Postural awareness apparatus
10383548 ยท 2019-08-20
Assignee
Inventors
Cpc classification
A63B21/00196
HUMAN NECESSITIES
A63B23/0244
HUMAN NECESSITIES
A61B5/103
HUMAN NECESSITIES
A63B21/4037
HUMAN NECESSITIES
International classification
A61B5/103
HUMAN NECESSITIES
A63B21/00
HUMAN NECESSITIES
Abstract
A postural awareness apparatus includes a pad, a signal producing system, and an activator that activates the signal producing system when a compressive force applied to the apparatus exceed a predetermined compressive force. The activator includes a switch having an upper portion, a compressible element having defined therein an opening, the compressible element at least partially surrounding the upper portion of the switch, and a cap adapted to secure the compressible element in a position at least partially surrounding the upper portion of the switch.
Claims
1. A postural awareness apparatus for strengthening the abdomen and spine of a user, the apparatus comprising a) a surface adapted to contact the user's back, b) a signal producing system that alerts the user when activated, and c) an activator coupled to the surface that activates the signal producing system for as long as compressive force applied to said activator from the user's back exceeds a predetermined level of compressive force, the predetermined level of compressive force indicative of muscle tightening by the user, the activator comprising (i) a switch having an upper portion, (ii) a compressible element having defined therein a compressible element opening, said compressible element at least partially surrounding said upper portion of said switch, and (iii) a cap for receiving the force exerted by the user's back, the cap adapted to secure said compressible element in a position at least partially surrounding said upper portion of said switch, (iv) wherein the switch is configured to activate the signal producing system for as long as the compressive force applied to said activator exceeds the predetermined level of compressive force, wherein said switch and said compressible element have longitudinal axes, said longitudinal axes being substantially collinear; said cap comprises an upper element and a plurality of arms, said arms each having a distal end comprising a locking element, and wherein each of said arms of said cap extends through a base opening defined in said base; said compressible element is disposed between said base and said upper element of said cap; and wherein said locking elements of said cap prevent unintentional disengagement of said cap from said base while permitting motion of said cap relative to said base substantially in the direction of said longitudinal axes of said switch and said compressible element thereby permitting said upper element of said cap to activate said switch when a compressive force in excess of said predetermined level is applied to said upper element.
2. The postural awareness apparatus of claim 1, wherein the surface comprises a low back assembly.
3. The postural awareness apparatus of claim 2 wherein said low back assembly comprises (i) a base having defined therein a base opening within which said switch is disposed, and (ii) a cushion having defined therein a cushion opening aligned with said base opening.
4. The postural awareness apparatus of claim 3, wherein said base comprises a raised portion in which said base opening is defined, and wherein said switch extends at least partially through said base.
5. The postural awareness apparatus of claim 4, wherein the cap further comprises an upper element and a plurality of arms, said arms each having a distal end comprising a locking element.
6. The postural awareness apparatus of claim 5 wherein said switch and said compressible element have longitudinal axes, said longitudinal axes being substantially collinear.
7. The postural awareness apparatus of claim 1, wherein said compressible element is selected from the group consisting of a spring and a disk comprised of a compressible substance.
8. The postural awareness of claim 1 comprising a plurality of activators, wherein said surface has a longitudinal axis and wherein a portion of said plurality of activators are located at opposed locations on either side of said longitudinal axis.
9. The postural awareness apparatus of claim 8 wherein said signal producing system comprises a plurality of vibrator units, a portion of said plurality of vibrator units being coupled to said surface at opposed locations on either side of said longitudinal axis.
10. A postural awareness apparatus according to claim 1, adapted to contact a portion of the lower back of a human user, the apparatus further comprising d) a base having defined therein a base opening, and e) a cushion having defined therein a cushion opening aligned with said base opening.
11. The postural awareness apparatus of claim 1, further comprising: at least one vibrator unit; and a control unit, the control unit comprising i) the activator, wherein the activator selectively activates the at least one vibrator unit, and ii) a display element that provides a visual indication when the at least one vibrator unit is activated, said display element optionally providing a visual indication of a magnitude of the compressive force applied to the activator.
12. The postural awareness apparatus of claim 8, further comprising an activator located substantially on the longitudinal axis at a position corresponding to a user's lower sacrum.
13. The postural awareness apparatus of claim 1, wherein the activator is responsive to a compressive force having a value within a selected range.
