EP2775984B1 - Dispositif d'appui, appareil de stimulation, procédé de stimulation neurophysiologique et utilisation d'un appareil de stimulation - Google Patents
Dispositif d'appui, appareil de stimulation, procédé de stimulation neurophysiologique et utilisation d'un appareil de stimulation Download PDFInfo
- Publication number
- EP2775984B1 EP2775984B1 EP12821111.7A EP12821111A EP2775984B1 EP 2775984 B1 EP2775984 B1 EP 2775984B1 EP 12821111 A EP12821111 A EP 12821111A EP 2775984 B1 EP2775984 B1 EP 2775984B1
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- stimulation
- support
- movement
- support device
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Definitions
- the US Pat. No. 3,055,357 teaches a footbath with a motor driven vibrating massage device and an elastic mat disposed internally at the bottom of the foot bath, having on the top a wart-like elevation to enhance the massaging effect on the feet;
- the US 2002/019600 A1 proposes a massage table for a user comprising a table frame having a plurality of legs with an upper frame forming a hollow plane with a number of rollers coupled to the frame and a padded table top supported by the rollers; slidably mounted on the rollers; and
- the DE 27 13 438 A1 incorporates a disc recruiting and reflex zone treatment device having a backplate vibratable by an eccentric drive for treating the patient's back, the backplate being disposed on the surface of a recliner and resiliently supported as a whole on the recliner, and at the foot of the recliner a vertically arranged to the back plate, also set in vibration foot plate for the treatment of the feet of Patient is stored. It can be used in the plates massage sticks for reflexology.
- the support device for placement on a stimulation device is provided that the support device has at least one hollow chamber, wherein in at least one hollow chamber, a vibration mass is provided.
- the vibration mass is in particular a granular or granular vibration mass, for example of granules.
- the granules for example, a quartz granules.
- the support device is preferably formed with a plurality of hollow chambers.
- the hollow chambers are filled in one embodiment with vibration mass.
- the vibration mass is formed as crystals, quartzes or the like. In another embodiment, other granular material is formed.
- the vibration mass is formed of solid materials.
- the vibration mass is formed as a liquid material.
- the vibration mass is formed differently in different hollow chambers, for example, different grained, formed in different amounts, in different states of aggregation and similarly different.
- all the hollow chambers are formed with the same vibration mass.
- the hollow chambers are formed for example as blind holes in the base body, which are closed by a cover plate.
- the hollow chambers are preferably not complete, but only to a fraction, for example, to 10, 20, 30, 40, 50, 60, 70, 80, 90 or another fraction volume percent filled.
- the chambers are preferably cuboid.
- the support device itself is not driven and thus made passive.
- the invention includes the technical teaching that in the proposed support device for placement on a neurophysiological stimulation device, in particular on a Movement plate, for transmitting movements generated by the system, at least comprising a support side for placing the support device on the stimulation device, and a transmission side for transmitting and / or forwarding the recorded on the support side movements, is provided that the support device is designed as a passive support device , which is formed mat and / or plate-shaped, wherein the transmission side has at least one at least partially protruding stimulation element, which is suitable for transmitting the movements and thus for neurophysiological stimulation.
- neurophysiological stimulation this patent application generally refers to a stimulation of bodily functions on a living being, such as a human or an animal. A detailed description of this stimulation follows.
- the specification human is preferred, but this invention is equally applicable to an animal, such as a dog.
- the movement in the form of a vibrational motion preferably in the form of a whirling and / or tumbling motion, is generated and transmitted to the living being.
- a detailed description of the vibration follows as well.
- the support device according to the invention comprises a support side and a transfer side.
- the two sides of the support device are advantageously in one piece, in other embodiments, however, formed in several parts. Accordingly, the support device is formed in one or more parts. To simplify a production of the support device, this is designed in several parts.
- the support device is designed as a mat or ceiling-like support device, that is, as a support mat or support cover. Accordingly, the support side and the transfer side are advantageously formed as opposite sides.
- An embodiment provides that the support and the transmission side in one piece, that is, integrated with each other, are formed.
