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   <media:description>Dragonfly is the most complete imaging solution ever! The game-changer in confocal microscopy - with the Andor Dragonfly you can image at an unrivalled, multi-modal combination of speed, sensitivity and confocality.</media:description>
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  <title>Endless Possibilities, One Solution.</title>
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  <title>Endless Possibilities, One Solution</title>
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   <name>Andor Technology</name>
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  <published>2015-12-08T09:00:28+00:00</published>
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   <media:description>Watch the awesome Kennan Lejeune solve the Andor Rubik’s Cube in only 6 seconds! Pick up your very own cube from booth 744 at ASCB in San Diego (December 13-16).</media:description>
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  <title>Zyla 4.2 PLUS sCMOS</title>
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   <name>Andor Technology</name>
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  <published>2015-10-29T16:39:06+00:00</published>
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   <media:title>Zyla 4.2 PLUS sCMOS</media:title>
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   <media:description>Andor’s NEW Zyla 4.2 PLUS sCMOS camera features the latest generation QE-boosted sCMOS sensor technology, alongside market-leading frame rate performance, greater than 99.8% quantitative linearity and new application specific modes.

Find out more at http://www.andor.com/zyla</media:description>
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  <title>Endless Possibilities, One Solution</title>
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  <author>
   <name>Andor Technology</name>
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  <published>2015-10-16T08:49:27+00:00</published>
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   <media:description>With our extensive portfolio, Andor provides the perfect solution for your life and physical science needs. Explore our ENDLESS POSSIBILITIES, find your ONE SOLUTION and watch more cool videos at www.andor.com/rubiks.

Visit us at Neuroscience 2015 in Chicago to pick up your own Andor Rubik's Cube!</media:description>
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  <author>
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  <published>2015-09-02T08:54:02+00:00</published>
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   <media:description>In this recent webinar Dr Bi-Chang Chen and Dr Alon Greenbaum discussed how their research has led to the development of cutting edge imaging tools for 3D live fluorescent microscopy and the unique properties that light-sheet microscopy has to offer for tissue clearing.

Dr Orla Hanrahan discussed the latest developments in sCMOS technology with an in-depth look at the Zyla 4.2 – the ideal detector for light sheet microscopy</media:description>
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  <title>Finding Neo</title>
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  <author>
   <name>Andor Technology</name>
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  <published>2015-07-01T08:08:52+00:00</published>
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   <media:title>Finding Neo</media:title>
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   <media:description>Your challenge is to find our Neo camera in a series of well known locations across the world. You will have 100 seconds to locate Neo, by touching the relevant square, in each of the five images.

Your score will be based on the time taken.

Good luck Finding Neo!</media:description>
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  <title>Single Molecule Imaging with Multiple Wavelengths</title>
  <link rel="alternate" href="https://www.youtube.com/watch?v=1RhAwttNjsA"/>
  <author>
   <name>Andor Technology</name>
   <uri>https://www.youtube.com/channel/UCJrKYQVqz9Lvgn3TFjRB3eA</uri>
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  <published>2015-06-01T12:56:35+00:00</published>
  <updated>2015-11-07T14:44:42+00:00</updated>
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   <media:title>Single Molecule Imaging with Multiple Wavelengths</media:title>
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   <media:description>The vast majority of fluorescence microscopy applications involve the use of more than one fluorescent probe, e.g. FRET, dual color imaging, co-localization studies, etc. The ability to detect multiple fluorescent targets simultaneously can enable visualization of complex functional and molecular processes in-vivo. In this webinar, we will present two different imaging techniques used to visualize fluorescent single molecules simultaneously.</media:description>
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 <entry>
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  <title>Irish Times Innovation Awards 2015 - Andor Technology</title>
  <link rel="alternate" href="https://www.youtube.com/watch?v=WZTl20ZiPek"/>
  <author>
   <name>Andor Technology</name>
   <uri>https://www.youtube.com/channel/UCJrKYQVqz9Lvgn3TFjRB3eA</uri>
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  <published>2015-05-08T12:32:35+00:00</published>
  <updated>2016-05-31T17:38:19+00:00</updated>
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   <media:title>Irish Times Innovation Awards 2015 - Andor Technology</media:title>
   <media:content url="https://www.youtube.com/v/WZTl20ZiPek?version=3" type="application/x-shockwave-flash" width="640" height="390"/>
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   <media:description>We were delighted to have been shortlisted for the Irish Times Innovation Award for the innovative development of the iXon Ultra 888 EMCCD camera.

