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Search for "image processing" in Full Text gives 77 result(s) in Beilstein Journal of Nanotechnology.

Possibilities and limitations of advanced transmission electron microscopy for carbon-based nanomaterials

  • Xiaoxing Ke,
  • Carla Bittencourt and
  • Gustaaf Van Tendeloo

Beilstein J. Nanotechnol. 2015, 6, 1541–1557, doi:10.3762/bjnano.6.158

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Published 16 Jul 2015

Transformations of PTCDA structures on rutile TiO2 induced by thermal annealing and intermolecular forces

  • Szymon Godlewski,
  • Jakub S. Prauzner-Bechcicki,
  • Thilo Glatzel,
  • Ernst Meyer and
  • Marek Szymoński

Beilstein J. Nanotechnol. 2015, 6, 1498–1507, doi:10.3762/bjnano.6.155

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  • measurements, the sample was cooled to approximately 100 K using a flow cryostat, and the STM imaging was performed in a constant current mode at positive bias voltages (empty state imaging) with etched tungsten tips used as probes. For image processing and STM data analysis, WSxM software was used [42
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Published 10 Jul 2015

Peptide-equipped tobacco mosaic virus templates for selective and controllable biomineral deposition

  • Klara Altintoprak,
  • Axel Seidenstücker,
  • Alexander Welle,
  • Sabine Eiben,
  • Petia Atanasova,
  • Nina Stitz,
  • Alfred Plettl,
  • Joachim Bill,
  • Hartmut Gliemann,
  • Holger Jeske,
  • Dirk Rothenstein,
  • Fania Geiger and
  • Christina Wege

Beilstein J. Nanotechnol. 2015, 6, 1399–1412, doi:10.3762/bjnano.6.145

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  • -contrast TMV–KD10 cores surrounded by electron-dense sheaths were measured in digital TEM images by help of image processing software from the fifth day onwards. This revealed an increase of layer thickness with progressing time (Figure 5). After ten days of reaction time, the TMV–silica hybrids exhibited
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Published 25 Jun 2015

Scalable, high performance, enzymatic cathodes based on nanoimprint lithography

  • Dmitry Pankratov,
  • Richard Sundberg,
  • Javier Sotres,
  • Dmitry B. Suyatin,
  • Ivan Maximov,
  • Sergey Shleev and
  • Lars Montelius

Beilstein J. Nanotechnol. 2015, 6, 1377–1384, doi:10.3762/bjnano.6.142

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  • employed in all measurements. The analysis and processing of the AFM images was performed with the WSxM software package [28]. Image processing consisted of plane subtraction, equalisation, and 3D representation. The electrochemical measurements of the Au electrodes were performed in 0.5 M H2SO4 to clean
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Published 22 Jun 2015

Scanning reflection ion microscopy in a helium ion microscope

  • Yuri V. Petrov and
  • Oleg F. Vyvenko

Beilstein J. Nanotechnol. 2015, 6, 1125–1137, doi:10.3762/bjnano.6.114

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  • SEs excited immediately near the sample could not reach the detector because of sample surface charging. The step of a minimum height in the field of view of the image in Figure 6 is marked with arrows. The value of the height, as retrieved from the image processing, was found to be 7 ± 2 nm. The
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Published 07 May 2015

Observing the morphology of single-layered embedded silicon nanocrystals by using temperature-stable TEM membranes

  • Sebastian Gutsch,
  • Daniel Hiller,
  • Jan Laube,
  • Margit Zacharias and
  • Christian Kübel

Beilstein J. Nanotechnol. 2015, 6, 964–970, doi:10.3762/bjnano.6.99

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  • for a fixed layer stoichiometry of SiO0.93. A transition from irregular and large towards spherical and smaller precipitates is clearly observed. Owing to the excellent contrast, the images can be evaluated by image processing software such as ImageJ [45] in order to analyze the particle distribution
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Published 15 Apr 2015

A scanning probe microscope for magnetoresistive cantilevers utilizing a nested scanner design for large-area scans

  • Tobias Meier,
  • Alexander Förste,
  • Ali Tavassolizadeh,
  • Karsten Rott,
  • Dirk Meyners,
  • Roland Gröger,
  • Günter Reiss,
  • Eckhard Quandt,
  • Thomas Schimmel and
  • Hendrik Hölscher

Beilstein J. Nanotechnol. 2015, 6, 451–461, doi:10.3762/bjnano.6.46

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  • very low thermal drift of the setup, no further image processing was necessary. The choice of color table allows for a clear distinction of the different layers of which the circuit is comprised. This shows that also the height scale measured by the AFM is constant over the whole large scan area, a key
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Published 13 Feb 2015

