Difference between revisions of "Halo Sport"
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− | Halo Sport is head mounted device, which provides transcranial direct-current stimulation (tDCS). It was | + | Halo Sport is head mounted device, which provides transcranial direct-current stimulation (tDCS). It was created by Halo Neuroscience as a tDCS device, which could be safely used outside laboratories.<ref> Halo Neuroscience. Bihemispheric Transcranial Direct Current Stimulation with Halo Neurostimulation System over Primary Motor Cortex Enhances Fine Motor Skills Learning in a Complex Hand Configuration Task. Halo Sport [online]. 2016, Feb 10. Available online at: https://halo-website-static-assets.s3.amazonaws.com/whitepapers/cct.pdf (Retrieved 2nd September, 2016) </ref> The device consists of a wearable headset on which are placed two saline-soaked electrodes and a neurostimulator, which is powered by battery. |
− | Cortex Enhances Fine Motor Skills Learning in a Complex Hand Configuration Task. Halo Sport [online]. 2016, Feb 10. Available online at: https://halo-website-static-assets.s3.amazonaws.com/whitepapers/cct.pdf (Retrieved 2nd September, 2016) </ref> | ||
== Main characteristics == | == Main characteristics == |
Revision as of 11:50, 2 September 2016
Halo Sport | |
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Category | Transcranial direct-current stimulation |
Developer | Halo Neuroscience |
Announced | February 2016 [1] |
Released | Developers:
Consumers: Fall 2016 [2] |
Price | 549 USD (Fall 2016)[2] |
Max output | 2.0 mA2 T 0.002 A [2] |
Session duration | 1800 s30 minute [3] |
Scalp location | C3 and C4 or Cz [4] [5] |
Weight | g |
Controls |
a handheld Android device [4] |
Data available | Good |
Risk factor | Low |
Medical prescription | No |
https://www.haloneuro.com |
Halo Sport is head mounted device, which provides transcranial direct-current stimulation (tDCS). It was created by Halo Neuroscience as a tDCS device, which could be safely used outside laboratories.[6] The device consists of a wearable headset on which are placed two saline-soaked electrodes and a neurostimulator, which is powered by battery.
Contents
Main characteristics
Purpose
Company & People
Important Dates
Enhancement/Therapy/Treatment
Ethical & Health Issues
Public & Media Impact and Presentation
Public Policy
Related Technologies, Projects or Scientific Research
References
- ↑ BROWN, Ayliffe. Neurotechnology To Unlock Human Potential: Interview with Halo Neuroscience CEO, Dr. Daniel Chao. Wearable Technologies [online]. 2016, June 28. Available online at: https://www.wearable-technologies.com/2016/06/neurotechnology-to-unlock-human-potential-interview-with-halo-neuroscience-ceo-dr-daniel-chao/ (Retrieved 31st August, 2016)
- ↑ 2.0 2.1 2.2 BARNWELL, Aliya. This crazy new wearable uses 'neurostimulation' to prime your brain and body for exercise. Digital Trends [online]. 2016, Mar 11. Available online at: http://www.digitaltrends.com/wearables/neurostimulation-headphones-boost-workout-effectiveness/ (Retrieved 1st September, 2016)
- ↑ MANEY, Kevin. Halo claims to make you jump higher, think faster, remember longer. Newsweek [online]. 2016, Feb 10. Available online at: http://europe.newsweek.com/halo-neuroscience-brain-stimulation-424829?rm=eu (Retrieved 31st August, 2016)
- ↑ 4.0 4.1 Halo Neuroscience. Bihemispheric Transcranial Direct Current Stimulation with Halo Neurostimulation System over Primary Motor Cortex Enhances Rate of Force Development in an Isometric Lateral Pinch Force Task. Halo Sport [online]. 2016, Feb 10. Available online at: https://halo-website-static-assets.s3.amazonaws.com/whitepapers/mvc.pdf (Retrieved 2nd September, 2016)
- ↑ Halo Neuroscience. A Real World Investigation into the Benefits of Transcranial Direct Current Stimulation to the Primary Motor Cortex on Muscular Performance in Elite Athletes. Halo Sport [online]. 2016, Feb 10. Available online at: https://halo-website-static-assets.s3.amazonaws.com/whitepapers/mjp.pdf(Retrieved 2nd September, 2016)
- ↑ Halo Neuroscience. Bihemispheric Transcranial Direct Current Stimulation with Halo Neurostimulation System over Primary Motor Cortex Enhances Fine Motor Skills Learning in a Complex Hand Configuration Task. Halo Sport [online]. 2016, Feb 10. Available online at: https://halo-website-static-assets.s3.amazonaws.com/whitepapers/cct.pdf (Retrieved 2nd September, 2016)