optischen mikroskopie – English Translation – Keybot Dictionary

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  3 Hits www.labvolution.de  
Fluoreszenzstandards zur Qualitätskontrolle in der optischen Mikroskopie
Fluorescence Standards as Quality Control in Optical Microscopy
  www.wom.ch  
Da sowohl die Wellenlänge als auch die Wechselwirkung mit Materie für sichtbares Licht und Röntgenstrahlung völlig unterschiedlich sind, ist die experimentelle Umsetzung dieses Verfahrens für Röntgenlicht deutlich herausfordernder als in der optischen Mikroskopie.
Due to the fact that both the wavelength and the interaction with matter are inherently different for visible light and X-rays, the experimental implementation is much more challenging for X-rays than in optical microscopy. Pfeiffer’s solution to the problem is an imaging interferometer using three diffraction gratings - a profound technological hurdle, considering the short wavelengths of X-rays compared to visible light and the large image areas required for medical imaging.
  www.fractal.is.tohoku.ac.jp  
Um Auswirkungen von Reinigungsprozessen auf Anti-Reflexbeschichtungen zu bewerten, wurden Oberflächen nach beschleunigten Reinigungs- und Abriebtests (Kooperation mit PI Berlin) auf mikrostruktureller Ebene untersucht. Hierfür wurden am Fraunhofer CSP die Methoden der optischen Mikroskopie und die Rasterelektronenmikroskopie (REM) verwendet.
In order to assess the effects of cleaning processes on anti-reflection coatings, after accelerated cleaning and abrasion tests surfaces were examined at the microstructural level (cooperation with PI Berlin). For this purpose, the methods of optical microscopy and scanning electron microscopy (SEM) were used at Fraunhofer CSP. The results show the interrelationship between microstructural changes of the glass surfaces and macroscopic reflection measurements. Furthermore, it was shown that the abrasion tests can represent the damage patterns of the cleaning experiments with a significantly lower number of test cycles.
  www.badajozcapitalenlafrontera.com  
Da sowohl die Wellenlänge als auch die Wechselwirkung mit Materie für sichtbares Licht und Röntgenstrahlung völlig unterschiedlich sind, ist die experimentelle Umsetzung dieses Verfahrens für Röntgenlicht deutlich herausfordernder als in der optischen Mikroskopie.
Due to the fact that both the wavelength and the interaction with matter are inherently different for visible light and X-rays, the experimental implementation is much more challenging for X-rays than in optical microscopy. Pfeiffer’s solution to the problem is an imaging interferometer using three diffraction gratings - a profound technological hurdle, considering the short wavelengths of X-rays compared to visible light and the large image areas required for medical imaging.
  www.imtek.uni-freiburg.de  
Zunächst entwickelte er als Postdoc ein Kernspin-kompatibles optisches Mikroskop zur simultanen Kernspin- und optischen Mikroskopie von biologischen Strukturen das in Kernspintomographen integriert werden kann.
In 2011, he decided to apply his research “to reality” and started working "with the hands in the lab" at IMTEK in 2011. Initially, he was working as a postdoc on an MR-compatible miniature microscope based on adaptive optics that can be integrated into an MR scanner to provide concurrent MR and optical microscopy. Driven by his geometric and analytical instincts as a "practial theorist", he also developed new piezo actuation principles and active glass membrane lenses. This research resulted in two patent applications and was recognized with the “Innovation in Optomechatronics Research Award”.
  2 Hits wias-berlin.de  
Neben altbewährten Messverfahren wie der Rasterkraft- (AFM) und der Rasterelektronenmikroskopie (SEM) sind scatterometrische Verfahren vor allem deshalb interessant, weil sie einen schnellen und das Messobjekt nicht zerstörenden Zugriff versprechen. Im Gegensatz zur optischen Mikroskopie wird bei der Scatterometrie kein getreues Abbild des Gegenstandes erzeugt.
The production of computer chips with increasingly small details requires more and more accurate measurement techniques. In particular, the development and evaluation of photolithographic manufacturing methods necessitate a high precision measurement of special test geometries, which can be generated on the surface of lithographic masks and wafers. Besides well-established measurement techniques including atomic force microscopy (AFM) and scanning electron microscopy (SEM), the fast and non-destructive scatterometric methods are promising. In contrast to the optical microscopy, scatterometry does not produce a true image of the target. Instead, a scattered far-field pattern is measured, from which the geometry data is extracted by using a mathematical algorithm and a model assumption for the geometry. In other words, an inverse problem for the reconstruction of the geometry data is to be solved.
  www.bio-pro.de  
Mit dem Nanoskop Vertico-SMI wollen Professor Christoph Cremer und sein Team die molekularen Geheimnisse der Zelle entschlüsseln. Cremer durchbricht damit bereits das zweite Mal die Auflösungsgrenzen der optischen Mikroskopie.
Sleep-related breathing problems can, in the long term, even lead to cardiac infarction or stroke. A new technology from TNI medical AG puts a stop to the discomforts of a mask by giving people a seminal solution.
  www.mpg.de  
Die Forschung Vahid Sandoghdars konzentriert sich auf die Wechselwirkung von Licht und Materie im Nanometerbereich und umfasst Gebiete, die von der Quantenoptik, Plasmonik und hochauflösenden optischen Mikroskopie bis hin zur Physik der kondensierten Materie und zur Biophysik reichen.
Born on April 29, 1966 in Tehran (Iran). Bachelor of Science in Physics from the University of California in Davis (1987), Ph.D. in Physics from Yale University (1993), Postdoctoral Fellow at École Normale Supérieure in Paris. Head of the Nano-Optics group und habilitation in Physics at University Konstanz. Professorship at Eidgenössischen Technischen Hochschule (ETH) Zurich (2001-2011). Founder of the Network of Optical Sciences (optETH) and the Zurich Center for Imaging Science and Technology (CIMST) at ETH. Alexander von Humbold Professorship at Friedrich-Alexander-Universität Erlangen-Nürnberg. Recipient of an Advanced ERC Grant. Director at the Max Planck Institute for the Science of Light in Erlangen. Vahid Sandoghdar´s research focuses on the interaction of light and matter at the nanometer scale and covers fields ranging from quantum optics, plasmonics, high-resolution optical microscopy, and condensed matter physics to biophysics.
  www.neuro.mpg.de  
HFSP Project Grant zum Verbessern der optischen Mikroskopie [mehr]
The new method could help to identify genes and their role in neuropsychiatric disorders [more]