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1.
PLoS Biol ; 20(5): e3001658, 2022 05.
Artigo em Inglês | MEDLINE | ID: mdl-35594299

RESUMO

Free and open-source hardware, 3D printing, and the use of locally sourced materials can be valuable tools for local problem solving, as proven by the production of more than 400 reusable face shields and masks in a Nigerian community to bypass PPE shortages during the COVID-19 pandemic.


Assuntos
COVID-19 , Equipamento de Proteção Individual , COVID-19/prevenção & controle , Humanos , Pandemias/prevenção & controle , Impressão Tridimensional , SARS-CoV-2
2.
Neuron ; 107(3): 412-416, 2020 08 05.
Artigo em Inglês | MEDLINE | ID: mdl-32692973

RESUMO

TReND is a volunteer-scientist run charity dedicated to promoting research and education on the African continent. Focusing on neuroscience, we discuss approaches to address some of the factors that currently stifle Africa's scientific development and our experience in implementing them.


Assuntos
Pesquisa Biomédica , Fortalecimento Institucional , Disseminação de Informação , Neurociências/educação , Política Pública , África , Instituições de Caridade , Docentes , Humanos
3.
PLoS Biol ; 18(4): e3000730, 2020 04.
Artigo em Inglês | MEDLINE | ID: mdl-32330124

RESUMO

With the current rapid spread of COVID-19, global health systems are increasingly overburdened by the sheer number of people that need diagnosis, isolation and treatment. Shortcomings are evident across the board, from staffing, facilities for rapid and reliable testing to availability of hospital beds and key medical-grade equipment. The scale and breadth of the problem calls for an equally substantive response not only from frontline workers such as medical staff and scientists, but from skilled members of the public who have the time, facilities and knowledge to meaningfully contribute to a consolidated global response. Here, we summarise community-driven approaches based on Free and Open Source scientific and medical Hardware (FOSH) as well as personal protective equipment (PPE) currently being developed and deployed to support the global response for COVID-19 prevention, patient treatment and diagnostics.


Assuntos
Betacoronavirus , Infecções por Coronavirus , Equipamentos e Provisões Hospitalares , Pandemias , Pneumonia Viral , COVID-19 , Participação da Comunidade , Infecções por Coronavirus/diagnóstico , Infecções por Coronavirus/epidemiologia , Infecções por Coronavirus/terapia , Saúde Global , Humanos , Pneumonia Viral/diagnóstico , Pneumonia Viral/epidemiologia , Pneumonia Viral/terapia , SARS-CoV-2
4.
Sci Rep ; 10(1): 4399, 2020 03 10.
Artigo em Inglês | MEDLINE | ID: mdl-32157103

RESUMO

The retina decomposes visual stimuli into parallel channels that encode different features of the visual environment. Central to this computation is the synaptic processing in a dense layer of neuropil, the so-called inner plexiform layer (IPL). Here, different types of bipolar cells stratifying at distinct depths relay the excitatory feedforward drive from photoreceptors to amacrine and ganglion cells. Current experimental techniques for studying processing in the IPL do not allow imaging the entire IPL simultaneously in the intact tissue. Here, we extend a two-photon microscope with an electrically tunable lens allowing us to obtain optical vertical slices of the IPL, which provide a complete picture of the response diversity of bipolar cells at a "single glance". The nature of these axial recordings additionally allowed us to isolate and investigate batch effects, i.e. inter-experimental variations resulting in systematic differences in response speed. As a proof of principle, we developed a simple model that disentangles biological from experimental causes of variability and allowed us to recover the characteristic gradient of response speeds across the IPL with higher precision than before. Our new framework will make it possible to study the computations performed in the central synaptic layer of the retina more efficiently.


