Sign in

Lukas Goede

@lukasgoede.bsky.social
748 followers 404 following 45 posts

Neurology resident and Neuroscientist @ Charité - University Medicine Berlin| | Interested in deep brain stimulation, non-invasive brain stimulation and movement disorders

PostsRepliesMedia
Lukas Goede @lukasgoede.bsky.social · 14/06/2026
Tremor is highly heterogeneous. Our new study in @cp-cellreports.bsky.social shows that rest and action tremor map to different networks within the motor cortex. By refining DBS contact selection, we can engage these circuits to optimize treatment for both. www.cell.com/cell-reports...
cell.com
Action and rest tremor map to distinct networks within the primary motor cortex
Goede et al. show that different tremor types engage distinct regions of the motor cortex. Using deep brain stimulation network mapping, they find that optimal treatment of rest tremor involves effect...
0115
Reposted by Lukas Goede
Lead-DBS @lead-dbs.org · 13/05/2026
With SPARK-DBS, @savirmadan.bsky.social adds a new tool to the ecosystem of Lead-DBS: The small-scale databasing tool can store, analyze and integrate stimulation parameters and scores in BIDS-compliant fashion. Toward standardized data analysis in DBS! www.sciencedirect.com/science/arti...
sciencedirect.com
SPARK-DBS: Toward standardized analysis of deep brain stimulation data
075
Reposted by Lukas Goede
Andreas Horn @andreashorn.org · 20/02/2026
A bit later, Leon Sobesky & @lukasgoede.bsky.social confirmed that the same is true for *pallidal* DBS. Here as well, electrodes that stimulate this exact PD response network would profit maximally from DBS. pubmed.ncbi.nlm.nih.gov/34453827/
111
Reposted by Lukas Goede
Andreas Horn @andreashorn.org · 20/02/2026
New @netstim.org publication alert: @bahnebahners.bsky.social in BRAIN out now: academic.oup.com/brain/advanc... A 🧵:
academic.oup.com
The deep brain stimulation response network in Parkinson’s disease operates in the high beta band
Bahners et al. identify a brain network linked to optimal therapeutic outcomes in patients with Parkinson’s disease receiving deep brain stimulation. This
12512
Lukas Goede @lukasgoede.bsky.social · 04/09/2025
What might the future of deep brain stimulation look like? Not just continuous stimulation, but decoding symptoms in real time and directing stimulation to the right brain circuits. Fascinating perspective article by @andreashorn.org & @julianneumann.bsky.social in @natrevneurol.nature.com:
032
Reposted by Lukas Goede
Michael Fox @foxmdphd.bsky.social · 24/05/2025
Is there a shared brain circuit target for tremor that transcends diagnosis and DBS site? New work by @lukasgoede.bsky.social @andreashorn.org @braincircuits.bsky.social says YES
0249
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
And of course, institutions like Brigham and Women’s Hospital, Boston, and Charité - Universitätsmedizin Berlin, providing the environment that made this work possible.
000
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
Projects like this are only possible thanks to strong research support. Grateful for funding from the Thiemann Parkinson Foundation, @dfg.de, and many others who made this work possible - not just for the project, but personally for me as well.
100
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
Special thanks to @andreashorn.org and @foxmdphd.bsky.social for their mentorship at the @braincircuits.bsky.social, BWH. This was a long-term project developed under @andreashorn.org's guidance, and I couldn’t be more grateful that it marks the conclusion of my time in Boston.
120
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
Thank you to patients, collaborators and coauthors who made this project possible! To mention just a few colleagues who are here on BlueSky: @patriciazvarova.bsky.social @bahnebahners.bsky.social @emiddlebrooksmd.bsky.social @jjoutsa.bsky.social @foxmdphd.bsky.social @andreashorn.org @netstim.org
120
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
This was a huge team effort - combining datasets across disorders, continents, and methods. We hope this work helps advance neuromodulation toward guided, symptom-specific treatment. Full paper: www.nature.com/articles/s41...
nature.com
Convergent mapping of a tremor treatment network - Nature Communications
Goede et al. combined multiple modalities to define a common tremor network across disorders. This finding may help optimize deep brain stimulation and guide future noninvasive therapies.
162
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
We also provide a literature overview of a key structure consistently associated with tremor improvement: 👉 the dentato-rubro-thalamic tract (DRT). The best DBS outcomes align closely with its trajectory - regardless of target or disorder.
110
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
We added extensive supplementary material, including a review on: 👉 What influences outcomes after DBS?
