Sign in

Christian Puller

@christianpuller.bsky.social
502 followers 254 following 55 posts

Neuroscientist at Max Planck Institute for Neurobiology of Behavior. Interested in vision, retina research, and gravel/road cycling.

PostsRepliesMedia
Reposted by Christian Puller
Juan Angueyra @juanonyme.bsky.social · 02/12/2025
you should all check out @john-m-ball.bsky.social latest paper (www.pnas.org/doi/10.1073/...) : in the Zenodo files there is an interactive pdf that let's anyone look at the 3D EM reconstructions.
pnas.org
PNAS
Proceedings of the National Academy of Sciences (PNAS), a peer reviewed journal of the National Academy of Sciences (NAS) - an authoritative source of high-impact, original research that broadly spans...
161
Christian Puller @christianpuller.bsky.social · 08/07/2025
Awesome work by @gregdfield.bsky.social et al. www.biorxiv.org/content/10.1... Projection Targeting with Phototagging to Study the Structure and Function of Retinal Ganglion Cells | bioRxiv
biorxiv.org
Projection Targeting with Phototagging to Study the Structure and Function of Retinal Ganglion Cells
Visual information from the retina is sent to diverse targets throughout the brain by different retinal ganglion cells (RGCs). Much of our knowledge about the different RGC types and how they are routed to these brain targets is based on mice, largely due to the extensive library of genetically modified mouse lines. To alleviate the need for using genetically modified animal models for studying retinal projections, we developed a high-throughput approach called projection targeting with phototagging that combines retrograde viral labeling, optogenetic identification, functional characterization using multi-electrode arrays, and morphological analysis. This method enables the simultaneous investigation of projections, physiology, and structure-function relationships across dozens to hundreds of cells in a single experiment. We validated this method in rats by targeting RGCs projecting to the superior colliculus, revealing multiple functionally defined cell types that align with prior studies in mice. By integrating established techniques into a scalable workflow, this framework enables comparative investigations of visual circuits across species, expanding beyond genetically tractable models. Motivation Visual information from the retina is distributed to diverse targets throughout the brain. Much of our knowledge about how visual information is processed and routed to these brain targets is based on mice because of the large library of genetically modified mouse lines. For most other species, such libraries are not available. Therefore, we were motivated to develop an approach for characterizing diverse retinal projections into the brain that can be applied to other species. We aimed to achieve projection targeting with retrograde viral vectors, followed by identification of circuit-specific retinal ganglion cells (RGCs) with optogenetics, functional characterization with multi-electrode array (MEA) recordings, and morphological description with in situ and confocal microscopy. The resulting high-throughput approach permits functional and morphological investigation of dozens to hundreds of cells in individual experiments. By replacing the need for genetically modified animals with a suite of standard techniques, this approach should improve cross-species comparisons of the initial stages of visual processing. Summary Understanding the structure-function relationships across neurons is challenging, particularly when circuits are composed of dozens of distinct cell types. We refined an approach, called projection targeting with phototagging, that allows simultaneous elucidation of the projections, morphology, and visual response properties of diverse RGC types in the mammalian retina. The approach combines retrograde virally mediated phototagging of RGCs, microscopy, and large-scale MEA measurements. Importantly, the approach does not rely on transgenic animals and thus is generalizable across species. We validated this approach in rats by targeting retinal projections to the superior colliculus (SC). We showed that multiple