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1.
Nat Commun ; 13(1): 1236, 2022 03 22.
Artigo em Inglês | MEDLINE | ID: mdl-35318316

RESUMO

Patients with amyotrophic lateral sclerosis (ALS) can lose all muscle-based routes of communication as motor neuron degeneration progresses, and ultimately, they may be left without any means of communication. While others have evaluated communication in people with remaining muscle control, to the best of our knowledge, it is not known whether neural-based communication remains possible in a completely locked-in state. Here, we implanted two 64 microelectrode arrays in the supplementary and primary motor cortex of a patient in a completely locked-in state with ALS. The patient modulated neural firing rates based on auditory feedback and he used this strategy to select letters one at a time to form words and phrases to communicate his needs and experiences. This case study provides evidence that brain-based volitional communication is possible even in a completely locked-in state.


Assuntos
Esclerose Lateral Amiotrófica , Interfaces Cérebro-Computador , Neurorretroalimentação , Esclerose Lateral Amiotrófica/terapia , Encéfalo/fisiologia , Eletroencefalografia , Humanos , Idioma , Masculino
2.
J Neurosci Methods ; 285: 6-18, 2017 Jun 15.
Artigo em Inglês | MEDLINE | ID: mdl-28472677

RESUMO

BACKGROUND: Behavioural training through positive reinforcement techniques is a well-recognised refinement to laboratory animal welfare. Behavioural neuroscience research requires subjects to be trained to perform repetitions of specific behaviours for food/fluid reward. Some animals fail to perform at a sufficient level, limiting the amount of data that can be collected and increasing the number of animals required for each study. NEW METHOD: We have implemented automated positive reinforcement training systems (comprising a button press task with variable levels of difficulty using LED cues and a fluid reward) at the breeding facility and research facility, to compare performance across these different settings, to pre-screen animals for selection and refine training protocols. RESULTS: Animals learned 1- and 4-choice button tasks within weeks of home enclosure training, with some inter-individual differences. High performance levels (∼200-300 trials per 60min session at ∼80% correct) were obtained without food or fluid restriction. Moreover, training quickly transferred to a laboratory version of the task. Animals that acquired the task at the breeding facility subsequently performed better both in early home enclosure sessions upon arrival at the research facility, and also in laboratory sessions. COMPARISON WITH EXISTING METHOD(S): Automated systems at the breeding facility may be used to pre-screen animals for suitability for behavioural neuroscience research. In combination with conventional training, both the breeding and research facility systems facilitate acquisition and transference of learning. CONCLUSIONS: Automated systems have the potential to refine training protocols and minimise requirements for food/fluid control.


Assuntos
Cruzamento , Condicionamento Operante/fisiologia , Processamento Eletrônico de Dados/métodos , Macaca mulatta/fisiologia , Reforço Psicológico , Criação de Animais Domésticos , Animais , Comportamento de Escolha/fisiologia , Feminino , Desempenho Psicomotor
3.
Biomaterials ; 112: 108-121, 2017 01.
Artigo em Inglês | MEDLINE | ID: mdl-27760395

RESUMO

The choice of electrode material is of paramount importance in neural prosthetic devices. Electrodes must be biocompatible yet able to sustain repetitive current injections in a highly corrosive environment. We explored the suitability of carbon nanotube (CNT) electrodes to stimulate retinal ganglion cells (RGCs) in a mouse model of outer retinal degeneration. We investigated morphological changes at the bio-hybrid interface and changes in RGC responses to electrical stimulation following prolonged in vitro coupling to CNT electrodes. We observed gradual remodelling of the inner retina to incorporate CNT assemblies. Electrophysiological recordings demonstrate a progressive increase in coupling between RGCs and the CNT electrodes over three days, characterized by a gradual decrease in stimulation thresholds and increase in cellular recruitment. These results provide novel evidence for time-dependent formation of viable bio-hybrids between CNTs and the retina, demonstrating that CNTs are a promising material for inclusion in retinal prosthetic devices.