100
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
Of course, there are limitations. We combined diverse datasets and methods - adding variability. But this heterogeneity was deliberate, to build a more robust and generalizable network. And while correlational analysis, the convergence of lesions, DBS, and EMG-fMRI supports causal insight.
100
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
So what do we take away from all this? ✅ Different forms of tremor share a common brain network ✅ DBS likely works by modulating this circuit ✅ STN, VIM, GPi may all be access points to the same network ✅ This opens the door to symptom-specific neuromodulation - both invasive and noninvasive
100
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
And yes - indeed. Connectivity between GPi-DBS electrodes and the convergent tremor map explained significant variance in clinical outcomes.
100
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
We then integrated all maps - lesions, atrophy, fMRI, and DBS - into a multimodal tremor network map. The key test: Could this convergent map explain tremor outcomes in a new, independent cohort: Parkinson's disease patients with GPi-DBS?
110
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
To power these analyses, we created a new, high-resolution normative connectome: 🧠 Based on resting-state fMRI from 1,087 healthy subjects (HCP), 2 mm isotropic voxels We also replicated results using a Parkinson’s disease-specific connectome from the PPMI cohort. Findings held up across datasets.
100
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
Building on these data, we analyzed two different DBS patient cohorts: • Parkinson’s disease patients with subthalamic DBS • Essential tremor patients with thalamic DBS Outcome maps from each group could explain outcomes in the other. Disorder-independent. Target-independent.
100
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
Another key step was to collaborate with Rick Helmich. We incorporated a map from the well-known dimmer-switch model of tremor, based on EMG-fMRI: 🔗 academic.oup.com/brain/articl... Once again, the same core regions emerged: - Motor cortex - Motor cerebellum Three paths. One destination.
110
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
Next, we included an atrophy network map from essential tremor patients, based on a recent paper by Ellen Younger et al.: 🔗 doi.org/10.1212/WNL.... This atrophy-based network pointed to cerebellar regions, adding another independent layer of support.
doi.org
Mapping Essential Tremor to a Common Brain Network Using Functional Connectivity Analysis | Neurology
Background and ObjectivesThe cerebello-thalamo-cortical circuit plays a critical role in essential tremor (ET). However, abnormalities have been reported in multiple brain regions outside this circuit...
120
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
We found: the stronger the connection between a DBS site and this lesion-derived network, the better the tremor relief - even across different disorders.
110
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
First, we revisited stroke lesions that alleviated tremor. As shown by @jjoutsa.bsky.social‬, these lesions mapped to a distinct functional network: 🔗 doi.org/10.1002/ana....
doi.org
Identifying therapeutic targets from spontaneous beneficial brain lesions
Brain damage can occasionally result in paradoxical functional benefit, which could help identify therapeutic targets for neuromodulation. However, these beneficial lesions are rare and lesions in mu...
100
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
We asked a simple question: Does a shared tremor treatment network exist across diseases and deep brain stimulation (DBS) targets? To find out, we combined four independent modalities: 🧠 Lesions 🧠 Atrophy 🧠 EMG-fMRI 🧠 DBS outcomes
110
Lukas Goede @lukasgoede.bsky.social · 22/05/2025
Tremor is a common symptom across many neurological disorders. But is there a shared tremor circuit across disorders - one that could guide treatment, regardless of diagnosis? We think: yes. Our study is out now in @natcomms.nature.com: 🔗 www.nature.com/articles/s41... 🧵 A thread.
12714
Lukas Goede @lukasgoede.bsky.social · 19/05/2025
Big thanks to @patriciazvarova.bsky.social and @bahnebahners.bsky.social for their wonderful contributions, and to @andreashorn.org for his mentorship on this project! Read the full study here: onlinelibrary.wiley.com/doi/10.1002/...
onlinelibrary.wiley.com
Patient Selection in Deep Brain Stimulation: A Role for Transcranial Direct Current Stimulation to Enhance the Levodopa Challenge?
Dopaminergic medication and deep brain stimulation (DBS) improve motor symptoms in Parkinson's disease (PD), but levodopa response alone may not predict DBS outcomes. We retrospectively analyzed 19 P....
063
Lukas Goede @lukasgoede.bsky.social · 19/05/2025
Of course: this is a small sample and an exploratory analysis. But this cohort is rare: patients who received all three interventions: tDCS, levodopa challenge, and DBS. That makes these findings hypothesis-generating and worth building on.
