S Ingebrandt
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Explore the profile of S Ingebrandt including associated specialties, affiliations and a list of published articles.
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Articles
23
Citations
163
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Recent Articles
1.
Rincon Montes V, Gehlen J, Ingebrandt S, Mokwa W, Walter P, Muller F, et al.
Sci Rep
. 2020 Nov;
10(1):19836.
PMID: 33199768
The efforts to improve the treatment efficacy in blind patients with retinal degenerative diseases would greatly benefit from retinal activity feedback, which is lacking in current retinal implants. While the...
2.
Tzouvadaki I, Lu X, De Micheli G, Ingebrandt S, Carrara S
Annu Int Conf IEEE Eng Med Biol Soc
. 2017 Mar;
2016:295-298.
PMID: 28268335
Nanowire based platforms are widely reported for sensing applications and for their potential in the bio-detection field. In the present work, memristive nanowire devices are implemented for label-free sensing in...
3.
Susloparova A, Koppenhofer D, Law J, Vu X, Ingebrandt S
Lab Chip
. 2014 Nov;
15(3):668-79.
PMID: 25412224
We introduce a novel technique of impedimetric sensing of cellular adhesion, which might have the potential to supplement the well-known technique of Electrical Cell-substrate Impedance Sensing (ECIS) in cell culture...
4.
Koppenhofer D, Kettenbaum F, Susloparova A, Law J, Vu X, Schwab T, et al.
Biosens Bioelectron
. 2014 Sep;
67:490-6.
PMID: 25241122
Dementia is one of the big medical challenges of our time with Alzheimer's, Huntington's and Parkinson's disease among its most common forms. In year 2000, 4.5 million people were diagnosed...
5.
Susloparova A, Koppenhofer D, Vu X, Weil M, Ingebrandt S
Biosens Bioelectron
. 2012 Jul;
40(1):50-6.
PMID: 22795530
In this study, impedance spectroscopy measurements of silicon-based open-gate field-effect transistor (FET) devices were utilized to study the adhesion status of cancer cells at a single cell level. We developed...
6.
Koppenhofer D, Susloparova A, Docter D, Stauber R, Ingebrandt S
Biosens Bioelectron
. 2012 Jul;
40(1):89-95.
PMID: 22794933
In this work we propose the use of field-effect transistors (FETs) to examine the reaction of individual tumor cells to treatment with cell death inducing nanoparticles for future use in...
7.
Law J, Yeung C, Wan S, Ingebrandt S, Lau H, Rudd J, et al.
Biochim Biophys Acta
. 2011 Jun;
1810(9):867-74.
PMID: 21635937
Background: The microelectrode array (MEA) was used to investigate the pharmacological relevance of chloride (Cl-) ions in antigen-dependent mast cell activation and the inhibitory effect of disodium cromoglycate (DSCG) on...
8.
van Grinsven B, Vanden Bon N, Grieten L, Murib M, Janssens S, Haenen K, et al.
Lab Chip
. 2011 Mar;
11(9):1656-63.
PMID: 21448492
In this article, we report on the electronic monitoring of DNA denaturation by NaOH using electrochemical impedance spectroscopy in combination with fluorescence imaging as a reference technique. The probe DNA...
9.
Abouzar M, Poghossian A, Pedraza A, Gandhi D, Ingebrandt S, Moritz W, et al.
Biosens Bioelectron
. 2011 Jan;
26(6):3023-8.
PMID: 21193303
An array of individually addressable nanoplate field-effect capacitive (bio-)chemical sensors based on an SOI (silicon-on-insulator) structure has been developed. The isolation of the individual capacitors was achieved by forming a...
10.
Sommerhage F, Baumann A, Wrobel G, Ingebrandt S, Offenhausser A
Biosens Bioelectron
. 2010 Jul;
26(1):155-61.
PMID: 20619629
There is a continuously growing scientific and technological interest to develop and improve the application of artificial sensors. Biological components which are capable to transduce neutral signals into specific, robust...