RGC types project to the SC and that these results in rats align well with prior findings from transgenic mouse studies. ![Figure][1]</img> Highlights ### Competing Interest Statement K.R. Is a coauthor on a patent for AAV2retro (Application No. 62/350,361 filed June 15, 2016, and U.S. Application No. 62/404,585 filed October 5, 2016). * AAV : adeno-associated virus cMRF : central mesencephalic reticular formation CRF : contrast response functions DpG : deep gray layer of the superior colliculus DpWh : deep white layer of the superior colliculus EI : electrical image GCL : ganglion cell layer IC : inferior colliculus INL : inner nuclear layer InG : intermediate gray layer of the superior colliculus IPL : Inner Plexiform Layer InWh : intermediate white layer of the superior colliculus ISI : inter-spike interval distribution MEA : multi-electrode array MGN : medial geniculate nucleus of the thalamus OT : nucleus of the optic tract Op : optic nerve layer of the superior colliculus OSI : orientation-selective index PAG : periaqueductal gray PC : posterior commissure POD : post-operative day PT : pretectum ReaChR : red-shifted channelrhodopsin RF : receptive field RGC : retinal ganglion cell SRF : spatial receptive field SuG : superficial gray layer of the superior colliculus TRF : temporal receptive field Zo : zonal layer of the superior colliculus Duke Institute for Brain Sciences (DIBS) Incubator Award NIH R01 EY034004 K99 EY032119 NIH P30 EY005722 Core Grant for Vision Research at Duke University NIH P30 EY000331 for Vision Research and an Unrestricted Grant from Research to Prevent Blindness at UCLA [1]: pending:yes
051
Reposted by Christian Puller
Anna Vlasits @annaintegrated.bsky.social · 02/07/2025
Exciting news: ⭐I'm thrilled to receive a grant from the Brain Research Foundation! tinyurl.com/2p9ku4sd ⭐"Atypical retinal ganglion cell function in a mouse model of Fragile X syndrome" was published! tinyurl.com/htk3ekce ⭐my review on retinal receptive fields was published! tinyurl.com/48b9xbs2
media.tenor.com
a picture of a woman with the words this is exciting below her
ALT: a picture of a woman with the words this is exciting below her
4597
Reposted by Christian Puller
Marla Feller @mfeller.bsky.social · 16/05/2025
This is a fantastic up-to-date summary of modern questions in retinal circuits, clearly presented and with great figures!. Required reading for anyone interested in the amazing computational capabilities of neural circuits. Congrats and a big thank-you to the authors.
1113
Reposted by Christian Puller
Katrin Franke @katrinfranke.bsky.social · 15/05/2025
65 years after Lettvin’s bug detector neurons in the frog retina, we revisit how the retina drives behavior—from reflexes to prey capture to brain-state modulation New review with @annaintegrated.bsky.social & @serenariccitelli.bsky.social in Annual Review of Vision Science 👇 tinyurl.com/ymp3vs4d
04217
Reposted by Christian Puller
RoordaLab @roordalab.bsky.social · 13/05/2025
Happy Birthday Gerald Westheimer. 101 years on May 13 and still publishing papers! #livinglegend of #visionscience. @ucberkeleyofficial.bsky.social
3253
Christian Puller @christianpuller.bsky.social · 13/05/2025
Putting this on top of my reading list: Task-specific regional circuit adaptations in distinct mouse retinal ganglion cells | Science Advances www.science.org/doi/10.1126/...
science.org
Task-specific regional circuit adaptations in distinct mouse retinal ganglion cells
The mouse retina shows regional adaptations in signal processing that enhance their ability to detect prey during hunting.
060
Reposted by Christian Puller
Kevin Wright @kevinmawright.bsky.social · 09/05/2025
With all the chaos and destruction of academic research going on in the US right now, it feels a little weird to post this. But.... New preprint from the lab is now live: www.biorxiv.org/content/10.1... 1/n
biorxiv.org
PTEN regulates starburst amacrine cell dendrite morphology during development
Neurons are subject to extensive developmental regulation to ensure precise subtype-specific morphologies that are intimately tied to their function. Starburst amacrine cells (SACs) in the mammalian r...
