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Biology subjects

Fossum, E.

Publications and source records attributed to Fossum, E..

2 recordsLinked to original sources

Pixel-wise programmability enables dynamic high-SNR cameras for high-speed microscopy

High-speed wide-field fluorescence microscopy has the potential to capture biological processes with exceptional spatiotemporal resolution. However, conventional cameras suffer from low signal-to-noise ratio at high frame rates, limiting their ability to detect faint fluorescent events. Here, we introduce an image sensor where each pixel has individually programmable sampling speed and phase, so that pixels can be arranged to simultaneously sample at high speed with a high signal-to-noise ratio. In high-speed voltage imaging experiments, our image sensor significantly increases the output signal-to-noise ratio compared to a low-noise scientific CMOS camera ([~]2-3 folds). This signal-to-noise ratio gain enables the detection of weak neuronal action potentials and subthreshold activities missed by the standard scientific CMOS cameras. Our camera with flexible pixel exposure configurations offers versatile sampling strategies to improve signal quality in various experimental conditions.

neuroscience↗

Poor neutralizing antibody responses against SARS-CoV-2 Omicron BQ.1.1 and XBB in Norway in October 2022

New sub-lineages of the SARS-CoV-2 omicron variants with enhanced ability to evade existing antibody responses continue to evolve. A better understanding how susceptible emerging virus variants are to immunity induced by vaccination or infection could help predict which strains will become dominant going forward. Here we evaluate neutralizing antibodies against several clinical isolates of omicron variants including BQ.1.1 and XBB in sera from 3x mRNA vaccinated individuals and individuals with breakthrough infections with early (BA.1 or 2) or late (BA.5) omicron variants. In addition, we evaluate neutralizing antibodies in serum samples harvested from 32 individuals from the middle of October 2022, to provide a more recent estimate of immunity. As expected, serum samples harvested after breakthrough infections were more efficient at neutralizing all the omicron variants, compared to sera from non-infected individuals. While neutralization remained high against variants such as BA.2.75.2, BR.1 and BF.7, there was a marked reduction in neutralizing titers against BQ.1.1 and XBB. Similarly, most serum samples harvested in October 2022 had very low neutralizing antibodies against BQ.1.1 and XBB, suggesting that these variants and their descendants will dominate infection waves in Norway this winter season.

immunology↗