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Open Neuroscience

@open-neuroscience.com
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half bot, half human, automatically boosting content related to #openneuroscience open-neuroscience.com: community driven repository showcasing #opensource / #openscience #neuroscience projects!

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Open Neuroscience @open-neuroscience.com · 6h
📜 Project Showcase 🛠️ PUMA: 3D Printed Open Source Microscope 👩‍💻 🧑‍💻 Developed by Paul J. Tadrous 👀 To learn more about it: open-neuroscience.com/en/post/puma... 👉 Read their manuscript: onlinelibrary.wiley.com/doi/10.1111/... #OpenHardware #OpenScience #OpenSource #OpenNeuroscience
PUMA
3D Printed Open Source MicroscopePUMA is backed up by a peer-reviewed paper in the
Journal of Microscopy and designed for direct eye
observations and ultra-portability with advanced
options for digital imaging, measurements and
computer control.
PUMA is an acronym for:
[P]ortable, [U]pgradeable, [M]odular, [A]ffordable.• Portable: PUMA is totally portable. Not only is it
small and lightweight but it does not require
a computer, smart phone, camera or PC monitor
to operate.
• Upgradeable and Modular: PUMA can used as
a simple but high quality monocular microscope
with an adjustable mirror for illumination,
all the way through a trinocular scope with full
Kohler illumination and an augmented reality unit
for a HUD of its integrated computer.
• Affordable and Open Source: All aspects of the
PUMA are open source and not monopolised
behind paywalls and patents. It is designed to be
built by anyone with access to 3D printing and uses
fixtures and fittings available from retail outlets.
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Open Neuroscience @open-neuroscience.com · 09/09/2026
📜 Apresentação de um projeto de #CienciaAberta 🛠️HistoEnder: Sistema automatizado para coloração de lâminas histológicas 👩‍💻 🧑‍💻 Desenvolvido por: Marco Ponzetti 👀 Para saber mais sobre o projeto: open-neuroscience.com/en/post/hist... 👉 Leia o artigo sobre o HistoEnder: engrxiv.org/preprint/vie...
Apresentação do Projeto
HistoEnder
Sistema automatizado para coloração
de lâminas histológicasO HistoEnder é baseado em uma impressora 3D que
utiliza um sistema de movimentação cartesiano clássico.
O equipamento consegue movimentar o suporte com
lâminas pelos diferentes recipientes contendo solventes
e soluções de coloração, de forma totalmente programável,
se adaptando a qualquer protocolo. Por ser extremamente
versátil, pode ser empregado para diversos procedimentos
de coloração citológica e histológica.Principais vantagens do HistoEnder:
• Economiza horas de trabalho manual, uma vez
que automatiza protocolos manuais de
longa duração;
• Aumenta a consistência das colorações entre
diferentes seções, melhorando a reprodutibilidade
experimental;
• Amplamente adaptável: desde esfregaços e cortes
de tecidos incluídos em parafina até cortes
congelados incluídos em OCT e amostras de tecidos
rígidos incluídos em PMMA;
• Para além da histologia: pode realizar
revestimentos por imersão (dip coating) para
laboratórios de ciência dos materiais e química.