25711
Reposted by Christian Puller
Pranav Seth @thebuddhabird93.bsky.social · 19/03/2025
I am delighted to present to all my latest research paper titled " #AAV-mediated transduction of #songbird #retina" which has been published in the journal " #Frontiers in #Physiology", in its special issue "Rising Stars in Avian Physiology: 2024". #birds #AAV www.frontiersin.org/journals/phy...
frontiersin.org
Frontiers | AAV-mediated transduction of songbird retina
181
Christian Puller @christianpuller.bsky.social · 28/02/2025
1/ There it is! 😊 Published today in Scientific Reports: www.nature.com/articles/s41...
nature.com
Spatial distribution and functional integration of displaced retinal ganglion cells - Scientific Reports
Scientific Reports - Spatial distribution and functional integration of displaced retinal ganglion cells
3377
Reposted by Christian Puller
Max Planck Campus Tübingen @maxplanckcampus.bsky.social · 09/01/2025
Apply for your participation in the Systems Vision Science Summer School and Symposium 2025: summerschool.lizhaoping.org/application/ Application deadline is March 31, 2025. Experimental vision researchers, vision theorists, engineers and computer scientists should not miss this unique event!
02210
Reposted by Christian Puller
richkramerlab.bsky.social @richkramerlab.bsky.social · 05/12/2024
More complete announcement to come, but heads-up about a new summer course on Visual Neuroscience at the MBL, Woods Hole! Hands-on training in imaging, EM, bioinformatics, electrophysiology, visual behavior. From octopus to mouse, from retina to brain! Aug. 1-16, 2025 www.mbl.edu/education/ad...
mbl.edu
Visual Neuroscience | Marine Biological Laboratory
Experience hands-on training in modern visual neuroscience techniques in the new Visual Neuroscience course. Join us for a life-changing experience learning the visual system - and return home with te...
12816
Reposted by Christian Puller
Tom Baden @neurofishh.bsky.social · 11/12/2024
Volume 1 of the "Early Vision" pack is now full-up so I started populating Volume II go.bsky.app/5z7mP26 Addition requests, as before, please fill this google form: forms.gle/4ZdNjejitMQu...
1127
Reposted by Christian Puller
Seth Blackshaw @sethblackshaw.bsky.social · 11/12/2024
I'm a bit puzzled why the retina never makes it into these big consensus think pieces. Last I checked, it was just as much a part of the CNS as the brain and spinal cord, and also where a lot of the early single-cell work along these lines was first done.
32710
Reposted by Christian Puller
Marla Feller @mfeller.bsky.social · 10/12/2024
New preprint! A wonderful collaboration of our @FellerMarla lab with Matthew Po, and @shekharlab. Here, we dive into the impact of spontaneous activity on the transcriptome of retinal ganglion cells (RGCs), the sole output neurons of the retina. www.biorxiv.org/content/10.1...
biorxiv.org
Transcriptomic changes in retinal ganglion cell types associated with the disruption of cholinergic retinal waves
In the early stages of retinal development, a form of correlated activity known as retinal waves causes periodic depolarizations of immature retinal ganglion cells (RGCs). Retinal waves are crucial fo...
13816
Reposted by Christian Puller
RoordaLab @roordalab.bsky.social · 05/12/2024
To think that this entire optical system is devoted to looking at a single photoreceptor cell today. In the lower left of this image you'll see the bite-bar where I 'lock in'.
0163
Reposted by Christian Puller
Andrew Payne @andrewcpayne.bsky.social · 03/12/2024
🧪 E11 Bio is excited to share a major step towards brain mapping at 100x lower cost, making whole-brain connectomics at human & mouse scale feasible (🧠→🔬→💻). Critical for curing brain disorders, building human-like AI systems, and even simulating human brains. Read more: e11.bio/news/roadmap
616954
Reposted by Christian Puller
Tom Baden @neurofishh.bsky.social · 29/11/2024
Early vision Neuroscience community, Vol 1 We are talking eyes, retinas, and some of the more ancestral bits of visual brains. No species restrictions. List is close to full, will start building Vol 2 before too long Addition requests, please see link in the below thread go.bsky.app/BotZr1g
44220
Reposted by Christian Puller
Dimos Karamanlis @dimokaramanlis.qoto.org.ap.brid.gy · 24/11/2024
The latest piece of my PhD work is now published! Check it out at www.nature.com/articles/s41586-024-… We explain how correlated responses in the retinal output may arise when nonlinear receptive fields are stimulated with natural scenes. We think […] [Original post on qoto.org]
Summary of visual responses of marmoset retinal ganglion cells stimulated with natural visual scenes with gaze trajectories recorded in actual marmosets.