Effect of silver nanoparticles on human mesenchymal stem cell differentiation

  • Christina Sengstock,
  • Jörg Diendorf,
  • Matthias Epple,
  • Thomas A. Schildhauer and
  • Manfred Köller

Beilstein J. Nanotechnol. 2014, 5, 2058–2069, doi:10.3762/bjnano.5.214

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  • adipogenic-differentiated hMSCs (B). After 14 d of incubation, viable cells were stained with calcein-AM (green fluorescence) and quantified by using digital image processing (phase analysis). The data are expressed as the mean ± SD (n = 3 independent experiments) given as the percentage of viable cells
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Published 10 Nov 2014

PVP-coated, negatively charged silver nanoparticles: A multi-center study of their physicochemical characteristics, cell culture and in vivo experiments

  • Sebastian Ahlberg,
  • Alexandra Antonopulos,
  • Jörg Diendorf,
  • Ralf Dringen,
  • Matthias Epple,
  • Rebekka Flöck,
  • Wolfgang Goedecke,
  • Christina Graf,
  • Nadine Haberl,
  • Jens Helmlinger,
  • Fabian Herzog,
  • Frederike Heuer,
  • Stephanie Hirn,
  • Christian Johannes,
  • Stefanie Kittler,
  • Manfred Köller,
  • Katrin Korn,
  • Wolfgang G. Kreyling,
  • Fritz Krombach,
  • Jürgen Lademann,
  • Kateryna Loza,
  • Eva M. Luther,
  • Marcelina Malissek,
  • Martina C. Meinke,
  • Daniel Nordmeyer,
  • Anne Pailliart,
  • Jörg Raabe,
  • Fiorenza Rancan,
  • Barbara Rothen-Rutishauser,
  • Eckart Rühl,
  • Carsten Schleh,
  • Andreas Seibel,
  • Christina Sengstock,
  • Lennart Treuel,
  • Annika Vogt,
  • Katrin Weber and
  • Reinhard Zellner

Beilstein J. Nanotechnol. 2014, 5, 1944–1965, doi:10.3762/bjnano.5.205

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Published 03 Nov 2014

Dry friction of microstructured polymer surfaces inspired by snake skin

  • Martina J. Baum,
  • Lars Heepe,
  • Elena Fadeeva and
  • Stanislav N. Gorb

Beilstein J. Nanotechnol. 2014, 5, 1091–1103, doi:10.3762/bjnano.5.122

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  • Instruments) was used to obtain AFM images and NanoWizard® image processing software 3.3.25 was applied to extract 3D surface profiles. The variables of microstructured surfaces were measured from digital images by means of the image analysis software SigmaScanPro 5.0 (SPSS Inc., Chicago, USA). Frictional
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Published 21 Jul 2014

Insect attachment on crystalline bioinspired wax surfaces formed by alkanes of varying chain lengths

  • Elena Gorb,
  • Sandro Böhm,
  • Nadine Jacky,
  • Louis-Philippe Maier,
  • Kirstin Dening,
  • Sasha Pechook,
  • Boaz Pokroy and
  • Stanislav Gorb

Beilstein J. Nanotechnol. 2014, 5, 1031–1041, doi:10.3762/bjnano.5.116

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  • contact mode with a supersharp silicon non-contact cantilever (SSS-NCH, Nanoworld, Neuchâtel, Switzerland). The scanned area was comparable with the size of setal tips in adhesive pads of the beetle C. septempunctata [52]. The images obtained were processed with the scanning probe image processing
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Published 14 Jul 2014

Scale effects of nanomechanical properties and deformation behavior of Au nanoparticle and thin film using depth sensing nanoindentation

  • Dave Maharaj and
  • Bharat Bhushan

Beilstein J. Nanotechnol. 2014, 5, 822–836, doi:10.3762/bjnano.5.94

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  • grains highlighted by the dashed lines. The average grain diameters were found by first importing the TEM images into an image processing and analysis software (ImageJ, National Institute of Health, Bethesda, MD). Second, the outlines of the grains were traced and the enclosed area was determined. The
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Published 11 Jun 2014

Measuring air layer volumes retained by submerged floating-ferns Salvinia and biomimetic superhydrophobic surfaces

  • Matthias J. Mayser,
  • Holger F. Bohn,
  • Meike Reker and
  • Wilhelm Barthlott

