[HN Gopher] EEG-based neurofeedback in athletes and non-athletes
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       EEG-based neurofeedback in athletes and non-athletes
        
       Author : PaulHoule
       Score  : 25 points
       Date   : 2025-11-17 17:40 UTC (5 hours ago)
        
 (HTM) web link (www.mdpi.com)
 (TXT) w3m dump (www.mdpi.com)
        
       | Lapsa wrote:
       | more or less same crap is achieved via radiomyography from your
       | local telecom towers. down to deciphering your inner monologue
        
         | Lapsa wrote:
         | spying on Americans is illegal so Americans outsource spying of
         | Americans to British
        
         | Lapsa wrote:
         | Department of Defense Fiscal Year (FY) 2010 Budget Estimates
         | May 2009, USA
         | 
         | ``` Silent Talk (U) Silent Talk will allow user-to-user
         | communication on the battlefield without the use of vocalized
         | speech through analysis of neural signals. The brain generates
         | word-specific signals prior to sending electrical impulses to
         | the vocal cords. These signals of "intended speech" will be
         | analyzed and translated into distinct words, allowing covert
         | person-to-person communication. This program has three major
         | goals: a) to attempt to identify electroencephalography
         | patterns unique to individual words, b) ensure that those
         | patterns are generalizable across users in order to prevent
         | extensive device training, and c) construct a fieldable pre-
         | prototype that would decode the signal and transmit over a
         | limited range. ```
         | https://commons.wikimedia.org/wiki/File:Fiscal_Year_2010_DAR...
        
           | thesz wrote:
           | This looks no harder than to train custom Kaldi (circa 2017)
           | phoneme model on brain waves, and using remaining Kaldi's
           | functionality for everything else, except for text-to-speech.
           | There was WaveNet for the TTS at that time, with sound
           | quality that is good enough for (and can be improved by)
           | radio transmission.
           | 
           | Thanks for a link!
        
         | Lapsa wrote:
         | The Microwave Auditory Effect James C. Lin, Ph.D. degrees in
         | electrical engineering from the University of Washington,
         | Seattle University of Illinois Chicago
         | 
         | ``` The preceding sections document that an audible sound
         | originates from within the head when human subjects are exposed
         | to pulsed microwave radiation. The auditory detection of pulsed
         | microwaves in laboratory animals has been confirmed both in
         | behavioral and neurophysiological studies. The site of
         | microwave-to-sound conversion is shown to be in the brain
         | tissue. The primary mechanism of interaction is microwave
         | pulse-induced thermoelastic expansion of brain matter. ```
         | 
         | https://ieeexplore.ieee.org/document/9366412
        
         | Lapsa wrote:
         | Novel Muscle Sensing by Radiomyography (RMG) and Its
         | Application to Hand Gesture Recognition Cornell University,
         | Ithaca, NY https://pmc.ncbi.nlm.nih.gov/articles/PMC10950291/
        
         | Lapsa wrote:
         | Neural decoding of music from the EEG, University of Essex >
         | Using only EEG data, without participant specific fMRI-informed
         | source analysis, we were able to identify the music a
         | participant was listening to with a mean rank accuracy of 59.2%
         | https://pmc.ncbi.nlm.nih.gov/articles/PMC9837107/
        
         | Lapsa wrote:
         | Evaluation of antenna suitability for the use in radiomyography
         | Dublin Institute of Technology, Dublin, Ireland
         | 
         | ``` The envisioned application is radiomyography which aims to
         | detect muscular activity by the means of electromagnetic waves
         | coupled into the human body. The paper concludes that it is
         | possible to detect changes in the thickness and the properties
         | of the muscle solely by evaluating the reflection coefficient
         | of an antenna structure. The ability to detect these changes
         | strongly depends on the antenna type. ```
         | 
         | https://ieeexplore.ieee.org/document/6711930
        
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       (page generated 2025-11-17 23:01 UTC)