122
Reposted by Christian Puller
Tim Gollisch @timgollisch.bsky.social · 27/11/2024
How natural stimuli lead to highly correlated ganglion cell activity in primate (marmoset) and mouse retina. Now out in @natureportfolio.bsky.social. And, I guess, great opportunity for a first post on this site. #FirstSkeet Very brief summary in this thread. 1/ www.nature.com/articles/s41...
nature.com
Nonlinear receptive fields evoke redundant retinal coding of natural scenes - Nature
Species-specific gaze shifts with natural stimuli drive correlated spiking in retinal ganglion cells.
25014
Reposted by Christian Puller
Katja Reinhard @katjareinhard.bsky.social · 25/11/2024
Please get in touch with me if you're interested in making viruses and participating in other lab tasks and experiments! Let's chat to see if we fit before the official ad goes out next month. We're a friendly, young neuroscience lab at SISSA in Italy www.reinhardlab.org
reinhardlab.org
Reinhard Lab
12/2024 Çınar Furkan Ilhan joins the lab! Çınar is joining the lab as a new PhD candidate - welcome! He will be busy with courses in the next few weeks while finding out which project he'd like to wo...
077
Reposted by Christian Puller
David Ho @davidho.bsky.social · 24/11/2024
A person on a bicycle is by far the most energy-efficient among animals and machines per distance traveled relative to body weight. The bicycle is magic. www.jstor.org/stable/24923...
A graph titled "Cost of Transport" showing the relationship between body weight (in kilograms) and energy consumption for distance traveled (calories per gram per kilometer) for various animals and machines. It highlights that a person on a bicycle ranks first in efficiency.
26977891691
Reposted by Christian Puller
Chiara Fornetto @chiarafornetto.bsky.social · 20/11/2024
Excited to share my new #preprint with @neurofishh.bsky.social and @teuler.bsky.social If you want to know more about cones and behaviour 🐟... 👇🏻 www.biorxiv.org/content/10.1...
1134
Christian Puller @christianpuller.bsky.social · 14/11/2024
Interested in interneurons? Retina? Electrical coupling? Check out my first senior author paper which just went online www.cell.com/iscience/ful... (Find a short summary a little bit further down my timeline)
cell.com
The first interneuron of the mouse visual system is tailored to the natural environment through morphology and electrical coupling
Biological sciences; Neuroscience; Cellular neuroscience; Sensory neuroscience
54411
Reposted by Christian Puller
Ed Boyden @eboyden3.bsky.social · 10/11/2024
Just published: "Multiplexed expansion revealing for imaging multiprotein nanostructures in healthy and diseased brain", led by Jinyoung Kang and Margaret Schroeder! multiExR enables antibody staining of >20 proteins in a sample w/registration error down to 25 nm. www.nature.com/articles/s41...
nature.com
Multiplexed expansion revealing for imaging multiprotein nanostructures in healthy and diseased brain - Nature Communications
Mapping the nature of multiprotein nanostructures in cellular contexts remains challenging. Here, Kang and Schroeder et al. report multiplexed expansion revealing, a technique which expands proteins a...
07227
Reposted by Christian Puller
Thomas Euler @teuler.bsky.social · 08/11/2024
Our paper on the role of amacrine cells in retinal color processing is out in Cell Reports. Work by two very talented students - Marili Korympidou & Sarah Strauss - great collaboration with @annaintegrated.bsky.social, Katrin Franke & @celltypist.bsky.social at U Tübingen doi.org/10.1016/j.ce...
cell.com
GABAergic amacrine cells balance biased chromatic information in the mouse retina
Mouse photoreceptors establish a dorsal-ventral chromatic gradient that is attenuated at the retinal output. Korympidou et al. explore how dendrites of inhibitory amacrine cells in the mouse retina re...
