WO2016149564A1 - Nmes garment - Google Patents
Nmes garment Download PDFInfo
- Publication number
- WO2016149564A1 WO2016149564A1 PCT/US2016/022985 US2016022985W WO2016149564A1 WO 2016149564 A1 WO2016149564 A1 WO 2016149564A1 US 2016022985 W US2016022985 W US 2016022985W WO 2016149564 A1 WO2016149564 A1 WO 2016149564A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- garment
- various embodiments
- electrodes
- nmes
- unit
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
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Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N1/00—Electrotherapy; Circuits therefor
- A61N1/18—Applying electric currents by contact electrodes
- A61N1/32—Applying electric currents by contact electrodes alternating or intermittent currents
- A61N1/36—Applying electric currents by contact electrodes alternating or intermittent currents for stimulation
- A61N1/36014—External stimulators, e.g. with patch electrodes
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N1/00—Electrotherapy; Circuits therefor
- A61N1/02—Details
- A61N1/04—Electrodes
- A61N1/0404—Electrodes for external use
- A61N1/0408—Use-related aspects
- A61N1/0452—Specially adapted for transcutaneous muscle stimulation [TMS]
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N1/00—Electrotherapy; Circuits therefor
- A61N1/02—Details
- A61N1/04—Electrodes
- A61N1/0404—Electrodes for external use
- A61N1/0408—Use-related aspects
- A61N1/0456—Specially adapted for transcutaneous electrical nerve stimulation [TENS]
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N1/00—Electrotherapy; Circuits therefor
- A61N1/02—Details
- A61N1/04—Electrodes
- A61N1/0404—Electrodes for external use
- A61N1/0472—Structure-related aspects
- A61N1/0484—Garment electrodes worn by the patient
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N1/00—Electrotherapy; Circuits therefor
- A61N1/18—Applying electric currents by contact electrodes
- A61N1/32—Applying electric currents by contact electrodes alternating or intermittent currents
- A61N1/36—Applying electric currents by contact electrodes alternating or intermittent currents for stimulation
- A61N1/36003—Applying electric currents by contact electrodes alternating or intermittent currents for stimulation of motor muscles, e.g. for walking assistance
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N1/00—Electrotherapy; Circuits therefor
- A61N1/18—Applying electric currents by contact electrodes
- A61N1/32—Applying electric currents by contact electrodes alternating or intermittent currents
- A61N1/36—Applying electric currents by contact electrodes alternating or intermittent currents for stimulation
- A61N1/36014—External stimulators, e.g. with patch electrodes
- A61N1/3603—Control systems
- A61N1/36034—Control systems specified by the stimulation parameters
Definitions
- the present invention relates to apparatuses, methods, and systems for simulating low and/or high intensity exercise. More particularly, the present invention relates to an exercise mimetic device for simulating low and/or high intensity exercise using low intensity electrical stimulation to generate low intensity muscle contractions such as a wearable garment that preferably imitates exercise by eliciting low grade muscle contractions in several of the larger skeletal muscle groups in the body.
- the apparatus of various embodiments of the present invention is a neuromuscular electrical stimulation (NMES) device/garment with a control unit that is wirelessly connected to and controls a stimulator unit that generates and transmits a low intensity electrical stimulation within certain unique parameters.
- NMES neuromuscular electrical stimulation
- the NMES device/garment is for treating conditions including but not limited to obesity, obesity related conditions such as diabetes, muscle toning, and/or other conditions benefitted by exercise.
- the NMES device/garment is an over the counter (OTC) NMES device/garment.
- OTC over the counter
- NMES/TENS go beyond just loss of excess fat tissue and the concomitant comorbid factors associated with overweight and obesity (Metabolic Syndrome, dyslipidemia, hypertension, increased risk of cardiovascular events, Nonalcoholic Fatty Liver Disease, Nonalcoholic Steatohepatitis, diabetes and glucose intolerance, insulin resistance, joint and bone degeneration, various forms of cancer, etc).
- Metabolic Syndrome dyslipidemia, hypertension, increased risk of cardiovascular events, Nonalcoholic Fatty Liver Disease, Nonalcoholic Steatohepatitis, diabetes and glucose intolerance, insulin resistance, joint and bone degeneration, various forms of cancer, etc.
- the well documented metabolic improvements associated with prolonged low intensity exercise noted in the medical literature actually shows that for Type 2 diabetics, exercise is more effective than the diabetic drug metformin in controlling glucose.
- NMES devices One major problem with prior art NMES devices is that the screen and controls are part of the unit, which presents a serious problem when changing various parameters during the course of the stimulation period, as frequently occurs during the day in regards to changing the intensity of the current provided by the different channels on the NMES unit.
- To adjust the settings one must be able to actually see the screen and the control buttons housed in the single NMES unit. This requires maneuvering the unit from wherever it is secured on the body (often under one's clothing) such that the unit's screen and buttons can be viewed and manipulated. This can be problematic.
- COMPEX® wireless units models SP 6.0 and SP 8.0.
- the COMPEX® unit is made of two separate and distinct entities: 1) a central controller that acts as both an electrical generator and controller, which wirelessly transmits the appropriate electrical parameters; and 2) a module, transmitting the signal from the controller to an electrode which is attached to each module.
- Two modules correspond to each channel in the controller, for a total of eight wireless modules. Even though this setup eliminates the wires from the controller to the electrodes, there are wires still connecting the two modules which connect to the electrodes.
- These receiver modules must also be charged, along with the controller.
- the modules are also very bulky, expensive and not practical for all-day wear under normal clothing.
- the present invention relates to apparatuses, methods, and systems for simulating low and/or high intensity exercise. More particularly, the present invention relates to an exercise mimetic device for simulating low and/or high intensity exercise using low intensity electrical stimulation to generate low intensity muscle contractions such as a wearable garment that preferably imitates exercise by eliciting low grade muscle contractions in several of the larger skeletal muscle groups in the body.
- the apparatus of various embodiments of the present invention is a neuromuscular electrostimulation (NMES) device/garment with a control unit that is wirelessly connected to and controls a stimulator unit that generates and transmits a low intensity electrical stimulation within certain unique parameters.
- NMES neuromuscular electrostimulation
- the NMES device/garment is for treating conditions including but not limited to obesity, obesity related conditions such as diabetes, muscle toning, and/or other conditions benefitted by exercise.
- the NMES device/garment is an OTC NMES device/garment.
- the NMES device/garment has a crotch cut out or opening in the crotch area to allow for convenient access to the restroom without removing the garment.
- the NMES device/garment has separate upper and lower pieces.
- the NMES device/garment has zippers on outer aspects of both legs. In various embodiments, the NMES device/garment has stretchable material channels sewn for incorporating wires.
- the NMES device/garment comprises means for attaching with electrodes for muscular stimulation, where the means allow for the electrodes to be affixed to the NMES device/garment at various positions.
- the NMES device/garment is a device/garment including combinations of embodiments of the present invention.
- electrodes are removably attached to the garment.