100
Lukas Goede @lukasgoede.bsky.social · 19/05/2025
Here’s the interesting part: When we combined both tDCS and levodopa responses in a linear model, they jointly explained a significant amount of the variance in DBS outcomes.
100
Lukas Goede @lukasgoede.bsky.social · 19/05/2025
So we asked, in our cohort: (i) Does the levodopa response predict DBS outcome? (ii) Does it correlate with the tDCS response? The trends were there - but in this small sample (N = 10), neither reached significance on its own.
100
Lukas Goede @lukasgoede.bsky.social · 19/05/2025
What did we find? Levodopa improved motor function more when it followed multifocal tDCS than when it followed sham stimulation. It seems that tDCS may prime the brain’s response to medication.
100
Lukas Goede @lukasgoede.bsky.social · 19/05/2025
Luckily, in our cohort, most patients performed levodopa challenges on both days - once after real tDCS, and once after sham stimulation. So we took a closer look.
100
Lukas Goede @lukasgoede.bsky.social · 19/05/2025
That brings us to the next part: There’s long been debate about whether the levodopa challenge can reliably predict DBS outcomes. Some studies say yes - others find the association limited. This led us to a key question: Do levodopa, tDCS, and DBS all act on the same brain network?
100
Lukas Goede @lukasgoede.bsky.social · 19/05/2025
Some of those patients later underwent DBS - and interestingly, their DBS outcomes correlated with how much they had improved after tDCS. A hint that both may tap into the same underlying network? We think yes.
100
Lukas Goede @lukasgoede.bsky.social · 19/05/2025
In 2024, we published a randomized, sham-controlled, double-blind study showing that multifocal tDCS, when targeted to a specific Parkinson's Disease response network, led to measurable motor improvements. Publication in Movement Disorders: doi.org/10.1002/mds....
100
Lukas Goede @lukasgoede.bsky.social · 19/05/2025
Patient selection for Deep Brain Stimulation (DBS) is crucial. Are there ways to improve it? In our new study, we found hints that non-invasive brain stimulation might enhance the levodopa response - and serve as an additional marker for DBS outcomes. doi.org/10.1002/acn3... A thread. 🧵
doi.org
Patient Selection in Deep Brain Stimulation: A Role for Transcranial Direct Current Stimulation to Enhance the Levodopa Challenge?
Dopaminergic medication and deep brain stimulation (DBS) improve motor symptoms in Parkinson's disease (PD), but levodopa response alone may not predict DBS outcomes. We retrospectively analyzed 19 P...
1106
Reposted by Lukas Goede
Andreas Horn @andreashorn.org · 12/05/2025
When modeling volumes of tissue activated in subthalamic DBS for clinical outcomes, does it matter whether we process data in native or template space? Julianna Pijar and Clemens Neudorfer say No in the Brain Stimulation Journal: doi.org/10.1016/j.br...
0156
Lukas Goede @lukasgoede.bsky.social · 09/04/2025
Follow this interesting study led by @bahnebahners.bsky.social and @andreashorn.org using MEG‑LFP data to investigate cortico‑subthalamic coupling in Parkinson’s disease. The study showed that the optimal DBS response network defined by fMRI operates in the high‑beta band. Happy to be part of it!
075
Reposted by Lukas Goede
Frederic Schaper @fredschaper.bsky.social · 24/03/2025
Is generalized epilepsy a seizure of the whole brain or a specific brain network? In our new paper out now in @naturecomms.bsky.social, we investigate this by combining brain abnormalities and DBS with the human connectome. Paper: nature.com/articles/s41... A 🧵 below:
nature.com
A generalized epilepsy network derived from brain abnormalities and deep brain stimulation - Nature Communications
Ji et al. identify an idiopathic generalised epilepsy network that links heterogeneously distributed brain abnormalities to a common brain network and deep brain stimulation sites which reduce general...
68428
Reposted by Lukas Goede
Andreas Horn @andreashorn.org · 21/03/2025
Interested in an update on connectomic and adaptive deep brain stimulation for obsessive compulsive disorder? Take a look at our summary of this exciting field and how things could be brought together out now in BPS: www.biologicalpsychiatryjournal.com/article/S000... A brief 🧵
biologicalpsychiatryjournal.com
Deep Brain Stimulation response circuits in Obsessive Compulsive Disorder
In the field of deep brain stimulation (DBS), two major themes are currently making significant progress. First, the framework of connectomic DBS, in which circuits that are associated with improvemen...