Assuntos
Células Amácrinas/ultraestrutura , Células Fotorreceptoras de Vertebrados/ultraestrutura , Células Ganglionares da Retina/ultraestrutura , Animais , Feminino , Masculino , Camundongos , Microscopia/instrumentação
5.
Elife ; 82019 09 23.
Artigo em Inglês | MEDLINE | ID: mdl-31545172

RESUMO

Visual neuroscientists require accurate control of visual stimulation. However, few stimulator solutions simultaneously offer high spatio-temporal resolution and free control over the spectra of the light sources, because they rely on off-the-shelf technology developed for human trichromatic vision. Importantly, consumer displays fail to drive UV-shifted short wavelength-sensitive photoreceptors, which strongly contribute to visual behaviour in many animals, including mice, zebrafish and fruit flies. Moreover, many non-mammalian species feature more than three spectral photoreceptor types. Here, we present a flexible, spatial visual stimulator with up to six arbitrary spectrum chromatic channels. It combines a standard digital light processing engine with open source hard- and software that can be easily adapted to the experimentalist's needs. We demonstrate the capability of this general visual stimulator experimentally in the in vitro mouse retinal whole-mount and the in vivo zebrafish. With this work, we intend to start a community effort of sharing and developing a common stimulator design for vision research.


Assuntos
Estimulação Luminosa/instrumentação , Estimulação Luminosa/métodos , Retina/fisiologia , Retina/efeitos da radiação , Visão Ocular , Animais , Camundongos , Peixe-Zebra
6.
PLoS Biol ; 16(9): e3000014, 2018 09.
Artigo em Inglês | MEDLINE | ID: mdl-30260950

RESUMO

Many efforts are making science more open and accessible; they are mostly concentrated on issues that appear before and after experiments are performed: open access journals, open databases, and many other tools to increase reproducibility of science and access to information. However, these initiatives do not promote access to scientific equipment necessary for experiments. Mostly due to monetary constraints, equipment availability has always been uneven around the globe, affecting predominantly low-income countries and institutions. Here, a case is made for the use of free open source hardware in research and education, including countries and institutions where funds were never the biggest problem.


Assuntos
Ciência , Acesso à Informação , Educação , Pesquisa
7.
PLoS Biol ; 15(7): e2002702, 2017 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-28719603

RESUMO

Small, genetically tractable species such as larval zebrafish, Drosophila, or Caenorhabditis elegans have become key model organisms in modern neuroscience. In addition to their low maintenance costs and easy sharing of strains across labs, one key appeal is the possibility to monitor single or groups of animals in a behavioural arena while controlling the activity of select neurons using optogenetic or thermogenetic tools. However, the purchase of a commercial solution for these types of experiments, including an appropriate camera system as well as a controlled behavioural arena, can be costly. Here, we present a low-cost and modular open-source alternative called 'FlyPi'. Our design is based on a 3D-printed mainframe, a Raspberry Pi computer, and high-definition camera system as well as Arduino-based optical and thermal control circuits. Depending on the configuration, FlyPi can be assembled for well under €100 and features optional modules for light-emitting diode (LED)-based fluorescence microscopy and optogenetic stimulation as well as a Peltier-based temperature stimulator for thermogenetics. The complete version with all modules costs approximately €200 or substantially less if the user is prepared to 'shop around'. All functions of FlyPi can be controlled through a custom-written graphical user interface. To demonstrate FlyPi's capabilities, we present its use in a series of state-of-the-art neurogenetics experiments. In addition, we demonstrate FlyPi's utility as a medical diagnostic tool as well as a teaching aid at Neurogenetics courses held at several African universities. Taken together, the low cost and modular nature as well as fully open design of FlyPi make it a highly versatile tool in a range of applications, including the classroom, diagnostic centres, and research labs.


Assuntos
Microscopia de Fluorescência/instrumentação , Optogenética/instrumentação , Impressão Tridimensional , Animais , Comportamento Animal , Caenorhabditis elegans/fisiologia , Drosophila/fisiologia , Microscopia de Fluorescência/economia , Optogenética/economia , Temperatura , Interface Usuário-Computador , Peixe-Zebra/fisiologia
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