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Open Neuroscience @open-neuroscience.com · 04/08/2026
📜 Project Showcase 🛠️ HistoEnder: 3D printer-based histological slide autostainer 👩‍💻 🧑‍💻 Developed by Marco Ponzetti 👀 To learn more about it: open-neuroscience.com/en/post/hist... 👉 Read their manuscript: engrxiv.org/preprint/vie... #OpenSoftware #OpenScience #OpenSource
HistoEnder
3D printer-based histological slide autostainerThe HistoEnder is based on a Cartesian FDM
3D printer, and works by moving a slide rack
loaded with microscope slides through different
solvent/staining jars, in a fully programmable
fashion. This makes the machine incredibly
versatile and able to perform several cytological/
histological staining jobs automatically.The HistoEnder:
• Saves hours of manual staining to researchers
who currently do such procedures by hand;
• Increases staining consistency between runs
thus increasing experimental reproducibility;
• Can be adapted to a variety of procedures
starting from smears, paraffin-embedded sections,
OCT-embedded cryosections and even
PMMA-embedded hard tissue samples;
• Can perform dip coatings for material science
and chemistry laboratories;
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Open Neuroscience @open-neuroscience.com · 30/07/2026
📜 Apresentação de um projeto de #CienciaAberta 🛠️pyControl: Um hardware aberto para registrar experimentos comportamentais 🧑‍💻 Desenvolvido por: Thomas Akam 👀 Para saber mais: open-neuroscience.com/en/post/pyco... 👉 Leia o artigo sobre o pyControl: elifesciences.org/articles/67846
Project Showcase
pyControl
Um hardware aberto, desenvolvido em Python,
para registrar experimentos comportamentaisO pyControl é um sistema de hardware e software
abertos para auxiliar na aquisição de experimentos
comportamentais em neurociência e psicologia.
Trata-se de uma plataforma baseada em
microcontroladores programados com MicroPython.O pyControl é uma ferramenta intuitiva e adaptável
que foi projetada para atender necessidades comuns
em testes de neurociência comportamental, como:
(1) Definir tarefas comportamentais utilizando máquinas de
estados finitos (modelos que descrevem as diferentes etapas
de um experimento e as transições entre elas).
(2) Executar experimentos de forma eficiente, permitindo
estudos comportamentais de alto rendimento.
(3) Facilitar o compartilhamento e a reprodução dos métodos
experimentais entre pesquisadores da área.
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Jonah Pearl @j4jonahp.bsky.social · 14/07/2026
We use pyControl for freely moving tasks in mice and it’s excellent! Easy to code, customize, reliable, and a good user interface.
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Open Neuroscience @open-neuroscience.com · 07/07/2026
📜 Project Showcase 🛠️ pyControl: Open source, Python-based, behavioural experiment control. 👩‍💻 🧑‍💻 Developed by Thomas Akam 👀 To learn more about it: open-neuroscience.com/en/post/pyco... #OpenSoftware #OpenScience #OpenSource
pyControl
Open source, Python-based,
behavioural experiment control.pyControl is a system of open source hardware
and software for controlling behavioural
experiments in neuroscience and psychology,
built around the MicroPython microcontroller.pyControl is a user-friendly and flexible tool
addressing a commonly encountered use case
in behavioural neuroscience:
(1) Defining behavioural tasks as extended state machines.
(2) Running them efficiently as high-throughput experiments.
(3) Communicating task logic to other researchers
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Open Neuroscience @open-neuroscience.com · 30/06/2026
📜 Apresentação de um projeto de #CienciaAberta 🛠️suite2p: Pipeline para dados de imagem de cálcio por microscopia de dois fótons 👩‍💻 🧑‍💻 Equipe: Carsen Stringer e Marius Pachitariu 👀 Para saber mais: open-neuroscience.com/en/post/suit... 🎥 Entrevista com Carsen Stringer: www.youtube.com/live/Zxbz2OU...
Apresentação do Projeto
suite2p
Fluxo de processamento
(Pipeline) para dados
de imagem de cálcio
por microscopia de
dois fótonsO Suite2P é um fluxo de processamento
modular desenvolvido em Python que permite
realizar o registro de imagens, a detecção
automática de células, a extração de sinais
de cálcio e a inferência da atividade neuronalTrata-se de uma ferramenta rápida e precisa que
pode ser executada em computadores de uso
comum. Também conta com uma interface gráfica
de usuário (GUI), que facilita a visualização e a
análise dos dados, além de permitir a revisão e o
refinamento manual dos resultados gerados pelo
algoritmo de detecção celular.
