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#biosensing — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #biosensing, aggregated by home.social.

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  1. Researchers, including Dominik Bucher, show #proteins can be influenced by #RadioWaves, affecting spin states and optical readout. The approach may enable #biosensing and external control of #BiochemicalProcesses in cells: go.tum.de/709678

    #QuantumSensing
    @MCQST

    📷A.Heddergott

  2. Researchers, including Dominik Bucher, show #proteins can be influenced by #RadioWaves, affecting spin states and optical readout. The approach may enable #biosensing and external control of #BiochemicalProcesses in cells: go.tum.de/709678

    #QuantumSensing
    @MCQST

    📷A.Heddergott

  3. Researchers, including Dominik Bucher, show #proteins can be influenced by #RadioWaves, affecting spin states and optical readout. The approach may enable #biosensing and external control of #BiochemicalProcesses in cells: go.tum.de/709678

    #QuantumSensing
    @MCQST

    📷A.Heddergott

  4. Researchers, including Dominik Bucher, show #proteins can be influenced by #RadioWaves, affecting spin states and optical readout. The approach may enable #biosensing and external control of #BiochemicalProcesses in cells: go.tum.de/709678

    #QuantumSensing
    @MCQST

    📷A.Heddergott

  5. Researchers, including Dominik Bucher, show #proteins can be influenced by #RadioWaves, affecting spin states and optical readout. The approach may enable #biosensing and external control of #BiochemicalProcesses in cells: go.tum.de/709678

    #QuantumSensing
    @MCQST

    📷A.Heddergott

  6. Discover the Flowtime Biosensing Meditation Headband! Track your brainwaves, heart rate, and stress in real-time to elevate your mindfulness practice. Lightweight and portable, it's perfect for meditation at home or on the go. Enhance your journey to inner peace today! #Meditation #Mindfulness #Biosensing wishof.me/en-us/gift-ideas/for

  7. Discover the Flowtime Biosensing Meditation Headband! Track your brainwaves, heart rate, and stress in real-time to elevate your mindfulness practice. Lightweight and portable, it's perfect for meditation at home or on the go. Enhance your journey to inner peace today! #Meditation #Mindfulness #Biosensing wishof.me/en-us/gift-ideas/for

  8. Discover the Flowtime Biosensing Meditation Headband! Track your brainwaves, heart rate, and stress in real-time to elevate your mindfulness practice. Lightweight and portable, it's perfect for meditation at home or on the go. Enhance your journey to inner peace today! #Meditation #Mindfulness #Biosensing wishof.me/en-us/gift-ideas/for

  9. Discover the Flowtime Biosensing Meditation Headband! Track your brainwaves, heart rate, and stress in real-time to elevate your mindfulness practice. Lightweight and portable, it's perfect for meditation at home or on the go. Enhance your journey to inner peace today! #Meditation #Mindfulness #Biosensing wishof.me/en-us/gift-ideas/for

  10. 🔬 New Review Published!
    Explore the exciting world of enzymatic protein fusion—where we combine enzymes to enhance biological activity and precision. From biocatalysis to gene therapy and biosensing, fusion proteins are reshaping biotech innovation.
    🧬 Read the full article: doi.org/10.1016/j.cis.2025.103

    #FusionProteins #ProteinEngineering #EnzymeTechnology #SyntheticBiology #Biocatalysis #GeneTherapy #Biosensing #Bioengineering #Biotechnology #MolecularBiology #NextGenBiotech #ScienceMastodon

  11. 🔬 New Review Published!
    Explore the exciting world of enzymatic protein fusion—where we combine enzymes to enhance biological activity and precision. From biocatalysis to gene therapy and biosensing, fusion proteins are reshaping biotech innovation.
    🧬 Read the full article: doi.org/10.1016/j.cis.2025.103

    #FusionProteins #ProteinEngineering #EnzymeTechnology #SyntheticBiology #Biocatalysis #GeneTherapy #Biosensing #Bioengineering #Biotechnology #MolecularBiology #NextGenBiotech #ScienceMastodon

  12. 🔬 New Review Published!
    Explore the exciting world of enzymatic protein fusion—where we combine enzymes to enhance biological activity and precision. From biocatalysis to gene therapy and biosensing, fusion proteins are reshaping biotech innovation.
    🧬 Read the full article: doi.org/10.1016/j.cis.2025.103

    #FusionProteins #ProteinEngineering #EnzymeTechnology #SyntheticBiology #Biocatalysis #GeneTherapy #Biosensing #Bioengineering #Biotechnology #MolecularBiology #NextGenBiotech #ScienceMastodon

