Alexander Mark Weber (@weberam2.bsky.social)

🚨NEW PAPER OUT IN #NMRinBiomedicine🚨 We developed a noninvasive MRI method to measure brain oxygen use (CMRO₂) and blood flow (CBF) in preterm infants. This could be key for understanding early brain development! #Neonatology #MRI #BrainHealth #openaccess 👶🧪 https://doi.org/10.1002/nbm.70065 🧵 1/9

Bluesky Social

✅ The method shows promise but still presents challenges with variability.

Read more in @Nature: https://www.nature.com/articles/s41390-025-03966-6

Looking forward to discussions! #CerebralOxygenation #QSM #Neuroscience #QuantitativeSusceptibilityMapping #PretermNeonates #Neuroimaging #Neonatology #Research
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The application of magnetic susceptibility separation for measuring cerebral oxygenation in preterm neonates - Pediatric Research

Quantitative susceptibility mapping (QSM), a magnetic resonance imaging (MRI) modality sensitive to deoxyhemoglobin, is a promising method for measuring cerebral oxygenation in human neonates. Paramagnetic sources, like deoxyhemoglobin, however, can be obscured by diamagnetic sources such as water and myelin. This study evaluated whether QSM images, or isolated paramagnetic components, are more accurate for measuring oxygenation of cerebral veins of preterm neonates, and explored oxygenation differences between the major cerebral veins. 19 preterm neonates were scanned on at term equivalent age on a 3T MRI using a multi-echo susceptibility-weighted imaging sequence. Susceptibility values were calculated from QSM images to determine oxygen saturation (SvO2) in the superior sagittal sinus (SSS) and central cerebral veins (CCV). The paramagnetic components of QSM images were isolated, and SvO2 values were recalculated. The mean SvO2 values from QSM were 72.4% (SD, 3.4%) for the SSS and 68.7% (SD, 3.5%) for the CCV. SvO2 values for paramagnetic components were 58.1% (SD, 7.3%) for the SSS and 57.7% (SD, 7.0%) for the CCV. While paramagnetic component decomposition yielded SSS values closer to those found in the literature, it increased variability. No significant oxygenation differences were found between the SSS and CCV, contrasting with prior studies.

Nature
🚨NEW PAPER OUT IN #PEDIATRICRESEARCH🚨
We used quantitative susceptibility mapping (#QSM) to measure cerebral oxygenation in #preterm #neonates 🧠💡 We explored whether isolating paramagnetic components improved the accuracy in major cerebral veins.
https://www.nature.com/articles/s41390-025-03966-6
#openaccess #mri
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The application of magnetic susceptibility separation for measuring cerebral oxygenation in preterm neonates - Pediatric Research

Quantitative susceptibility mapping (QSM), a magnetic resonance imaging (MRI) modality sensitive to deoxyhemoglobin, is a promising method for measuring cerebral oxygenation in human neonates. Paramagnetic sources, like deoxyhemoglobin, however, can be obscured by diamagnetic sources such as water and myelin. This study evaluated whether QSM images, or isolated paramagnetic components, are more accurate for measuring oxygenation of cerebral veins of preterm neonates, and explored oxygenation differences between the major cerebral veins. 19 preterm neonates were scanned on at term equivalent age on a 3T MRI using a multi-echo susceptibility-weighted imaging sequence. Susceptibility values were calculated from QSM images to determine oxygen saturation (SvO2) in the superior sagittal sinus (SSS) and central cerebral veins (CCV). The paramagnetic components of QSM images were isolated, and SvO2 values were recalculated. The mean SvO2 values from QSM were 72.4% (SD, 3.4%) for the SSS and 68.7% (SD, 3.5%) for the CCV. SvO2 values for paramagnetic components were 58.1% (SD, 7.3%) for the SSS and 57.7% (SD, 7.0%) for the CCV. While paramagnetic component decomposition yielded SSS values closer to those found in the literature, it increased variability. No significant oxygenation differences were found between the SSS and CCV, contrasting with prior studies.

Nature

Presenta #QSM Semiconductores” sensor de oxígeno de producción mexicana

La compañía presentó esta solución así como su funcionamiento durante su participación en ExpoIndustrial 2024. Por Deyanira Vázquez | Reportera QSM Semiconductores, única empresa en México que dirige esfuerzos para el desarrollo integral de semiconductores, desde el diseño hasta la fabricación, presentó el primer sensor de oxígeno de producción mexicana. El enfoque de QSM Semiconductores en la…

http://sociedad-noticias.com/2025/01/01/presenta-qsm-semiconductores-sensor-de-oxigeno-de-produccion-mexicana/

Presenta #QSM Semiconductores» sensor de oxígeno de producción mexicana

La compañía presentó esta solución así como su funcionamiento durante su participación en ExpoIndustrial 2024. Por Deyanira Vázquez | Reportera QSM Semiconductores, única empresa en México que diri…

Sociedad Noticias
Automotive Supply Chain Risk Digest #382

Including coverage of Blue Solutions, Bolloré, Bosch, BYD, Chery, Citroen, Eramet, Ford, General Motors, Hyundai, Hyundai Mobis, Kia, Lear Corp., Lucid Motors, Magna Steyr, Maruti Suzuki, Mercedes-Benz, NDR Auto Components, QSM, Renault, SLN, Smart Alabama, Stellantis, Tesla, Toyota, Volkswagen, Webasto, and ZF Group.

Thanks so much to the organisers of #MRITogether! I'm grateful to have received an award for my abstract about #QSMxT, an open-source pipeline that automates #QSM reconstruction and analysis (https://github.com/QSMxT/QSMxT).

If you missed my abstract, you can watch it on YouTube at https://youtu.be/Jy4M1XtrJj4.

QSMxT is straightforward to install using Docker and Singularity containers, as well as through the Neurodesk project (@NeuroDesk).

GitHub - QSMxT/QSMxT: An automated and scalable QSM pipeline

An automated and scalable QSM pipeline. Contribute to QSMxT/QSMxT development by creating an account on GitHub.

GitHub
(1/N) It's again the time of the year for a lecture on „Biophysical Modelling of the MR signal“
- 12 lectures, each 1.5hrs
- Time: Tue, 10.15-11.45 am, and Fri, 12.15-1.45 pm, CET
- Where: Lecture hall III, Jungiusstraße 9, HH
- Zoom link: DM me
#hMRI #MPM #DWI #NODDIDTI #HCFM #QSM

Un immenso ringraziamento a @filippodb e @informapirata per aver condiviso su @mastodon https://quitsocialmedia.club.

Dopo quasi un anno di lavoro e studio, sono molto contento che sia stato apprezzato!

Condividiamo con il mondo il valore di piattaforme di social networking etiche!

#qsm #quitsocialmedia

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