Beilstein J. Nanotechnol. 2014, 5, 812–821, doi:10.3762/bjnano.5.93

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  • was performed on a Cambridge Stereoscan 200 SEM (Zeiss GmbH, Oberkochen, Germany) with digital image processing unit (DISS 5, Point electronic GmbH, Halle, Germany) at acceleration voltages of 15 kV for the replicas and 10 kV for the plant material. The leaf surface area was acquired after the volume
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Published 10 Jun 2014

Injection of ligand-free gold and silver nanoparticles into murine embryos does not impact pre-implantation development

  • Ulrike Taylor,
  • Wiebke Garrels,
  • Annette Barchanski,
  • Svea Peterson,
  • Laszlo Sajti,
  • Andrea Lucas-Hahn,
  • Lisa Gamrad,
  • Ulrich Baulain,
  • Sabine Klein,
  • Wilfried A. Kues,
  • Stephan Barcikowski and
  • Detlef Rath

Beilstein J. Nanotechnol. 2014, 5, 677–688, doi:10.3762/bjnano.5.80

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  • silver nanoparticles. The mean primary particle diameter was determined by lognormal fitting of a particle number weighted diameter histogram derived from image processing of transmission electron microscopy (TEM) pictures and resulted in 11 nm for AuNP and 21 nm for AgNP. Number frequency distribution
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Published 21 May 2014

Friction behavior of a microstructured polymer surface inspired by snake skin

  • Martina J. Baum,
  • Lars Heepe and
  • Stanislav N. Gorb

Beilstein J. Nanotechnol. 2014, 5, 83–97, doi:10.3762/bjnano.5.8

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  • intermittent contact mode cantilever (c = 50 Nm−1, NST-NCHF, Nascatec GmbH, Stuttgart, Germany), at ambient conditions (room temperature 24 °C, relative humidity 41%). NanoWizard® SPM software 3.3.23 (JPK Instruments) was used to obtain AFM images and NanoWizard® image processing software 3.3.25 was applied to
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Published 24 Jan 2014

Apertureless scanning near-field optical microscopy of sparsely labeled tobacco mosaic viruses and the intermediate filament desmin

  • Alexander Harder,
  • Mareike Dieding,
  • Volker Walhorn,
  • Sven Degenhard,
  • Andreas Brodehl,
  • Christina Wege,
  • Hendrik Milting and
  • Dario Anselmetti

Beilstein J. Nanotechnol. 2013, 4, 510–516, doi:10.3762/bjnano.4.60

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  • are intrinsically aligned. Consequently, image processing is very easy and the data can be superimposed without further adjustment. Both, the AFM and the fluorescence part of the setup are highly versatile: For example the extension to dual color fluorescence is possible without major modifications
  • . Generally, the setup also allows imaging in liquid media, which makes it predestined for biological samples. Furthermore, the intermittent fluorophore excitation reduces photo-bleaching and thus extends imaging time. Experimental Image processing The unprocessed near-field image contains a significant
  • considerably reduced far-field artifacts. Of note, the low-pass filter primarily smoothes individual “noisy pixels” and hardly alters the shape or the width of the fluorescence peaks. The resulting high resolution fluorescence data are then superimposed on the topography. All image processing is done with the
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Published 11 Sep 2013

Femtosecond-resolved ablation dynamics of Si in the near field of a small dielectric particle

  • Paul Kühler,
  • Daniel Puerto,
  • Mario Mosbacher,
  • Paul Leiderer,
  • Francisco Javier Garcia de Abajo,
  • Jan Siegel and
  • Javier Solis

Beilstein J. Nanotechnol. 2013, 4, 501–509, doi:10.3762/bjnano.4.59

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  • under the same conditions are similarly acquired in particle-free regions for comparison purposes. Image processing During the image acquisition process, three different images are acquired for a given delay. A first image, blocking the pump beam, is used for normalization purposes. This enables
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Published 04 Sep 2013

Guided immobilisation of single gold nanoparticles by chemical electron beam lithography

  • Patrick A. Schaal and
  • Ulrich Simon

Beilstein J. Nanotechnol. 2013, 4, 336–344, doi:10.3762/bjnano.4.39

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  • and force constants between 10 N·m−1 and 130 N·m−1. Image processing was performed by using the open-source software gwyddion 2.28 (http://gwyddion.net) [27]. In general, measurements were post-processed with the commands “Level data by mean plane subtraction”, “Correct lines by matching height median
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Published 31 May 2013

Large-scale analysis of high-speed atomic force microscopy data sets using adaptive image processing

  • Blake W. Erickson,
  • Séverine Coquoz,
  • Jonathan D. Adams,
  • Daniel J. Burns and
  • Georg E. Fantner

