NOISE PREVENTING EEG RECORDING CAP
20200359928 · 2020-11-19
Inventors
Cpc classification
A61B5/6803
HUMAN NECESSITIES
A61B2562/14
HUMAN NECESSITIES
A61B2562/182
HUMAN NECESSITIES
A61B2560/0475
HUMAN NECESSITIES
International classification
Abstract
A noise preventing EEG recording cap that reduces the noise that occurs during EEG recording. The EEG cap mainly includes an inner layer that separates the electronic recording section, Electromagnetic isolation middle layer, the outer area of the cap that provides water impermeability, a fluid transfer channel onto which hydrogel is applied for situations besides under water usage, an ADC unit provided for each electrode located in the signal layer, DC power supply that prevents the noise caused by the electric line, a secondary recording unit that enables use of different algorithms in order to prevent artifacts and to obtain other noise sources, that allows other electrophysiological noises and artifact sources to be simultaneously recorded and as a result allows these sample in time intervals where noise is not present and the records to be separated, and a DSP that processes signals on the data recording unit.
Claims
1. A noise preventing EEG recording cap, comprising: an inner layer which separates an electronic recording section; an electromagnetic isolation layer middle layer; an outer layer which is the outer area of the cap which provides water impermeability; at least an optional sweat, fluid transfer channel onto which hydro gel shall be applied for situations besides under water usage, which receives fluid from the electrodes and transfers it to the hydrophilic section, an electromagnetic isolation web which provides electromagnetic isolation and which is the web section; an ADC unit provided at least one for each electrode or electrode group located in the signal layer; an electrode which receives the signals; signal inlets into which the electrodes are fixed; a DC power supply (battery) which prevents 50-60 hz noise caused by the electric line; a secondary recording unit which enables to use different algorithms in order to filter and prevent artefacts and to obtain other noise sources, which allows other electrophysiological noises and artefact sources to be simultaneously recorded and as a result allows these sample in time intervals where noise is not present and the records to be separated; a band section which provides impermeability; and a DSP (Digital Signal Processor) which allows to process signals on the data recording unit.
2. A noise preventing EEG recording cap according to claim 1, comprising a secondary recording unit which is positioned outside the CAP.
3. A noise preventing EEG recording cap according to claim 1, comprising an ADC unit which is placed on the electrode and which does not have a cable connection line between the electrode and itself.
4. A noise preventing EEG recording cap according to claim 1, comprising a liquid transfer channel located on the external layer which enables external fluids that have been formed due to sweating or other similar reasons, to be removed.
5. A noise preventing EEG recording cap according to claim 1, comprising a DC power supply (battery) positioned on the CAP.
6. A noise preventing EEG recording cap according to claim 1 comprising additional signal inputs which enables to receive signals from the closest area to the primary noise source and removes this noise from the main signal.
7. A noise preventing EEG recording cap according to claim 1, comprising an outer layer formed of latex material.
8. A noise preventing EEG recording cap according to claim 1, comprising an outer layer (3) formed of flexible polymer material.
9. A noise preventing EEG recording cap according to claim 1, comprising an outer layer (3) formed of silicon material.
10. A noise preventing EEG recording cap according to claim 1, comprising a structure which makes it easier for the electrodes to be fixed on the scalp even though the users may have different sized head structures, and ensures that said electrodes do not move out of position even if the user is moving.
11. A noise preventing EEG recording cap according to claim 1, having an electromagnetic isolation web comprising a helical structure.
12. A noise preventing EEG recording cap according to claim 1, comprising an electromagnetic isolation web where the depth of the metal web is changed according to the signal features to be received and can be changed in order to prevent different wave lengths.
13. A noise preventing EEG recording cap according to claim 1, comprising an outer layer which does not have cables that are exposed and can be observed from outside.
14. A noise preventing EEG recording cap according to claim 1, comprising an electromagnetic isolation web that is placed between the middle layer and the outer layer.
15. A noise preventing EEG recording cap according to claim 1, comprising electrodes that are positions under the inner layer.
Description
DEFINITION OF THE FIGURES OF THE INVENTION
[0037] The figures that have been prepared in order to further describe the noise preventing EEG recording cap developed by means of the invention has been described below.
[0038]
[0039]
[0040]
[0041]
DETAILED DESCRIPTION OF THE INVENTION
[0042] The novelty of the invention has been described with examples that shall not limit the scope of the invention and which have been intended to only clarify the subject matter of the invention. The EEG CAP and a data recording medium that has been developed in order to reduce artefacts occurring during an EEG record has been described in detail below.