- the NMES unit(s) is/are removably attached to the garment.
- the electrodes, wiring, and the NMES unit(s) are detached from the garment in order to allow for cleaning of the garment.
- the electrodes, wiring, and the NMES unit(s) are reattached to the garment after cleaning.
- the upper and lower section can be secured together when being worn by a user.
- the garment covers both the upper and lower sections of a user.
- the electrodes wiring, and NMES unit(s) form aNMES system that is removably attached to the garment in a manner to stimulate muscle contractions when engaged.
- the NMES system is removably attached to the inner surface of the garment in a manner to stimulate muscle contractions when engaged.
- the NMES system is removably attached to the inner surface of the garment in a manner to stimulate muscle contractions when engaged.
- the garment includes a plurality of opening to allow the electrodes of the NMES system to contact the skin/surface of a wearer in a manner to stimulate muscle contractions when engaged.
- the wires, electrodes, and NMES unit(s) of the NMES system can be removably attached to either the inner or outer surface of the garment.
- Figure 1 is a front view of the outer surface of an apparatus of an embodiment of the present invention showing a garment with upper and lower parts (or upper and lower body sections), a crotch cut out, and zippers;
- Figure 2 shows a back view of the outer surface of an apparatus of an embodiment of the present invention showing a garment with upper and lower parts (or upper and lower body sections), a crotch cut out, and zippers;
- Figure 4 is a back view of the inner surface of an apparatus of an embodiment of the present invention showing the placement of the electrodes on the surface of a user's body and wiring;
- Figure 5 is a front close-up view of the inner surface of the upper part (or upper body section) of an apparatus of an embodiment of the present invention showing the placement of the electrodes on the surface of a user's body, wiring, and NMES unit(s);
- Figure 8 is a back close-up view of the inner surface of the lower part (or lower body section) of an apparatus of an embodiment of the present invention showing the placement of the electrodes on the surface of a user's body and wiring;
- Figure 9 is a reverse close-up view of the inner surface of the upper part (or upper body section) of an apparatus of an embodiment of the present invention showing that the electrodes, wiring, and NMES unit are removably attached to the garment.
- Figures 1 1 - 28 are views of an apparatus of an embodiment of the present invention showing a general user interface concept
- Figure 29 is a front view of a controller unit and stimulator/electrical generating unit of an apparatus of an embodiment of the present invention.
- Figure 31 is a back close-up view of the outer surface of the upper part (or upper body section) of an apparatus of an embodiment of the present invention showing the placement of the covers for the electrodes on the surface of a user's body and wiring;
- Figure 32 is a front close-up view of the outer surface of the lower part (or lower body section) of an apparatus of an embodiment of the present invention showing the placement of the covers for the electrodes on the surface of a user's body and wiring;
- Figure 35 is a top view of a compartment of an apparatus of the present invention showing electrodes and wires removably attached to the sheet.
- the present invention relates to apparatuses, methods, and systems for simulating low intensity exercise. More particularly, the present invention relates to an exercise mimetic device for simulating low intensity exercise using low intensity electrical stimulation to generate low intensity muscle contractions such as a wearable garment that preferably imitates exercise by eliciting low grade muscle contractions in several of the larger skeletal muscle groups in the body.
- the apparatus of various embodiments of the present invention is a neuromuscular electrostimulation (NMES) device/garment with a control unit that is wirelessly connected to and controls a stimulator unit that generates and transmits a low intensity electrical stimulation within certain unique parameters.
- NMES neuromuscular electrostimulation
- the NMES device/garment is for treating conditions including but not limited to obesity, obesity related conditions such as diabetes, muscle toning, and/or other conditions benefitted by exercise.
- the NMES device/garment is an OTC NMES device/garment.
- the exercise mimetic device 100 is a NMES exercise suit.
- Figures 1-9 and 31 -35 show various views of an apparatus 100 of various embodiments of the present invention.
- the NMES exercise suit preferably generates low intensity electrical stimulation within preferable and unique parameters to preferably generate low intensity muscle contractions that preferably simulate low intensity exercise.
- the NMES device 100 is preferably an exercise mimetic device.
- the low grade muscle contractions are preferably accomplished through stimulation of skeletal muscle mitochondria.
- the NMES device/garment 100 is a full body suit. In another embodiment, the NMES device/garment is a lower body suit. In another embodiment, the NMES device/garment is a "high waist" type of garment 210, preferably extending from just under the ribs down.
- the NMES device/garment is preferably a modified wetsuit- like garment such as a one piece suit.
- the one piece suit preferably covers a patient's upper and lower body and is preferably similar to currently available OTC wetsuits.
- the one piece suit preferably includes different patterns.
- the wetsuit pattern is preferably purchased and/or downloaded online.
- the NMES device/garment has a crotch cut out 230 that preferably allows for easy perineal/anal access for bathroom usage while continuously worn without the need to remove said garment/device or opening in the crotch area 230 to allow for convenient access to the restroom without removing the garment.
- the NMES device/garment of various embodiments of the present invention preferably allows a wearer to: (1) preferably use the bathroom while wearing the NMES device/garment; and/or (2) preferably wear regular underwear concurrently with the NMES device/garment.
- the NMES device/garment is preferably a variation to the wet suit embodiment, wherein the NMES device/garment preferably has straps to preferably secure an upper part of the NMES device/garment onto the trapezius of a wearer, preferably similar to that of a tank top or undershirt.
- This embodiment preferably makes the NMES device/garment cooler temperature wise.
- the NMES device/garment is made up of neoprene.
- the NMES device/garment may be made of but not limited to: spandex, spandex containing material, 2-way or 4-way stretchable material or other stretchable material.
- the neoprene can be of a thin density and/or has a light weight.
- the neoprene can be of the thinnest density and/or has a lightest weight possible.
- the neoprene of this embodiment preferably: does not tear; does not easily lose its elasticity; does not easily lose its shape and/or integrity; and/or is easy to clean.
- the neoprene can be preferably antimicrobial and/or comprises means for eliminating odors.
- the NMES device/garment is made up of a neoprene with various sizes and patterns of holes punched through (Airprene).
- the NMES device/garment has separate upper 210 and lower 220 pieces that preferably accommodates various body sizes and shapes. More preferably, The NMES device/garment of this embodiment accommodates various sizes and shapes of buttocks and/or breasts and/or leg circumference and/or abdominal circumference.
- the NMES device/garment has zippers on outer aspects of both legs and in the front of the main body.
- the zippers are preferably located on outer aspect of both legs.
- the zippers are preferably located on the front of the NMES device/garment.
- the zippers preferably aid a wearer in donning the garment such as larger patients and patients with very large legs.
- the wearers may have a condition that is medically termed lipedema.
- electrodes 500 are removably attached to the garment 200.
- the wiring is removably attached to the garment 200.
- the wiring is placed within compartments 400 such as within the bore/channel 700 of tubing such that the compartments 400 are removably attached to the garment 200.
- the NMES unit(s) is/are removably attached to the garment 200.
- the garment 200 has channels 700 through which the wires 600 can be removable placed within.