0174
Reposted by Christian Puller
Webvision @webvision.bsky.social · 09/11/2024
The Webvision account will be permanently migrating all posting, promoting, and reposting activity regarding vision science to BlueSky. We are no longer posting content on the platform formerly known as Twitter.
webvision.bsky.social
Webvision (@webvision.bsky.social)
At the back of your eyes. https://webvision.med.utah.edu
1267
Reposted by Christian Puller
BWJones @bwjones.bsky.social · 19/10/2024
Here’s your Vision Scientists Starter pack for Bsky. Lemme know who I’ve missed. go.bsky.app/3EWSGiv
Vision scientists starter pack.
296643
Reposted by Christian Puller
BWJones @bwjones.bsky.social · 10/07/2024
Portrait: Christian Puller @christianpuller.bsky.social In Berlin prometheus.med.utah.edu/~bwjones/202...
Black and white portrait of vision neuroscientist Christian Puller in Berlin.
141
Christian Puller @christianpuller.bsky.social · 13/06/2024
1/ Our new preprint provides insights into the amazing complexity of retinal architecture, highlighting how distinct features of the first inhibitory interneuron of the 🐭 visual system are tailored to the visual environment. #warpedretina www.biorxiv.org/content/10.1...
biorxiv.org
The first interneuron of the mouse visual system is tailored to the natural environment through morphology and electrical coupling
bioRxiv - the preprint server for biology, operated by Cold Spring Harbor Laboratory, a research and educational institution
121
Reposted by Christian Puller
Wert Laboratory (PI: Katherine Wert) @wertlaboratory.bsky.social · 19/03/2024
Customs agent asked about my job, and then jokingly asked if I was “bringing sciencey things back to the US.” I replied, “no, but if I did it would be eyeballs” and the look of shock on his face was priceless 😂
041
Reposted by Christian Puller
Becca Pfeiffer @beccapfeiffer.bsky.social · 15/02/2024
New paper from the lab just dropped on BioRxiv. In this study, we extend our understanding of the rewiring effects of early rod degeneration in the inner retina by further evaluating our Retinal Pathoconnectome 1 (RPC1) volume. The focus of this paper is on the Aii glycinergic amacrine cell.
biorxiv.org
Neural Circuit Revision in Retinal Remodeling, A Pathoconnectomics Approach
bioRxiv - the preprint server for biology, operated by Cold Spring Harbor Laboratory, a research and educational institution
2186
Reposted by Christian Puller
Comfortably Numb @numb.comfortab.ly · 30/01/2024
Don't know the author, but this tracks
Four-panel meme. The top left panel features a cartoon representation of Bill Gates with a speech bubble that says, "Lets make more vaccines." Opposite to this, in the top right panel, is a drawing of a distressed character with a tearful expression, shouting, "nooooo you will put microchips in our bodies and track us." The bottom left panel shows a cartoon of Elon Musk with a contemplative expression and a speech bubble stating, "I will literally put a microchip in your brain." The bottom right panel displays a character with a beard, looking amused, and saying, "Lmao nice" in response to Musk's statement
5050611448
Reposted by Christian Puller
Mario Sixtus @sixtus.net · 19/01/2024
Auf die Straßen, Leute! ✊✨
28531164
Reposted by Christian Puller
Hessischer Flüchtlingsrat @fr-hessen.bsky.social · 17/01/2024
Der Entwurf für das neue CDU-Grundsatzprogramm sieht die VÖLLIGE Abschaffung des Asylrechts in Deutschland vor, ALLE Asylsuchenden sollen in einen (ungenannten) Drittstaat abgeschoben werden und dort auch für immer bleiben. www.grundsatzprogramm-cdu.de
Ausschnitt aus dem CDU-Grundsatzprogramm:
Wir wollen das Konzept der sicheren Drittstaaten realisieren. Jeder, der in Europa Asyl beantragt, soll in einen sicheren Drittstaat überführt werden und dort ein Verfahren durchlaufen. Im Falle eines positiven Ausgangs wird der sichere Drittstaat dem Antragsteller vor Ort Schutz gewähren.
