A Capillary electrophoresis separation of p-sulfonated calix[n]arenes, n=4,6,8 ‡9 1 | ||
919 | ‡a cellmotionmodelformovingdielectrophoresis ‡A Cell motion model for moving dielectrophoresis. ‡9 1 | ||
919 | ‡a microchannelelectrophoreticseparationofbiogenicaminesbymicellarelectrokineticchromatography ‡A Microchannel electrophoretic separation of biogenic amines by micellar electrokinetic chromatography ‡9 1 | ||
919 | ‡a conformationalbehavioroffibrinogenontopographicallymodifiedpolymersurfaces ‡A Conformational behavior of fibrinogen on topographically modified polymer surfaces ‡9 1 | ||
919 | ‡a conventionalcapillaryelectrophoresisincomparisonwithshortcapillarycapillaryelectrophoresisandmicrofabricatedglasschipcapillaryelectrophoresisfortheanalysisoffluoresceinisothiocyanateantihumanimmunoglobuling ‡A Conventional capillary electrophoresis in comparison with short-capillary capillary electrophoresis and microfabricated glass chip capillary electrophoresis for the analysis of fluorescein isothiocyanate anti-human immunoglobulin G. ‡9 1 | ||
919 | ‡a 600biasedacelectrokineticsaconductivitygradientdrivenfluidflow ‡A DC-biased AC-electrokinetics: a conductivity gradient driven fluid flow. ‡9 1 | ||
919 | ‡a directdetectionofheroinmetabolitesusingacompetitiveimmunoassaybasedonacarbonnanotubeliquidgatedfieldeffecttransistor ‡A Direct detection of heroin metabolites using a competitive immunoassay based on a carbon-nanotube liquid-gated field-effect transistor ‡9 1 | ||
919 | ‡a dynamiccellfractionationandtransportationusingmovingdielectrophoresis ‡A Dynamic cell fractionation and transportation using moving dielectrophoresis. ‡9 1 | ||
919 | ‡a ionpairsolidphaseextractionofbiogenicaminesbeforemicellarelectrokineticchromatographywithlaserinducedfluorescencedetectionoftheirfluoresceinthiocarbamylderivatives ‡A Ion-pair solid-phase extraction of biogenic amines before micellar electrokinetic chromatography with laser-induced fluorescence detection of their fluorescein thiocarbamyl derivatives ‡9 1 | ||
919 | ‡a enantiomericseparationofaminoacidsderivatizedwithfluoresceineisothiocyanateisomer1bymicellarelectrokineticchromatographyusingbetaandgammacyclodextrinsaschiralselectors ‡A Enantiomeric separation of amino acids derivatized with fluoresceine isothiocyanate isomer I by micellar electrokinetic chromatography using beta- and gamma-cyclodextrins as chiral selectors ‡9 1 | ||
919 | ‡a investigationofsensingmechanismandsignalamplificationincarbonnanotubebasedmicrofluidicliquidgatedtransistorsviapulsatinggatebias ‡A Investigation of sensing mechanism and signal amplification in carbon nanotube based microfluidic liquid-gated transistors via pulsating gate bias ‡9 1 | ||