- the electrodes 500, wiring, and the NMES unit(s) are detached from the garment 200 in order to allow for cleaning of the garment 200.
- the electrodes 500, wiring, and the NMES unit(s) are reattached to the garment 200 after cleaning.
- the garment 200 includes separate upper and lower sections.
- the upper 210 and lower 220 section can be secured together when being worn by a user.
- the garment 200 covers both the upper and lower sections of a user.
- the electrodes 500, wiring, and NMES unit(s) for a NMES system that is removably attached to the garment 200 in a manner to stimulate muscle contractions when engaged.
- the NMES system includes an upper NMES system removably attached to the upper section of the garment and a lower NMES system removably attached to the lower section of the garment 200.
- the NMES system is removably attached to the inner surface of the garment 200 in a manner to stimulate muscle contractions when engaged.
- the wires 600, electrodes 500, and NMES unit(s) of the NMES system can be removably attached to either the inner or outer surface of the garment 200.
- Compartment 400 includes a plurality of compartments
- Wires 600 includes a plurality of wires 601 ,602,603,604.
- Channel 700 includes a plurality of channels 701 ,702,703,704,705.
- Sheets 800 includes a plurality of sheets 801,802,803,804,805,806,807,808,809,810.
- the apparatus 100 comprises a means for attaching electrodes 500, wiring, and NMES unit(s) to the garment 200 for muscular stimulation.
- the means allow for the electrodes 500, wiring, and NMES unit(s) to be affixed to the garment 200 at various positions.
- the electrodes 500, wiring, and NMES unit(s) are contained within compartments 400 such as bags having an outer surface that can be removably attached to the inner surface of the garment 200.
- the compartments 400 containing the electrodes 500 have opening allowing for the electrodes 500 to be positioned on the skin of a user/wearer.
- the wiring is placed within compartments 400 such as within the bore/channel 700 of tubing such that the compartments 400 are removably attached to the garment 200.
- the compartment 400 includes a plurality of compartments for removably attaching the wires 600, electrodes 500, and NMES unit(s) of the NMES system.
- the garment 200s have channels 700 through which the wires 600 can be removable placed within.
- the electrodes 500, wiring, and NMES unit(s) directly and removably attach to the garment 200.
- the electrodes 500, wiring, and NMES unit(s) of various embodiments may have a surface with a means for directly attaching the garment 200.
- the attachment means is a hook and loop fastener 900 (i.e., VELCRO®) with the loops preferably on the garment 200 and hooks on the electrodes 500, wiring, and NMES unit(s).
- VELCRO® hook and loop fastener
- the attachment means is a hook and loop fastener 900 (i.e., VELCRO®) with the loops preferably on the electrodes, wiring, and NMES unit(s) and hooks on the garment 200.
- VELCRO® a hook and loop fastener 900
- the loops preferably on the electrodes, wiring, and NMES unit(s) and hooks on the garment 200.
- the compartment 400 can be formed by a sheet 800 that is attachable to the garment 200 to form the compartment 400 and having an outer surface facing the skin of a wearer and an inner surface facing the garment 200.
- the sheet 800 of various embodiments is thin, lightweight, and collapsible and can be made up of a flexible material.
- the flexible material including, for example, laminated cotton, vinyl fabrics, cotton, polyester, nylon, rayon, wool, gabardine, vinyl, microfibers and high tech fabrics.
- the flexible material can be the same plastic type fabric used on raincoats that can be fold up into an thimble.
- the sheet 800 is attachable to the garment 200.
- the attachment can be accomplished, for example, with an attachment means including a hook and loop fastener 900 (i.e. VELCRO ®), silicone, or an elastic or sticky substance.
- the attachment means can be attached to the sheet 800 by means such as, for example, glue or heat stamping.
- a second attachments means can be used to trap excess length of wires 600 to the inner surface of the sheet 800.
- the attachment can be accomplished, for example, with an attachment means including a hook and loop fastener 900 (i.e. VELCRO ®), silicone, or an elastic or sticky substance.
- the attachment means can be attached to the sheet 800 by means such as, for example, glue or heat stamping.
- the wires 600 of any embodiment of the NMES System has a length to avoid excess lengths and/or to allow for slack to allow them to be moved easier.
- the wires 600 of any embodiment of the NMES System may also include connectors to connect with the electrodes 500 and NMES unit.
- the connecters can include, for example, Molex connectors.
- the sheet 800 can include a hole such that electrodes 500 removably attached to the outer surface can connect to the wires 600 removably attached to the inner surface of the sheet 800.
- the electrode(s) of various embodiments can include wiring with a connecter such that the wiring and connector can be threaded through the hole to connect to the wire.
- the hole at the left side of the sheet 800 can allow the wire of the electrode to pass through from the "GARMENT- SHEET 800" (outer surface) area to the "SHEET-SKIN" (inner surface) area.
- a Velcro loop strip under the sheet (skin side) to which the electrode (with its Velcro hooks on the back [non- skin side]) (inner surface) sticks to.
- the loop strips can be moved in any manner include , for example, higher, lower, left or right, to accommodate different heights of folks (probably need less than 2 inches of movement).
- the right side is the same "sheet-skin” side strip of velcro loops affixed to the sheet 800.
- the right side is the "channel" can lead wires 600 to the NMES.
- the channel 700 can be made up of the same materials as the sheet 800.
- the NMES device/garment can have stretchable material channels sewn for incorporating wires 600.
- the channels are preferably sewn into/onto parts of the suit to preferably and completely cover all wires 600 as they extend on the outer, non-skin surface of the garment 200 on their way to connect to a NMES stimulator unit. This embodiment preferably prevents the wires 600 from snagging on something.
- the electrodes 500 are positioned in a manner to stimulate any muscle group to contract. In various embodiments, the electrodes 500 are positioned in a manner to stimulate a major muscle group to contract. In other embodiments, the electrodes 500 are positioned in a manner to stimulate a plurality of major muscle groups to contract.
- the electrodes 500 are positioned in a manner to stimulate a minor muscle group to contract. In other embodiments, the electrodes 500 are positioned in a manner to stimulate a plurality of minor muscle groups to contract.
- the electrodes 500 are positioned in a manner to stimulate a major and a minor muscle group to contract.
- electrodes 500 are positioned in a manner to stimulate the abdominal muscles including the upper and lower abdominal muscles to contract.
- the electrodes 500 of various embodiments can straddle the edge of the abdominal muscles and can be in a compartment/bag 400 such as abdominal bag.
- electrodes 500 are positioned in a manner to stimulate the gastrocnemius muscle to contract.
- the electrodes 500 of various embodiments can straddle the edge of the gastrocnemius muscle and can be in a compartment/bag 400 such as gastrocnemius bag.
- electrodes 500 are positioned in a manner to stimulate the Latissimus dorsi muscles to contract.
- the electrodes 500 of various embodiments can straddle the edge of the Latissimus dorsi muscles muscles and can be in a compartment/bag 400 such as a Latissimus dorsi bag.
