SYSTEM AND DEVICE FOR IMPROVING SLEEP QUALITY
20210369190 · 2021-12-02
Inventors
- Hannah Bauer (Rolling Hills Estates, CA, US)
- Joseph Bravo (Torrance, CA, US)
- Albert Chen (Torrance, CA, US)
- Alexander Hool (Palos Verdes, CA, US)
- Michael Huang (Palos Verdes Estates, CA, US)
- Aaron Isara (Torrance, CA, US)
- Aaron Jung (Palos Verdes Estates, CA, US)
- Josef Kirkman (Palos Verdes Estates, CA, US)
- Joyce Lee (Carson, CA, US)
- Lucas Loman (Hermosa Beach, CA, US)
- Sharon Maguey (Lakewood, CA, US)
- Kathryn Saxton (Torrance, CA, US)
- Lian Zhu (Torrance, CA, US)
- George Kirkman (Palos Verdes Estates, CA, US)
Cpc classification
A61B5/256
HUMAN NECESSITIES
A61B5/7264
HUMAN NECESSITIES
A61B2503/12
HUMAN NECESSITIES
A61B5/02416
HUMAN NECESSITIES
A61B5/398
HUMAN NECESSITIES
A61B5/4848
HUMAN NECESSITIES
A61B5/0048
HUMAN NECESSITIES
A61B5/6803
HUMAN NECESSITIES
A61B5/374
HUMAN NECESSITIES
International classification
A61B5/00
HUMAN NECESSITIES
A61B5/01
HUMAN NECESSITIES
A61B5/16
HUMAN NECESSITIES
Abstract
A device and system for promoting more recuperative sleep by regulating a user's body temperature. This may be done by using a series of devices that measure information about the user both while they are awake and while they are asleep, communicate that information to a processing unit, and create an ideal body temperature range profile based on that information. A temperature stimulus device may ensure that the core body temperature of the user stays substantially within the ideal body temperature range. By keeping the core body temperature of the user within the calculated range, the device and system will ensure deeper, and therefore more recuperative, sleep.
Claims
1. A system and device for improving the sleep quality of a user comprising: a. at least one sensor producing a signal indicative of sleep quality; b. an electronic device application using a test to indicate the user's alertness; c. a database and processing logic to control a stimulus to influence the users sleep and d. at least one stimulus applied to the user to optimize sleep.
2. The system and device of claim 1 comprising: a) A multiplicity of electrodes in a headband; b) A localized temperature stimulus and c) An electronic device application; Wherein said electrodes monitor brainwaves providing a signal indicative of sleep quality communicatively connected to the electronic device application; Wherein said localized temperature stimulus is communicatively controlled by the electronic device application.
3. The system and device of claim 1. comprising: a) Electrodes; b) An infrared ear thermometer; c) A pulse sensor; d) A localized temperature stimulus; and e) An electronic device application; wherein said electrodes measure brain waves and eye movement of said user and communicate said measurements to said electronic device application; wherein said infrared ear thermometer measures the internal temperature of said user and communicates said measurement to said electronic device application; wherein said pulse sensor measures the heart rate of said user and communicates said measurements to said electronic device application; wherein said electronic device application comprises games and an artificial intelligence system; wherein said games quantify the daytime mental performance of the user; wherein said artificial intelligence system processes the information from said electrodes, said infrared ear thermometer, said pulse sensor, and said games to create a personalized ideal sleep body temperature profile; and wherein said localized temperature stimulus regulates said user's body temperature such that said temperature falls within said personalized ideal sleep body temperature profile.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0019] In the following detailed description of various embodiments, numerous specific details are set forth in order to provide a thorough understanding of various aspects of the embodiments. However, the embodiments may be practiced without some or all of these specific details. In other instances, well-known procedures and/or components have not been described in detail so as not to unnecessarily obscure aspects of the embodiments.
[0020] While some embodiments are disclosed here, other embodiments will become obvious to those skilled in the art as a result of the following detailed description. These embodiments are capable of modifications of various obvious aspects, all without departing from the spirit and scope of protection. The Figures and their detailed descriptions are to be regarded as illustrative in nature and not restrictive. Also, the reference or non-reference to a particular embodiment shall not be interpreted to limit the scope of protection.
[0021] In the following description, certain terminology is used to describe certain features of one or more embodiments. For purposes of the specification, unless otherwise specified, the term “substantially” refers to the complete or nearly complete extent or degree of an action, characteristic, property, state, structure, item, group of items, or result. For example, in one embodiment, an object that is “substantially” located within a housing would mean that the object is either completely within a housing or nearly completely within a housing. The exact allowable degree of deviation from absolute completeness may in some cases depend on the specific context. However, generally speaking, the nearness of completion will be so as to have the same overall result as if absolute and total completion were obtained. The use of “substantially” is also equally applicable when used in a negative connotation to refer to the complete or near complete lack of an action, characteristic, property, state, structure, item, group of items, or result. In another example, substantially all of a group of items may include all of the items of that group, or at least all of the items of that group that are generally within the normal parameters for the items. To the extent that the group of items might include members that far exceed the normal parameters, this abnormal item might not be expected to be part of substantially all the group of items.
[0022] One embodiment of the present disclosure may be a system and device that improves sleep quality. The device may comprise three parts: a system of components that gather data from the user, a component that processes that data, and a component that alters the user's body temperature based on that processed data.