- these two sides are separate from each other, that is, a plurality of parts, formed and, for example merely connected together in one edge region, such as sewn, welded and / or glued.
- the support device comprises the plate-shaped base body. This is preferably cuboid.
- the base body is formed as an aluminum plate, for example with anodized aluminum.
- the support side and the transfer side are spaced from each other on opposite sides, in particular the large sides arranged.
- the at least one stimulation element is formed from a substantially unyielding material.
- the material is, for example, a thermoset, a wood, metal, steel, a quartz or the like.
- the support side preferably serves for placing the support device on the stimulation device.
- the support side is preferably flat or flush.
- the transmission side is used for transmitting and / or forwarding the movements recorded on the support side to the person.
- the human is preferably arranged on the transmission side, for example, standing, kneeling and / or lying or only with the respective; preferably to be stimulated body parts on the transmission side supporting.
- the transfer side preferably functions as the upper side of the support device and the support side as the lower side.
- the support device or their pages is preferably a robust, non-sensitive material, which is advantageously washable, tear resistant, waterproof and / or slip-resistant, for example polyester, cotton, especially coated and / or impregnated cotton, material mixtures, viscose, etc.
- the support side has a rubber coating to prevent slippage of the support device from the stimulation device.
- the material is designed as a non-compliant material, so that no or only an insignificant deformation occurs at a load up to 200 kg.
- the transmission side has at least one protruding or projecting stimulation element. The at least one stimulation element causes the movements of the stimulation device to be transmitted to humans for neurophysiological stimulation.
- more than one stimulation element for example, two, three or four stimulation elements, executed. More preferably, a plurality of stimulation elements is executed on the transmission side.
- the stimulation elements are advantageously connected to the transmission side, for example glued, welded and / or sewn.
- the stimulation elements are connected to the transmission side individually, in other embodiments, the stimulation elements to several, that is in groups, connected to the transmission side. Multiple stimulation elements are connected together in one embodiment via a connecting part.
- the stimulation elements in one embodiment are detachable, in another embodiment, inseparably connected to the connecting part.
- the connecting part is formed for example as a connecting plate.
- the stimulation elements are connected to the support side.
- a plurality of stimulation elements are connected to the support side via a plurality of connecting parts.
- the stimulation elements are advantageously at a height of up to 30mm, preferably from up to 20mm and more preferably from up to 10mm and most preferably from up to 5mm from the transfer side.
- the stimulation elements are designed as stimulation elements tapering away from the transmission side.
- the tapered stimulation elements preferably have a shape selected from the group comprising cones, pyramid, cylinder, truncated cone, truncated pyramid, etc. These shapes are correspondingly narrower at their end oriented away from the transfer side than at their end connected to the transfer side.
- the width or the diameter of a truncated cone at its lower end facing the transfer side is up to 30 mm, preferably up to 20 mm and more preferably up to 10 mm and most preferably up to 5 mm.
- the width of a truncated cone at its opposite end is for example up to 10mm, preferably up to 50mm and more preferably up to 2.5mm and most preferably up to 1.5mm.
- a distance between two upper regions of two adjacent truncated cones corresponds for example to the width of a truncated cone.
- the stimulation elements used are each designed uniformly.
- the stimulation elements are designed as nubs.
- the stimulation elements can be loaded up to a weight of 200 kg or a force of up to 2 kN without deforming plastically or reversibly. This ensures that the support device or its stimulation elements on the upper side can withstand the loading of a person arranged on the support device without being damaged.
- the stimulation elements are elastically deformable under load, wherein a deformation path of this deformation is minimized.
- Preferred materials for this purpose are selected from the group comprising: plastic, preferably hard plastic, metal, wood, ceramic, etc.
- the stimulation elements are formed from a medical plastic such as polyethylene, polystyrene, polyvinyl chloride, polypropylene and / or ethylene vinyl acetate.
- Suitable materials are stones, gems, crystals and the like, in particular tourmaline, usable.
- a granulate which may include plastic, stone and / or ceramic.
- the granules are liquefied and injected into a corresponding mold.