  13. 🔬 New Review Published!
    Explore the exciting world of enzymatic protein fusion—where we combine enzymes to enhance biological activity and precision. From biocatalysis to gene therapy and biosensing, fusion proteins are reshaping biotech innovation.
    🧬 Read the full article: doi.org/10.1016/j.cis.2025.103

    #FusionProteins #ProteinEngineering #EnzymeTechnology #SyntheticBiology #Biocatalysis #GeneTherapy #Biosensing #Bioengineering #Biotechnology #MolecularBiology #NextGenBiotech #ScienceMastodon

  14. cute little video showing off brain controlled ears and tail in vrchat using a bci and BrainFlowsIntoVRChat (i can no longer hide my excitement...)
    #VRChat #biosensing

  15. ⏰ Nominations for our very first Chemical Science Lectureship will close soon, on the 1st of March. If you haven't nominated yet, now is the time! ⏰

    This year we’re looking for researchers in the field of imaging, biosensing or diagnostics at any independent career stage who have published in the journal in the last five years.

    Introduced for the 15th anniversary of the journal, the Chemical Science Lectureship will align with the topic of the Chemical Science Symposium for a given year.

    Details about how to nominate are here:

    rsc.li/chemsci-lectureship25

    Nominate before 1st March 2025!

    The winner will present their lectureship at the next Chemical Science symposium in November 2025 in a special Lectureship session, with associated travel costs included as part of the prize. They will also be invited to join the Chemical Science Advisory Board.

    Researchers must be independent and have published in Chemical Science within the last 5 years. There are no requirements to have received a PhD within a set period for this Lectureship; candidates will be considered for contributions within the past five years.

    rsc.li/chemsci-lectureship25

    #Chemistry #ChemicalScience #Sensing #Imaging #Diagnostics #Biosensing

  16. ⏰ Nominations for our very first Chemical Science Lectureship will close soon, on the 1st of March. If you haven't nominated yet, now is the time! ⏰

    This year we’re looking for researchers in the field of imaging, biosensing or diagnostics at any independent career stage who have published in the journal in the last five years.

    Introduced for the 15th anniversary of the journal, the Chemical Science Lectureship will align with the topic of the Chemical Science Symposium for a given year.

    Details about how to nominate are here:

    rsc.li/chemsci-lectureship25

    Nominate before 1st March 2025!

    The winner will present their lectureship at the next Chemical Science symposium in November 2025 in a special Lectureship session, with associated travel costs included as part of the prize. They will also be invited to join the Chemical Science Advisory Board.

    Researchers must be independent and have published in Chemical Science within the last 5 years. There are no requirements to have received a PhD within a set period for this Lectureship; candidates will be considered for contributions within the past five years.

    rsc.li/chemsci-lectureship25

    #Chemistry #ChemicalScience #Sensing #Imaging #Diagnostics #Biosensing

  17. ⏰ Nominations for our very first Chemical Science Lectureship will close soon, on the 1st of March. If you haven't nominated yet, now is the time! ⏰

    This year we’re looking for researchers in the field of imaging, biosensing or diagnostics at any independent career stage who have published in the journal in the last five years.

    Introduced for the 15th anniversary of the journal, the Chemical Science Lectureship will align with the topic of the Chemical Science Symposium for a given year.

    Details about how to nominate are here:

    rsc.li/chemsci-lectureship25

    Nominate before 1st March 2025!

    The winner will present their lectureship at the next Chemical Science symposium in November 2025 in a special Lectureship session, with associated travel costs included as part of the prize. They will also be invited to join the Chemical Science Advisory Board.

    Researchers must be independent and have published in Chemical Science within the last 5 years. There are no requirements to have received a PhD within a set period for this Lectureship; candidates will be considered for contributions within the past five years.

    rsc.li/chemsci-lectureship25

    #Chemistry #ChemicalScience #Sensing #Imaging #Diagnostics #Biosensing

  18. ⏰ Nominations for our very first Chemical Science Lectureship will close soon, on the 1st of March. If you haven't nominated yet, now is the time! ⏰

    This year we’re looking for researchers in the field of imaging, biosensing or diagnostics at any independent career stage who have published in the journal in the last five years.

    Introduced for the 15th anniversary of the journal, the Chemical Science Lectureship will align with the topic of the Chemical Science Symposium for a given year.

    Details about how to nominate are here:

    rsc.li/chemsci-lectureship25

    Nominate before 1st March 2025!

    The winner will present their lectureship at the next Chemical Science symposium in November 2025 in a special Lectureship session, with associated travel costs included as part of the prize. They will also be invited to join the Chemical Science Advisory Board.