[0023] The system of components that gather data may measure several variables from the user such as core body temperature, brain waves, heart rate, eye movement, body movement, breathing rate, and/or other information associated with sleep quality. Referring to
[0024] Referring now also to
[0025] In order to measure temperature, the system of components may comprise a temporal artery thermometer, a topical thermometer, an in-ear thermometer, or any combination thereof. When measuring body movement, eye movement, and brain waves the system may comprise gyroscopes, accelerometers, EEG electrodes, EMG electrodes, an electroencephalogram, or a method of electrooculography. CBT may also be measured through use of an infrared sensor. Measuring the brain waves and eye movement in a consumer device is unique, as it most clearly indicates the user's sleep stages by showing when the user is in slow-wave sleep.
[0026] Referring now also to
[0027] In one embodiment, the electronic device is a smartphone communicatively connected to the system and device which also measures information about the user while they are awake such as their circadian rhythm. In measuring performance while awake in conjunction with the user's location within their circadian rhythm, the device determines the impact of the quality of sleep on the user with respect to the user's daytime attentiveness and general performance. Although not stated herein, other information may be gathered through other measurement devices not explicitly named. The data gathered by this system of components may be transferred to an electronic device through WiFi, Bluetooth, cable, manually, or a combination thereof.
[0028] Referring now also to
[0029] The component that processes data may he an application on a user's electronic device which is preferably a smartphone. Said electronic device may be communicatively connected to the headband measurement device 1 and the wrist stimulus device 101 as well as a cloud database 302, 308. An artificial intelligence system 302 may be incorporated into the application to interpret the data independent of the user's input. After interpreting the data, the artificial intelligence system within the application may create a set of ideal temperature ranges where the user is more likely to enter a deeper, and therefore more efficient for recovery, level of sleep. Core body temperature decreases throughout the sleep process; the artificial intelligence system may continuously monitor the core body temperature of the sleeping user and regulate the temperature through the use of a temperature stimulus. Ideally, the temperature stimulus alters the user's skin temperature, manipulating the user's core body temperature to encourage more efficient slow-wave sleep. Similarly, the artificial intelligence system will incorporate measurements taken during daytime when analyzing ideal sleep temperature to improve not only the impact on sleep quality, but daytime performance. In processing these nighttime and daytime factors, the artificial intelligence system creates a temperature profile which the user may modify if desired. Even without the user's direct input, the artificial intelligence system will fine-tune the temperature profiles as it gathers more data, continuing to optimize efficiency.
[0030] The Logic is based in the Sleep Profile. Each sleep profile is personalized to each user through Artificial Intelligence optimization. The Effectiveness of the sleep profile is judged based on the user's sleep score corresponding to that given sleep profile. An example sleep profile may consist of logic as follows: if the user is coming out of a deep sleep stage, apply a warm temperature stimulus to guide the user back to the deep sleep stage. The daytime data is interpreted through Artificial Intelligence which may consist of logic as follows: if Sleep Profile A resulted in a lower Sleep Score than Sleep Profile B, remove Sleep Profile A from the options and pursue Sleep Profile B.
[0031] The temperature stimulus may create heat such that it regulates the user's body temperature. This stimulus may take the form of a wearable device, such as a wristband, watch, necklace, or other easily removable articles. The stimulus may also be larger, taking the form of a shirt, or even a blanket. Ideally, the stimulus creates enough heat such that it may change, and therefore regulate, the core body temperature of the user.
[0032] Referring now also to
[0033] Referring now also to
[0034] The drawings show illustrative embodiments, but do not depict all embodiments. Other embodiments may be used in addition to or instead of the illustrative embodiments. Details that may be apparent or unnecessary may be omitted for the purpose of saving space or for more effective illustrations. Some embodiments may be practiced with additional components or steps and/or without some or all components or steps provided in the illustrations. When different drawings contain the same numeral, that numeral refers to the same or similar components or steps.
[0035] Unless otherwise stated, all measurements, values, ratings, positions, magnitudes, sizes, locations, and other specifications that are set forth in this specification, including in the claims that follow, are approximate, not exact. They are intended to have a reasonable range that is consistent with the functions to which they relate and with what is customary in the art to which they pertain.
[0036] The foregoing description of the preferred embodiment has referred to night time data and daytime data interchangeably with sleep data and awake data. It is recognized that different users may have alternate sleep hours. Considering this no particular time of day is implied by these terms.
[0037] The foregoing description of the preferred embodiment has been presented for the purposes of illustration and description. While multiple embodiments are disclosed, still other embodiments will become apparent to those skilled in the art from the above-detailed description. These embodiments are capable of modifications in various obvious aspects, all without departing from the spirit and scope of protection. Accordingly, the detailed description is to be regarded as illustrative in nature and not restrictive. Also, although not explicitly recited, one or more embodiments may be practiced in combination or conjunction with one another. Furthermore, the reference or non-reference to a particular embodiment shall not be interpreted to limit the scope of protection. It is intended that the scope of protection not be limited by this detailed description, but by the claims and the equivalents to the claims that are appended hereto.
[0038] Except as stated immediately above, nothing that has been stated or illustrated is intended or should be interpreted to cause a dedication of any component, step, feature, object, benefit, advantage, or equivalent, to the public, regardless of whether it is or is not recited in the claims.