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Open Neuroscience @open-neuroscience.com · 25/06/2026
📜 Project Showcase 🛠️ Suite2p: Pipeline for processing two-photon calcium imaging data 👩‍💻 🧑‍💻 Team: Carsen Stringer and Marius Pachitariu 👀 To learn more: open-neuroscience.com/en/post/suit... 🎥 Watch our webinar recording with Carsen Stringer: www.youtube.com/watch?v=Zxbz... #OpenSoftware #OpenScience
open-neuroscience.com
Suite2P | Open Neuroscience
World Wide Series Seminar Suite2P is a very modular imaging processing pipeline written in Python which allows you to perform registration of raw data movies, automatic cell detection, extraction of c...
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Open Neuroscience @open-neuroscience.com · 16/06/2026
📜 Apresentação de um projeto de #CienciaAberta 🛠️BioAmp exg pill: Hardware de código aberto para amplificação de biosinais. 👩‍💻 🧑‍💻 Desenvolvido por: Deepak Khatri 👀 Para saber mais sobre o projeto: open-neuroscience.com/en/post/bioa...
Apresentação do Projeto
BioAmp
exg pill
Uma placa compacta e elegante
de front-end analógico (placa de
circuito frontal) para aquisição
de biosinaisO BioAmp EXG Pill é capaz de registrar sinais
biológicos com qualidade compatível com
publicações científicas, incluindo eletrocardiograma
(ECG), eletromiografia (EMG), eletrooculografia (EOG)
e eletroencefalografia (EEG), sem a necessidade de
filtros específicos de hardware ou software.O BioAmp EXG Pill é compatível com qualquer
microcontrolador de 5V que esteja equipado com
conversor analógico digital (ADC), como o Arduino
Uno ou Nano, bem como com outros ADCs
compatíveis com 5V, como o ADS1115.
Este projeto foi desenvolvido utilizando o software
KiCad, e todos os arquivos de design estão disponíveis
publicamente na página oficial do projeto no GitHub!
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Open Neuroscience @open-neuroscience.com · 09/06/2026
📜 Project Showcase 🛠️ UBioAmp exg pill: Open-source hardware for biopotential amplification. 👩‍💻 🧑‍💻 Developed by: Deepak Khatri 👀 To learn more about it: open-neuroscience.com/en/post/bioa... #OpenScience #OpenSource #OpenHardware #Neuroscience
BioAmp
exg pill
A small and elegant
Analog Front End board for
BioPotential signal acquisitionBioAmp EXG Pill is capable of recording
publication-quality biopotential signals like
ECG, EMG, EOG, and EEG, without the inclusion
of any dedicated hardware or software filters.BioAmp EXG Pill works with any 5V microcontroller
with an ADC like Arduino UNO/Nano, or dedicated
5v compatible ADC like ADS1115.
BioAmp EXG Pill has been created using KiCad
and all design files are available in the
project’s github page.
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Open Neuroscience @open-neuroscience.com · 03/06/2026
📜 Apresentação de um projeto de #CienciaAberta 🛠️ Mini microscópios da UCLA: Microscópios de fluorescência com hardware aberto para o registro da atividade neural in vivo 👩‍💻 🧑‍💻 Daniel Aharoni; Peyman Golshani; Alcino Silva; Baljit Khakh; Denise Cai; Tristan Shuman 🔗https://tinyurl.com/3d9w7k7x
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Open Neuroscience @open-neuroscience.com · 26/05/2026
📜 Project Showcase 🛠️ UCLA Miniscope Project: #OpenSource miniaturized fluorescence microscopes for in vivo neural recording in freely behaving animals. 👨‍🔬👩‍🔬 Team: Daniel Aharoni; Peyman Golshani; Alcino Silva; Baljit Khakh; Denise Cai; Tristan Shuman 👀 To learn more: tinyurl.com/3d9w7k7x #OpenScience
Project Showcase
UCLA Miniscope Project
Open-source miniaturized fluorescence microscopes
for in vivo neural recording in freely behaving animals.The goal of the project is to lower the barrier to
high-quality in vivo calcium imaging in freely
behaving animals by making the underlying tools,
training, and know-how openly available, regardless
of budget or in-house engineering capacity.Each Miniscope pairs custom optics, electronics,
and firmware with open hardware designs,
data-acquisition software, and analysis pipelines.