- one or more stimulation elements have functional units.
- a functional unit comprises, for example, at least one signal generator.
- the signal generator is formed in one embodiment as an acoustic signal generator.
- the signal generator is designed as an optical signal generator.
- Other versions provide a heat generator, such as an infrared unit before.
- at least one of the functional units is embodied in a movement unit, wherein such functional units additionally serve for further stimulation.
- a functional unit is designed as a lighting.
- the functional unit is controlled by a control unit coupled to it. In this way, a different lighting is realized, for example, in terms of a colored lighting.
- a plurality of stimulation elements arranged in at least one structural unit are provided in order to optimize a transmission.
- more than one structural unit for example two, three or four structural units, are provided.
- a preferred embodiment provides the arrangement of the stimulation elements in a plurality or a plurality of structural units.
- a structural unit preferably comprises a plurality of stimulation elements, preferably at least three stimulation elements, more preferably a plurality of stimulation elements.
- the stimulation elements are advantageously arranged in a geometric pattern and / or arrangement in the structural unit.
- the structural units preferably have a round, oval, honeycomb-shaped, angular, in particular rectangular, shape.
- the arrangement of the stimulation elements in the form of a structural unit takes place concentrically in one embodiment, for example concentric circles or rectangles. In other embodiments, this arrangement is threaded or spiral.
- the stimulation elements are spaced from each other, that is, formed as a separate stimulation elements.
- the spaced-apart stimulation elements are connected to one another via a common connection part, for example to structural units.
- the structural units are arranged at a distance from each other.
- the structural units are detachably or non-detachably connectable with other components.
- An embodiment of the structural units provides that the stimulation elements of a structural unit are connected to one another.
- This connection takes place, for example, by means of a common connection part, for example a plate-shaped underbody, which on the one hand ensures the connection to the transmission side and, on the other hand, connects the stimulation elements to one another.
- the underbody in one embodiment has a thickness of up to 20mm, preferably up to 10mm and more preferably up to 5mm.
- the size of a subfloor ie preferably the diameter of a subfloor, corresponds to the size of a structural unit or at least the sum of all the stimulation elements combined into the structural unit.
- the diameter is between 10 mm and 50 mm, preferably between 20 mm and 40 mm and more preferably between 25 mm and 35 mm.
- the material of the subfloor is designed in one embodiment equal to the material of the stimulation elements. Accordingly, an embodiment provides a structural unit or the stimulation elements of a structural unit are integrally formed, that is, integrated into one another.
- the load capacity of a structural unit is greater than that of a single stimulation element.
- a plurality of structural units are arranged in a transfer pattern.
- the transfer pattern is a geometric pattern such as a matrix, a grid, a random array or the like.
- the structural units are preferably each arranged with a regular, more preferably the same, distance from each other.
- the distance between two structural units of a transmission pattern is for example between 5 mm and 60 mm, preferably between 10 mm and 50 mm, more preferably between 20 mm and 40 mm and most preferably about 30 mm.
- the transmission pattern is designed in such a way that stimulation and motion transmission take place over the largest possible area.
- the support device is formed as a mat.
- the mat is preferably formed on one side as anti-slip mat.
- the mat is formed as an elastic and / or viscoeleasticians element.
- the mat can also be designed as a mattress or the like. When loaded, the mat deforms accordingly. This ensures that an optimized contact with a user is established.
- the support device according to the invention is particularly suitable for placement on a neurophysiological stimulation device comprising a drive unit for performing a three-dimensional oscillation with a frequency of 50-100Hz, preferably 55-90Hz, more preferably 60-80Hz, and most preferably 65-75Hz, especially with one Schumann frequency, includes.
- the generated vibration is preferably non-sinusoidal, but otherwise harmonious.
- An advantageous embodiment provides that the generated frequency is a Schumann frequency.
- Schumann frequency is a resonance frequency of the human body, in which the body begins to resonate. As a result, the vibrations can not only penetrate into the body, but still amplify, which leads to the formation of a standing vibration in the body.
- a drive unit for the support device which is designed as an eccentric drive unit.