- electrodes 500 are positioned in a manner to stimulate the trapezius muscles to contract.
- the electrodes 500 of various embodiments can straddle the edge of the trapezius muscles and can be in a compartment/bag 400 such as a trapezius bag.
- wires 600 connecting the NMES Unit to the electrodes 500 are contained within channels 700.
- the channels 700 of various embodiments can contain a plurality of wires 600.
- the channel 700 contains two wires 600 with one wire connecting the NMES unit to Latissimus dorsi muscles and another wire connected the NMES unit to the trapezius muscles.
- the channel 700 shown contains two wires 600 with one wire connecting the NMES unit to Latissimus dorsi muscles and another wire connected the NMES unit to the trapezius muscles (same bilaterally).
- wires 600 connecting the NMES unit to the electrodes 500 for stimulating the trapezius muscles does not cross the wires 600 for stimulating the Latissimus dorsi muscles.
- These wires 600 can extend side-by-side in a channel 700 running from the front of a wearer to the back of the wearer.
- electrodes 500 are positioned in a manner to stimulate the Quadriceps femoris muscles to contract.
- the electrodes 500 of various embodiments can straddle the edge of the Quadriceps femoris muscles and can be in a compartment/bag 400 such as a Quadriceps bag.
- electrodes 500 are positioned in a manner to stimulate the Hamstring muscles to contract.
- the electrodes 500 of various embodiments can straddle the edge of the hamstring muscles and can be in a compartment/bag 400 such as a hamstring bag.
- electrodes 500 are positioned in a manner to stimulate the gluteus muscles to contract.
- the electrodes 500 of various embodiments can straddle the edge of the gluteus muscles and can be in a compartment/bag 400 such as a gluteus bag.
- connection between the stimulator and electrodes 500 may include a conductive material which is part of the garment or affixed to the garment (sewn, glued, heat stamped, etc.)
- wire for electrode to pass through to "skin" side of sheet/bag 400 In various embodiments as shown in Figures 34 and 35, wire for electrode to pass through to "skin" side of sheet/bag 400.
- a hook strip to attach to corresponding loop strip on garment.
- the apparatus can have several.
- the sheet has a fastener type strips (either hook or loop) 901, 902 around border to hold the inner surface of the garment.
- the apparatus 100 of various embodiments of the present invention is a NMES device/garment with a control unit that is wirelessly connected to and controls a stimulator unit that generates and transmits a low intensity electrical stimulation within certain unique parameters.
- the control unit preferably comprises a screen and controls that are preferably separate from the stimulator unit.
- the NMES device/garment preferably supports at least fifteen hours of continuous stimulation preferably with unique patterns.
- the NMES device/garment can preferably stimulate 10 to 16 different muscle groups.
- the apparatus 100 is a NMES device/garment comprising a stimulator/electrical generating unit and a control unit.
- Figure 31 shows an example of a control unit of various embodiments of the present invention.
- the stimulator/electrical generating unit is preferably a small, thin unit and preferably includes but is not limited to: a power source; a central processing unit (CPU); a means for recharging the unit; and a means for generating and transmitting electrical stimulation to electrodes 500.
- the stimulator/electrical generating unit may further include a separate means for wireless connection to a control unit.
- the power source is preferably a rechargeable battery such as a cell phone or lithium battery.
- the CPU is preferably a simple programmable CPU chip.
- the chip includes wireless connection means such as BLUETOOTH® or Wi-Fi.
- the chip has 10 to 16 channels and preferably supports 20 to 32 electrodes.
- the CPU chip is a Nordic BLE +MO processor.
- the means for recharging the unit is preferably a micro or mini universal serial bus (USB) hub.
- the USB hub can be covered with an open and closeable rubber seal to enhance protection from water and or body fluids.
- the stimulator unit can be preferably housed in a small mesh pouch made for this on the right upper abdomen.
- the stimulator/electrical generating unit preferably has a length ranging from 1.5 to 4 inches (3.81 cm to 10.2 cm). More preferably, the stimulator/electrical generating unit has a length ranging from 1.5 to 3 inches (3.81 cm to 7.61 cm). Most preferably, the stimulator/electrical generating unit has a length ranging from 1.5 to 2.5 inches (3.81 cm to 6.35 cm). In various embodiments, the stimulator/electrical generating unit has a length that is preferably half the length of an IPOD NANO®.
- the stimulator/electrical generating unit preferably has a height ranging from 1 ⁇ 2 to 4 inches (1.27 cm to 10.16 cm). More preferably, the stimulator/electrical generating unit has a height ranging from 1 ⁇ 2 to 3 inches (1.27 cm to 7.61 cm). Most preferably, the stimulator/electrical generating unit has a height ranging from 1 ⁇ 2 to 2 inches (1.27 cm to 5.08 cm).
- the frequency of the electrical stimulation pulse generated and transmitted by the stimulator unit for low intensity muscle contractions preferably ranges from 1 Hz to 40 Hz. More preferably, the frequency of the electrical stimulation pulse generated and transmitted by the stimulator unit for low intensity muscle contractions ranges from 3 Hz to 33 Hz. Most preferably, the frequency of the electrical stimulation pulse generated and transmitted by the stimulator unit for low intensity muscle contractions ranges from 4 Hz to 20 Hz.
- the electrical current parameter of the electrical stimulation pulse generated and transmitted by the stimulator unit for low intensity muscle contractions is preferably of a sufficient amperage to preferably induce low intensity muscle contractions in an obese individual. More preferably, the electrical current parameter is able overcome and penetrate the insulative properties of subcutaneous fat to stimulate low intensity muscle contractions and not exceed the maximum amperage settings understood by the inventors to be common to all NMES units on the market. The present inventors understand that the maximum amperage settings common to all NMES units on the market is 120 mA.
- the control unit preferably includes a user interface preferably having a touch screen, controls such as buttons to activate the unit, means for saving and selecting programs related to the parameters of the stimulation unit including but not limited to increasing/decreasing electrical intensity.
- the frequency of the electrical stimulation pulse generated and transmitted by the stimulator unit for high intensity muscle contractions preferably ranges from 40 Hz to 90 Hz. More preferably, the frequency of the electrical stimulation pulse generated and transmitted by the stimulator unit for high intensity muscle contractions ranges from 45 Hz to 80 Hz. Most preferably, the frequency of the electrical stimulation pulse generated and transmitted by the stimulator unit for high intensity muscle contractions ranges from 50 Hz to 76 Hz.
- the amplitude of the electrical current parameter of the electrical stimulation pulse generated and transmitted by the stimulator unit for high intensity muscle contractions preferably ranges from 2 mA to 450 mA. More preferably, the amplitude of the electrical current parameter of the electrical stimulation pulse generated and transmitted by the stimulator unit for high intensity muscle contractions ranges from 5 mA to 400 mA. Most preferably, the amplitude of the electrical current parameter of the electrical stimulation pulse generated and transmitted by the stimulator unit for high intensity muscle contractions ranges from 10 mA to 350 mA.