Beilstein J. Nanotechnol. 2012, 3, 747–758, doi:10.3762/bjnano.3.84

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  • applicable to all channels of AFM data, and can process images in seconds. Keywords: adaptive algorithm; artifact correction; atomic force microscopy; high-speed atomic force microscope; image processing; Introduction Atomic force microscopes (AFMs) are a useful tool for investigating nanoscale surfaces
  • . This amount of data creates a significant increase in the amount of image processing needed to extract the true sample topography, which can no longer be performed by the user on an image-by-image basis [15][17]. In HS-AFM, there is a real need for an automated processing routine that optimizes the
  • image processing for each image without losing essential topographic information. One of the most important considerations in automating processing is that it must not introduce processing artifacts, and it must maintain coherence between images in a dataset to allow for rapid comparisons between frames
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Published 13 Nov 2012

Paper modified with ZnO nanorods – antimicrobial studies

  • Mayuree Jaisai,
  • Sunandan Baruah and
  • Joydeep Dutta

Beilstein J. Nanotechnol. 2012, 3, 684–691, doi:10.3762/bjnano.3.78

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  • then removed and washed with deionized water several times and then dried at 70 °C for 6 h. Scanning Electron Microscopy (SEM) was carried out on a JEOL JSM-6301F SEM at an operating voltage of 20 kV. Quantitative measurements on SEM micrographs were carried out by using Scion image-processing software
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Published 11 Oct 2012

Spontaneous dissociation of Co2(CO)8 and autocatalytic growth of Co on SiO2: A combined experimental and theoretical investigation

  • Kaliappan Muthukumar,
  • Harald O. Jeschke,
  • Roser Valentí,
  • Evgeniya Begun,
  • Johannes Schwenk,
  • Fabrizio Porrati and
  • Michael Huth

Beilstein J. Nanotechnol. 2012, 3, 546–555, doi:10.3762/bjnano.3.63

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  • needle. The dashed line represents the rightmost substrate edge. The deposit profile to the right of the dashed line was complemented by image processing from the left side for ease of comparison. (b) Overlay of the calculated precursor flux profile from [34] (contour lines) with the isotropically scaled
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Published 25 Jul 2012

A measurement of the hysteresis loop in force-spectroscopy curves using a tuning-fork atomic force microscope

  • Manfred Lange,
  • Dennis van Vörden and
  • Rolf Möller

Beilstein J. Nanotechnol. 2012, 3, 207–212, doi:10.3762/bjnano.3.23

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  • oscillation a phase-locked-loop system supplied by Specs Zürich (Nanonis) is used. Scanning control and data acquisition are performed by the open-source software GXSM [23] combined with home-built electronics. For image processing the free software WSXM [24] is used. Sample preparation was performed as
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Published 08 Mar 2012

The atomic force microscope as a mechano–electrochemical pen

  • Christian Obermair,
  • Andreas Wagner and
  • Thomas Schimmel

Beilstein J. Nanotechnol. 2011, 2, 659–664, doi:10.3762/bjnano.2.70

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  • electrochemical potential. All AFM images were taken in situ under the electrolyte within the electrochemical cell. All images represent original raw data without filtering or image processing. Electrochemical cell and controller: The experiments were performed in an electrochemical cell approximately 20 mm in
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Published 04 Oct 2011

Hierarchically structured superhydrophobic flowers with low hysteresis of the wild pansy (Viola tricolor) – new design principles for biomimetic materials

  • Anna J. Schulte,
  • Damian M. Droste,
  • Kerstin Koch and
  • Wilhelm Barthlott

Beilstein J. Nanotechnol. 2011, 2, 228–236, doi:10.3762/bjnano.2.27

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  • has a static CA of 106°. Surface characterization The surface structures of the biological samples and their replicas were investigated by SEM. Images were recorded using a CAMBRIDGE Stereoscan 200 SEM (Zeiss GmbH, Oberkochen, Germany), a digital image processing system (DISS 5, Version 5.4.17.0
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Published 04 May 2011

Functional morphology, biomechanics and biomimetic potential of stem–branch connections in Dracaena reflexa and Freycinetia insignis

  • Tom Masselter,
  • Sandra Eckert and
  • Thomas Speck

Beilstein J. Nanotechnol. 2011, 2, 173–185, doi:10.3762/bjnano.2.21

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  • Fink) for competent help in microtome cutting and image processing. We gratefully acknowledge the German Research Foundation (DFG) for funding the project on branched biomimetic structures within the Priority Programme SPP 1420. We would also like to thank Markus Milwich from the ITV Denkendorf for his
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Published 24 Mar 2011
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