- the eccentric drive unit has an eccentric pin connected to the moving unit, which is coupled to an actuator, which in turn causes the tumbling and / or whirling movement without generating a lifting movement.
- the drive unit is arranged in a cup-shaped housing which is closed by the movement unit functioning as cover.
- the stimulation device preferably also comprises a power supply.
- an embodiment of the stimulation device provides that this is designed as a mobile unit.
- a mobile stimulation device has a power pack in the form of a battery or the like.
- a storage of the movement unit takes place with a bearing which is designed for a tumbling movement. For this purpose, appropriate degrees of freedom for a tumbling motion should be provided. The tumbling movement requires a storage with three degrees of freedom.
- the tumbling motion is preferably realized as follows.
- the movement unit is off-center connected to a drive which causes the movement unit to rotate eccentrically.
- the drive itself comprises an actuator, which is coupled via a toothed belt with an eccentric pin. About the eccentric pin, the moving unit is driven. In the idle state, that is to say when the actuator is not actuated, the movement unit rests on supports.
- the movement unit is therefore stored on the supports or support elements.
- at least two supports or bearings are provided, preferably a plurality of supports.
- the supports are preferably arranged spaced apart along an edge of the movement plate. To realize the storage on the supports they are preferably firmly connected at one end to a base plate.
- the supports have an elastic or deformable end piece, for example in the form of a vibration damper.
- the supports are formed at least partially different lengths.
- the supports are height or length adjustable.
- the supports are, for example, differently inclined or tilted.
- the height, length and / or inclination of the supports can advantageously be actively set or controlled via a corresponding controller.
- the inclination of the supports is adjustable both before operation and during operation of the stimulation device. If now the actuator is actuated and an eccentric rotational movement is realized, the movement unit swings open.
- the moving unit no longer contacts all the supports at the same time, but due to the different lengths of the supports, the resilience of the rubber members and the eccentric rotation, is set in a three-dimensional vibration, so that a tumbling motion is realized.
- the wobble can be adjusted in particular over the length of the supports. Due to the different inclinations of the supports also a swinging of the movement unit is realized.
- an overlay of the rotation and the tumbling motion is realized.
- the support device according to the invention can preferably also be used for a stimulation device in which a height adjustment for the movement unit is provided.
- the height adjustment is coupled to the movement unit and formed fixed to the bottom plate.
- the movement unit can be arranged at different heights to the bottom plate. In this way is a tumbling motion can be realized in different heights.
- the height adjustment is arbitrarily executable, for example, hydraulically or pneumatically, mechanically and / or electrically.
- the movement unit is moved relative to the bottom plate.
- the drive components and / or the supports are adjusted accordingly.
- a height adjustment is provided under the bottom plate.
- the stimulation device is easily adjustable in height via these.
- the height adjustment preferably has a lock, which locks the bottom plate at a predetermined height. Safety button against unintentional release etc.
- the stimulation device may have a control unit via which frequencies and / or further functions can be controlled.
- the controller has a frequency adjuster. About this the frequency of the bottom plate is adjustable.
- the control device has an optical control and / or acoustic control, via which corresponding functional units can be controlled.
- the controller has a timer or the like.
- Other functional units such as acoustic and / or optical signal transmitters are attached to the stimulation device.
- the control unit also has a computer unit with computer programs and / or computer program products for running various programs, for example in the form of individual training units.
- the movement unit is placed in a circular or planar movement by the eccentric drive unit during operation and support elements are provided at the edge of the movement unit or the support surface, which contact the movement unit alternately during operation and do not contact, so that the circular path-shaped movement thereby has a further direction of movement transverse to a circular path and thus the three-dimensional oscillation is realized.
- the open circular path is realized, that is a circular path or plane path, which is not in the initial state before rotation after passing through a complete 360 ° rotation about the axis of rotation, but at least one point of the moving unit takes a different position in at least one dimension ,
- the simulating abutment device according to the invention for placement on a stimulation device in conjunction with the stimulation device enables a method for transmitting an oscillation to an object or for neurophysiologically stimulating an object by transmitting movements generated by a stimulation device described above, comprising the following steps: Generating a movement and transmitting the movement to the object, wherein it is provided that the movement is generated as a whirling and / or wobbling motion and amplified transmitted.