- the NMES device/garment can be a single entity.
- the NMES device/garment is significantly more dependable and safer than prior art devices.
- NMES neuromuscular electrical stimulator
- SIZE Preferably as small as possible such as an IPOD NANO® size.
- PROGRAMS Preferably 5-6 stimulation programs preferably with the following constant/fixed parameters in each program:
- Timer, or duration of program continuous, safety shut off at 8-10 hours of continuous use that can be restarted
- FREQUENCY Preferably five or six individual programs, each with a different frequency including but not limited to:
- INTENSITY The ability to preferably vary intensity in each channel.
- BLUE TOOTH CONNECTIVITY Preferably connect to an IPHONE®/ ANDROID® device preferably via an app, which in turn preferably acts as a wireless control unit.
- the device preferably satisfies the requirements of Bluetooth wireless transmitter/receiver certifications, electrical, magnetic and wireless transmission non-interference (an FCC requirement) safety requirements, and electrical and electromagnetic safety for qualification of product liability insurance.
- a Preferably via a separate unit which would control the stimulation unit.
- b Preferably wirelessly, via any iOS or ANDROID® compatible device.
- iOS or ANDROID® compatible device Preferably any iOS or ANDROID® compatible device.
- SIZE Preferably the same of smaller than the dimensions of an IPOD NANO® with buttons and screen or screen buttons only.
- RECHARGING Preferably a USB connector capable of recharging the NMES stimulator unit.
- CHANNEL SELECTION a button or touch screen selector that preferably allows selection of just one particular channel of the 16 channels, corresponding to a specific muscle group, which would preferably allow the "up” and “down” buttons in c) below to adjust intensity in that particular body part (since each channel corresponds to the two electrodes connected to certain body part, such as the positive and negative electrodes of the right hamstring group).
- buttons or touch screen selectors (1) Intensity - increase and decrease buttons or touch screen selectors
- Buttons or touch screen selectors to allow increase or decrease of intensity to "Both" channels controlling right and left corresponding body part (i.e., right and left hamstring, etc.), or individually control just the “R” (right) body part (hamstring) channel or just the “L” (left);
- Figures 10-29 show examples of a user interface of various embodiments of the present invention.
- Screen 2000 includes screen 2001 , 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010, 201 1 , 2012, 2013, 2014, 2015, 2016, 2017, 2018, 2019, and 2020.
- Controller unit with:
- Gray button indicates C and D have not been programmed and can't be selected.
- back button allows user to go back to choose a different model
- Toning level button gets screened-back.
- back button allows user to go back to choose a different toning level.
- Gray dots indicate the app has not detected the presence of an upper-body garment.
- back button allows user to go back to choose a different intensity.
- the apparatus of any embodiment of the present invention is unique when compared to other devices already marketed, such as the German “Miah” and the Vietnamese “X-body”. These suits produce high intensity neuromuscular stimulation in opposed muscle groups, are not portable, have exposed wires and bulky suits and are used in conjunction with either cross training or weight training exercises to increase muscle tone, muscle mass and calorie consumption. Because of the specific parameters of the NMES (frequency, intensity, stimulation partem, wave length, etc.), these devices mainly stimulate Type 2, slow twitch muscle fibers which primarily bum glucose (or glycogen) - not fat - for energy.
- NMES frequency, intensity, stimulation partem, wave length, etc.
- Type 1 slow twitch muscle fibers which bum fat instead of glucose are converted into Type 2 fibers, reducing the fat buming ability of an individual.
- low intensity, prolonged stimulation with the parameters we've found are optimal for fat buming provides optimal fat tissue metabolism and fat tissue loss.
- the NMES device/garment comprises a garment made of a flexible material and electrodes 500, wiring, and NMES unit(s) that are preferably and removably attached to the garment
- the apparatus 100 comprises a means for attaching electrodes 500, wiring, and NMES unit(s) to the garment for muscular stimulation.
- the means allow for the electrodes 500, wiring, and NMES unit(s) to be affixed to the garment at various positions.
- the electrodes 500, wiring, and NMES unit(s) are contained within compartments 400 such as bags having an outer surface that can be removably attached to the inner surface of the garment.
- the compartments 400 containing the electrodes 500 have opening allowing for the electrodes 500 to be positioned on the skin of a user/wearer.
- the wiring is placed within compartments 400 such as within the bore/channel of tubing such that the compartments 400 are removably attached to the garment.
- the garments have channels through which the wires can be removable placed within.
- the electrodes 500, wiring, and NMES unit(s) directly and removably attach to the garment.
- the electrodes 500, wiring, and NMES unit(s) of various embodiments may have a surface with a means for directly attaching the garment.
- the attachment means is a hook and loop fastener 900 (i.e., VELCRO®) with the loops preferably on the garment and hooks on the electrodes 500, wiring, and NMES unit(s).
- a hook and loop fastener 900 i.e., VELCRO®
- the loops preferably on the garment and hooks on the electrodes 500, wiring, and NMES unit(s).
- the attachment means is a hook and loop fastener 900 (i.e., VELCRO®) with the loops preferably on the electrodes 500, wiring, and NMES unit(s) and hooks on the garment.
- VELCRO® a hook and loop fastener 900
- the loops preferably on the electrodes 500, wiring, and NMES unit(s) and hooks on the garment.
- the apparatus 100 includes a means for attaching/securing the upper and lower sections of the garment together.
- the means for attaching/securing the upper and lower sections is a zipper.
- the means for attaching/securing the upper and lower sections is a hook and loop fastener 900 (i.e., VELCRO®).
- the wires for conducting an electrical pulse to the electrodes 500 preferably run along channels within the garment.
- the hook and loop fastener 900 of any embodiment are preferably spaced a part strips to allow for bending easily when sitting.
- the electrodes 500 are either FDA approved sticky or water activated cloth weave.
- the upper section of the apparatus 100 of any embodiment of the present invention has 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, and 20 electrodes.
- the number of electrodes in the upper section falls within the range between any two of the above numbers.
- the upper section of the apparatus 100 of any embodiment of the present invention has 1, 2, 3, 4, 5, 6, 7, 8, 9, and 10 NMES unit(s).
- the number of NMES unit(s) in the upper section falls within the range between any two of the above numbers.
- the lower section of the apparatus 100 of any embodiment of the present invention has 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, and 20 electrodes.
- the number of electrodes in the lower section falls within the range between any two of the above numbers.
- the lower section of the apparatus lOOof any embodiment of the present invention has 1, 2, 3, 4, 5, 6, 7, 8, 9, and 10 NMES unit(s).
- the number of NMES unit(s) in the lower section falls within the range between any two of the above numbers.
- the wires from the stimulator unit/NMES unit preferably run down the outside of the lateral strip in a tunnel or channel preferably made of sewn cloth and preferably connect to the end connectors of the electrode wires preferably protruding through a hole preferably in the leg band.
- the wires of any embodiment of the present invention may be of variable thickness.
- the connectors are a male to female 2 mm pin that preferably slides tightly in. In alternative embodiments, the connectors are preferably snaps.
