Martin Brill
@martinbrill.bsky.social
120 followers 230 following 1 posts
former Insect Neuroscientist, now Application Specialist for Photomanipulation and Multi-Photon Microscopy
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Reposted by Martin Brill
rappopto.bsky.social
Beautiful pictures—thanks for sharing, @kasiagrochowska.bsky.social

Congratulations again on the new system. It's great to see that it's being put into action so quickly and successfully.

We look forward to more great pictures in the future ;)
kasiagrochowska.bsky.social
The beauty of these images will never stop amazimg me. Hippocampal (CA1) neurons expressing an artificial cytoplasmic protein partially targeted to lysosomes (black dots).
martinbrill.bsky.social
Grateful to have had the chance to connect to many old friends and to make new ones at the incredible "Bee and Fly Neuroethology Meeting" at the Harnack house of the @maxplanck.de in Berlin.
The energy around new discoveries and brilliant scientists was infectious, and inspiring.
Reposted by Martin Brill
dahaniel.muench.bio
Amazing opportunity, join the Manzini Lab and become part of the Institute of Animal Physiology in Giessen!
xenofrog.bsky.social
🚨 We are looking for 2 PhD students! 🧠🐸👃

Join the Manzini Lab @jlugiessen.bsky.social to explore the olfactory system in #aquatic #vertebrates.

We mainly use #amphibians, combining:
🔬 Imaging
👩‍🔬 Cell biology
🐝 Behavior

👉 bit.ly/neurophd
🌍 bit.ly/manzinilab

Please share!

#PhD #neuroscience #job
Reposted by Martin Brill
rappopto.bsky.social
It was a splendid time with @kasiagrochowska.bsky.social and Long Yan from Florida Lifetime Imaging.

It’s been a great pleasure working together - thank you @kasiagrochowska.bsky.social and the team for the fruitful collaboration!

All the best for terrific data and exciting endeavors to come 🙌
kasiagrochowska.bsky.social
Exciting week with calibration of the FLIM module!
Reposted by Martin Brill
rappopto.bsky.social
New insights: Muscles grow by splitting sarcomeres! 💥 Using our UGA-42 #photomanipulation, the authors showed sarcomeres divide under tension to stay functional during development.

Congrats to all authors on a beautiful scientific paper!
frankschnorrer.bsky.social
SARCOMERES divide! Mechanism how muscles grow while contracting - daughter sarcomeres appear everywhere. Seen live, registered on our cover. Pioneered by @clementrodier.bsky.social @friedrich-group.bsky.social Ian Estabrook @ibdm.bsky.social $ by @hfspo.bsky.social www.science.org/doi/10.1126/...
Reposted by Martin Brill
rappopto.bsky.social
Wonderful work by @viji-draviam.bsky.social and team.
Congratulations on the publication!

We're honored to be cited in your work—exciting to see our contributions supporting cutting-edge research. Looking forward to following your continued discoveries!
Reposted by Martin Brill
rappopto.bsky.social
A beautiful new paper about IP3 Uncaging with the UGA-42 system:

Endothelial cells pass signals by triggering receptors on neighbors—not through gap junctions.
A new way vessels stay in sync!

by Buckley, Zhang, Lee, Wilson & McCarron 2025 FASEB

faseb.onlinelibrary.wiley.com/doi/10.1096/...
faseb.onlinelibrary.wiley.com
Reposted by Martin Brill
rappopto.bsky.social
Come say hello at our joint booth at #ELMI2025

There's some great coffee and beer to celebrate 25 years of @eurobioimaging.bsky.social

Just walk up the helix and grab yours.

We're happy to chat

Toptica
Chroma
@microscopy.confocalnl.com
@ultimeyes.bsky.social by CAIRN
&
@rappopto.bsky.social
Reposted by Martin Brill
rappopto.bsky.social
ELMI @eulimi.bsky.social turns 25 next week – and we’re bringing cake (if the mouse leaves us any)...

See you at the 25th European Light Microscopy Initiative meeting at @embl.org w/ our friends Toptica, @microscopy.confocalnl.com, @ultimeyes.bsky.social by CAIRN GmbH, and Chroma Technology Corp.
Reposted by Martin Brill
Reposted by Martin Brill
rappopto.bsky.social
2/2 The study explores how localized Ca²⁺ signaling influences cellular dynamics using @rappopto.bsky.social 375 nm laser, and the Caliburn laser for microsurgical ablation of cell junctions - offering high spatial and temporal control.
Congrats to all authors involved.

www.cell.com/current-biol...
Synchronization in epithelial tissue morphogenesis
Richa et al. demonstrate that Tmc, a mechano-gated channel in vertebrate hearing, synchronizes cell dynamics in the epithelial amnioserosa of Drosophila embryos. Experimental data together with a data...
www.cell.com
Reposted by Martin Brill
rappopto.bsky.social
Our CEO @swarnck.bsky.social is experiencing the Chinese Cell Biology Community at #CSCB2025 in Zhuai.