- the transmission of the movement is amplified in a preferred embodiment by means of a support device according to the invention, as described above.
- Reinforcement in the context of this patent application also means an intensification of the effects of the transferred movement on the body as an additional effect.
- the above-described stimulation device can be used as a neurophysiological stimulation device for stimulating bodily functions of a living being, particularly for use in sports, rehab, therapy, rapid recovery, energy production, exercise, hyperactivity, skin tightening, tissue regeneration.
- Preferred areas of application of the stimulation device according to the invention are therefore: osteoarthritis, arthritis (joint inflammation), herniated disc (diskus prolapse), burnout syndrome, cellulite, circulatory disorder, relaxation problems, joint pain, lumbago, sciatica (sciatica), headache (cephalgia), varicose veins (varices) , Lumbar spine syndrome, lymphatic dizziness (lymphedema), libido-loss, ankylosing spondylitis (also ankylosing spondylitis), (neck) tension, nervousness, osteoporosis, Parkinson's, digestive problems, rheumatism, back pain, sleep disorder, stress, obesity and incontinence.
- a person advantageously positioned on the movement unit For movement and vibration transmission from the stimulation device, there are various embodiments of how a person advantageously positioned on the movement unit.
- the respective positions are dependent on the stimulated body regions or the complaints and the respective field of application.
- human being stands lies or sits on the movement unit.
- the elbows, shoulders, hands, upper body or feet can be selectively positioned on the movement unit.
- a holistic transmission of motion to the person for example, both arms are positioned on the movement unit moves together and uniform.
- the support device according to the invention is arranged on the movement unit, so that the person stands, sits or lies directly on the transfer side of the support unit.
- an animal to be treated for example a dog, a cat or a horse
- positioning takes place on the movement unit in a modified form.
- the Fig. 1 shows a schematic cross-sectional view of two adjacent stimulation elements 1.
- the stimulation elements 1 are used for transmitting movements and neurophysiological stimulation.
- the stimulation elements 1 are each arranged in groups of a plurality of stimulation elements 1 in a structural unit for neurophysiological stimulation (see FIG Fig. 2a-2c ).
- Several of these structural units are in turn arranged in a transfer pattern on a support device (see Fig. 3 ).
- a description of the structural units, the transfer pattern and the support device follows in the Fig. 2a-2c . 3 and 4 , Accordingly, the shows Fig. 1 a section from a structural unit with two adjacent stimulation elements 1.
- the stimulation elements 1 are connected to an underbody 11 with each other and additionally connected to the support device, not shown here, for example, welded or glued.
- the stimulation elements 1 and the bottom 11 are in one piece, that is, integrated, executed.
- the subfloor 11 has a thickness d of about 2mm.
- the stimulation elements 1 are arranged at a distance a 1 of about 2 mm on the underbody 11.
- the stimulation elements 1 have a truncated cone shape.
- the truncated cone shape comprises a truncated cone-shaped basic body 3 with a round cross section and a flattened cover part 4 on the side facing away from the underside 11 or tapered side of the main body 3.
- the main body 3 has in this embodiment a height hg of about 4mm and the lid part 4 has a height h d of about 0.5mm.
- the height of a frustoconical stimulation element 1 in this embodiment is therefore approximately 4.5mm.
- the diameter or the width b g of the round base body 3 is about 4 mm and the diameter or the width b d of the cover part 4 is about 1.5 mm.
- a material for the stimulation elements 1 and the bottom 11 for example, a plastic is suitable.
- the stimulation elements 1 can be loaded with a weight of approx. 200kg without deforming.
- the Fig. 2a-2c each show a schematic plan view of a structural unit 10 in various embodiments.
- the subfloor 11 has a round shape in these embodiments (see Fig. 2a and 2b ) or a polygonal, that is honeycomb, shape (see Fig. 2c ) on.
