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Join us for a FREE webinar: "Advances in Rapid 3D Imaging of Large Tissue Samples" (1/10/2019)

Join us for a FREE webinar: "Advances in Rapid 3D Imaging of Large Tissue Samples"
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 cle
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Thursday, January 10, 2019
        
 

Join us for a FREE Webinar

Advances in Rapid 3D Imaging of Large Tissue Samples

Thursday, January 24, 2019 1:00 PM - 2:00 PM EST

Register Now

Sponsored by

   
 
About This Webinar
 
 
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.

Presenter Doug Shepherd will begin with the history of imaging within thick samples, optical tissue clearing, and light-sheet fluorescence microscopy. He will discuss the benefits and difficulties of using light-sheet microscopy for large samples, such as rapid 3D imaging and optical aberrations, respectively. He will describe multiple solutions to the rapid imaging of large samples, developed by his group and others.

New imaging methodologies that automatically adapt the exciting light-sheet and detection optics pathway to the unique optical properties of each cleared sample are critical to achieving deep and clear imaging. Pairing remote focusing or optical defocus with machine vision is one solution that has recently shown promise to providing deep and clear imaging. The advantages and disadvantages of various implementations of a sample adapting light-sheet will be discussed, with suggestions provided on matching sample type and biological question with specific light-sheet fluorescence microscopy implementations.

About the presenter:
Douglas Shepherd, Ph.D., is an assistant research professor at the University of Colorado Anschutz Medical campus. He received a B.S. in physics from the University of California, Santa Barbara in 2003 and a Ph.D. in physics from Colorado State University in 2011. From 2011 to 2013, he held a postdoctoral fellowship at the Center for Integrated Nanotechnologies and Center for Nonlinear Studies at Los Alamos National Laboratory. He heads the Shepherd Laboratory, which focuses on developing and applying new optical tools to understand the role that vascular progenitor cellular heterogeneity plays in the developing brain and lung.

Who should attend:
Scientists, educators, investigators, students, lab managers, and others who are involved in the development or use of microscopy, RNA labeling, developmental biology, or tissue clearing. Optical engineers and designers involved in the development of optical tools for microscopy and 3D and multiplexed imaging. The webinar will be applicable to multidisciplinary projects.

This webinar is sponsored by Applied Scientific Instrumentation Inc. (ASI), PCO-TECH Inc., and Mad City Labs, Inc.
 
Mark Your Calendar
 
 

Date: Thursday, January 24, 2019

Time: 1:00 PM - 2:00 PM EST

Space is limited. Reserve your Webinar seat now at: https://attendee.gotowebinar.com/register/6518291253418455811

After registering you will receive a confirmation email containing information about joining the Webinar.
 

SYSTEM REQUIREMENTS

PC-based attendees
Required: Windows® 10, 8, 7, Vista, XP or 2003 Server

Mac® -based attendees
Required: Mac OS® X 10.6 or newer

Mobile attendees
Required: iPhone® , iPad® , AndroidTM phone or tablet, Windows 8 or Windows Phone 8
 
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Upcoming Webinars

- SiPM and SPAD: Emerging Applications for Single-Photon Detection, 1/17/2019 2:00:00 PM EST
- Emergence of Freeform Optics in Imaging Systems: A Leap Forward, 2/27/2019 1:00:00 PM EST
- Deep Learning in Machine Vision, 3/5/2019 10:00:00 AM EST

Archived Webinars

- Materials and Methods for Smart Glass, Smart Windows, and Building Shells
- Compact Metadevices for Flat Optical Components
- Writing an RFQ That Delivers the Right Product at the Right Price
 
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