23619
Lukas Goede @lukasgoede.bsky.social · 01/03/2025
Want to learn DBS electrode localization with @lead-dbs.org while being able to verify your results? This new tool from the @netstim.org lab lets you compare your performance against experts. Spearheaded by Savir Madan & @laurenahart.bsky.social
097
Lukas Goede @lukasgoede.bsky.social · 15/02/2025
A fantastic resource for science communication: Openly available icons illustrating different Parkinson’s disease symptoms, created by @patriciazvarova.bsky.social with patient feedback. Explore them here: osf.io/ybcah/
osf.io
Illustrated Database of UPDRS-III Items: A Visual Guide for Parkinson’s Disease Motor Assessment
This database provides a set of illustrations representing each item of the Movement Disorder Society-Unified Parkinson’s Disease Rating Scale (MDS-UPDRS) Part III, facilitating a visual representatio...
030
Reposted by Lukas Goede
Andrew Pines @andrewpines.bsky.social · 12/02/2025
jamanetwork.com/journals/jam... Thread below👇
jamanetwork.com
Mapping Lesions That Cause Psychosis
This case-control study analyzes published cases of lesion-induced psychosisTo assess whether lesions that cause secondary psychosis have functional connections to a common brain circuit
04320
Reposted by Lukas Goede
Andreas Horn @andreashorn.org · 19/01/2025
Interested in modeling DBS induced white matter activations? Konstantin Butenko has a new preprint on all the options available within OSS-DBS / @lead-dbs.org including Electric Field Projections and probabilistic Pathway Activation Modeling: www.medrxiv.org/content/10.1...
03011
Reposted by Lukas Goede
Andreas Horn @andreashorn.org · 08/01/2025
🚨Interested in Dystonia?🚨 @braincircuits.bsky.social GPi DBS for dystonia is effective. More recently, STN DBS has been investigated, as an alternative. In what enfolded like a stunning thriller to me, Konstantin Butenko tells a tale of two networks… www.pnas.org/doi/10.1073/...
25025
Lukas Goede @lukasgoede.bsky.social · 06/01/2025
We report an interesting case of late-onset Pelizaeus-Merzbacher-like disease 1, diagnosed via genetic testing in a patient with decades-long progressive spasticity and tremor. Explore it now in Movement Disorders Clinical Practice! movementdisorders.onlinelibrary.wiley.com/doi/10.1002/...
movementdisorders.onlinelibrary.wiley.com
032
Reposted by Lukas Goede
Nico Dosenbach @ndosenbach.bsky.social · 02/01/2025
The brain’s action-mode is created by a dedicated action-mode network (AMN) rdcu.be/d5odm. In the brain’s mode continuum, AMN sits opposite DMN’s default-mode, as yin-yang. AMN might be key in pain, apathy, Parkinson’s. New @natrevneurosci.bsky.social w/ Marc Raichle & @gordonneuro.bsky.social 🧵 ⬇️
414564
Reposted by Lukas Goede
Andreas Horn @andreashorn.org · 27/12/2024
New landmark TMS trial dropped by Jonathan Downar's team, which will revolutionize care for depression even more than the SAINT trial did – extensive (10 hour!) sessions of TMS in a single day, enhanced by single dose of cycloserine. 90% response, 70% remission! www.researchgate.net/publication/...
researchgate.net
(PDF) Real-world effectiveness of a single-day regimen for transcranial magnetic stimulation using Optimized, Neuroplastogen-Enhanced techniques in Depression (ONE-D)
PDF | Background: Conventional transcranial magnetic stimulation (TMS) regimens are logistically burdensome, requiring days or weeks of clinic visits.... | Find, read and cite all the research you nee...
53311
Lukas Goede @lukasgoede.bsky.social · 19/12/2024
Today at noon ET - make sure not to miss these talks about evoked potentials in neuromodulation. Registration is free.
011
Reposted by Lukas Goede
Network Stimulation Institute @netstim.org · 13/12/2024
Today we say goodbye to @bahnebahners.bsky.social who spent the last year with us as a Thiemann visiting fellow – safe travels, don't be a stranger & thank you so much for bringing so much fun, joy and science into the lab & the @braincircuits.bsky.social!
0115
Reposted by Lukas Goede
Lead-DBS @lead-dbs.org · 10/12/2024
First paper to ever use a 12-year-old feature of Lead-DBS which is to visualize graph networks, implemented still during the PhD of @andreashorn.org and pretty obscure in a tool called lead groupconnectome. Achtzehn et al. on STN-DBS ➔ Cognitive Control: onlinelibrary.wiley.com/doi/10.1002/...
0124