- the diameter d s of the round structural units 10 is about 30mm.
- two adjacent stimulation elements 1 are arranged at a distance of up to 10 mm.
- the load capacity of a plurality of stimulation elements 1 arranged in a structural unit 10 is increased compared with the load capacity of a single stimulation element 1.
- the 3 and 4 12 shows a schematic plan view and a schematic cross-sectional illustration of a support device 30.
- the support device 30 is intended to be placed on a neurophysiological stimulation device (not shown here for the sake of clarity), the neurophysiological stimulation device for stimulating an object, for example a human or an animal, by means of transmission of movements generated by the stimulation device.
- the transmitted movements are amplified by the support device 30.
- the support device 30 has a support side 31 for placing the support device 30 on the stimulation device. Furthermore, the support device 30 has a transfer side 32 for transferring and forwarding the movements recorded via the support side 31 to the object.
- the support device 30 is designed as a mat or cover-like support device 30 (see Fig. 4 ).
- the support side 31 and the transfer side 32 are thus opposite, wherein in a situation of use, the support side 31 is a lower side and the transfer side 32 is an upper side.
- the stimulation elements 1 tapering away from the transmission side 32 and arranged in structural units 10 are arranged. Several stimulation elements 1 are each arranged in a structural unit 10 or connected to each other (see Fig. 2a ).
- the structural units 10 are connected to the transmission side 32, for example glued.
- the structural units 10, here exactly 15 structural units 10, are arranged on the support device 30 in a transfer pattern 20.
- the transmission pattern 20 is according to Fig. 3 designed as a geometric pattern in the form of honeycombs. It does that Transmission pattern 20 for a uniform transmission and amplification of the forwarded movements.
- the Fig. 4 shows a section AA through the support device 30 in the range of three structural units 10.
- the structural units 10 are arranged in this embodiment and in this sectional plane with a distance a s of about 40mm to each other.
- the Fig. 5 shows a schematic cross-sectional view of a stimulation device 40 with a support device 30 according to the Fig. 3 .
- the stimulation device 40 is used for neurophysiological stimulation of a living being, for example a human or an animal, by transmitting movements generated by the stimulation device 40. Primarily, the body's own therapeutic functions of the living organism are stimulated.
- the stimulation device 40 comprises a movement unit 41 with a bearing surface, by means of which the generated movements are transmitted to objects adjacent to the movement unit.
- the movement unit 41 is designed in one piece, so that a closed or continuous support surface is formed.
- the stimulation device 40 comprises a drive unit 42 coupled to the movement unit 41 for generating the movement.
- the drive unit 41 generates a wobbling and / or whirling motion, which is indicated here by an arrow W.
- This wobble and / or whirl movement is a three-dimensional oscillation with an open oscillation path, for example in the form of a right-handed or left-handed circular path.
- the oscillation is performed, for example, at a frequency of 65-75Hz.
- the drive unit 42 is according to the embodiment of Fig. 5 is formed as an eccentric drive unit 42, so that the movement unit 41 coupled to the drive unit 42 is moved eccentrically.
- the drive unit 42 has an eccentric pin 46 connected to the movement unit 41, which in turn is coupled to an actuator, which in turn generates the wobble and / or whirling motion.
- the actuator is designed in this embodiment as an electric motor 43 with a belt 44 for connection to the pin.
- the pin 46 also has an eccentric bearing 45.
- the drive unit 42 is arranged in a pot-shaped housing 48, which is closed by the movement unit 41 acting as a cover.
- the support surface of the movement unit 41 comprises a support device 30.
- the support device 30 corresponds to the embodiment of Fig. 3 4. Between the housing 48 and the movement unit 41 end pieces 47 are arranged, for example, to avoid a recoil of the moving movement unit 41 on the housing 48.
- Fig. 6 shows a schematic cross-sectional view of another embodiment of a support device 30.
- the support device 30 is formed as a rectangular plate 71. This has a cover 71a, under which are formed as blind holes 72 hollow chambers 73.
- the hollow chambers 73 are filled with a designed as granules 74 vibration mass 75 to a volume percentage.