43566378
Reposted by Christian Puller
BWJones @bwjones.bsky.social · 14/01/2024
If you find yourself agreeing with the concept of “poisoning the blood”, you are on the wrong side of history. That concept has a deeply racist and antisemitic history, and was invoked by Hitler in Mein Kampf, a case study for a pure Aryan Germany and the extermination of Jews.
1123
Reposted by Christian Puller
RoordaLab @roordalab.bsky.social · 14/01/2024
3 months of a Journal Editorial Board Member handling 1 paper: 7 declines to review, 6 no responses (boo), 1 accepted (yay), and 1 pending. If you want to publish papers, please pay it back by agreeing to review when you can. And if you don't want to review, then decline quickly
journal editor's screenshot.
041
Reposted by Christian Puller
Wolf @lastenradler.bsky.social · 15/01/2024
Diesen Samstag in Oldenburg! #FCKAFD
0178
Reposted by Christian Puller
Marla Feller @mfeller.bsky.social · 15/01/2024
Fantastic new study from Yonehara lab using a new GABA sniffer that works in retina. So much exciting stuff in this paper www.biorxiv.org/content/10.1...
biorxiv.org
Diverse GABA signaling in the inner retina enables spatiotemporal coding
bioRxiv - the preprint server for biology, operated by Cold Spring Harbor Laboratory, a research and educational institution
0105
Reposted by Christian Puller
Christophe 🔬 Leterrier @christlet.bsky.social · 15/01/2024
Here's one for Rob Insall who was looking for an image showing the three cytoskeleton components (actin⚪️ microtubules🔵 intermediate filaments🟠) - I hope it will help students see the beauty of cells! 🧪
0348
Christian Puller @christianpuller.bsky.social · 12/01/2024
Flood. Freeze. Sun. Gravel. ❤️
Gravel bike in front of a flooded frozen meadow
040
Reposted by Christian Puller
Marla Feller @mfeller.bsky.social · 03/01/2024
After seeing del Castillo Institute at UPR, I read great article of about voltage clamp studies post classic work with Katz: journals.sagepub.com/doi/10.1177/...
021
Reposted by Christian Puller
Christian Puller @christianpuller.bsky.social · 03/01/2024
So many beautiful photos in this thread ☺️ But it clearly lacks bikes 😉
062
Reposted by Christian Puller
BWJones @bwjones.bsky.social · 31/12/2023
I would like to see your most favorite photographs you’ve made in 2023. Post ‘em up.
452810
Reposted by Christian Puller
Christophe 🔬 Leterrier @christlet.bsky.social · 02/01/2024
After some fiddling with the Fiji update site, here they are! The latest version of kwolbachia.bsky.social LUTs in the NeuroCyto LUTs repository . LUTs are also on Kevin's GitHub: github.com/kwolbachia/K.... And as a bonus, the "LUT Panel" that allows to quickly browse and test all LUTs!
0287
Christian Puller @christianpuller.bsky.social · 02/01/2024
Spotted a slime mold for the first time! Amazing creature, just look at those „vessels“. Correct me if I’m wrong, I think it only consists of one single cell!? (Photo about 25 cm from left to right)
Yellow slime mold on a rotting tree
160
Christian Puller @christianpuller.bsky.social · 01/01/2024
Happy New Year everyone 🍀 2024: ride more bikes 🚴, trace more cells 🔬 ☺️
Gravel bike in front of a sunset and cloudy sky
030
Christian Puller @christianpuller.bsky.social · 25/12/2023
Not sure if this time of the year, my hobby, and my (kind of) job will ever be brought closer together than in this image 😂 (Bike art by artnuovelo, spotted on IG via global bikeart gallery)
030
Christian Puller @christianpuller.bsky.social · 23/12/2023
Immune amnesia caused by measles 😯 That feeling when you learn sth new about biology, but it’s equally amazing and scary
020
Christian Puller @christianpuller.bsky.social · 23/12/2023
Happy holidays everyone 🙂
050