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BioPhotonics Monthly – Optogenetics Shapes Tissue to Reconstruct Epithelial Folding; FTIR Spectroscopy; and more. (12/26/2018)

BioPhotonics Monthly – Optogenetics Shapes Tissue to Reconstruct Epithelial Folding; FTIR Spectroscopy; and more.
Monthly newsletter focusing on how light-based technologies are being used in the life sciences.
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Wednesday, December 26, 2018
         
Monthly newsletter focusing on how light-based technologies are being used in the life sciences. Includes news, features and product developments in lasers, imaging, optics, spectroscopy, microscopy, lighting and more. Manage your Photonics Media membership at Photonics.com/subscribe.

 
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Hand-Held AO Ophthalmoscopy Enables Cellular-Level Imaging
Hand-Held AO Ophthalmoscopy Enables Cellular-Level Imaging
Advancements in adaptive optics (AO) are bringing researchers deeper into the human retina than ever before. Enabling the visualization of the living retina with cellular resolution, AO scanning laser ophthalmoscopy (AOSLO) has advanced the understanding of retinal structure in health and disease. Current-generation AOSLOs have a large footprint and are limited to imaging cooperative adult subjects.
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FTIR Spectroscopy: A Comprehensive Biological Investigator
FTIR Spectroscopy: A Comprehensive Biological Investigator
In contrast to many popular biophysical techniques — such as fluorescence spectroscopy, x-ray crystallography, or cryoelectron microscopy — samples in FTIR spectroscopy can be investigated label-free at room temperature in solution. Most structural methods yield only static snapshots of a dynamic reaction, whereas FTIR spectroscopy enables time-resolved investigation at near-native conditions, without labels that can severely interfere with the sample or the reaction.
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Optogenetics Shapes Tissue to Reconstruct Epithelial Folding
Optogenetics Shapes Tissue to Reconstruct Epithelial Folding
Researchers at the European Molecular Biology Laboratory (EMBL) used precise light-mediated control of protein activity in biological tissues to reconstruct epithelial folding in embryonic Drosophila tissues. Epithelial folding is a developmental process where cells move inward and fold into the embryo, eventually giving rise to internal tissues like muscles.
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Featured Products
 
 
Applied Scientific Instrumentation Inc. - Dual Light Sheet Microscopy Dual Light Sheet Microscopy

Applied Scientific Instrumentation Inc.
ASI’s Dual Selective Plane Illumination Microscopy for Cleared Tissue (ct-dSPIM) is one of many light sheet microscope configurations possible using our modular components. This flexible and easy-to-use Selective Plane Illumination Microscopy (SPIM) implementation allows for dual views of large samples.

 Visit Website       Request Info 

CoolLED Ltd. - pT-100 for Optimised Transmitted Light pT-100 for Optimised Transmitted Light

CoolLED Ltd.
Utilising the highly successful pE-100wht technology, we have further developed our LED solutions for Transmitted Light Applications. The pT-100 launches in December 2018 and will be available in 4 variants: 1. BROAD WHITE OUTPUT - pT-100-WHT (formerly known as pE-100wht)

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LightMachinery Inc. - Compact, Low Cost <30pm Resolution in the VIS and NIR Compact, Low Cost <30pm resolution in the VIS and NIR

LightMachinery Inc.
The Hornet Spectrometer achieves the resolution of large grating spectrometers at a fraction of their cost and size while covering a larger wavelength range. Simple PC based software allows the user to review spectra in real time and save or export for more analysis.

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Lumencor Inc. - It Just Keeps Getting Better.... It Just Keeps Getting Better....

Lumencor Inc.
Lumencor’s new SOLA SE nIR Light Engine with added Cy7 excitation.

  • Breadth: UV + visible + nIR light: 350–760 nm
  • Brightness: ~ 4.0 W optical output
  • Control: Light on/off and graduated intensities
  • Ease: No maintenance, no consumables, mercury–free

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In Case You Missed It
 
 
Miniaturization, Increased Resolution Drive Microscopy’s Future
Miniaturization, Increased Resolution Drive Microscopy’s Future
Improvements in finite conjugate microscopy objective systems allow optical testing systems to decrease form factor while maintaining and often increasing performance.
Read Article
       
 
Zebra Medical Announces Algorithm Approval
Health care imaging analytics developer Zebra Medical Vision has announced CE (European Conformity) regulatory approval of its newest algorithm to be included in its deep learning imaging analytics platform.
Read Article
       
 
Swept-Source OCT Platform Targets Enhanced Ophthalmic Imaging
OCTLIGHT ApS — a spinoff company from the Technical University of Denmark — has completed the product development phase of a new swept-source technology platform that could enhance ophthalmic OCT capabilities, particularly for retinal imaging and biometry.
Read Article
       
 
Webinars
 
 
Advances in Rapid 3D Imaging of Large Tissue Samples
Advances in Rapid 3D Imaging of Large Tissue Samples
Thu, Jan 24, 2019 1:00 PM - 2:00 PM EST
This webinar will discuss rapid 3D, multiplexed imaging of large tissue samples, based on recent advances in light-sheet fluorescence microscopy, multiplexed molecular labeling, and optical tissue clearing. It will provide an overview of the various approaches to imaging cleared tissue and organs, along with the advantages and drawbacks of the different methodologies. It is sponsored by Applied Scientific Instrumentation Inc. (ASI), PCO TECH, Inc., and Mad City Labs, Inc.
 Register Now 
 
Coming in January...
 
 
Features
Molecular Imaging, Wearable Sensors, Photodynamic Therapy, Surface-Enhanced Raman Spectroscopy (SERS)

Photonics Media is currently seeking technical feature articles on a variety of topics for publication in our magazine BioPhotonics. Please submit an informal 100-word abstract to Senior Editor Justine Murphy at [email protected] or use our online submission form www.photonics.com/submitfeature.aspx.

 
About BioPhotonics
 
 
BioPhotonics is the global resource for research, business and product news and information for the biophotonics community and the industry's only stand-alone print and digital magazine.

Visit Photonics.com/subscribe to manage your Photonics Media membership.

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