He made new friends & e.g. saw the new Zeiss LSM Lightfield 4D.

Special thanks are due to our local partners & hosts Echo Li from Chroma Technologies and Siyuan Feng from Evident Scientific.
Reposted by Martin Brill
rappopto.bsky.social
Today, we were part of the Girls' and Boys' Day,
the “Girls' and Boys' Future Day”

A program to support stereotype-free career and study choices for all.

The pupils successfully completed the day with happiness and full of motivation, thanks to a great team @rappopto.bsky.social
Reposted by Martin Brill
rappopto.bsky.social
Our Applications Specialist Anja Zimmermann is on a tour with Jan Dolzer from our US-Partner Sutter Instrument @sutterinstrument.bsky.social.

On tour, Jan is giving a talk about "What is hidden under the noise" today at
@biodip.bsky.social
@crtd-tud.bsky.social
@cmcb-tud.bsky.social

👍👍
Reposted by Martin Brill
rappopto.bsky.social
#NWG2025 @neurowissg.bsky.social in Göttingen has started!

We are looking forward to talking to you.
Come by and take a look at our booth 39.
Reposted by Martin Brill
rappopto.bsky.social
The countdown is on! Just one day left until #TiM2025
@gerbi-gmb.de

Thanks to our great partners in the workshops, you have the chance to dive deeper into the #FLUCS universe #photomanipulation and experience the latest functionality to make your samples move as you want to.
Reposted by Martin Brill
rappopto.bsky.social
Great preview of of our #FLUCS workshop next week #TIM2025 from @gerbi-gmb.de

Our CEO @swarnck.bsky.social and founder Gert Rapp as well as Simona Stelea are looking forward to meeting you there
lennarthilbert.bsky.social
Iliya Stoev showing us some impromptu FLUCS action on our new install from Rapp Optoelectronics, while prepping for a workshop with Rapp next week. Accompanied by our incoming tenure-track colleague Miha Modic
@paraspeckle.bsky.social and his student Jona Novljan
Reposted by Martin Brill
rappopto.bsky.social
WOW absolutely stunning movies and excellent ablation approaches!

Congratulations to @micromotility.bsky.social and group as well as @jekely.biologists.social.ap.brid.gy for an amazing showcase of the precision ablation using the caliburn system from @rappopto.bsky.social.
micromotility.bsky.social
New preprint from Rebecca's PhD! did you know that the ciliary band metachronal wave in #Platynereis is a series of tiny waves within each multiciliated cell! What happens if you ablate some cilia?? 🌊😱
Cool #cilia collab w/ @jekely.biologists.social.ap.brid.gy!

Revealed here doi.org/10.1101/2025...
Reposted by Martin Brill
rappopto.bsky.social
Amazing technique of On-Demand Photoactivation of DNA-Based Motor Motion shown by the group of Khalid Salaita from @emoryuniversity.bsky.social

Congrats to all authors involved!

Great work using UV laser and #Photomanipulation from @rappopto.bsky.social
ryotaiino.bsky.social
On-Demand Photoactivation of DNA-Based Motor Motion
pubs.acs.org/doi/10.1021/...
On-Demand Photoactivation of DNA-Based Motor Motion
A major challenge in the field of synthetic motors relates to mimicking the precise, on-demand motion of biological motor proteins, which mediates processes such as cargo transport, cell locomotion, and cell division. To address this challenge, we developed a system to control the motion of DNA-based synthetic motors using light. DNA motors are composed of a central chassis particle modified with DNA “legs” that hybridize to RNA “fuel”, and move upon enzymatic consumption of RNA. We first concealed RNA fuel sites using photocleavable oligonucleotides that block DNA leg binding. Upon UV activation, the RNA blocking strands dissociate, exposing the RNA fuel and initiating active, directional motion. We also created a “brake” system using photocleavable DNA stalling strands, anchoring the motors until UV light removes the “brake” while simultaneously “fueling” the motors, initiating spatiotemporally controlled stop → go motion. Additionally, we modified the “brake” system to activate the motors via a chemical input, while an optical input is required to fuel the motors. This dual-input approach, functioning as an “AND” gate, demonstrates the potential for DNA motors to perform light-triggered computational tasks. Our work provides a proof of concept for enhancing the complexity and functionality of synthetic motors.
pubs.acs.org
Reposted by Martin Brill
rappopto.bsky.social
We are still blown away by the beauty of this wonderful piece of DNA-Microart using #photomanipulation from @rappopto.bsky.social.

The Rs are particularly amazing ;)

@sinemsaka.bsky.social and group with Jennifer Heck and Kristina Jevdokimenko from @embl.org

Thank you soo much!
sinemsaka.bsky.social
The beautiful DNA-microart created by the wonderful Jennifer Heck and Kristina Jevdokimenko in our group to celebrate the festive season: Using Light-Seq, pixels of a DNA canvas was "painted" on a microscope by photocrosslinking DNA barcodes with 3 different fluorophores @embl.org's PhD course '24