The platform spans the full stack of needs to go
from surgery to publishable findings, with a
global community of researchers using and
contributing hardware, software, and methods.
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Open Neuroscience @open-neuroscience.com · 21/05/2026
📜 Apresentação de um projeto de #CienciaAberta 🛠️ Projeto Humano Visível: um banco de dados de imagens anatômicas de corpos masculinos e femininos.. 👩‍💻 🧑‍💻 Desenvolvido pela: U.S. National Library of Medicine 👀 Para saber mais sobre o projeto: open-neuroscience.com/en/post/the-...
Apresentação do Projeto
Projeto Humano Visível
Base de dados aberta ao público contendo imagens
anatômicas em cortes transversais obtidas por
criosseccionamento (corte de tecidos biológicos congelados),
tomografia computadorizada (TC) e ressonância magnética
(RM) de um corpo masculino e um feminino.A longo prazo, o Projeto Humano Visível tem
como objetivo desenvolver um sistema de modelos
estruturados de informação sobre anatomia,
integrando, de forma transparente, informações
visuais com formatos simbólicos de conhecimento,
como a nomenclatura das estruturas anatômicas
do corpo humano.
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Open Neuroscience @open-neuroscience.com · 12/05/2026
📜 Project Showcase 🛠️ The Visible Human Project: a database of anatomical images from male and female bodies. 👩‍💻 🧑‍💻 Developed by: U.S. National Library of Medicine 👀 To learn more about it: open-neuroscience.com/en/post/the-... #OpenScience
Visible Human Project
Public-domain library of cross-sectional cryosection,
CT, and MRI images of one male and one female bodyThe long-term goal of the Visible Human Project
is to produce a system of knowledge structures
that will transparently link visual knowledge forms
to symbolic knowledge formats such as the
names of body parts.
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Open Neuroscience @open-neuroscience.com · 05/05/2026
📜 Apresentação de um projeto de hashtag#CienciaAberta 🛠️ Projeto Yale “Mão Aberta”: uma iniciativa para promover o design e o uso de mãos robóticas. 👩‍💻 🧑‍💻 Equipe: Prof. Aaron M. Dollar and Vatsal V. Patel 👀 Para saber mais sobre o projeto: open-neuroscience.com/en/post/the_...
Projeto Yale “Mão Aberta”As mãos robóticas disponíveis comercialmente
costumam ser caras e difíceis de modificar ou adaptar.
Este projeto visa desenvolver diversos modelos
de mãos robóticas com código aberto, e com
a contribuição da comunidade, atualizar e
ampliar continuamente o design desses
modelos, gerando diferentes variações e
melhorias úteis para os pesquisadores.
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Open Neuroscience @open-neuroscience.com · 28/04/2026
📜 Project Showcase 🛠️ The Yale Open Hand Project: an initiative to advance the design and use of robotic hands 👩‍💻 🧑‍💻 Team: Prof. Aaron M. Dollar and Vatsal V. Patel 👀 To learn more about it: lnkd.in/e4GcfPZF #OpenScience #OpenHardware #OpenSource
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Andre M Chagas @iamchagas.bsky.social · 23/04/2026
Beehive's #preprint is out! A simple electronics platform platform for building research tools and to teach programming.. preprints.scielo.org/index.php/sc... #openhardware #neuroskyence
preprints.scielo.org
BeeHive: A flexible open electronics platform for controlling research equipment and teaching electronics principles
In this manuscript we present BeeHive, a standardized, open-source hardware electronics ecosystem designed to address challenges faced by researchers when developing custom scientific equipment. Beehive is flexible and interoperable, since it is organised around minimal design rules. It consists of a microcontroller-based mainboard and function-specific Daughter Boards (DBs) for controlling actuators or reading sensors, allowing researchers to rapidly combine and repurpose components to build complex, specialized systems. This modular approach significantly reduces the time and cost associated with instrumentation development, promoting effective collaboration through shared, standardized solutions. The platform's versatility is demonstrated across several neuroscience applications, including a reward delivery system for head-fixed mice, a modular mouse maze, and an odour stimulator, alongside a dedicated Training DB and curriculum designed to teach electronics and MicroPython programming in an integrated, project-based manner. By embracing open-source principles for hardware and software, BeeHive lowers the barrier to entry for researchers in developing their own setups, fostering greater accessibility, reproducibility, and innovation. The system is also discipline agnostic, and could be used to create tools in different fields.