- an outer skirt 76 is provided.
- the support device is made of an anodized aluminum.
- the granules 74 is present in any grain size. In this case, the granules 74 are preferably quartz granules.
Landscapes
- Health & Medical Sciences (AREA)
- Epidemiology (AREA)
- Pain & Pain Management (AREA)
- Physical Education & Sports Medicine (AREA)
- Rehabilitation Therapy (AREA)
- Life Sciences & Earth Sciences (AREA)
- Animal Behavior & Ethology (AREA)
- General Health & Medical Sciences (AREA)
- Public Health (AREA)
- Veterinary Medicine (AREA)
- Dermatology (AREA)
- Percussion Or Vibration Massage (AREA)
Claims (5)
- Dispositif de support (30) destiné à être placé sur un appareil de stimulation neurophysiologique (40), en particulier sur un plateau mobile, pour transmettre des mouvements générés par le système, comprenant au moins un côté support (31) pour placer le dispositif de support (30) sur l'appareil de stimulation, et un côté transmission (32) pour transmettre et/ou retransmettre les mouvements reçus par le côté support (31),
le côté transmission (32) présentant au moins un élément de stimulation (1) en saillie au moins partielle qui est adapté à la transmission des mouvements et donc à la stimulation neurophysiologique,
et le dispositif de support (30) étant conçu comme dispositif de support passif en forme de couverture, de natte et/ou de plaque,
caractérisé en ce que
le dispositif de support (30) présente au moins une cavité, une masse oscillante étant prévue dans au moins une cavité. - Dispositif de support selon la revendication 1, caractérisé en ce que ledit au moins un élément de stimulation (1) est constitué d'un matériau sensiblement rigide.
- Dispositif de support selon la revendication 1 ou 2, caractérisé en ce que ledit au moins un élément de stimulation (1) est conçu comme un élément de stimulation (1) qui s'effile en s'éloignant du côté transmission (32).
- Dispositif de support selon l'une des revendications 1 à 3, caractérisé en ce que plusieurs éléments de stimulation (1) disposés dans au moins une unité structurelle (10) sont prévus pour optimiser une transmission.
- Dispositif de support selon la revendication 4, caractérisé en ce que plusieurs unités structurelles (10) sont disposées selon un motif de transmission (20).
Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
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PL12821111T PL2775984T3 (pl) | 2011-11-07 | 2012-11-06 | Mechanizm nakładany i urządzenie stymulujące, jak również sposób stymulacji neurofizjologicznej i zastosowanie urządzenia stymulującego |
PL17154437T PL3195843T3 (pl) | 2011-11-07 | 2012-11-06 | Sprzęt stymulujący do neurofizjologicznej stymulacji obiektu |
EP17154437.2A EP3195843B1 (fr) | 2011-11-07 | 2012-11-06 | Appareil de stimulation neurophysiologique d'un objet et utilisation d'un appareil de stimulation |
SI201231374T SI2775984T1 (sl) | 2011-11-07 | 2012-11-06 | Podložna naprava in stimulacijski aparat ter postopek za nevrofiziološko stimuliranje in uporabo stimulacijskega aparata |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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DE102011055099A DE102011055099A1 (de) | 2011-11-07 | 2011-11-07 | Auflagevorrichtung und Stimulationsgerät, sowie Verfahren zum neurophysiologischen Stimulieren und Verwendung eines Stimulationsgerätes |
PCT/DE2012/100338 WO2013068002A2 (fr) | 2011-11-07 | 2012-11-06 | Dispositif d'appui, appareil de stimulation, procédé de stimulation neurophysiologique et utilisation d'un appareil de stimulation |