    Researchers must be independent and have published in Chemical Science within the last 5 years. There are no requirements to have received a PhD within a set period for this Lectureship; candidates will be considered for contributions within the past five years.

    rsc.li/chemsci-lectureship25

    #Chemistry #ChemicalScience #Sensing #Imaging #Diagnostics #Biosensing

  19. ⏰ Nominations for our very first Chemical Science Lectureship will close soon, on the 1st of March. If you haven't nominated yet, now is the time! ⏰

    This year we’re looking for researchers in the field of imaging, biosensing or diagnostics at any independent career stage who have published in the journal in the last five years.

    Introduced for the 15th anniversary of the journal, the Chemical Science Lectureship will align with the topic of the Chemical Science Symposium for a given year.

    Details about how to nominate are here:

    rsc.li/chemsci-lectureship25

    Nominate before 1st March 2025!

    The winner will present their lectureship at the next Chemical Science symposium in November 2025 in a special Lectureship session, with associated travel costs included as part of the prize. They will also be invited to join the Chemical Science Advisory Board.

    Researchers must be independent and have published in Chemical Science within the last 5 years. There are no requirements to have received a PhD within a set period for this Lectureship; candidates will be considered for contributions within the past five years.

    rsc.li/chemsci-lectureship25

    #Chemistry #ChemicalScience #Sensing #Imaging #Diagnostics #Biosensing

  20. 📢 Submission deadline extended to 📅 Nov 30, 2024:

    The thematic issue “#Nanomaterials for #BiomedicalApplications” edited by Muhammad Anwaar Nazeer, National Textile University, Pakistan 🇵🇰, Seda Kizilel, Koç University, Turkey 🇹🇷, and Filippo Pierini, IPPT PAN - Institute of Fundamental Technological Research Polish Academy of Sciences, Poland 🇵🇱, is still open for submissions.

    ➡️ beilstein-journals.org/bjnano/

    #DrugDelivery #GeneDelivery #Biosensing

  21. 📢 Submission deadline extended to 📅 Nov 30, 2024:

    The thematic issue “#Nanomaterials for #BiomedicalApplications” edited by Muhammad Anwaar Nazeer, National Textile University, Pakistan 🇵🇰, Seda Kizilel, Koç University, Turkey 🇹🇷, and Filippo Pierini, IPPT PAN - Institute of Fundamental Technological Research Polish Academy of Sciences, Poland 🇵🇱, is still open for submissions.

    ➡️ beilstein-journals.org/bjnano/

    #DrugDelivery #GeneDelivery #Biosensing

  22. 📢 Submission deadline extended to 📅 Nov 30, 2024:

    The thematic issue “#Nanomaterials for #BiomedicalApplications” edited by Muhammad Anwaar Nazeer, National Textile University, Pakistan 🇵🇰, Seda Kizilel, Koç University, Turkey 🇹🇷, and Filippo Pierini, IPPT PAN - Institute of Fundamental Technological Research Polish Academy of Sciences, Poland 🇵🇱, is still open for submissions.

    ➡️ beilstein-journals.org/bjnano/

    #DrugDelivery #GeneDelivery #Biosensing

  23. 📢 Submission deadline extended to 📅 Nov 30, 2024:

    The thematic issue “#Nanomaterials for #BiomedicalApplications” edited by Muhammad Anwaar Nazeer, National Textile University, Pakistan 🇵🇰, Seda Kizilel, Koç University, Turkey 🇹🇷, and Filippo Pierini, IPPT PAN - Institute of Fundamental Technological Research Polish Academy of Sciences, Poland 🇵🇱, is still open for submissions.

    ➡️ beilstein-journals.org/bjnano/

    #DrugDelivery #GeneDelivery #Biosensing

  24. 📢 Submission deadline extended to 📅 Nov 30, 2024:

    The thematic issue “#Nanomaterials for #BiomedicalApplications” edited by Muhammad Anwaar Nazeer, National Textile University, Pakistan 🇵🇰, Seda Kizilel, Koç University, Turkey 🇹🇷, and Filippo Pierini, IPPT PAN - Institute of Fundamental Technological Research Polish Academy of Sciences, Poland 🇵🇱, is still open for submissions.

    ➡️ beilstein-journals.org/bjnano/

    #DrugDelivery #GeneDelivery #Biosensing

  25. 📢 The first articles of the thematic issue “#Nanomaterials for #BiomedicalApplications” edited by Muhammad Anwaar Nazeer, National Textile University, Pakistan 🇵🇰, Seda Kizilel, Koç University, Turkey 🇹🇷, and Filippo Pierini, IPPT PAN - Institute of Fundamental Technological Research Polish Academy of Sciences, Poland 🇵🇱, in the 💎🔓 #BJNANO are ONLINE.
    ➡️ beilstein-journals.org/bjnano/
    #DrugDelivery #GeneDelivery #Biosensing
    Submission is still possible until Aug 31, 2024!

