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1.
Nature ; 618(7963): 126-133, 2023 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-37225984

RESUMO

A spinal cord injury interrupts the communication between the brain and the region of the spinal cord that produces walking, leading to paralysis1,2. Here, we restored this communication with a digital bridge between the brain and spinal cord that enabled an individual with chronic tetraplegia to stand and walk naturally in community settings. This brain-spine interface (BSI) consists of fully implanted recording and stimulation systems that establish a direct link between cortical signals3 and the analogue modulation of epidural electrical stimulation targeting the spinal cord regions involved in the production of walking4-6. A highly reliable BSI is calibrated within a few minutes. This reliability has remained stable over one year, including during independent use at home. The participant reports that the BSI enables natural control over the movements of his legs to stand, walk, climb stairs and even traverse complex terrains. Moreover, neurorehabilitation supported by the BSI improved neurological recovery. The participant regained the ability to walk with crutches overground even when the BSI was switched off. This digital bridge establishes a framework to restore natural control of movement after paralysis.


Assuntos
Interfaces Cérebro-Computador , Encéfalo , Terapia por Estimulação Elétrica , Reabilitação Neurológica , Traumatismos da Medula Espinal , Medula Espinal , Caminhada , Humanos , Encéfalo/fisiologia , Terapia por Estimulação Elétrica/instrumentação , Terapia por Estimulação Elétrica/métodos , Quadriplegia/etiologia , Quadriplegia/reabilitação , Quadriplegia/terapia , Reprodutibilidade dos Testes , Medula Espinal/fisiologia , Traumatismos da Medula Espinal/complicações , Traumatismos da Medula Espinal/reabilitação , Traumatismos da Medula Espinal/terapia , Caminhada/fisiologia , Perna (Membro)/fisiologia , Reabilitação Neurológica/instrumentação , Reabilitação Neurológica/métodos , Masculino
2.
Talanta ; 115: 150-8, 2013 Oct 15.
Artigo em Inglês | MEDLINE | ID: mdl-24054572

RESUMO

A one-step cleanup method is described for the determination of PAHs, PCBs and OCPs in air (gas and particulate phase) samples. Analytes were extracted from ambient air samples using soxhlet extraction with a solvent mixture of dichloromethane and petroleum ether (1:4) for 24h. They were concentrated, separated and fractionated on a florisil and alumina column. The amounts of florisil (1g or 2g) with/without alumina were tested in the cleanup column. The study systematically investigated the effects of solvent types, and the amounts of florisil and alumina, on the performance of the cleanup process. The first fraction was eluted with 25 mL hexane, and analyzed for PCBs. The second fraction was collected via 40 mL hexane-ethyl acetate (1:1) solvent mixture, and analyzed for OCPs and PAHs. The optimized method yielded average recoveries between 88% and 99% for PCBs; 56% and 118% for PAHs; and 51% and 128% for OCPs. Other validation parameters were also investigated, such as MDL, LOQ, linear range, sensitivity (r(2)). An oven-program optimization and adjustment of GC-MS were performed. For internal quality control, surrogate recoveries and field blanks values were calculated. External calibration curves were prepared for PAHs, and internal calibration curves were preferred for OCP and PCBs.


Assuntos
Poluentes Atmosféricos/isolamento & purificação , Ar/análise , Cromatografia Gasosa-Espectrometria de Massas/normas , Praguicidas/isolamento & purificação , Bifenilos Policlorados/isolamento & purificação , Alcanos , Óxido de Alumínio/química , Calibragem , Silicatos de Magnésio/química , Cloreto de Metileno , Controle de Qualidade , Reprodutibilidade dos Testes , Sensibilidade e Especificidade , Solventes
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