Assuntos
Terapia por Estimulação Elétrica/instrumentação , Eletrodos Implantados , Microeletrodos , Nanotubos de Carbono/química , Degeneração Retiniana/fisiopatologia , Degeneração Retiniana/terapia , Próteses Visuais , Potenciais de Ação/fisiologia , Animais , Células Cultivadas , Condutividade Elétrica , Análise de Falha de Equipamento , Teste de Materiais , Camundongos , Nanotubos de Carbono/ultraestrutura , Desenho de Prótese , Propriedades de Superfície
4.
J Neurophysiol ; 113(10): 3574-87, 2015 Jun 01.
Artigo em Inglês | MEDLINE | ID: mdl-25761956

RESUMO

Transient gamma-band (40-80 Hz) spatiotemporal patterns are hypothesized to play important roles in cortical function. Here we report the direct observation of gamma oscillations as spatiotemporal waves induced by targeted optogenetic stimulation, recorded by intracortical multichannel extracellular techniques in macaque monkeys during their awake resting states. Microelectrode arrays integrating an optical fiber at their center were chronically implanted in primary motor (M1) and ventral premotor (PMv) cortices of two subjects. Targeted brain tissue was transduced with the red-shifted opsin C1V1(T/T). Constant (1-s square pulses) and ramp stimulation induced narrowband gamma oscillations during awake resting states. Recordings across 95 microelectrodes (4 × 4-mm array) enabled us to track the transient gamma spatiotemporal patterns manifested, e.g., as concentric expanding and spiral waves. Gamma oscillations were induced well beyond the light stimulation volume, via network interactions at distal electrode sites, depending on optical power. Despite stimulation-related modulation in spiking rates, neuronal spiking remained highly asynchronous during induced gamma oscillations. In one subject we examined stimulation effects during preparation and execution of a motor task and observed that movement execution largely attenuated optically induced gamma oscillations. Our findings demonstrate that, beyond previously reported induced gamma activity under periodic drive, a prolonged constant stimulus above a certain threshold may carry primate motor cortex network dynamics into gamma oscillations, likely via a Hopf bifurcation. More broadly, the experimental capability in combining microelectrode array recordings and optogenetic stimulation provides an important approach for probing spatiotemporal dynamics in primate cortical networks during various physiological and behavioral conditions.


Assuntos
Potenciais de Ação/fisiologia , Ritmo Gama/fisiologia , Córtex Motor/citologia , Córtex Motor/fisiologia , Neurônios/fisiologia , Optogenética , Animais , Biofísica , Análise de Fourier , Proteínas Luminescentes , Macaca mulatta , Masculino , Movimento , Força Muscular/fisiologia , Estimulação Luminosa , Curva ROC , Transdução Genética , Vigília
5.
Neural Comput ; 27(1): 1-31, 2015 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-25380335

RESUMO

Increased emphasis on circuit level activity in the brain makes it necessary to have methods to visualize and evaluate large-scale ensemble activity beyond that revealed by raster-histograms or pairwise correlations. We present a method to evaluate the relative similarity of neural spiking patterns by combining spike train distance metrics with dimensionality reduction. Spike train distance metrics provide an estimate of similarity between activity patterns at multiple temporal resolutions. Vectors of pair-wise distances are used to represent the intrinsic relationships between multiple activity patterns at the level of single units or neuronal ensembles. Dimensionality reduction is then used to project the data into concise representations suitable for clustering analysis as well as exploratory visualization. Algorithm performance and robustness are evaluated using multielectrode ensemble activity data recorded in behaving primates. We demonstrate how spike train SIMilarity space (SSIMS) analysis captures the relationship between goal directions for an eight-directional reaching task and successfully segregates grasp types in a 3D grasping task in the absence of kinematic information. The algorithm enables exploration of virtually any type of neural spiking (time series) data, providing similarity-based clustering of neural activity states with minimal assumptions about potential information encoding models.


