Palle Duun Rohde
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Palle Duun Rohde
@palledr.bsky.social
🧬 New in PLOS Genetics!
We show how Bayesian Linear Regression models can powerfully fine-map genetic variants underlying complex traits & diseases — matching state-of-the-art methods on both simulated & UK Biobank data.
📄 doi.org/10.1371/journal.pgen.1011783

#Genomics #FineMapping #UKBiobank
Enhanced genetic fine mapping accuracy with Bayesian Linear Regression models in diverse genetic architectures
Author summary Understanding which genetic variants influence complex traits and diseases is essential for gaining biological insight and developing new treatments. However, large-scale genetic studie...
doi.org
August 12, 2025 at 7:04 PM
🚨 JOB POSSIBILITY 🚨
We launching a new AI-health data initiative and hiring 3 tenure track assistant professors.

I’m seeking one in AI-driven statistical genomics 🧬

🔗 www.vacancies.aau.dk/scientific-p...

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#Genomics #StatisticalGenetics #PrecisionMedicine #ComplexTraitGenetics #PopGen
August 11, 2025 at 9:54 AM
Today at #eshg2025 in Milan (@eshg.bsky.social) I'm presenting our novel Bayesian polygenic prioritization method, Bayes PoPS.

If you're interested, please visit poster P17.072.A at 13:00

#eshg #genomics #StatisticalGenetics #PrecisionMedicine #ComplexTraitGenetics #eshg2025 #genetics
May 25, 2025 at 7:24 AM
🚨 Postdoc Opportunity: Multivariate Statistical Machine Learning & Integrative Genomics!

We’re seeking a highly motivated Postdoctoral Fellow to join the Center for Quantitative Genetics and Genomics, Aarhus University, in close collaboration with me at Genomic Medicine, Aalborg University.
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May 14, 2025 at 2:29 PM
Reposted by Palle Duun Rohde
We're hiring!

Make a real difference in women's health at Hvidovre Hospital, Denmark. Use your data skills to analyze large datasets, collaborate with clinicians, and contribute to advancements in reproductive health.

Apply now: www.regionh.dk/job/s%C3%B8g...
January 9, 2025 at 6:45 PM
🧬 Excited to share our two recent papers in PLOS Genetics 👇and BMC Genomics 👇👇 on improving genetic pathway analysis! We've developed a Bayesian approach that outperforms current methods in identifying disease-related gene sets, especially for complex conditions like T2D.
January 6, 2025 at 9:47 AM