Dr Orla Hanrahan explains some of the background to this new and innovative addition to the iXon camera family.</media:description>
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  <title>Microscopy Systems Photoshoot</title>
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  <author>
   <name>Andor Technology</name>
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  <published>2015-04-23T14:30:05+00:00</published>
  <updated>2016-02-26T17:21:39+00:00</updated>
  <media:group>
   <media:title>Microscopy Systems Photoshoot</media:title>
   <media:content url="https://www.youtube.com/v/0sPG6kzcNcg?version=3" type="application/x-shockwave-flash" width="640" height="390"/>
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   <media:description>Behind the scenes: Yesterday we photographed some new upcoming products for our microscopy portfolio in a full-day photoshoot ... here it is condensed into just 45 seconds!</media:description>
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 <entry>
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  <title>Micro-Spectroscopy - Enabling Research From Novel Nano-Devices To Clinical Diagnosis</title>
  <link rel="alternate" href="https://www.youtube.com/watch?v=FmsgNWsllMw"/>
  <author>
   <name>Andor Technology</name>
   <uri>https://www.youtube.com/channel/UCJrKYQVqz9Lvgn3TFjRB3eA</uri>
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  <published>2015-03-31T17:41:40+00:00</published>
  <updated>2016-10-27T05:30:16+00:00</updated>
  <media:group>
   <media:title>Micro-Spectroscopy - Enabling Research From Novel Nano-Devices To Clinical Diagnosis</media:title>
   <media:content url="https://www.youtube.com/v/FmsgNWsllMw?version=3" type="application/x-shockwave-flash" width="640" height="390"/>
   <media:thumbnail url="https://i3.ytimg.com/vi/FmsgNWsllMw/hqdefault.jpg" width="480" height="360"/>
   <media:description>Micro-spectroscopy is an ever developing modality for new and exciting research in the areas of nano-technology and bioscience.

This webinar discussed modular approaches to microspectroscopy and how it is being applied in a range of research areas such as micro-luminescent and plasmonic studies on nano-structures to its use in studies of live-cell and tissue analysis.

The modular approach to micro-spectroscopy is where individual components such as a spectrograph, microscope, detector (CCD, EMCCD, InGaAs), light sources and so on are taken and integrated into a single working system – usually carried out by the researchers themselves.

For more information view our micro-spectroscopy solutions at http://www.andor.com/microspectroscopy.</media:description>
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 <entry>
  <id>yt:video:d2z--6DI53o</id>
  <yt:videoId>d2z--6DI53o</yt:videoId>
  <yt:channelId>UCJrKYQVqz9Lvgn3TFjRB3eA</yt:channelId>
  <title>[Webinar] Multiscale Optical Imaging and Microscopy of Neurovascular Coupling in the Living Brain</title>
  <link rel="alternate" href="https://www.youtube.com/watch?v=d2z--6DI53o"/>
  <author>
   <name>Andor Technology</name>
   <uri>https://www.youtube.com/channel/UCJrKYQVqz9Lvgn3TFjRB3eA</uri>
  </author>
  <published>2015-02-11T11:14:45+00:00</published>
  <updated>2015-03-20T13:37:11+00:00</updated>
  <media:group>
   <media:title>[Webinar] Multiscale Optical Imaging and Microscopy of Neurovascular Coupling in the Living Brain</media:title>
   <media:content url="https://www.youtube.com/v/d2z--6DI53o?version=3" type="application/x-shockwave-flash" width="640" height="390"/>
   <media:thumbnail url="https://i1.ytimg.com/vi/d2z--6DI53o/hqdefault.jpg" width="480" height="360"/>
   <media:description>Speakers: Dr Elizabeth Hillman (Associate Professor of Biomedical Engineering, Laboratory of Functional Optical Imaging, Columbia University, New York City) and Dr Mark Nelson (Professor of Cardiovascular Medicine, University of Manchester)

During this webinar, Dr Elizabeth Hillman discussed her work which focuses on developing and using novel in-vivo optical imaging and microscopy strategies to better understand the cellular basis of neurovascular coupling. Some of the newest optical techniques include simultaneous wide-field imaging of GCaMP dynamics, blood flow and oxygenation in the “awake” mouse brain, and a new high-speed volumetric microscopy technique based on light-sheet illumination which can image the intact rodent brain as well as freely behaving small organism’s in-vivo.

The behaviour of single channels has typically been examined by measuring currents in isolated cells using the patch-clamp technique.  Dr Nelson discussed how his lab have developed approaches for measuring calcium influx through single TRPV4 (transient receptor potential vanilloid 4) channels in native endothelium of intact arteries, referring to these unitary events as “sparklets”.</media:description>
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 <entry>
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  <yt:videoId>7Gl3oHWm02Q</yt:videoId>
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  <title>The Comet Assay - A Versatile and Sensitive Technique for the Assessment of DNA Damage and Repair</title>
  <link rel="alternate" href="https://www.youtube.com/watch?v=7Gl3oHWm02Q"/>
  <author>
   <name>Andor Technology</name>
   <uri>https://www.youtube.com/channel/UCJrKYQVqz9Lvgn3TFjRB3eA</uri>
  </author>
  <published>2015-01-13T14:09:51+00:00</published>
  <updated>2017-05-07T14:42:23+00:00</updated>
  <media:group>
   <media:title>The Comet Assay - A Versatile and Sensitive Technique for the Assessment of DNA Damage and Repair</media:title>
   <media:content url="https://www.youtube.com/v/7Gl3oHWm02Q?version=3" type="application/x-shockwave-flash" width="640" height="390"/>
   <media:thumbnail url="https://i4.ytimg.com/vi/7Gl3oHWm02Q/hqdefault.jpg" width="480" height="360"/>
   <media:description>The Comet Assay is a powerful tool for the assessment of DNA integrity with applications as diverse as cancer research, safety testing of pharmaceuticals and chemicals, environmental and occupational studies, dietary and even fertility research.

As the assay can be adapted to virtually any cell-type from almost any organism, study designs can be created to characterize DNA damage and repair as well as DNA integrity and applied to both the impact of treatments and exposures as well as to endogenous factors. In this webinar two well-known scientists in this field describe recent research applications the comet assay.</media:description>
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