[0043] By means of the cap formed of latex or other similar flexible polymers, electrodes (7) are enabled to be fixed on the scalp even though the users may have different sized head structures, and it is ensured that the electrodes (7) do not move out of position even if the user is moving.
[0044] The metal web layer which is located on the signal layer prevents external electromagnetic effects and increases signal quality.
[0045] The amount of flexibility of the coils used in the metal web according to the structure and transition features thereof is determined and caps having different flexibility levels according to different usage fields are formed.
[0046] The intensity of the metal web shall change according to the signal features and can be developed in order to prevent different wave lengths.
[0047] Data shall be digitalized at the electrode level with ADC located in the signal layer and the ADC shall also ensure the data to be protected. As a result the metal web and the cabling formed following ADC will not be affected from motion and external electromagnetic effects.
[0048] As data is digitalized, it can be recorded into the recording unit located inside the signal layer and as a result all of the recording process is carried out inside the metal web and therefore the artefacts that may be formed will be reduced. As there is no cable or similar medium that shall protrude out of the car during recording, any effects that may limit motion will not be present.
[0049] In the case that data is transferred outside of the Cap with a cable, and as data is digitalized, it can be transferred with a single coil, shielded cable and motion restrictions and similar effects shall be minimized.
[0050] The impermeability section having different density forming the borders of the CAP, generally shall restrict the motion of the CAP and shall allow recording under water.
[0051] The secondary recording unit and the artefact source outside the CAP, allows other electrophysiological noise to be simultaneously recorded and as a result these records allows sample in time intervals where noise is not present and the records to be separated. The recording of other noise sources shall allow the usage of different algorithms in order to prevent artefacts and perform filtering.
[0052] The DC power supply located on the CAP prevents the 50-60 hz noise caused by the electric line.
[0053] The factors that may affect the quality of recording are eliminated by means of the thermal detection and sweating sensor located inside the cap.
[0054] The hydro channels located on the surface of the cap, helps to discharge sweat and reduces the ion changes that may be caused by sweating during recording and therefore reduces noise. The hydrophilic gel that shall be applied on these channels shall enable the fluid and sweat formed on said surface to be drawn out and discharged.
[0055] The EEG cap has several different layers. EEG cap layers are formed of: An inner layer, middle layer, outer layer, optional sweat, fluid transfer channel, electromagnetic isolation web, ADC unit, electrode and second optional sweat, fluid transfer channel. Moreover the invention comprises additional signal inputs which enables to receive signals from the closest area to the primary noise source (eyes, chin etc) and removes this noise from the main signal.
[0056] The electrode (7) and the adc unit (6) are located inside two layers as a single unit that is physically integrated with each other.
[0057] If we look into these layers, we can say that these layers are as follows; [0058] An inner layer (1) which separates the electronic recording section, [0059] Electromagnetic isolation layer middle layer (2), [0060] The outer layer (3) which is the outer area of the CAP which provides water impermeability, [0061] The optional sweat, fluid transfer channel (4) onto which hydro gel shall be applied for situations besides under water usage, which receives the fluid from the electrodes and transfers it to the hydrophilic section, [0062] Electromagnetic isolation web (5), which provides electromagnetic isolation and which is the web section, [0063] An ADC unit (6) provided at least one for each electrode (7) or electrode (7) group located in the signal layer, [0064] A channel which receives fluid from the electrodes and transfers it to the hydrophilic section which is an optional sweat, fluid transfer channel (4) for situations besides under water usage, and [0065] Electrode
[0066] Noise preventing EEG recording cap characterized in that it comprises; [0067] An inner layer (1) which separates the electronic recording section, [0068] Electromagnetic isolation layer middle layer (2), [0069] Outer layer (3) which is the outer area of the CAP which provides water impermeability, [0070] At least an optional sweat, fluid transfer channel (4) onto which hydro gel shall be applied for situations besides under water usage, which receives the fluid from the electrodes and transfers it to the hydrophilic section, [0071] Electromagnetic isolation web (5), which provides electromagnetic isolation and which is the web section, [0072] An ADC unit (6) provided at least one for each electrode (7) or electrode (7) group located in the signal layer, [0073] An electrode (7) which receives the signals, [0074] Signal inlets into which the electrodes (7) are fixed, [0075] DC power supply (battery) (8) which prevents the 50-60 hz noise caused by the electric line. [0076] A secondary recording unit (10) which enables to use different algorithms in order to filter and prevent artefacts and to obtain other noise sources, which allows other electrophysiological noises and artefact sources to be simultaneously recorded and as a result allows these sample in time intervals where noise is not present and the records to be separated, [0077] Band section (9) which provides impermeability, [0078] And a DSP (Digital Signal Processor) which allows to process signals on the data recording unit.