919 | ‡a experimentalstudyandnumericalestimationofcurrentchangesinelectroosmoticallypumpedmicrofluidicdevices ‡A Experimental study and numerical estimation of current changes in electroosmotically pumped microfluidic devices ‡9 1 | ||
919 | ‡a fabricationandanalysisofgeckoinspiredhierarchicalpolymernanosetae ‡A Fabrication and analysis of gecko-inspired hierarchical polymer nanosetae ‡9 1 | ||
919 | ‡a highspeedchiralseparationsonmicrochipelectrophoresisdevices ‡A High-speed chiral separations on microchip electrophoresis devices ‡9 1 | ||
919 | ‡a fabricationoflabonchipplatformsbyhotem Boss ingandphotopatterning ‡A Fabrication of lab-on chip platforms by hot em Boss ing and photo patterning. ‡9 1 | ||
919 | ‡a femtomolardetectionof24dichlorophenoxyaceticacidherbicidesviacompetitiveimmunoassaysusingmicrofluidicbasedcarbonnanotubeliquidgatedtransistor ‡A Femtomolar detection of 2,4-dichlorophenoxyacetic acid herbicides via competitive immunoassays using microfluidic based carbon nanotube liquid gated transistor ‡9 1 | ||
919 | ‡a flexibleallpolymerwaveguideforlowthresholdamplifiedspontaneousemission ‡A Flexible all-polymer waveguide for low threshold amplified spontaneous emission. ‡9 1 | ||
919 | ‡a portablelabonachipinstrumentbasedonmcewithdualtopbottomcapacitivecoupledcontactlessconductivitydetectorinreplaceablecellcartridge ‡A A portable lab-on-a-chip instrument based on MCE with dual top-bottom capacitive coupled contactless conductivity detector in replaceable cell cartridge. ‡9 1 | ||
919 | ‡a effectoftopographyofpolymersurfacesonplateletadhesion ‡A The effect of topography of polymer surfaces on platelet adhesion. ‡9 1 | ||
919 | ‡a singleimprintmotheyeantireflectiveandselfcleaningfilmwithenhancedresistance ‡A Single-imprint moth-eye anti-reflective and self-cleaning film with enhanced resistance ‡9 1 | ||
919 | ‡a practicalintegrationofpolymerasechainreactionamplificationandelectrophoreticanalysisinmicrofluidicdevicesforgeneticanalysis ‡A Practical integration of polymerase chain reaction amplification and electrophoretic analysis in microfluidic devices for genetic analysis. ‡9 1 | ||
919 | ‡a numericalstudyof600biasedacelectrokineticflowoversymmetricalelectrodes ‡A Numerical study of dc-biased ac-electrokinetic flow over symmetrical electrodes. ‡9 1 | ||
919 | ‡a motheyemimeticcytocompatiblebactericidalnanotopographyaconvergentdesign ‡A Moth eye mimetic cytocompatible bactericidal nanotopography: A convergent design. ‡9 1 | ||
946 | ‡a a ‡9 1 | ||
996 | ‡2 LC|n 97077296 | ||
996 | ‡2 BNC|981058508311406706 | ||
996 | ‡2 J9U|987007412409905171 | ||
