Device for mechanical effect on human soft tissue
The device addresses space and manipulation issues in existing devices by incorporating an insertable first element, a second electromechanical element, and an elongated element with rotational movement, enhancing usability and versatility in pelvic manipulations.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- TOPOLEV SERGEY EVGENIEVICH
- Filing Date
- 2025-10-15
- Publication Date
- 2026-04-23
AI Technical Summary
Existing devices for mechanical impact on human soft tissues, such as those used for massage or vibration, often have limitations such as protruding elements that occupy unnecessary space, require complex manipulation, and are cumbersome to use in hard-to-reach areas like the anus or vagina, complicating effective pelvic manipulations.
A device with a first acting element insertable into a human anatomical opening, a second acting element with an electromechanical means for mechanical impact, and an elongated element with a bend along a rotational trajectory, allowing elastic movement and rotation, combined with interchangeable housings for varied mechanical actions.
Enables efficient and versatile mechanical impact on soft tissues by reducing complexity, optimizing space usage, and facilitating manipulation in hard-to-reach areas through elastic movement and interchangeable electromechanical components.
Smart Images

Figure RU2025050359_23042026_PF_FP_ABST
Abstract
Description
[0001] A61 H 7 / 00, A61 N 15 / 00, A61 N 23 / 00, A61 N 37 / 00.
[0002] A DEVICE FOR MECHANICAL IMPACT ON HUMAN SOFT TISSUES WITH A ROTATING ELEMENT AND A METHOD OF ITS USE.
[0003] The claimed device belongs to the category of medical equipment, to devices for influencing human soft tissues, reflex points and internal organs, for example, by massage, rubbing, pressure, and vibration.
[0004] Some terms used to interpret the essence and formula of the claimed device. A device is an object comprising the components necessary for its operation, including removable, replaceable, and accessories. Mechanical action on soft tissues can be contact or non-contact, using air waves, oscillation or vibration, friction, heating, and combinations thereof. An element is a functional part of the device, defined by the volume necessary to perform its function and connect with other elements. In particular, an elongated element is defined by a portion curved along a rotational trajectory and capable of elastic extension. An element can also be a component of another element and be defined by the performance of its function. In particular, the first acting element can be made integral with the elongated element and defined by the volume necessary for insertion into a human anatomical opening, specifically as the rounded free end of the elongated element.A rotational trajectory is an imaginary line formed by rotation around an imaginary center with a constant radius, which forms part of a circle, or with a varying radius, which forms part of a spiral or ellipse. This line is essentially the contour of the curve or shape. An imaginary center is an immaterial point, essentially from which a circle, ellipse, or spiral is constructed. An imaginary axis of rotation is an immaterial line that may coincide with a material object. Proximity is the position of an object at which it is at the necessary and sufficient distance from another object to perform its function, or in close proximity. A bending plane is an imaginary flat surface that longitudinally intersects an elongated element, and this intersection is the bending contour. A feature can also be optionally implemented, while retaining its original meaning.The first actuating element is a portion of the device characterized by a convex surface and capable of being inserted into a human anatomical opening and exerting a mechanical force on the soft tissues within, such as through a rubbing massage. The second actuating element is a portion of the device characterized by the presence of an electromechanical device and capable of exerting a mechanical force on the soft tissues surrounding the human anatomical opening during operation of the first actuating element. The elongated element is a portion of the device characterized by two ends connected to the first and second actuating elements, respectively, and capable of imparting a reciprocating motion to the first actuating element within the human anatomical opening and elastically pressing the second actuating element against the soft tissues surrounding the anatomical opening.The housing is the part of the second actuating element, characterized by the presence of an electromechanical device and the ability to mechanically act on the soft tissues surrounding the human anatomical opening when pressed against these tissues. The rotating element is the part of the second actuating element, characterized by the presence of a mechanical connection between the housing and the second end of the elongated element, and the ability to provide a rotary connection with the housing. The axial element is the part of the second actuating element, characterized by the ability to provide a rotary connection and the ability to rotate the housing relative to the rotating element.
