Development of a three-dimensional cell culture system based on microfluidics for nuclear magnetic resonance and optical monitoring.

scientific article published on 18 November 2014

Development of a three-dimensional cell culture system based on microfluidics for nuclear magnetic resonance and optical monitoring. is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1063/1.4902002
P932PMC publication ID4240776
P698PubMed publication ID25553182
P5875ResearchGate publication ID268629379

P50authorRosa VillaQ42290970
Luis J. FernándezQ43271100
M.Carmen Martínez-BisbalQ57607915
Javier BerganzoQ58788711
P2093author name stringBernardo Celda
Vicent Esteve
Rosa Monge
P2860cites workGadolinium(III) Chelates as MRI Contrast Agents: Structure, Dynamics, and ApplicationsQ28212229
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Differentiation-on-a-chip: a microfluidic platform for long-term cell culture studies.Q40477600
Microfluidic arrays for logarithmically perfused embryonic stem cell cultureQ42804615
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Use of 1H and 31P HRMAS to evaluate the relationship between quantitative alterations in metabolite concentrations and tissue features in human brain tumour biopsies.Q47818014
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Nanophotonic lab-on-a-chip platforms including novel bimodal interferometers, microfluidics and grating couplers.Q51540306
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Towards the Development of Smart 3D “Gated Scaffolds” for On-Command DeliveryQ57401125
P433issue6
P921main subjectmicrofluidicsQ138845
P304page(s)064105
P577publication date2014-11-18
P1433published inBiomicrofluidicsQ3170210
P1476titleDevelopment of a three-dimensional cell culture system based on microfluidics for nuclear magnetic resonance and optical monitoring
P478volume8

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Q35107064An integrated platform enabling optogenetic illumination of Caenorhabditis elegans neurons and muscular force measurement in microstructured environmentscites workP2860

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