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Limited output transcranial electrical stimulation 2023 (LOTES-2023): Updates o...

Bikson, Marom; Ganho-Ávila, Ana; Datta, Abhishek; Gillick, Bernadette; Joensson, Morten Goertz; Kim, Sungjin; Kim, Jinuk; Kirton, Adam; Lee, Kiwon

The objective and scope of this Limited Output Transcranial Electrical Stimulation 2023 (LOTES-2023) guidance is to update the previous LOTES-2017 guidance. These documents should therefore be considered together. The LOTES provides a clearly articulated and transparent framework for the design of devices providing limited output (specified low-intensity range) transcranial electrical stimulation for a variety ...


Digitalized transcranial electrical stimulation: a consensus statement

Brunoni, André R.; Ekhtiari, Hamed; Antal, Andrea; Auvichayapat, Paradee; Baeken, Chris; Benseñor, Isabela M; Bikson, Marom; Boggio, Paulo

Objective: Although relatively costly and non-scalable, non-invasive neuromodulation interventions are treatment alternatives for neuropsychiatric disorders. The recent developments of highly-deployable transcranial electric stimulation (tES) systems, combined with mobile-Health technologies, could be incorporated in digital trials to overcome methodological barriers and increase equity of access. The study aim...


Digitalized transcranial electrical stimulation: a consensus statement

Brunoni, Andre R; Ekhtiari, Hamed; Antal, Andrea; Auvichayapat, Paradee; Baeken, Chris; Benseñor, Isabela M; Bikson, Marom; Boggio, Paulo

Objective: Although relatively costly and non-scalable, non-invasive neuromodulation interventions are treatment alternatives for neuropsychiatric disorders. The recent developments of highly-deployable transcranial electric stimulation (tES) systems, combined with mobile-Health technologies, could be incorporated in digital trials to overcome methodological barriers and increase equity of access. The study aim...


A multimodal stimulation cell culture bioreactor for tissue engineering: A nume...

Meneses, João; Silva, João C.; Fernandes, Sofia R.; Datta, Abhishek; Ferreira, Frederico Castelo; Moura, Carla; Amado, Sandra; Alves, Nuno

The use of digital twins in tissue engineering (TE) applications is of paramount importance to reduce the number of in vitro and in vivo tests. To pursue this aim, a novel multimodal bioreactor is developed, combining 3D design with numerical stimulation. This approach will facilitate the reproducibility between studies and the platforms optimisation (physical and digital) to enhance TE. The new bioreactor was ...

Date: 2020   |   Origin: IC-online


Electrical Stimulation Optimization in Bioreactors for Tissue Engineering Appli...

Pascoal-Faria, Paula; Ferreira, Pedro Castelo; Datta, Abhishek; Amado, Sandra; Moura, Carla; Alves, Nuno

We review here the current research status on bioreactors for tissue engineering with cell electrical stimulation. Depending on the cell types, electrical stimulation has distinct objectives: 1) being employed both to mimic and enhance endogenous electricity measured in the natural regeneration of living organisms and 2) to mimic strain working conditions for contractible tissues (for instance muscle and cardia...

Date: 2019   |   Origin: IC-online

Transcranial DC Stimulation in Fibromyalgia: Optimized Cortical Target Supporte...

Mendonca, Mariana E.; Santana, Marcus B.; Baptista, Abrahão Fontes; Datta, Abhishek; Bikson, Marom; Fregni, Felipe; Araujo, Cintia P.

Acesso restrito: Texto completo. p. 610-617.; Submitted by JURANDI DE SOUZA SILVA (jssufba@hotmail.com) on 2012-02-23T17:45:37Z No. of bitstreams: 1 __pdn.sciencedirect.com_....0-S1526590011000289-main.pdf: 477995 bytes, checksum: 1fc49f13a5b536ec3d65f3b8a9ad21bc (MD5); Made available in DSpace on 2012-02-23T17:45:38Z (GMT). No. of bitstreams: 1 __pdn.sciencedirect.com_....0-S1526590011000289-main.pdf: 477995 b...

Date: 2012   |   Origin: Oasisbr

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