Related Child Applications (2)
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EP17154437.2A Division EP3195843B1 (fr) | 2011-11-07 | 2012-11-06 | Appareil de stimulation neurophysiologique d'un objet et utilisation d'un appareil de stimulation |
EP17154437.2A Division-Into EP3195843B1 (fr) | 2011-11-07 | 2012-11-06 | Appareil de stimulation neurophysiologique d'un objet et utilisation d'un appareil de stimulation |
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EP2775984A2 EP2775984A2 (fr) | 2014-09-17 |
EP2775984B1 true EP2775984B1 (fr) | 2018-06-13 |
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EP12821111.7A Active EP2775984B1 (fr) | 2011-11-07 | 2012-11-06 | Dispositif d'appui, appareil de stimulation, procédé de stimulation neurophysiologique et utilisation d'un appareil de stimulation |
EP17154437.2A Active EP3195843B1 (fr) | 2011-11-07 | 2012-11-06 | Appareil de stimulation neurophysiologique d'un objet et utilisation d'un appareil de stimulation |
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US (1) | US20150150745A1 (fr) |
EP (2) | EP2775984B1 (fr) |
DE (2) | DE102011055099A1 (fr) |
ES (1) | ES2699276T3 (fr) |
HR (1) | HRP20182089T1 (fr) |
HU (1) | HUE040519T2 (fr) |
LT (1) | LT3195843T (fr) |
PL (2) | PL2775984T3 (fr) |
PT (1) | PT3195843T (fr) |
RS (1) | RS58309B1 (fr) |
SI (2) | SI2775984T1 (fr) |
WO (1) | WO2013068002A2 (fr) |
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DE102022117014A1 (de) | 2022-07-07 | 2024-01-18 | Kresimir Strlek | Aufsatz für eine Schwingungseinrichtung und Schwingungsvorrichtung |
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2011
- 2011-11-07 DE DE102011055099A patent/DE102011055099A1/de not_active Withdrawn
-
2012
- 2012-11-06 SI SI201231374T patent/SI2775984T1/sl unknown
- 2012-11-06 HU HUE17154437A patent/HUE040519T2/hu unknown
- 2012-11-06 WO PCT/DE2012/100338 patent/WO2013068002A2/fr active Application Filing
- 2012-11-06 DE DE112012004631.5T patent/DE112012004631A5/de not_active Withdrawn
- 2012-11-06 US US14/356,726 patent/US20150150745A1/en not_active Abandoned
- 2012-11-06 ES ES17154437T patent/ES2699276T3/es active Active
- 2012-11-06 RS RS20181500A patent/RS58309B1/sr unknown
- 2012-11-06 LT LTEP17154437.2T patent/LT3195843T/lt unknown
- 2012-11-06 PT PT17154437T patent/PT3195843T/pt unknown
- 2012-11-06 EP EP12821111.7A patent/EP2775984B1/fr active Active
- 2012-11-06 EP EP17154437.2A patent/EP3195843B1/fr active Active
- 2012-11-06 PL PL12821111T patent/PL2775984T3/pl unknown
- 2012-11-06 SI SI201231486T patent/SI3195843T1/sl unknown
- 2012-11-06 PL PL17154437T patent/PL3195843T3/pl unknown
-
2018
- 2018-12-10 HR HRP20182089TT patent/HRP20182089T1/hr unknown
Non-Patent Citations (1)
Title |
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None * |
Also Published As
Publication number | Publication date |
---|---|
PT3195843T (pt) | 2018-12-03 |
ES2699276T3 (es) | 2019-02-08 |
RS58309B1 (sr) | 2019-03-29 |
HRP20182089T1 (hr) | 2019-02-08 |
US20150150745A1 (en) | 2015-06-04 |
LT3195843T (lt) | 2019-03-25 |
WO2013068002A2 (fr) | 2013-05-16 |
EP3195843A1 (fr) | 2017-07-26 |
DE102011055099A1 (de) | 2013-05-08 |
EP2775984A2 (fr) | 2014-09-17 |
WO2013068002A3 (fr) | 2013-11-07 |
SI2775984T1 (sl) | 2019-03-29 |
HUE040519T2 (hu) | 2019-03-28 |
SI3195843T1 (sl) | 2019-02-28 |
DE112012004631A5 (de) | 2014-08-28 |
PL3195843T3 (pl) | 2019-02-28 |
EP3195843B1 (fr) | 2018-09-12 |
PL2775984T3 (pl) | 2019-02-28 |
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