14. The postural awareness apparatus of claim 1 further comprising a control unit, the control unit comprising i) the activator, wherein the activator selectively activates at least one vibrator unit, and ii) a display element that provides a visual indication when the at least one vibrator unit is activated, said display element optionally providing a visual indication of a magnitude of the compressive force applied to said activator.
15. The postural awareness apparatus of claim 1, further comprising a head activator for receiving a compressive force received from the user's head, the head activator coupled to the surface that activates the signal producing system for as long as the compressive force applied to said surface from the user's head exceeds a second predetermined level of compressive force, the second predetermined level of compressive force indicative of neutral spine position of the user.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention may be more readily understood by referring to the accompanying drawings in which
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
(16)
(17)
(18)
(19)
(20)
(21)
(22) Like numerals refer to like parts throughout the several views of the drawings.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(23) The present invention provides devices and methods for strengthening the spine and abdomen, and for teaching the user postural awareness in order to maintain and strengthen a neutral spine. By neutral spine is meant a biomechanically correct spinal position in which muscular balance is maintained and the spine absorbs forces optimally and is neither in extreme flexion nor extreme extension. For example, typical flexion/extension biases for a healthy user is about 30 and about 15, respectively; other users may have greater or lesser flexion/extension biases. Neutral spine positions vary with the posture of the user; for example, the neutral spine position of a user with kyphosis will differ from the neutral spine position of a user having a normal posture.
(24) Turning now to the figures, in
(25) Lumbar pad 14 preferably is unitary with mat 12, that is, is formed from a section of mat 12. Disposed within lumbar pad 14 are activator 18, which detects a weight applied to a surface 20 of lumbar pad 14 and subsequently activates signal producing system 22. The activator 18 can include elements such as one or more mechanical switches, one or more pressure sensors, or other devices known to those skilled in the art for detecting a weight applied to a surface.
(26) The activator 18 is connected to one or more signal producing systems 22. The signal producing system(s) 22 are activated when a compressive force (e.g., a weight) is applied to the selected activator 18, that is, when the activator responds to (i.e., detect) a weight applied to the surface 20 of mat 12. Once activated, the signal producing system 22 produce a signal that is perceptible by a person using the inventive apparatus.
(27) In certain more particular embodiments, activator 18 responds to a compressive force (e.g., weight) that is within a desired range. Thus, when the applied compressive force is below the minimum of the desired range, the activator 18 is not activated, and when the applied compressive force is above the maximum of the desired range, the activator 18 is deactivated. In such embodiments, the range of compressive forces to which activator 18 responds can be determined in any conventional manner (e.g., via electronic elements, software, mechanical switches or other devices, etc.)
(28) Exemplary signal producing systems 22 include, without limitation, devices for producing a vibratory signal, such as a mechanical vibrator; devices for producing an auditory signal, such as an electronic tone generator; devices for producing a visible signal, such as a light bulb or a light-emitting diode (LED); and the like, as well as combinations of such devices. The signal producing system 22 can be affixed to or within the apparatus 10, for example within lumbar pad 14, or can be located externally. The activator 18 and the signal producing system 22 are connected together, for example as parts of an electrical circuit, or by means such as low-power radio transmitters. Any devices, elements or apparatus for enabling activator 18 to activate signal producing system 22 are considered to be within the scope of the present invention.
(29) Optionally, lumbar pad 14 can accommodate one or more lordosis inserts 14a disposed above activator 18 in order to support users having excessive lordotic sway or other excessive flexion or extension bias. Exemplary inserts include, without limitation, mechanical inserts, pneumatic or other inflatable inserts, and the like. Lumbar pad 14 can also optionally include a switch (not shown) for disabling signal producing system 22 to allow use of the apparatus without generation of a signal.
(30) Head support 16 includes a head/neck base 24 and a cervico-thoracic support 26. A neck support 28, which optionally is adjustable in width, is disposed on head support 16 between head/neck base 24 and cervico-thoracic support 26. As illustrated in
(31) In a preferred embodiment, head support 16 is provided with a plurality of handles 32. Handles 32 can be formed by cutting openings in base 24, for example, or can be separately formed and affixed to base 24.
(32) If desired, mat surface 20 can be provided with graphics 34, such as a stylized representation of a human pelvis and lower backbone, in order to facilitate orientation of a user with respect to the mat surface. Illustrations of the positions of TLC pressure points and the locations of the activator 18 are also beneficial to assist the user in properly orientation with respect to the apparatus 10.
