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PCR – Webinars and Online Events

Thermo Infectious Disease
Webinar

Evolve Your Respiratory Diagnostics To Improve Patient Care

On-Demand
In this webinar, Dr. Gustav Quade will provide a comprehensive overview of respiratory pathogens and discuss how to enhance your laboratory’s diagnostic capabilities by using multiplex assays to incorporate clinically relevant pathogen targets into your testing protocols. Dr. Quade will also illustrate best practices and key considerations to help you expand your laboratory’s respiratory testing menu.
Thermo Covid
Webinar

Viruses Circulating in the 2023–2024 Flu Season: What Have We Seen?

On-Demand
The COVID-19 pandemic significantly affected the spread of respiratory pathogens, but their circulation is now returning to pre-pandemic levels.
ThermoFisher Scientific Webinar
Webinar

Efficiency Redefined: Advancing Lab Performance Through Molecular Diagnostics Part 1

On-Demand
Molecular diagnostics have revolutionized healthcare by enabling accurate and efficient disease diagnosis and treatments. Aging and growing populations, increased prevalence of infectious diseases and rising costs are impacting the diagnostic landscape presenting the need for increased clinical lab efficiency and innovation.

This webinar series will delve into the intricacies of the modern clinical lab and explore ways to optimize and streamline molecular diagnostics workflows and technologies to aid in the identification and diagnosis of disease.

In this webinar, Dr. Christian Koepfli will join us to explore the many factors affecting the performance of qPCR assays and how this impacts population-based studies. He will also outline strategies on how to optimize the sensitivity of these tests to increase lab efficiency.
Thermo FIsher Scientific and BioAgilytix
Webinar

Securing Cell Therapy Success: The Role of PCR in Quality Control

On-Demand
In this webinar, our expert speakers will explore the vital role of qPCR and digital PCR in supporting advanced therapy medicinal products, including cell therapies. Discover best practices for assay design, validation parameters and acceptance criteria crucial for ensuring the safety and efficacy of cell therapy programs. Learn how molecular precision can safeguard these innovative therapies and drive breakthroughs in the field.
Thermo - Vaccines
Webinar

The Broad Utility (and Potential Pitfalls) of qPCR in Diagnosing Infectious Diseases

On-Demand
In this webinar, Dr. Jonathan Schmitz will provide a broad overview of PCR in diagnostic microbiology, with particular emphasis on the challenges that can face the development of new assays and impact their clinical actionability. Many of these issues - while hardly unique to SARS-CoV-2- can be highlighted by the evolving dynamics of this virus over the past three years.
TN Webinar Oxford Nanopore 12th October 2023
Webinar

Targeted Nanopore Sequencing for Bacterial and Viral Classification

On-Demand
Amplicon-based sequencing approaches have been widely adopted for routine microbiology applications, including targeted 16S rRNA for bacterial taxonomic classification and tiled multiplex PCR for viral whole-genome sequencing.
Molecular Diagnostics ThermoFisher Scientific
Webinar

Optimize Your qPCR Master Mix for Your Workflows

On-Demand
With the recent COVID-19 pandemic, quantitative polymerase chain reaction (qPCR) was adopted rapidly into clinical and point-of-care testing laboratories enabling prompt diagnostics, treatment and surveillance. qPCR remains the go-to method for microbial detection in areas including clinical, agricultural, veterinary and food safety diagnostics.
Safe Gene Therapy
Webinar

On-Demand Validation for Gene Therapy Development

On-Demand
To adequately assess the safety and efficacy of candidate gene therapies, robust bioanalytical technologies must support regulated studies. Hence, many labs now incorporate the latest qPCR and digital PCR (dPCR) methods into their preclinical and clinical development workflows to assure data accuracy and product effectiveness.
ThermoFisher Scientific webinar hosted by Technology Networks, being held on October 11th, 2023
Webinar

Next-Generation Molecular Diagnostics: Leveraging Digital Technologies To Enhance Multiplexing in Real-Time PCR

On-Demand
Multiple solutions have been devised to increase multiplexing in qPCR, including single-well techniques, using target-specific fluorescent oligonucleotide probes, and spatial multiplexing, where
segregation of the sample enables parallel amplification of multiple targets.

There is a need for innovations that will push forward the multiplexing field in qPCR, enabling for the next generation of diagnostic tools which could accommodate high throughput in an affordable manner. To this end, the use of machine learning algorithms has recently emerged to leverage information contained in amplification and melting curves– two of the most standard biosignals emitted during qPCR – for accurate classification of multiple nucleic acid targets in a single reaction.

Thermo Fisher Scientific are not affiliated with the webinar speaker. Any application of machine learning technologies with the Diomni™ software package, related assay definition files (ADFs) and related qPCR instruments are for research use only.
Harnessing the Power of ddPCR to Advance Precision Oncology
Webinar

Harnessing the Power of ddPCR to Advance Precision Oncology

On-Demand
Liquid biopsies and the advent of blood-based diagnostics have emerged in recent years as promising alternatives and complements to tissue-based genomic and proteomic assays. Biodesix, a global leader in molecular diagnostics and assay design/development, leverages cutting-edge technology, including droplet digital PCR (ddPCR), to advance translational and clinical oncology research and to assist biopharma companies in delivering new, targeted, life-saving therapies to patients.

This presentation provides a comprehensive exploration of new blood-based diagnostics, including the development of a microsatellite instability (MSI) test on the ddPCR platform and the dynamic monitoring capabilities of ddPCR using circulating tumor DNA (ctDNA).
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