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Open Neuroscience @open-neuroscience.com · 23/04/2026
📜 Apresentação de um projeto de #CienciaAberta 🛠️ SpikeInterface: Um sistema integrado para identificar e classificar os sinais elétricos dos neurônios 🧑‍💻 Alessio Buccino; Cole Hurwitz; Samuel Garcia; Jeremy Magland; Josh Siegle; Matthias Hennig 👀 Para saber mais: open-neuroscience.com/en/post/spik...
SpikeInterface:
Um sistema integrado para
identificar e classificar os sinais
elétricos dos neurôniosO SpikeInterface é um pacote unificado,
em Python, para classificar os impulsos
elétricos dos neurônios.
• Possui uma interface de programação feita para ser
simples e fácil de usar, ja que oferece comandos
prontos e intuitivos.
• Na prática, permite que os usuários construam
esquemas complexos para analisar e classificar
os sinais dos neurônios com poucas linhas de código.
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Open Neuroscience @open-neuroscience.com · 21/04/2026
📜 Project Showcase 🛠️ SpikeInterface: a unified framework for spike sorting 👩‍💻 🧑‍💻 Developed by Alessio Buccino; Cole Hurwitz; Samuel Garcia; Jeremy Magland; Josh Siegle; Matthias Hennig 👀 To learn more about it: open-neuroscience.com/en/post/spik... #OpenScience #OpenNeuroscience #Neuroscience
SpikeInterface: a unified framework for spike sortingSpikeInterface is a unified Python
framework for spike sorting.
• With its high-level API, it is designed
to be accessible and easy to use.
• Allows users to build full analysis
pipelines for spike sorting with a few
lines of code.
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Open Neuroscience @open-neuroscience.com · 09/04/2026
📜 Apresentação de um projeto de #CienciaAberta 🛠️ NeuroFedora: Sofware aberto para neurociência aberta 💡 NeuroFedora é um sistema operacional Linux para a comunidade de #neurociência 👩‍💻 🧑‍💻 Criado pelo.a.s voluntário.a.s do The Fedora Project 👀 Para saber mais: open-neuroscience.com/en/post/neur...
Apresentacao do projeto NeuroFedora
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Open Neuroscience @open-neuroscience.com · 07/04/2026
📜Project Showcase 🛠️ NeuroFedora: Free software for Free neuroscience 💡 It is a Linux operating system developed specially for the hashtag#neuroscience community 👩‍💻 🧑‍💻 Developed by NeuroFedora volunteers at The Fedora Project 👀 To learn more about NeuroFedora: open-neuroscience.com/en/post/neur...
NeuroFedora project showcase
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Open Neuroscience @open-neuroscience.com · 26/03/2026
📜 Apresentação de um projeto de #CienciaAberta 🛠️ Microscópios OpenFlexure: uma plataforma / suporte de posicionamento flexível, impressa em 3D. 👨‍🔬 Desenvolvido por Joe Knapper 👀 Para saber mais sobre o OpenFlexure: open-neuroscience.com/en/post/open...
