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Schuler, B. et al. Adsorption geometry determination of single molecules by atomic force microscopy.
Vertical scanning interferometry (VSI) is a novel technique that allows for the expedient morphological determination of single cells.
Among these, localization microscopy relies on the position determination of single emitters with nanometer accuracy, which allows the subsequent reconstruction of an image of the target structure.
A method for determination of single solute adsorption isotherms based on the analysis of the nonlinear frequency response (FR) of a chromatographic column is developed theoretically.
Determination of single unit spikes from multiunit spike trains plays a critical role in neurophysiological coding studies which require information about the precise timing of events underlying the neural codes that are the basis of behavior.
Here we illustrate a affordable approach to determine the CNV genotype using matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) and based on the quantitative determination of single nucleotide duplicated mismatches (SNDM) mapping the CNV region and a paralogue genomic region that is used as a two-copy reference.
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Lock, M., Alvira, M.R., Chen, S.J. & Wilson, J.M. Absolute determination of single-stranded and self-complementary adeno-associated viral vector genome titers by droplet digital PCR.
These measurements have been extended to explore temperature-dependent kinetics for the 21 bp construct, which permit determination of single-molecule activation enthalpies and entropies for DNA duplex dissociation.
Recent technical advances in the genome-wide determination of single-base DNA-methylation enabled epigenome-wide association studies (EWASs).
Procedures for isolation of RNA, reverse transcription, determination of single-stranded cDNA content and PCR have been described previously [ 40].
Extrapolation of an equation to zero concentration and ionic strength enables determination of single-ion activity coefficients.
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