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Automatic, Real Time Acquisition of Bioluminescent Kinetic Curves

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Watch this pre-recorded webinar with Dr. Andrew Van Praagh to learn how our new Aura software feature —Kinetics—...

Theranostics: From Mice to Men and Back

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Recorded webinar
Presenters: Prof. Dr. Ken Herrmann and Prof. Dr. Katharina Lückerath – Moderator: Hannah Notebaert

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RareCyte Orion is a benchtop, high resolution, whole slide multimodal imaging instrument. A combination of quantitative...

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Thursday, 11 July 2024, 16:00 CET | 10:00 EST
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X-RAD 320 for irradiation therapy during quantifying study for in vivo collagen reorganization

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Quantifying in vivo collagen reorganization during immunotherapy in murine melanoma with second harmonic generation...

Use of MRI and microCT to evaluate gene therapy for the treatment of discogenic back pain

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MRI images were obtained using the 9.4T Bruker BioSpec system, equipped with 40 mm 1H quadrature volume resonator, and...

Exosome-Mediated Delivery of Small Molecules, RNA & DNA for Development of Novel Cancer Therapeutics

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Disha Moholkar of University of Louisville's Gupta Lab
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Emulate in vivo conditions – introduce shear flow to your experiments with BioFlux system

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Vizgen webinar recording: spatial relationships in Developmental Biology

Nov 21, 2023

Developmental biology seeks to document the path from embryo to organism, where cell-to-cell interactions and the spatial organization of tissues influence developmental mechanisms. Consequently, researchers employ spatial biology techniques to better understand human development. In this webinar brought to you by The Scientist’s Creative Services Team, Xiaofei Li and Stefania Giacomello will discuss the methods they use to acquire spatial information about human spinal cord development and more.

Topics to be covered :
.Using single-cell and spatial -omics techniques to generate a developmental cell atlas of the human spinal cord

Thursday, November 30,15:30 CEST

Xiaofei Li, PhD, Assistant Professor, Karolinska Institute

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Scientific paper
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Related technologies: Spatial Transcriptomics

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Riccardo Pasculli

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Vizgen

MERFISH is a massively multiplexed single-molecule imaging technology for spatially resolved transcriptomics capable of simultaneously measuring the copy number and spatial distribution of hundreds to tens of thousands of RNA species in individual cells.

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High multiplexing, high resolution in situ platform to combine single-cell and spatial genomics analysis powered by MERFISH technology.

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