Head-mounted physiological signal monitoring system, devices and methods
Earphone apparatus includes dry electrophysiological electrodes and, optionally, other physiological and/or environmental sensors to measure signals such as ECG from the head of a subject. Methods of use of such apparatus to provide fitness, health, or other measured or derived, estimated, or predicted metrics are also disclosed.
1. A method of collecting electrocardiogram (ECG) signals from a subject comprising:
providing to the subject an apparatus for acquiring physiological signals, the apparatus comprising at least one earbud, at least one electronic component including a processor, at least two dry surface electrodes each comprising a plurality of low aspect ratio protruding surface features, and at least one physiological sensor not being one of the at least two dry surface electrodes, the earbud having at least one soundspeaker, the electronic component adapted to at least in part filter acquired signals, at least one of the at least two dry surface electrodes being adapted to be attached to or integrated into the earbud, and the at least one physiological sensor being adapted to acquire a physiological signal;
measuring an electrophysiological signal using the at least two dry surface electrodes to obtain an ECG signal;
measuring a physiological signal from the subject using the physiological sensor substantially simultaneously with the measuring of the electrophysiological signal using the at least two dry surface electrodes; and
measuring or deriving at least one physiological metric based at least in part on the physiological signal and at least in part on the ECG signal,
wherein the physiological metric is reported to the subject and forms a basis of a notice or warning delivered to the subject by an output selected from the group consisting of a visual display, an audible alarm, speech, a mild electrical shock, an ambient or localized temperature change, and a change in lighting permitted to enter eyes of the subject.
2. The method of claim 1 , wherein the ECG signals are processed to determine respiration rate.
3. The method of claim 1 , wherein the ECG signals are processed to determine heart rate variability.
4. The method of claim 1 , wherein the physiological metric is selected from the group consisting of heart rate, heart rate variability, respiration rate, calorie expenditure, metabolic rates, oxygen consumption (VO 2 ), maximal oxygen consumption (VO 2 max ), carbon dioxide production (VCO 2 ), energy expenditure, respiratory quotient and substrate utilization.