Are photovoltaic materials compatible with cells and stable in wet environments over weeks?
⚠️Spoiler: Yes, they are!
Curious how we found out and how you could use this for bioelectronics? Check out our recent publication:
https://t.co/rdHMtByrlk
@unibern@MedUniGraz@tugraz
Congrats on achieving the third place at the BioEl25 poster awards with your interactive poster, Mathias Polz @bi0_electronics@tugraz_csbme! Well done and well deserved!
https://t.co/Qvi5YkPTpa
Out today! Experimental tour de force by Yael Tsarfati, joint postdoc with Andy Minor @minor_group@molecularfndry
We use 4D STEM+vitrification to study the microstructure of a mixed conductor polymer made by @A_Giovannitti in @_iainmcculloch’s group
1/n
Doing numerical modeling of stimulation electrodes? Here's some fun summer reading for you :D
Choosing the right electrode representation for modeling real bioelectronic interfaces: a comprehensive guide https://t.co/FqyygTP8il via @ioppbio@eglo_physchem
Excited to announce our new publication in @NatureComms on minimally invasive neural interfaces!
With surgery increasingly focused on reducing trauma and improving patient outcomes by making procedures smaller and safer, it's essential that technology advances in the same direction without compromising on quality and resolution!!
This latest work, led by @lawrenceccoles and @DrSeeProctor, exemplifies this approach, combining flexible thin-film electrode arrays with soft robotics to create a large-area electrocorticography device.
These innovations allow the device to be implanted through a small burr-hole craniotomy and expanded on the cortical surface, covering a larger area with minimal invasiveness.
Such advancements are crucial for the future of restorative neurosurgery and neural interfaces.
Proud to collaborate with such great like-minded scientists!
@BioelectronicsL@BionicSystemsG@GeorgeMalliaras@ASSFNeurosurg #neurosurgery @CNS_Update@IntlNeuromod@AANSNeuro@The_SBNS@EANSonline50 #BCI #BMI
Read more:
https://t.co/qjyfD7XQFZ
Thanks for the nice collaboration to better understand calcium dynamics in cardiac myocytes in response to optelectronic stimulation!
@MedUniGraz, @tugraz, @CEITEC_Brno, *DerekLab*
https://t.co/YV0Rv6R99P
Our cookbook for making a light impulse-driven neurostimulation circuit: Coupling of photovoltaics with neurostimulation electrodes—optical to electrolytic transduction https://t.co/eYUYwvZBjs in @ioppbio importance of photovoltage limits, impedance, and other do's and don'ts
Thanks for the inspiring week at the #BioEl2024! Our team and collaborators from @tugraz and @MedUniGraz were proud to show our latest results in posters and talks and connect with all the amazing people there!
We are happy to announce the opening of our new S1 lab. Soon exploring cancer spheroids, working on new bioelectronics and digging deeper into regenerative bioengineering
First solo authored paper for me! Thanks to @Adv_Biology for helping me through this process.
I wrote a perspective looking at historical parallels in implant development and combatting the foreign body response.
#bioelectronics#science
https://t.co/sBlorjACPC