Assuntos
Potenciais de Ação/fisiologia , Córtex Cerebral/citologia , Modelos Neurológicos , Neurônios/fisiologia , Percepção Espacial/fisiologia , Algoritmos , Animais , Simulação por Computador , Humanos , Redes Neurais de Computação
6.
Front Neurosci ; 8: 87, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-24904251

RESUMO

As yet, no cure exists for upper-limb paralysis resulting from the damage to motor pathways after spinal cord injury or stroke. Recently, neural activity from the motor cortex of paralyzed individuals has been used to control the movements of a robot arm but restoring function to patients' actual limbs remains a considerable challenge. Previously we have shown that electrical stimulation of the cervical spinal cord in anesthetized monkeys can elicit functional upper-limb movements like reaching and grasping. Here we show that stimulation can be controlled using cortical activity in awake animals to bypass disruption of the corticospinal system, restoring their ability to perform a simple upper-limb task. Monkeys were trained to grasp and pull a spring-loaded handle. After temporary paralysis of the hand was induced by reversible inactivation of primary motor cortex using muscimol, grasp-related single-unit activity from the ventral premotor cortex was converted into stimulation patterns delivered in real-time to the cervical spinal gray matter. During periods of closed-loop stimulation, task-modulated electromyogram, movement amplitude, and task success rate were improved relative to interleaved control periods without stimulation. In some sessions, single motor unit activity from weakly active muscles was also used successfully to control stimulation. These results are the first use of a neural prosthesis to improve the hand function of primates after motor cortex disruption, and demonstrate the potential for closed-loop cortical control of spinal cord stimulation to reanimate paralyzed limbs.

7.
Nat Rev Neurol ; 8(12): 690-9, 2012 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-23147846

RESUMO

Regaining motor function is of high priority to patients with spinal cord injury (SCI). A variety of electronic devices that interface with the brain or spinal cord, which have applications in neural prosthetics and neurorehabilitation, are in development. Owing to our advancing understanding of activity-dependent synaptic plasticity, new technologies to monitor, decode and manipulate neural activity are being translated to patient populations, and have demonstrated clinical efficacy. Brain-machine interfaces that decode motor intentions from cortical signals are enabling patient-driven control of assistive devices such as computers and robotic prostheses, whereas electrical stimulation of the spinal cord and muscles can aid in retraining of motor circuits and improve residual capabilities in patients with SCI. Next-generation interfaces that combine recording and stimulating capabilities in so-called closed-loop devices will further extend the potential for neuroelectronic augmentation of injured motor circuits. Emerging evidence suggests that integration of closed-loop interfaces into intentional motor behaviours has therapeutic benefits that outlast the use of these devices as prostheses. In this Review, we summarize this evidence and propose that several known plasticity mechanisms, operating in a complementary manner, might underlie the therapeutic effects that are achieved by closing the loop between electronic devices and the nervous system.


Assuntos
Interfaces Cérebro-Computador , Sistemas Homem-Máquina , Próteses e Implantes , Traumatismos da Medula Espinal/reabilitação , Encéfalo/fisiologia , Humanos , Software
8.
J Neural Eng ; 8(5): 054001, 2011 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-21828907

RESUMO

To date, there is no effective therapy for spinal cord injury, and many patients could benefit dramatically from at least partial restoration of arm and hand function. Despite a substantial body of research investigating intraspinal microstimulation (ISMS) in frogs, rodents and cats, little is known about upper-limb responses to cervical stimulation in the primate. Here, we show for the first time that long trains of ISMS delivered to the macaque spinal cord can evoke functional arm and hand movements. Complex movements involving coordinated activation of multiple muscles could be elicited from a single electrode, while just two electrodes were required for independent control of reaching and grasping. We found that the motor responses to ISMS were described by a dual exponential model that depended only on stimulation history. We demonstrate that this model can be inverted to generate stimulus trains capable of eliciting arbitrary, graded motor responses, and could be used to restore volitional movements in a closed-loop brain-machine interface.


Assuntos
Braço/fisiologia , Estimulação Elétrica/métodos , Mãos/fisiologia , Próteses e Implantes , Medula Espinal/fisiologia , Algoritmos , Animais , Braço/inervação , Eletromiografia , Feminino , Mãos/inervação , Força da Mão/fisiologia , Macaca mulatta , Movimento/fisiologia , Músculo Esquelético/inervação , Músculo Esquelético/fisiologia , Dinâmica não Linear , Traumatismos da Medula Espinal/terapia , Interface Usuário-Computador
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