- the embodiments of containment of the wires preferably eliminate the need to connect each electrode to its wire from the stimulator unit/NMES machine, and the easy quick placement of the electrodes preferably and greatly reduces the time spent setting up the apparatus 100 and preferably aids in preventing wire entanglement when the apparatus is removed.
- the wire connections are preferable accomplished through a 3.5 mm plug.
- electrode(s) is/are preferably positioned in a manner to preferably stimulate abdominal muscles.
- the electrode(s) is/are preferably located on the inner surface of apparatus 100.
- electrodes in the lower section are preferably positioned below the belly button of a wearer.
- the apparatus 100 further comprises electrode(s) in the upper section preferably positioned below the rib cage of a wearer.
- the electrode(s) may include a complimentary set of electrodes positioned above the electrode(s) positioned below the belly button and below the rib cage.
- the electrode(s) are preferably attached to the upper section of the garment.
- the apparatus 100 further comprises electrode(s) removably attached to the lower section and preferably positioned to upper and lower ends of both gluteal muscles.
- placement of electrodes for the upper and lower section are the same for the one piece garment.
- the apparatus 100 comprises electrodes preferably positioned to upper and lower ends of bilateral gluteal muscles, upper and lower ends of bilateral hamstrings, upper and lower ends of bilateral quadriceps, upper and lower ends of the gastrocnemius muscle, and upper and lower ends of bilateral abdominal muscles.
- the apparatus 100 comprises a section of material preferably made of neoprene and is similar to the lower aspect of a wetsuit type of garment.
- the apparatus 100 comprises electrodes preferably positioned to upper and lower ends of bilateral latissimus dorsi muscles, upper and lower ends of bilateral trapezius muscles, upper and lower ends of bilateral pectoralis major muscles, and upper and lower ends of bilateral biceps muscle.
- the apparatus 100 comprises a section of material preferably made of neoprene and is similar to the lower aspect of a wetsuit type of garment.
- the stimulator/electrical generating unit of any embodiment of the present invention preferably has 1 to 10 programs. More preferably, the stimulator/electrical generating unit of any embodiment of the present invention has 1 to 8 programs. Most preferably, the stimulator/electrical generating unit of any embodiment of the present invention has 1 to 4 programs.
- the stimulator/electrical generating unit such as, for example, SM9028T 3002, SM9028 NT 3002, and SM9028NE 3002 units preferably facilitate 4 different NMES programs and preferably include a user interface.
- Figure 32 shows an example of a user interface of various embodiments of the present invention.
- Each program preferably has the same parameters, but a different NMES frequency.
- existing units are reprogrammed to preferably facilitate 4 different NMES programs.
- the stimulator/electrical generating unit facilitates 5 different NMES programs.
- Program 1 is 4 Hz.
- Program 2 is 7 Hz.
- Program 3 is 12 Hz.
- Program 4 is 18 Hz.
- pulse width 120 milliseconds.
- the pulse width used for any embodiment of the present invention preferably ranges from 50 microseconds to 300 microseconds. More preferably, the pulse width used for any embodiment of the present invention ranges from 70 microseconds to 210 microseconds. Most preferably, the pulse width used for any embodiment of the present invention ranges from 120 microseconds to 140 microseconds.
- off time or rest time with no stimulation 7 seconds
- the off time or rest time with no stimulation used for any embodiment of the present invention preferably ranges from 1 second(s) to 21 second(s). More preferably, the off time or rest time with no stimulation used for any embodiment of the present invention ranges from 3 second(s) to 18 second(s). Most preferably, the off time used or rest time with no stimulation for any embodiment of the present invention ranges from 6 second(s) to 12 second(s).
- a timer function that preferably allows for continuous stimulation for up to 12-14 hours.
- the timer function used for any embodiment of the present invention preferably ranges from 10 minutes to 24 hour(s). More preferably, the timer function used for any embodiment of the present invention ranges from 15 minutes to 20 hour(s). Most preferably, the timer function used for any embodiment of the present invention ranges from 15 minutes to 16 hour(s).
- the timer function used for any embodiment of the present invention preferably ranges from 10 minutes to 24 hour(s). More preferably, the timer function used for any embodiment of the present invention ranges from 15 minutes to 20 hour(s). Most preferably, the timer function used for any embodiment of the present invention ranges from 15 minutes to 16 hour(s).
- the timer for stimulation time is preferably adapted for battery life and health consideration and includes but is not limited to stimulation times ranges from 10 minutes to 60 minutes. In this embodiment, 20 minutes is the default stimulation time and the timer also includes stimulation time options for 10 minutes, 30 minutes, 40 minutes, 50 minutes, and 60 minutes.
- the NMES unit/ the stimulator/electrical generating unit is preferably retooled to contain four channels. In another embodiment, the unit contains eleven channels. In another embodiment, the unit contains twelve channels.
- the channels preferably allow for independent intensity adjustment.
- the control unit preferably controls intensity adjustment in the NMES unit/ the stimulator/electrical generating unit.
- the user interface preferably includes one button allowing for a user to scroll through the different intensities.
- using one button preferably allows for the unit to be of a smaller size and cost effective.
- the NMES unit/ the stimulator/electrical generating unit preferably includes a screen lock.
- the NMES unit/ the stimulator/electrical generating unit is preferably a Bluetooth NMES device with 8-12 channels supporting 16-24 electrodes for 12-14 hours, rechargeable via USB and as small as possible.
- the NMES unit/ the stimulator/electrical generating unit preferably has a small, cell phone sized design. More preferably, small, cell phone sized design includes means allowing for a user/wearer to separately control each channel's intensity.
- the software used for any embodiment of the present invention includes but is not limited to, for example, Android, OSX, Microsoft and iOS platforms.
- the NMES unit/ the stimulator/electrical generating unit is a "off the shelf NMES units that has been preferably modified. More preferably, the "off the shelf NMES units has FDA approval/clearance.
- the design of the NMES unit/ the stimulator/electrical generating unit is preferably a modification of an existing FDA approved device and duplicates parameters already used by other FDA approved NMES devices.
- the channels are preferably adjustable for intensity independent.
- 12 channels are preferably adjustable for intensity independent to preferably comply with regulations related to a transmitter/receiver device.
- the NMES unit/ the stimulator/electrical generating unit is a non-BLUETOOTH® NMES having 4 channels.
- the modification of an existing schematic design of the NMES unit/ the stimulator/electrical generating unit preferably allows for a user/wearer to change the intensity of each channel independent of the other channels.
- modification of existing schematic design of an existing schematic design of the NMES unit/ the stimulator/electrical generating unit having 12 channels allows a user/wearer to change the intensity of one channel independent of the other 11 channels.
- Various embodiments of the present invention includes plans, for example, for:
- NMES NMES unit/ the stimulator/electrical generating unit
- assembly of components of the suit such as NMES unit, wiring, electrodes; or assisting with packaging or manual.