(33) In a preferred embodiment illustrated in
(34) An example of an activator 18, illustrated in
(35) An alternative embodiment of activator 18 includes a pressure sensor and an associated electronic circuit in place of the mechanical switch. Such accompanying circuits are readily produced by those skilled in the art to generate an output signal in response to application of a predetermined pressure to the pressure sensor. This output signal in turn activates signal producing system 22.
(36)
(37) Optionally, a kyphosis wedge 54 is inserted between head support 16 and mat 12, to accommodate users with a head-forward position.
(38)
(39) If desired, a 3-way switch 130 can be connected to activator 118 and the vibrators. The switch 130 allows the user to selectively enable or disable the activator 118 and to separately control activation of the vibrators. Thus, in one position, the activator 118 are enabled to activate the vibrators as described above with respect to activator 18 and signal producing system 22. In a second position, the activator 118 are disabled, and the vibrators are deactivated. In a third position, the activator is disabled, and the vibrators are activated, thus allowing selective user relaxation and the option to stretch while using the inventive apparatus in between exercise drills.
(40) The activator 118 in the foregoing embodiment of the head support 116 can be connected in series to the activator 18 disposed, for example, within lumbar support 14 as shown in
(41) The signal (vibratory, auditory, visual, etc.) provided by the inventive apparatus allows the user to heighten the intensity of muscles being worked by eliminating momentum. When in use, the signal informs the user that his thoraco-lumbar area compresses the activator 18 sufficiently to ensure the isolation of the correct muscle usage. Thus, the user's proprioceptive acuity is heightened for lumbo-sacral coordination and strengthening.
(42) The inventive apparatus preferably is used on a horizontal surface such as a floor or exercise bench. If desired, mat 12 can be provided with one or more attachment devices such as a hook or clamp, which allows the apparatus to be affixed to a vertical surface such as a door. The apparatus can also be used on surfaces such as chairs.
(43) The signal provided by the inventive apparatus constitutes feedback to the user while exercising, which permits the user to minimize momentum and maximize intensity. To begin exercise using the inventive apparatus in a supine position, the user's third lumbar vertebra (L3) (typically in the vicinity of the user's belt line or umbilicus) is lined up with the lumbar pad 14, and the head/neck support 16 is positioned under the user's neck where it is comfortable. If necessary, the position of the head/neck support 16 is adjusted to accommodate the user. In use, the low back is compressed into lumbar pad 14 until a signal is generated by the signal producing system 22. Constant tension is maintained isometrically by tightening the involved muscles.
(44) Use of the alternative embodiment of the head/neck support 116 permits the user to avoid neck strain. If the user lifts his head during abdominal training, resulting in neck strain, the head lift is signaled to the user by the signal producing system 122, such as a vibration to the neck, an audible signal produced by a buzzer, or any other desired signal producing system. The user can then lower his head to contact the head/neck support 116.
(45) A further particular embodiment 200 of an apparatus according to the invention is illustrated in
(46) A particular embodiment of head/neck assembly 206 useful with the foregoing embodiment 200 of the inventive apparatus (as well as the previously described embodiment 10) is illustrated in
(47) Handles 216 are defined along sides 214a-b of neckboard 214. Downward-opening concavities 218, which in particular embodiments such as here illustrated extend beyond the upper surface 214c of neck board 214, are formed in the lower surface 214d of neck board 214 and receive the user's fingers when the user grips handles 216. Upper back pad 220 is also secured to neck board 214. Upper back vibrators 242 are disposed within cavities 228 and sandwiched between neck board 214 and upper back pad 220.
(48) Securing device 222, for example a Velcro strip, are affixed to lower surface 214d of neck board 214, and enable head/neck assembly 206 to be releasably affixed to main pad 202.
(49) In further particular embodiments a battery pack 221, secured to the neck board 214 by battery cover 238 and Velcro strip 230, provides power to the upper back vibrators 242 and neck vibrators 232, and in additional particular embodiments to buzzer 224. Alternatively, a battery pack can be secured to or within low back assembly 204. If desired, multiple battery packs can be used.