  26. 📢 The first articles of the thematic issue “#Nanomaterials for #BiomedicalApplications” edited by Muhammad Anwaar Nazeer, National Textile University, Pakistan 🇵🇰, Seda Kizilel, Koç University, Turkey 🇹🇷, and Filippo Pierini, IPPT PAN - Institute of Fundamental Technological Research Polish Academy of Sciences, Poland 🇵🇱, in the 💎🔓 #BJNANO are ONLINE.
    ➡️ beilstein-journals.org/bjnano/
    #DrugDelivery #GeneDelivery #Biosensing
    Submission is still possible until Aug 31, 2024!

  27. 📢 The first articles of the thematic issue “#Nanomaterials for #BiomedicalApplications” edited by Muhammad Anwaar Nazeer, National Textile University, Pakistan 🇵🇰, Seda Kizilel, Koç University, Turkey 🇹🇷, and Filippo Pierini, IPPT PAN - Institute of Fundamental Technological Research Polish Academy of Sciences, Poland 🇵🇱, in the 💎🔓 #BJNANO are ONLINE.
    ➡️ beilstein-journals.org/bjnano/
    #DrugDelivery #GeneDelivery #Biosensing
    Submission is still possible until Aug 31, 2024!

  28. 📢 The first articles of the thematic issue “#Nanomaterials for #BiomedicalApplications” edited by Muhammad Anwaar Nazeer, National Textile University, Pakistan 🇵🇰, Seda Kizilel, Koç University, Turkey 🇹🇷, and Filippo Pierini, IPPT PAN - Institute of Fundamental Technological Research Polish Academy of Sciences, Poland 🇵🇱, in the 💎🔓 #BJNANO are ONLINE.
    ➡️ beilstein-journals.org/bjnano/
    #DrugDelivery #GeneDelivery #Biosensing
    Submission is still possible until Aug 31, 2024!

  29. 📢 The first articles of the thematic issue “#Nanomaterials for #BiomedicalApplications” edited by Muhammad Anwaar Nazeer, National Textile University, Pakistan 🇵🇰, Seda Kizilel, Koç University, Turkey 🇹🇷, and Filippo Pierini, IPPT PAN - Institute of Fundamental Technological Research Polish Academy of Sciences, Poland 🇵🇱, in the 💎🔓 #BJNANO are ONLINE.
    ➡️ beilstein-journals.org/bjnano/
    #DrugDelivery #GeneDelivery #Biosensing
    Submission is still possible until Aug 31, 2024!

  30. `magnetoelectric nanoparticles (MENPs) can be manipulated in the body by applying #magnetic field gradients to produce local #electrical fields for various #biomedical applications from controlled drug release to cellular stimulation. Conversely, because they display a quantum mechanically induced nonzero #magnetoelectric (ME) effect, electrical fields can also be produced with localized magnetic fields to achieve different signals for #bioimaging or #biosensing.`

    pubs.rsc.org/en/content/articl

  31. `magnetoelectric nanoparticles (MENPs) can be manipulated in the body by applying #magnetic field gradients to produce local #electrical fields for various #biomedical applications from controlled drug release to cellular stimulation. Conversely, because they display a quantum mechanically induced nonzero #magnetoelectric (ME) effect, electrical fields can also be produced with localized magnetic fields to achieve different signals for #bioimaging or #biosensing.`

    pubs.rsc.org/en/content/articl

  32. `magnetoelectric nanoparticles (MENPs) can be manipulated in the body by applying #magnetic field gradients to produce local #electrical fields for various #biomedical applications from controlled drug release to cellular stimulation. Conversely, because they display a quantum mechanically induced nonzero #magnetoelectric (ME) effect, electrical fields can also be produced with localized magnetic fields to achieve different signals for #bioimaging or #biosensing.`

    pubs.rsc.org/en/content/articl

  33. `magnetoelectric nanoparticles (MENPs) can be manipulated in the body by applying #magnetic field gradients to produce local #electrical fields for various #biomedical applications from controlled drug release to cellular stimulation. Conversely, because they display a quantum mechanically induced nonzero #magnetoelectric (ME) effect, electrical fields can also be produced with localized magnetic fields to achieve different signals for #bioimaging or #biosensing.`

    pubs.rsc.org/en/content/articl

  34. `magnetoelectric nanoparticles (MENPs) can be manipulated in the body by applying #magnetic field gradients to produce local #electrical fields for various #biomedical applications from controlled drug release to cellular stimulation. Conversely, because they display a quantum mechanically induced nonzero #magnetoelectric (ME) effect, electrical fields can also be produced with localized magnetic fields to achieve different signals for #bioimaging or #biosensing.`

    pubs.rsc.org/en/content/articl