- the present invention preferably includes a BLUETOOTH® Device(s) for controlling the NMES unit where the BLUETOOTH® Device(s) preferably includes software for implementing control over the NMES.
- the software is preferably developed from popular languages including but not limited to iOS, Android, or Microsoft.
- the other settings for electrical muscular stimulation are preferably the same for all frequencies for the four channels and are preferably as follows:
- pulse shape biphasic symmetric square wave
- a timer function that preferably allows for continuous stimulation for up to 12-14 hrs.
- the stimulator/electrical generating unit facilitates 5 different NMES programs preferably allowing 5 different EMS frequencies including, for example, 4 Hz, 7 Hz, 12 Hz, 20 Hz and 30 Hz.
- the stimulator/electrical generating unit preferably includes a time function that preferably allows for continuous stimulation such as, for example, low intensity stimulation patterns preferably for up to 16 hours.
- the stimulator/electrical generating unit preferably includes 4 channels, 5 different programs and preferably allows 5 different EMS frequencies, and other parameters.
- the stimulator/electrical generating unit is preferably a SM9028NT with 4 channels with massage modes and intensity adjusted.
- the stimulator/electrical generating unit is preferably a SM9028NT with 4 channels with massage modes, intensity adjusted, tooling shell, and printable circuit board (PCB).
- PCB printable circuit board
- the stimulator/electrical generating unit is preferably of a small size and has the ability to change intensity on each channel.
- the stimulator/electrical generating unit preferably has four channels that preferably stimulates eight electrodes.
- an external splitter such as a Y connector is preferably plugged into each of the two channels on the unit and preferably uses an RCA connecter.
- a koalaty connector is used.
- the stimulator/electrical generating unit preferably includes means for adjusting the intensity on all channels.
- the stimulator/electrical generating unit is a modified SM9028NT unit.
- the modified SM9028NT unit preferably includes 8 massage modes and 2 independent channels and preferably has the same dimensions as the SM9128 unit.
- the stimulator/electrical generating unit is an FDA approved/cleared unit.
- the stimulator/electrical generating unit is an FDA 510(K) approved/cleared unit.
- the stimulator/electrical generating unit that is an FDA approved/cleared or an FDA 510(K) approved/cleared unit includes devices such as but not limited to stimulators, massagers, or different products having a Device Listing Number and/or an FDA Product Code.
- the stimulator/electrical generating unit has an acceptable failure rate.
- the electrodes are various silicone electrodes including silicone pads.
- the silicon electrodes are preferably used with sponge, preferably for water absorption, and a bandage, preferably used for tying up the pads to an individual's body.
- the electrodes are various silver & carbon fiber layer electrodes.
- the silver & carbon fiber layer electrodes are preferably, but not necessarily, used with some type of conductive material, such as conductive gel, water or perspiration.
- the electrode has a hook-type (i.e., Velcro) backing.
- the electrodes are composed of conductive knitted fabric, such as silver fiber, with a hook-type (i.e., Velcro) backing.
- the electrodes are composed of silver film weave with carbon fiber backing, with a hook-type (i.e., Velcro) backing.
- Electrodes that may be used for any embodiment of the present invention, for example, include but are not limited to soft silicon electrodes with a carbon or silver material or other type of conducting surface, self adhesive electrodes with a carbon or silver material or other type of conducting surface.
- the electrodes are 7cm x 1 1cm. In another embodiment, the electrodes 1.875 inch (4.76 cm) round electrodes. In another embodiment, the electrodes are 2.5 inch (6.35 cm) round electrodes. In another embodiment, various size and shape electrodes (round, oval, square, rectangular) are used as best suits the individual.
- the electrodes used for any embodiment of the present invention preferably have a length ranging from 4.76 cm to 12 cm. More preferably, the electrodes used for any embodiment of the present invention have a length ranging from 4.76 cm to 10 cm. Most preferably, the electrodes used for any embodiment of the present invention have a length ranging from 4.76 cm to 8 cm.
- the electrodes used for any embodiment of the present invention preferably have a width ranging from 4.76 cm to 12 cm. More preferably, the electrodes used for any embodiment of the present invention have a width ranging 4.76 cm to 10 cm. Most preferably, the electrodes used for any embodiment of the present invention have a width ranging from 4.76 cm to 8 cm.
- the silicone electrodes are preferably connected to the skin made more conductive with the addition of a fluid.
- the fluid is preferably water.
- the silver cloth electrodes are made more conductive with the addition of a fluid.
- the fluid is preferably water.
- the silicone electrodes are made more conductive with the addition of conducting gel.
- the silver cloth electrodes are made more conductive with the addition of conducting gel.
- the electrodes are preferably made of or include a hypoallergenic sticky material.
- Hypoallergenic materials used for any embodiment of the present invention include any currently FDA approved, non-latex material.
- hypoallergenic materials includes materials that have received prior 510(k) marketing clearance with a claim of hypoallergenicity.
- the electrodes are silver thread or cloth attached to a non- conductive cloth material that are made more conductive when wet.
- the electrodes are made up of a highly conductive silver and carbon fiber affixed to a non-conductive support material (silicon, plastic, etc.), made more conductive by the body's natural perspiration, conducting gel or water.
- a non-conductive support material silicon, plastic, etc.
- the electrodes preferably include pin connectors preferably at an end of the electrodes.
- the pin connectors are preferably small and stay securely in the machine.
- the pin connectors are preferably standard pin connectors.
- the pin connectors are preferably snap connecters.
- the pin connectors are koalaty connecters.
- connectors that may be used with the device for any embodiment of the present invention, for example, include Molex connectors.
- the device includes various wire length options.
- the wires preferably used for any embodiment of the present invention have a length ranging from 20 cm to 120 cm. More preferably, the wires used for any embodiment of the present invention have a length ranging from 30 cm to 100 cm. Most preferably, the wires used for any embodiment of the present invention have a length ranging from 40 cm to 90 cm.
- the device further comprises a means for adjusting wire length.
- the device includes wires approved for use with FDA approved/cleared devices.
- the wires approved for use with FDA approved/cleared devices preferably have the following characteristics: ⁇ 52.3C; Plug 13 mm; 150 cm length; Pull Resistance of 1.8; Connection: Pin connection( 1 *2,one connection two pins); and/or made up of Tinsel Material.
- the device includes a housing.
- the housing preferably protects the buttons from being accidentally pushed.
- the housing is preferably a plastic hollow tube. More preferably, the housing is preferably a simple plastic hollow tube.
- the housing may be made of other materials including, for example, latex, latex free material, silicone, etc. Examples include a thin exercise band tube, surgical tubing or Penrose drain.
- the device further comprises a means for running wires and storing wires and electrodes.
- the means for running wires is preferably a secondary garment, such as a bag for example, that is preferably thin and is preferably removably affixed to the garment.
- the secondary garment is preferably able to store the wires and electrodes.
- the secondary garment is preferably removably affixed to the garment by a means such as but not limited to a hook and loop fastener 900 (i.e., VELCRO®) and may be positioned on the garment in a manner including but not limited to inside of or on the outside of the garment.
