Paper
7 November 2018 3D label free bio-transfer standards
Miikka Järvinen, Tuomas Vainikka , Tapani Viitala, Carlos Bermudez, Roger Artigas, Anton Nolvi, Pol Martinez, Niklas Sandler, Edward Hæggström, Ivan Kassamakov
Author Affiliations +
Abstract
Two kinds of 3D label free Bio-Transfer-Standards (BTS) have been further developed at the University of Helsinki (UH). The first one, NanoRuler, is a staircase BTS featuring eight fatty acid bilayers which allows vertical calibration in the range of 5 to 40 nm. The second one, NanoStar, is a V-shaped BTS featuring two 5 nm tall bilayers that overlap at 10° angle. This standard enables the determination of the Instrument Transfer Function (ITF). A stability test was conducted on the BTSs, during which the standards were stored in laboratory conditions, and were profiled each week. Profiling was done using a custom-built Scanning White Light Interferometer (SWLI). The stability of NanoStar was ± 0.3 nm, and of NanoRuler ± 0.5 nm to ± 2.5 nm. The BTSs maintained their specified properties for at least six months and therefore allow vertical calibration and ITF determination. In addition, changes in surface morphology of one NanoRuler subjected to water immersion are presented. This paper reports intermediate findings during an ongoing stability test that will run for 24 months.
© (2018) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Miikka Järvinen, Tuomas Vainikka , Tapani Viitala, Carlos Bermudez, Roger Artigas, Anton Nolvi, Pol Martinez, Niklas Sandler, Edward Hæggström, and Ivan Kassamakov "3D label free bio-transfer standards", Proc. SPIE 10819, Optical Metrology and Inspection for Industrial Applications V, 108190D (7 November 2018); https://doi.org/10.1117/12.2501258
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KEYWORDS
Calibration

Standards development

3D metrology

Solids

3D image processing

Neodymium

3D imaging standards

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