Apresentação do projeto: Microscópios OpenFlexure
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Open Neuroscience @open-neuroscience.com · 24/03/2026
📜 Project Showcase 🛠️ OpenFlexure microscopes: a 3D printed flexure translation stage. 👨‍🔬Joe Knapper 👀 To learn more about OpenFlexure: open-neuroscience.com/en/post/open... #OpenScience #OpenNeuroscience #OpenHardware #OpenSource
OpenFlexure microscopesOpenFlexure is a 3D printed flexure translation stageOpenFlexure is a 3D printed flexure translation stage, developed by a group at the Bath University. The stage is capable of sub-micron-scale motion, with very small drift over time. Which makes it quite good, among other things, for time-lapse protocols that need to be done over days/weeks time, and under space restricted areas, such as fume hoods.
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Andre M Chagas @iamchagas.bsky.social · 20/03/2026
Na #fesbe vamos realizar um curso de @bonsai-rx.org. Se você faz pesquisa no Brasil e usa o Bonsai, pfv me mande uma mensagem! Queremos saber um pouco sobre como foi a implementação, benefícios e problemas de implementar o sistema no seu projeto/lab! #ciênciabrasil #comportamento #neurociência
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Andre M Chagas @iamchagas.bsky.social · 20/03/2026
For a @bonsai-rx.org short course that will be run at #Fesbe 2026 we are looking for researchers based in Brazil that have been using Bonsai! We want to chat about use cases, benefits and painpoints while implementing it. DM me! #ciênciabrasil #opensoftware #openscience #behaviour
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Open Neuroscience @open-neuroscience.com · 10/03/2026
👋 Olá, comunidade de ciência aberta :) 👉 Esse é o nosso último post nessa série de publicações dedicada a apresentar nossa equipe. 🤩 Nosso time não seria completo sem o Stephen Keller #cienciaaberta #neurociencia
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Open Neuroscience @open-neuroscience.com · 03/03/2026
👉 This is our final post—but certainly not the least—in our series dedicated to presenting our team members. 🤩 Our team wouldn't be complete without Stephen Keller
Presenting Stephen Keller
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Open Neuroscience @open-neuroscience.com · 24/02/2026
👋 Olá, querida rede de seguidore.a.s :) 🤩 Temos o prazer de apresentar o Gabriel Costa, PhD, que faz parte da nossa equipe! 👀 Acompanhe nossas próximas publicações para saber tudo sobre a nossa equipe!
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Open Neuroscience @open-neuroscience.com · 17/02/2026
🎉 Happy Tuesday, everyone :) 🤩 It is with great pleasure that we introduce our team member, Gabriel Costa. 🖇️ Stay tuned to meet our other team members and don't hesitate to connect with us!
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Open Neuroscience @open-neuroscience.com · 05/02/2026
👋 Olá, entusiastas da neurociência aberta :) 😍 Temos o prazer de apresentar mais uma pessoa da nossa equipe! 🤝 Apresentando... Luisa Pimentel :) 🎉 Nos próximos posts você vai descobrir os outros membros da nossa equipe 📨 Não hesitem em entrar em contato.
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Open Neuroscience @open-neuroscience.com · 04/02/2026
🙌 Hello, Open Neuroscience friends! 😍 We are pleased to introduce another member of our team. 🖇️ Stay tuned to meet our other team members and don't hesitate to connect with us!