996 | ‡2 ISNI|0000000054957589 | ||
996 | ‡2 SUDOC|236299832 | ||
996 | ‡2 RERO|A027373349 | ||
996 | ‡2 BNE|XX4432006 | ||
996 | ‡2 BNE|XX5585814 | ||
996 | ‡2 BNE|XX912870 | ||
996 | ‡2 LC|n 79058077 | ||
996 | ‡2 BNE|XX4769496 | ||
996 | ‡2 BNE|XX5497954 | ||
996 | ‡2 LC|n 2003112128 | ||
996 | ‡2 BNE|XX1184756 | ||
996 | ‡2 BNC|981058613273106706 | ||
996 | ‡2 SUDOC|280130023 | ||
996 | ‡2 SUDOC|080288774 | ||
996 | ‡2 BNC|981058609874706706 | ||
996 | ‡2 NUKAT|nx2022755384 | ||
996 | ‡2 LIH|LNB:CZ_b__r_;=CB | ||
996 | ‡2 BNE|XX899047 | ||
996 | ‡2 BNE|XX1093068 | ||
996 | ‡2 ISNI|0000000079719616 | ||
996 | ‡2 NTA|326893342 | ||
996 | ‡2 BNE|XX4707609 | ||
996 | ‡2 BNE|XX1594298 | ||
996 | ‡2 BNF|17050470 | ||
996 | ‡2 BNE|XX4420716 | ||
996 | ‡2 NUKAT|n 2009095238 | ||
996 | ‡2 RERO|A003754466 | ||
996 | ‡2 BNE|XX1260660 | ||
996 | ‡2 BNE|XX1700115 | ||
996 | ‡2 BNC|981058610203206706 | ||
996 | ‡2 BNE|XX4668080 | ||
996 | ‡2 BNE|XX868668 | ||
996 | ‡2 BNE|XX891654 | ||
996 | ‡2 BNE|XX5118537 | ||
996 | ‡2 ISNI|0000000002007119 | ||
996 | ‡2 BNE|XX5495632 | ||
996 | ‡2 NTA|125104537 | ||
996 | ‡2 BNC|981058513971406706 | ||
996 | ‡2 ISNI|0000000389960966 | ||
996 | ‡2 ISNI|0000000077784713 | ||
996 | ‡2 BNE|XX1723393 | ||
996 | ‡2 BNE|XX5330874 | ||
996 | ‡2 BNC|981058612364606706 | ||
996 | ‡2 PTBNP|1146412 | ||
996 | ‡2 LC|n 87852534 | ||
996 | ‡2 ISNI|0000000077125646 | ||
996 | ‡2 BNCHL|10000000000000000262756 | ||
996 | ‡2 SUDOC|187845166 | ||
996 | ‡2 BNE|XX1108174 | ||
996 | ‡2 LC|no2006055787 | ||
996 | ‡2 RERO|A003754318 | ||
996 | ‡2 LC|no2024046746 | ||
996 | ‡2 ISNI|0000000496215240 | ||
996 | ‡2 RERO|A006122908 | ||
996 | ‡2 BNE|XX1549159 | ||
996 | ‡2 NTA|345732561 | ||
996 | ‡2 SUDOC|088371913 | ||
996 | ‡2 BNE|XX5455500 | ||
996 | ‡2 BNE|XX1127081 | ||
996 | ‡2 ISNI|0000000060272957 | ||
996 | ‡2 BNE|XX6467281 | ||
996 | ‡2 LC|no 00067984 | ||
996 | ‡2 BNE|XX1008184 | ||
996 | ‡2 RERO|A003754407 | ||
996 | ‡2 ISNI|0000000509585874 | ||
996 | ‡2 BNF|13479160 | ||
996 | ‡2 BNC|981058514096806706 | ||
996 | ‡2 BNF|18053756 | ||
996 | ‡2 BNE|XX1460156 | ||
996 | ‡2 ISNI|0000000046642122 | ||
996 | ‡2 DNB|1158488416 | ||
996 | ‡2 LC|n 2019061295 | ||
996 | ‡2 ISNI|0000000119347221 | ||
996 | ‡2 ISNI|0000000452797744 | ||
996 | ‡2 LC|n 91012566 | ||
996 | ‡2 CAOONL|ncf10639448 | ||
996 | ‡2 DNB|1164190911 | ||
996 | ‡2 DNB|1057479667 | ||
996 | ‡2 ISNI|0000000060630048 | ||
996 | ‡2 LC|no2017130283 | ||
996 | ‡2 BNE|XX983865 | ||
996 | ‡2 BNE|XX1698939 | ||
996 | ‡2 BNE|XX1642149 | ||
996 | ‡2 ISNI|0000000512478615 | ||
996 | ‡2 BNE|XX1578777 | ||
996 | ‡2 LC|n 2009009685 | ||
