Bilateral stimulation devices, systems, and related methods
Bilateral stimulation devices, systems and methods are disclosed. In one embodiment, a bilateral stimulation device can include a housing, a tactile stimulator coupled to the housing, a communications module configured to receive wireless communication from a remote device; and a controller module configured to independently and selectively control at least one tactile setting of the tactile stimulator based on wireless communication received from the remote device.
1. A bilateral stimulation (BLS) system, comprising a plurality of devices, including:
a first device comprising:
a first tactile stimulator; and
a first communications module;
a second device comprising:
a second tactile stimulator; and
a second communications module;
a controller module configured to communicate with the first and the second communications modules and including logic configured to control operation of the first and second tactile stimulators to induce vibration events according to a BLS program, wherein operation of the first and second tactile stimulators includes at least one pause in vibration for a selected duration between vibration events in the BLS program; wherein either:
the first device or the second device are located in a separate housing or shared housing, said housing further including an insulating material configured to reduce the detectability of audible vibration at a distance of 0.5 meters (m) from the first and second tactile stimulators; or
the first and second tactile stimulators are configured to have a decibel level at or below 35 at a distance of 0.5 meters (m) from the first and second tactile stimulators.
2. The BLS system of claim 1 , wherein the first and second tactile stimulators comprise a piezoelectric device, an electromechanical actuator, an electromagnetic device, a disc vibration motor, an ultrasonic vibrator, inertia pulse generator, inductive voltage stimulation, heat sink, cold sink, or a combination thereof.
3. The BLS system of claim 1 , wherein the first and second tactile stimulators are configured to vibrate at a vibrational frequency selected to treat an adverse health condition.
4. The BLS system of claim 1 , wherein the controller module further comprises a timer configured to terminate tactile stimulations of the first and second tactile stimulators after expiration of a predetermined time limit.
5. The BLS system of claim 1 , wherein the first or second devices further comprises a speaker, a microphone, or both.
6. The BLS system of claim 1 , further comprising a receptacle for a fragrance.
7. The BLS system of claim 1 , further comprising a biofeedback sensor.
8. The BLS system of claim 1 , wherein the first and second communication modules are configured to communicate information wirelessly.
9. The BLS system of claim 1 , wherein the at least one BLS program comprises vibrational frequency, vibrational intensity, vibrational speed, vibrational acceleration, vibrational duration, vibrational pause, vibrational patterns, sets of vibrational patterns, or a combination thereof.
10. The BLS system of claim 1 , wherein the first or second device further comprises a switch to control the at least one BLS program without using the controller module.
11. The BLS system of claim 1 , further comprising a flexible article coupled to the first or second device.
12. The BLS system of claim 11 , wherein the flexible article is coupled to each of the first device and the second device.
13. The BLS system of claim 1 , wherein either the first or second device includes the controller module.
14. The BLS system of claim 1 , wherein either the first device, the second device, or both the first device and the second device is a smart device.
15. The BLS system of claim 1 , further comprising a remote device including the controller module.
16. The BLS system of claim 1 , wherein the BLS system is a modular system.
17. The BLS system of claim 1 , wherein the BLS system comprises a single integrated device.
18. The BLS system of claim 1 , further comprising a biofeedback sensor configured to communicate with the controller module.
19. The BLS system of claim 18 , wherein the biofeedback sensor is a heart rate sensor, a brain wave sensor, a perspiration sensor, a muscle tension sensor, a nerve conduction sensor, an optical sensor, or a combination thereof.
20. The BLS system of claim 1 , further comprising a visual augmented reality (VAR) device configured to communicate with the controller module.