Presenting our team member: Luisa Pimentel
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Open Neuroscience @open-neuroscience.com · 30/01/2026
🙌 Olá, comunidade querida! 😍 Temos o prazer de apresentar a nossa equipe nessa nova série de posts. 👀 Fiquem de olho nas nossas próximas publicações e não hesitem em nos contatar! #CienciaAberta
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Open Neuroscience @open-neuroscience.com · 29/01/2026
🙌 Hello, beautiful community! 😍 It is our pleasure to present our team members in this new series of posts. 🖇️ Stay tuned and don't hesitate to connect with us! #OpenCode #OpenNeuroscience #Neuroscience #OpenScience #OpenSource #OpenSoftware #OpenHardware
Andre Maia Chagas - Lecturer in Open ScienceAndre´s biographyWhat does Open Science means to André
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Open Neuroscience @open-neuroscience.com · 22/01/2026
(1/2) Olá, comunidade! Feliz ano novo! 🎉 💡 Faz tempo que não postamos por aqui, mas é por um bom motivo! 💪 O nosso time estava preparando posts mais interessantes e dinâmicos. 😍 Esperamos que vocês gostem! 🖼️ Arte gráfica: Stephen Keller 🔤 Texto: Gabriel Costa, Luisa Pimentel, e André Maia Chagas
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Open Neuroscience @open-neuroscience.com · 22/01/2026
(2/2) 👀 Para saber mais, accesse nosso website (em breve também em Português): open-neuroscience.com/en/ 🖇️ Conecte-se conosco via LinkedIn: www.linkedin.com/company/open... ✍ Escreva para a gente no e-mail: info@open-neuroscience.com #CienciaAberta #Neurociencia
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Open Neuroscience @open-neuroscience.com · 21/01/2026
(1/2) Hello, fellow Open Neuroscience enthusiasts! Happy New Year! 🎉 💡 It's been a while, but for a good reason! 💪 Our team has been working hard to bring you even more engaging and interesting content on social media! :) 😍 We hope you enjoy our new posts. Let us know what you think! #OpenScience
What is the Open Neuroscience Initiative?
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Open Neuroscience @open-neuroscience.com · 21/01/2026
(2/2) 🖼️ Graphic art by Stephen Keller 🔤 Content by Gabriel Costa, Luisa Pimentel, and André Maia Chagas! 👀 For more, access our website: open-neuroscience.com/en/ 🖇️ Connect with us on LinkedIn: www.linkedin.com/company/open... ✍ Contact us at: info@open-neuroscience.com #OpenSource #Neuroscience
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turrigiano.bsky.social @turrigiano.bsky.social · 20/11/2025
Re-upping this - Neuropeeps! We have a TT Job in my wonderful department at Brandeis! First consideration to applications received by Dec 15 (but why wait?) www.nature.com/naturecareer...
nature.com
Assistant Professor in Biology and Neuroscience Program - Waltham, Massachusetts (US) job with Brandeis University | 12848464
The Department of Biology and the Program in Neuroscience at Brandeis University invite applications for a tenure-track Assistant Professor positio...
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Elizabeth Jacobs, PhD @elizabethjacobs.bsky.social · 20/11/2025
VACCINES DO NOT CAUSE AUTISM, YOU FLAMING SHITBIRDS. WE HAVE, IN FACT, NOT IGNORED YOUR NOW-DEFUNCT HYPOTHESIS. WE INVESTIGATED IT TO THE TUNE OF STUDIES WITH DATA FROM MILLIONS OF KIDS.
Vaccine Safety
MENU V
For Everyone
NOV. 19, 2025
KEY POINTS
• The claim "vaccines do not cause autism" is not an evidence-based claim because studies have not ruled out the possibility that infant vaccines cause autism.
• Studies supporting a link have been ignored by health authorities.
• HHS has launched a comprehensive assessment of the causes of autism,
including investigations on plausible biologic mechanisms and potential causal links.
