IP Library Granted Patent US 10,039,470
Granted Patent B2
US 10,039,470 · App. 14/684,538 · Granted Aug 7, 2018

Encephalophone

Inventors: Thomas Andrew Deuel (Seattle, WA); Felix Darvas (Seattle, WA)
Assignee: Thomas Andrew Deuel
A61B5/0476G10H1/0025A61B5/048G10H2210/115G10H2220/376
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Quick Facts
Patent No.
US 10,039,470
App. No.
14/684,538
Filed
Apr 13, 2015
Granted
Aug 7, 2018
Kind
B2
Art Unit
2837
USPC
84/622
Abstract

A novel musical instrument was created using electroencephalogram (EEG) motor imagery to control a synthesized piano, and is herein named the Encephalophone. Alpha-frequency (8-12 Hz) signal power, originating from either posterior dominant rhythm (PDR) in the occipital cortex or from mu rhythm in the motor cortex, was used to create a power scale which was then converted into a musical scale which could be manipulated by the individual. Subjects could then generate different notes of the scale by activation (event-related synchronization) or de-activation (event-related desynchronization) of the PDR or mu rhythms in occipital or motor cortex, respectively.

Claims (10)

1. An encephalophone, comprising:

a plurality of electrodes configured to attach to a scalp of a user and transmit electrical brain activity signals received from the scalp; and

a processing device configured to receive the signals from the electrodes, determine relative power levels of visual cortex posterior dominant rhythm (PDR) waveforms and motor cortex mu rhythm (mu) waveforms, correlate the relative power levels to multiple different cued conditions of the user, and convert the correlated power levels into at least one of musical notes and chords only within a specific predetermined scale.

2. The encephalophone of claim 1 , wherein the electrodes are spaced according to the International 10-20 system of electrode placement.

3. An encephalophone, comprising:

a plurality of electrodes configured to attach to a scalp of a user and transmit electrical brain activity signals received from the scalp; and

a processing device configured to receive the signals from the electrodes, determine relative power levels of at least one of visual cortex posterior dominant rhythm (PDR) waveforms and motor cortex mu rhythm (mu) waveforms, correlate the relative power levels to multiple different cued conditions of the user, and convert the correlated power levels into at least one of musical notes and chords only within a specific predetermined scale.

4. An encephalophone, comprising:

a plurality of electrodes configured to attach to a scalp of a user and transmit electrical brain activity signals received from the scalp; and

a processing device configured to receive the signals from the electrodes, determine relative power levels of at least one of visual cortex posterior dominant rhythm (PDR) waveforms and motor cortex mu rhythm (mu) waveforms, correlate the relative power levels to multiple different cued conditions of the user, and convert the correlated power levels into musical notes only within a specific predetermined scale.

Continuity (2)
Provisional Application 61978727 · Apr 11, 2014
Related Publication 20160027423A1 · Jan 28, 2016