996 | ‡2 SUDOC|126601151 | ||
996 | ‡2 BNE|XX1133134 | ||
996 | ‡2 SUDOC|068688067 | ||
996 | ‡2 BNF|15959188 | ||
996 | ‡2 ISNI|0000000498677799 | ||
996 | ‡2 DNB|1153556189 | ||
996 | ‡2 BNC|981058614315006706 | ||
996 | ‡2 BNE|XX1724832 | ||
996 | ‡2 BNE|XX5725017 | ||
996 | ‡2 LC|n 2004025241 | ||
996 | ‡2 ISNI|0000000374072579 | ||
996 | ‡2 ISNI|0000000060960098 | ||
996 | ‡2 BNE|XX5244933 | ||
996 | ‡2 SUDOC|256206872 | ||
996 | ‡2 SUDOC|221404856 | ||
996 | ‡2 ISNI|0000000037437370 | ||
996 | ‡2 BNC|981059256037006706 | ||
996 | ‡2 LC|n 2016013819 | ||
996 | ‡2 DNB|136126480 | ||
996 | ‡2 BNE|XX964613 | ||
996 | ‡2 LC|n 2021009179 | ||
996 | ‡2 BNE|XX962730 | ||
996 | ‡2 J9U|987007451766605171 | ||
996 | ‡2 BNE|XX5121166 | ||
996 | ‡2 DNB|1056474602 | ||
996 | ‡2 LC|n 87112644 | ||
996 | ‡2 ISNI|0000000060830955 | ||
996 | ‡2 BNE|XX839584 | ||
996 | ‡2 BNE|XX890436 | ||
996 | ‡2 BNC|981058521344806706 | ||
996 | ‡2 SUDOC|118811622 | ||
996 | ‡2 DNB|1130430499 | ||
996 | ‡2 ISNI|0000000061114344 | ||
996 | ‡2 BNE|XX1023382 | ||
996 | ‡2 DNB|1057441813 | ||
996 | ‡2 BNE|XX1673234 | ||
996 | ‡2 BNC|981058511880406706 | ||
996 | ‡2 SUDOC|081932413 | ||
996 | ‡2 LC|no2020150502 | ||
996 | ‡2 BNC|981058610578606706 | ||
996 | ‡2 PTBNP|986657 | ||
996 | ‡2 BNCHL|10000000000000000804885 | ||
996 | ‡2 DNB|1136084932 | ||
996 | ‡2 BNF|15034331 | ||
996 | ‡2 BNE|XX4748225 | ||
996 | ‡2 BNE|XX6319135 | ||
996 | ‡2 SUDOC|08544135X | ||
996 | ‡2 ISNI|0000000060294726 | ||
996 | ‡2 BNE|XX6290819 | ||
996 | ‡2 BNC|981058614347706706 | ||
996 | ‡2 SUDOC|183980026 | ||
996 | ‡2 SUDOC|15928841X | ||
996 | ‡2 ISNI|0000000121176572 | ||
996 | ‡2 BNE|XX1537387 | ||
996 | ‡2 BNE|XX4783694 | ||
996 | ‡2 BNE|XX1144961 | ||
996 | ‡2 ISNI|0000000059324027 | ||
996 | ‡2 BNE|XX4732694 | ||
996 | ‡2 LC|no2001049395 | ||
996 | ‡2 BNE|XX1052902 | ||
996 | ‡2 BNE|XX1017834 | ||
996 | ‡2 NTA|089258789 | ||
996 | ‡2 DNB|1056459999 | ||
996 | ‡2 NUKAT|n 2007097231 | ||
996 | ‡2 DNB|1056416548 | ||
996 | ‡2 BNC|981058611696006706 | ||
996 | ‡2 BNE|XX1013881 | ||
996 | ‡2 BNC|981058520631106706 | ||
996 | ‡2 BNE|XX4906408 | ||
996 | ‡2 ISNI|0000000120523982 | ||
996 | ‡2 DNB|1256343196 | ||
996 | ‡2 BNCHL|10000000000000000142515 | ||
996 | ‡2 ISNI|0000000111824935 | ||
996 | ‡2 SUDOC|08068677X | ||
996 | ‡2 ISNI|0000000059304616 | ||
996 | ‡2 BNE|XX4430351 | ||
996 | ‡2 BNF|18094767 | ||
996 | ‡2 DNB|1292514078 | ||
996 | ‡2 DNB|1025662253 | ||
996 | ‡2 LC|n 2010022044 | ||
996 | ‡2 SUDOC|174120370 | ||
996 | ‡2 ISNI|0000000117705216 | ||
996 | ‡2 LC|n 97023126 | ||
996 | ‡2 ISNI|0000000059209627 | ||
997 | ‡a 0 0 lived 0 0 ‡9 1 |