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Alessandro De Simone @desimonelab.bsky.social · 20/11/2025
The lab’s first pre-print! We investigated how growth-inducing Erk activity waves are regulated in regenerating zebrafish scales. We discovered that Erk waves are followed by waves of expression of their own inhibitors, as predicted by excitable waves theory. tinyurl.com/26r2cmpj
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Reposted by Open Neuroscience
Andre M Chagas @iamchagas.bsky.social · 12/11/2025
Anyone off to #sfn2025? I'll be helping out the folks of the Bonsai Foundation in sharing info about their amazing #OpenScience #opensoftware #openhardware tools for research! Come find us on Booth 3726, in Hall B2, in the Institute & Non-Profit Area #cienciabr @open-neuroscience.com
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Open Neuroscience @open-neuroscience.com · 13/10/2025
🥳Join us in celebrating our new team member! 🧑‍💻Stephen Keller 🧠He is a designer and researcher who holds an MA from McGill University, where he explored #OpenScience in the context of digital humanities. 💡He is co-creating the Portuguese version of our website! Learn more & contact Stephen👇
Stephen headshot
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Open Neuroscience @open-neuroscience.com · 29/09/2025
🥳Join us in celebrating our new team member! 👨‍🔬Gabriel Araujo Costa, PhD 🧠He has expertise in toxicology, pharmacology, neurobiology, and behavior, with a particular focus on drug addiction and rare diseases. 💡He is co-creating the Portuguese version of our website! Learn more & contact Gabriel👇
Gabriel's photo
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Open Neuroscience @open-neuroscience.com · 17/09/2025
📹Webinar recording on NeuroFedora 💡An initiative to provide a ready-to-use Fedora Linux-based Free #OpenSource software platform for #neuroscience. 🧑‍💻Ankur Sinha 🔗https://www.youtube.com/live/2xAK1tY0qro?si=EuQurVxlXwm8qexS #OpenScience #OpenNeuroscience
NeuroFedora
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Open Neuroscience @open-neuroscience.com · 10/09/2025
👀Free online workshop on "Imaging and Workflows: Handling Biomedical Images and Sharing Reproducible Workflows" organized by @osoh-neuro.bsky.social with @danielneuroglia.bsky.social from the Digital Research Alliance of Canada. 📆Sept 22 at 4 pm EST ✍️Register tinyurl.com/bdd6hxes 👇More details
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Open Neuroscience @open-neuroscience.com · 07/09/2025
📹Webinar recording on PiVR 💡The Raspberry Pi-based Virtual Reality system (PiVR)is a system that allows experimenters to immerse small animals in virtual realities. 👨‍🔬With David Tadres & Matthieu Louis 🔗https://www.youtube.com/watch?v=uG898FL421U&t=183s #OpenScience #Neuroscience #OpenNeuroscience
PiVR video cover
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Open Neuroscience @open-neuroscience.com · 30/08/2025
📹Webinar recording on DeepLabStream 💡A Python-based multipurpose tool that enables the real-time tracking of animals and manipulation of experiments. 👨‍🔬With Jens Schweihoff 🔗https://www.youtube.com/watch?v=ZspLDZb_kMI #OpenScience #Neuroscience #OpenNeuroscience
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World Wide Series | Open Neuroscience - 07/05/2021 - Jens Schweihoff
YouTube video by Openeuroscience
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Reposted by Open Neuroscience
accounts-leaving-x.bsky.social @accounts-leaving-x.bsky.social · 24/08/2025
Open Neuroscience (a user-driven, curated database dedicated to aggregating open neuroscience projects from around the web) has left X (2.384 followers) Bluesky: @open-neuroscience.com
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Open Neuroscience @open-neuroscience.com · 17/08/2025
👀Recording of the webinar on Open Ephys @open-ephys.org, #open-source tools for systems #neuroscience. 💡Their ultimate goal is to create a system optimized for tetrodes and optogenetics where users can record and analyse data in real-time. 👨‍🔬With Jakob Voigts www.youtube.com/live/DmK2Cts...
youtube.com
World Wide Series | Open Neuroscience - 25/06/2021 - Jakob Voigts
YouTube video by Openeuroscience
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Reposted by Open Neuroscience
Luisa Pimentel @luisa-pimentel.bsky.social · 21/07/2025
✍️Apply now for the Neuro-Cooper Open Science Prizes for a chance to: 🏅 Be rewarded for your contributions to #OpenScience in #Neuroscience 🧳 Visit Montreal in the Fall and present your work 🖇️ Connect with a vibrant Open Science community 🏆Bring hope a beautiful and exclusive trophy! See below how👇
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