(50) Turning to
(51) Lower back vibrators 262, more particularly paired vibrators as illustrated in
(52) A first embodiment of a switch/force adjustment system according to the present invention is shown in
(53) Force adjustment ring 250 is comprised, in particular embodiments, of a resilient material that is stiffer and less resilient than the material(s) comprising cushion 244. By varying the stiffness of force adjusting ring 250, the magnitude of the compressive force required to dose switches 248 and thus activate vibrators 262 can be selectively controlled. For example, a user can sequentially employ force adjusting rings 250 of gradually increasing stiffness, in order to gradually increase the compressive force that the user's back must exert on the switch/force adjustment systems in order to activate the vibrators 262.
(54) As illustrated, switches 248 and force adjusting rings 250 are employed in the low back assembly 204. In other particular embodiments, switches 248 and force adjusting rings 250 are also used in the head/neck assembly 206 in order to activate vibrators 232 and/or 242.
(55) A second embodiment of a switch/force adjustment system according to the present invention is shown in
(56) In use, exertion of a compressive force on cap 272 causes a downward displacement of the cap, which brings the cap into contact with switch 248. The stiffness of the compressible element 270 determines the amount of compressive force needed to cause switch 248 to close and thereby activate vibrators 262. A user thus can sequentially employ compressible elements 270, such as springs, of gradually increasing stiffness, in order to gradually increase the compressive force that the user's back must exert on the switch/force adjustment systems in order to activate the vibrators 262.
(57) Vibrators 262 are activated by switches 248. In more particular embodiments using at least one pair of vibrators 262, each of the vibrators is separately and independently operable by the user. In other particular embodiments, the vibrators can be configured to work in tandem rather than independently.
(58) In particular embodiments, one or more of the vibrators 262 can also be activated manually by means of a control unit 290 (e.g., a hand set as shown in
(59) In more particular embodiments, the switch/force adjustment system incorporated in low back assembly 204 include one or more measurement elements that quantify the magnitude of the compressive force exerted by the users lower back on the switch/force adjustment system. In such embodiments, paired indicators 296a-b can include a display element that visually indicates the magnitude of the compressive force. Such embodiments assist the user in adjusting the compressive force exerted by each side of the user's lower back, in order to exert equal compressive force on each and thus optimize the strengthening exercises performed using the apparatus. Alternatively, as mentioned previously, the system can be configured for tandem operation in which the two sides of the users back are not independently monitored.
(60) In particular embodiments, head/neck 206 and low back assembly 204 are used jointly, both being attached to mat 202. In the alternative, head/neck assembly 206 and low back assembly 204 can be used separately, either attached to mat 202 or by itself. More particularly, low back assembly 204 can be used as a separate device placed on a floor, an exercise apparatus, an automobile seat or other surface.
(61) The foregoing embodiments employ vibrator units as signal producing systems. Other signal producing systems, such as visual or auditory signaling units, can also be employed together with or in place of the vibrator units. For example, as shown in
(62)
(63) Embodiments making use of bushing(s) 310 afford additional support to switch 248, and also enable adjustment of the axial position of switch 248 as desired, particularly during manufacture of the assembly.
(64) In further specific embodiments, a cushioning element 320 is provided between upper portion 249 of switch 248 and cap 272. Cushioning element 320 can comprise, for example, a foam material or another resilient material, and protects the switch 248 from excessive wear and other possible damage due to contact with cap 272.
(65) In further particular embodiments, an additional activator 320 can be incorporated into the inventive device at a location corresponding to a user's lower sacrum. The additional activator 320, in very particular embodiments, activates one or more additional signal producing systems as described herein (e.g., vibratory, audio, visual, etc.). Such embodiments provide additional feedback to enable the user to maintain desired neutral spine positioning while exercising.
(66) Additional embodiments enable information transfer to any desired display element, for example, a computer monitor, a laptop computer, a PDA, and the like. Such information can be transferred via a cable connection, a wireless transmitter, or any other desired mode of transmission. The information so transferred can also be further processed and stored.
(67) Embodiments of the invention thus provide feedback for improving proprioceptive acuity and lumbo-sacral coordination.
(68) A progressive exercise routine designed specifically for the inventive apparatus will allow the user to start with the short (e.g., 4 minute) drill series and progress at his own pace. Precision postural positioning for strong neutral spine occurs when the user re-educates the neuro-muscular system using the inventive apparatus.
(69) The invention has been illustrated herein as a self-contained apparatus. However, the invention can also be incorporated into another object, including without limitation objects such as an exercise apparatus (e.g., an inclined rowing machine), an exercise bench, a chair, a bed, etc. The invention can also be separately produced and subsequently affixed to another object.