- the secondary garment with wires and electrodes are preferably detached and affixed to the garment in a one step process.
- the secondary garment may be made of other materials including, for example, Gortex, nylon, neoprene, latex, etc.
- the garment may be made up of a lighter, breathable, and cooler material than neoprene such as but not limited to spandex or spandex composite and/or may be made of a material that is washable.
- the garment may be made of other materials including, for example, spandex, spandex blend, double knits, etc.
- the garment may also be odor proof and the use of the lighter (i.e. lightweight, lower weight, etc.), breathable (i.e absorbent), and cooler material (i.e.
- temperature regulating preferably extends the odor resistance for a longer period of time and preferably extends the lifetime of the garment's use. For example, material that is odor proof maintains this odor resistance for 50 washings. This may still require 6 suits for a year, which may be desirable. Since neoprene suit would likely need to be replaced after a 12-18 months of use, multiple suits may be a good option. Also, the lighter, breathable, and cooler material is preferable for use in warmer temperatures and is preferably less expensive than other comparable materials.
- garment is made up of a soft, four way super stretch material.
- the garment is preferably modified with zippers and has a bigger cut out in perineal area.
- the device includes Penrose drain tubes with a hook and loop fastener 900 (i.e., VELCRO®) attached.
- a hook and loop fastener 900 i.e., VELCRO®
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Abstract
Description
Claims
Priority Applications (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| AU2016232868A AU2016232868A1 (en) | 2015-03-17 | 2016-03-17 | NMES garment |
| GB1716939.2A GB2553978A (en) | 2015-03-17 | 2016-03-17 | NMES garment |
| CA3018037A CA3018037A1 (en) | 2015-03-17 | 2016-03-17 | Nmes garment |
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US201562134407P | 2015-03-17 | 2015-03-17 | |
| US62/134,407 | 2015-03-17 | ||
| US201662309269P | 2016-03-16 | 2016-03-16 | |
| US62/309,269 | 2016-03-16 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2016149564A1 true WO2016149564A1 (en) | 2016-09-22 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/US2016/022985 Ceased WO2016149564A1 (en) | 2015-03-17 | 2016-03-17 | Nmes garment |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US20160303363A1 (en) |
| AU (1) | AU2016232868A1 (en) |
| CA (1) | CA3018037A1 (en) |
| GB (1) | GB2553978A (en) |
| WO (1) | WO2016149564A1 (en) |
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| EP3395401A1 (en) * | 2017-04-24 | 2018-10-31 | MTG Co., Ltd. | Exercise instrument controller and exercise instrument control program |
| TWI818908B (en) * | 2017-03-30 | 2023-10-21 | 日商東洋紡股份有限公司 | Wearable smart devices and connector adapters |
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| ITTO20120477A1 (en) * | 2012-05-31 | 2013-12-01 | St Microelectronics Srl | NETWORK OF ELECTRONIC DEVICES FIXED TO A FLEXIBLE SUPPORT AND RELATIVE COMMUNICATION METHOD |
| DE102017003321B4 (en) * | 2017-04-05 | 2019-06-19 | miha bodytec GmbH | EMS garment |
| DK3634566T3 (en) * | 2017-05-08 | 2022-01-10 | Univ Aarhus | COMPRESSION CLOTHES FOR PROVIDING NEUROMUSCULAR ELECTRICAL STIMULATION |
| ES1192083Y (en) * | 2017-08-14 | 2017-12-18 | Bylebron S L U | Stretch fabric for electro-stimulation |
| CN107411730A (en) * | 2017-08-31 | 2017-12-01 | 邹海清 | Wearable training monitoring equipment |
| JP2019150544A (en) * | 2018-03-06 | 2019-09-12 | 株式会社 Mtg | Electrostimulator fitness ware |
| JP7178786B2 (en) * | 2018-03-06 | 2022-11-28 | 株式会社 Mtg | motion control system |
| WO2019172297A1 (en) * | 2018-03-06 | 2019-09-12 | 株式会社Mtg | Electric shock device fitness wear |
| US12168127B2 (en) * | 2018-07-06 | 2024-12-17 | Nicky Agahari | Ankle cuff for managing incontinence |
| CN109350848B (en) * | 2018-10-27 | 2022-11-29 | 天狼联盟材料科技研究(广东)有限公司 | Pulse output control system for simulating weight training of weight training clothes |
| WO2020190401A1 (en) * | 2019-03-18 | 2020-09-24 | Exo Neural Network Inc. | Medical therapy arrangement for applying an electrical stimulation to a human or animal subject |
| JP7199276B2 (en) * | 2019-03-26 | 2023-01-05 | 株式会社 Mtg | muscle electrostimulator |
| US11986652B1 (en) | 2019-05-09 | 2024-05-21 | CJR IP Holdings LLC | Electrical muscle stimulation device and methods for use thereof |
| US11383082B2 (en) * | 2020-06-25 | 2022-07-12 | Katalyst Inc. | Formulating, tracking, displaying, and using electrical muscle stimulation (EMS) intensity values |
| US11839759B2 (en) * | 2020-09-21 | 2023-12-12 | Neuro20 Technologies Corp. | Systems and methods for managed training and rehabilitation via electrical stimulation |
| KR102843684B1 (en) * | 2022-11-05 | 2025-08-08 | 동서대학교 산학협력단 | Electric Muscle Stimulation(EMS) Suit |
| CN118512711A (en) * | 2024-02-06 | 2024-08-20 | 厦门松霖科技股份有限公司 | Pelvic floor muscle repair pants |
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- 2016-03-17 CA CA3018037A patent/CA3018037A1/en not_active Abandoned
- 2016-03-17 US US15/073,580 patent/US20160303363A1/en not_active Abandoned
- 2016-03-17 GB GB1716939.2A patent/GB2553978A/en not_active Withdrawn
- 2016-03-17 AU AU2016232868A patent/AU2016232868A1/en not_active Abandoned
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| JP4018100B2 (en) * | 2004-12-24 | 2007-12-05 | 伊藤超短波株式会社 | Muscle training device using electrical stimulation |
| US20100185259A1 (en) * | 2007-06-27 | 2010-07-22 | Kurume University | Garment for electrically stimulating muscles |
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Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| TWI818908B (en) * | 2017-03-30 | 2023-10-21 | 日商東洋紡股份有限公司 | Wearable smart devices and connector adapters |
| EP3395401A1 (en) * | 2017-04-24 | 2018-10-31 | MTG Co., Ltd. | Exercise instrument controller and exercise instrument control program |
| US10792494B2 (en) | 2017-04-24 | 2020-10-06 | Mtg Co., Ltd. | Exercise instrument controller and exercise instrument control program |
Also Published As
| Publication number | Publication date |
|---|---|
| AU2016232868A1 (en) | 2017-11-09 |
| GB201716939D0 (en) | 2017-11-29 |
| US20160303363A1 (en) | 2016-10-20 |
| CA3018037A1 (en) | 2016-09-22 |
| GB2553978A (en) | 2018-03-21 |
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