Bioelectrodynamics

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Bioelectrodynamics

Bioelectrodynamics

@BioED_IPE

Engineering electromagnetic field-biomatter interactions for future biomedicine and nanotechnology Blusky: https://t.co/KDQre7zmsr @UFE_AVCR @CzechAcademy

Prague Katılım Ağustos 2016
526 Takip Edilen565 Takipçiler
Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
A glimpse from BioEM 2026! 🌏 Our team leader, @mcer33, sharing our latest research and engaging in inspiring discussions with the international bioelectromagnetics community. Thank you to everyone who made this year's conference such a memorable experience!
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Bioelectrodynamics@BioED_IPE

📢 Conference Alert!🚨 Our team leader, @mcer33 , is heading to Cairns, Australia, to represent our group's research at BioEM 2026, taking place on June 21–26. bioem.org/bioem2026/home/ #BioEM2026 #ConferenceAlert #Research #Science #Electromagnetics #BioEM #ScientificCommunity

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Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
🚨From presentations to great conversations 💡 Michaela Poplová, Kateřina Červinková, and @mcer33 had a wonderful time at the #QuantumBiology Forum in Washington, with many inspiring and fruitful discussions along the way. biophotoniq.net
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Bioelectrodynamics@BioED_IPE

🛎️Conference season is on 🌍 Michaela Poplová, Kateřina Červinková and @mcer33 will represent our team next week in Washington at the #Quantum Biology Forum and #Optica Level Up. Wishing them great conversations and exciting discoveries!💡👩‍🏫

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Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
🛎️Conference season is on 🌍 Michaela Poplová, Kateřina Červinková and @mcer33 will represent our team next week in Washington at the #Quantum Biology Forum and #Optica Level Up. Wishing them great conversations and exciting discoveries!💡👩‍🏫
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Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
🔬⚡We introduce a calibrated, non-contact sub-THz probe station for microfluidic chips, delivering highly repeatable liquid and protein measurements across the F-band, with scalability toward 1 THz. Congratulations to @DanielHavelka5 and all the authors on this excellent work!👇
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Bioelectrodynamics@BioED_IPE

🔊🔬⚡We developed a sub-THz probe station for contact-free liquid sensing in transparent microfluidic chips. F-band tests show clear, stable signals—enabling reliable dielectric spectroscopy up to 1 THz.🔎📖👉ieeexplore.ieee.org/document/11153…

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Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
🔬⚡We built a precision alignment workflow for integrating microfluidic flow-cells on sub-THz chips. The result: clear, repeatable transmission signatures for ethanol and protein solutions, with low uncertainty and strong system-level selectivity. 🔎📖👉ieeexplore.ieee.org/document/11153…
Bioelectrodynamics tweet media
Bioelectrodynamics@BioED_IPE

🔊🔬⚡We developed a sub-THz probe station for contact-free liquid sensing in transparent microfluidic chips. F-band tests show clear, stable signals—enabling reliable dielectric spectroscopy up to 1 THz.🔎📖👉ieeexplore.ieee.org/document/11153…

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Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
⚡🔬We bridge the sub-THz gap with a broadband, non-contact on-chip microfluidic probing platform above 110 GHz. It enables accurate VNA-grade liquid and biomolecular spectroscopy for next-gen 5G/6G and lab-on-chip systems.🔎📖👉ieeexplore.ieee.org/document/11153…
Bioelectrodynamics tweet media
Bioelectrodynamics@BioED_IPE

🔊🔬⚡We developed a sub-THz probe station for contact-free liquid sensing in transparent microfluidic chips. F-band tests show clear, stable signals—enabling reliable dielectric spectroscopy up to 1 THz.🔎📖👉ieeexplore.ieee.org/document/11153…

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Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
🔊🔬⚡We developed a sub-THz probe station for contact-free liquid sensing in transparent microfluidic chips. F-band tests show clear, stable signals—enabling reliable dielectric spectroscopy up to 1 THz.🔎📖👉ieeexplore.ieee.org/document/11153…
Bioelectrodynamics tweet media
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Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
🔊🔬⚡We present a fast and accurate method to extract complex permittivity from broadband S-parameters—validated up to 50 GHz and ideal for real-time, noninvasive analysis of tiny protein samples. Big kudos to Petr Kurka and all the authors for their exceptional work.🥇👏 🔎👇
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Bioelectrodynamics@BioED_IPE

🔊🔬⚡In our recently published work, we present a fast, broadband method to extract complex #dielectric #permittivity from μL-scale #biomolecular samples using a CBCPW. It offers accurate, sample-efficient characterization for #biomedical #research. 🔎📖👉ieeexplore.ieee.org/document/10973…

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Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
🔊🔬⚡we discovered that calibrating our permittivity-extraction method at ~75% of the biomolecular concentration range gives the best accuracy. It captures the linear S-parameter behavior while avoiding nonlinear distortion—improving consistency across samples. 🔎📖👇
Bioelectrodynamics tweet media
Bioelectrodynamics@BioED_IPE

🔊🔬⚡In our recently published work, we present a fast, broadband method to extract complex #dielectric #permittivity from μL-scale #biomolecular samples using a CBCPW. It offers accurate, sample-efficient characterization for #biomedical #research. 🔎📖👉ieeexplore.ieee.org/document/10973…

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Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
Great news from our recent Czech Academy of Sciences evaluation: our BioED team earned exceptional marks. Most of our outputs were rated outstanding, and our PEF lab-on-chip, microwave microfluidic sensing, and BAL imaging platforms were highlighted as unique, high-impact tech.👏
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Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
🔊🔬⚡We validated our new complex-permittivity extraction method using a simple, robust PCB-based CBCPW—no microfluidics needed. Testing amino-acid solutions up to 50 GHz showed highly reliable, repeatable results.🔎📖👉ieeexplore.ieee.org/document/10973…
Bioelectrodynamics tweet media
Bioelectrodynamics@BioED_IPE

🔊🔬⚡In our recently published work, we present a fast, broadband method to extract complex #dielectric #permittivity from μL-scale #biomolecular samples using a CBCPW. It offers accurate, sample-efficient characterization for #biomedical #research. 🔎📖👉ieeexplore.ieee.org/document/10973…

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Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
In our recently study, we derived field-shape factors that map how EM fields distribute inside tiny samples on a transmission line—enabling precise broadband permittivity extraction from just microliters. A key step toward faster, smaller-volume biomolecular characterization.📖👇
Bioelectrodynamics tweet media
Bioelectrodynamics@BioED_IPE

🔊🔬⚡In our recently published work, we present a fast, broadband method to extract complex #dielectric #permittivity from μL-scale #biomolecular samples using a CBCPW. It offers accurate, sample-efficient characterization for #biomedical #research. 🔎📖👉ieeexplore.ieee.org/document/10973…

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Bioelectrodynamics
Bioelectrodynamics@BioED_IPE·
🔊🔬⚡We solved a key challenge in broadband permittivity extraction: selecting the physically correct solution from a multi-branch numerical equation. This lets us reliably compute the propagation constant directly from S-parameters—boosting accuracy for tiny bio-samples.🔎📖👇
Bioelectrodynamics tweet media
Bioelectrodynamics@BioED_IPE

🔊🔬⚡In our recently published work, we present a fast, broadband method to extract complex #dielectric #permittivity from μL-scale #biomolecular samples using a CBCPW. It offers accurate, sample-efficient characterization for #biomedical #research. 🔎📖👉ieeexplore.ieee.org/document/10973…

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