[0005] A massage device with a stimulating element, patent RU2724412, is known from the prior art. It comprises a first stimulating element (624) connected to a first end (610) of a curved elongated element (608), the second end of which (612) is pivotally connected to a second stimulating element (614) via an axis (620) of the elongated element and an opening (622) of the second stimulating element. A disadvantage of this device is that the second stimulating element protrudes forward relative to the axis of rotation, which, for better functioning, should be close to the center of curvature along the arc of a circle of the elongated element. In this case, the space is limited by the forward-protruding first stimulating element, and the space behind the second stimulating element is not used. Another disadvantage is the need to hold the device by a handle located away from the curved element, which complicates manipulation in hard-to-reach places.A specialist in this field knows that the human anatomical openings are, in particular, the anus and vagina, and the surrounding tissues are the perineum, a flattened area with a prominent perineal raphe, and the convex vulva with a prominent clitoris. To promote reproductive health, pelvic manipulations, such as prostate massage, can be performed.
[0006] The goal is to create a device that, for the first time, has a technical solution that eliminates the shortcomings of its analogue.
[0007] The technical result is the creation of a device with the following essential features: a device for mechanical action on human soft tissues, comprising a first acting element, a second acting element and an elongated element with a first end and a second end; the elongated element is made with a bend, which is made along a rotational trajectory relative to an imaginary center, and the first end of the elongated element is connected to the first acting element; the first acting element is made with the possibility of insertion into a human anatomical opening; the second acting element is connected to the second end of the elongated element and is made with a housing containing an electromechanical means, which is made with the possibility of mechanical action on soft tissues surrounding a human anatomical opening;the elongated element is configured to elastically unbend and thereby move the second acting element from the first position, in which the second acting element is close to the first acting element, to the second position, in which the second acting element is distant from the first acting element; the second acting element comprises at least one axial element, which is connected to the body of the second acting element, and at least one rotating element, which ensures the connection of the second acting element to the second end of the elongated element and is connected to at least one axial element with the possibility of rotation relative to the body of the second acting element in the plane of bending of the elongated element; the imaginary axis of rotation of at least one rotating element is close to the imaginary center and intersects the body of the second acting element;the body of the second acting element contains a support element, which is designed with the possibility of resting on the soft tissues surrounding the anatomical opening of a person during the process of mechanical action by an electromechanical means on the soft tissues surrounding the anatomical opening of a person.
[0008] An additional technical result is a device with additional technical features: an axial element consists of two parts, wherein the first part is connected to at least one rotating element, and the second part is connected to the housing of the second acting element, and is configured to movably and detachably connect said at least one rotating element to said housing of the second acting element; at least one axial element is configured to conduct electrical power between at least one rotating element and the housing of the second acting element; the second acting element contains two rotating elements, two axial elements, and the housing of the second acting element is located between said two axial elements and two rotating elements;the second actuating element comprises two rotating elements, two axial elements and a housing of the second actuating element located between said two axial elements and two rotating elements, said axial elements are detachable and at least one of them is configured to conduct electrical power, wherein the second actuating element comprises at least one pressing element configured to move aside at least one rotating element when said at least one pressing element is pressed and thereby to disconnect said housing of the second actuating element from said two rotating elements; an elastic element is located along the elongated element and in the bending plane of the elongated element, which is connected by a fixed end near the second end of the elongated element and is configured to be inserted into a human anatomical opening by its free end;the device comprises an additional element, configured with the possibility of holding and manipulating by a hand and communicating movement to the first acting element through an elongated element, wherein the additional element is connected to the device, including detachably, near the second end of the elongated element; the device comprises an additional element, configured with the possibility of holding and manipulating by a hand and communicating movement directly to the first acting element, made elongated with a first end and a second end, wherein the additional element is connected to the device, including detachably, by its first end near the first end of the elongated element and the second end of the additional element is connected to the holding element, including to the suction cup, including detachably;the second influencing element is designed with the possibility of replacing the said housing from a set, each of which is designed with the same connection and a different method of action, for example, a set consisting of a first housing with an electromechanical means that contains a generator of mechanical vibrations that ensures the vibration of the soft tissues surrounding the anatomical opening of a person, including contactless, and a second housing with an electromechanical means that contains a rotating element that ensures the action on the soft tissues surrounding the anatomical opening of a person by friction, including friction of the protrusions of the rotating element.
[0009] The technical result of the method of use is a method for mechanical action on human soft tissues with the following essential features: the claimed device is used, the first acting element is inserted into the anatomical opening of a person, the supporting element of the housing of the second acting element is placed on the soft tissues surrounding the anatomical opening of a person, the electromechanical means are activated and a mechanical action is performed on the soft tissues surrounding the anatomical opening of a person; rotational manipulation of the second end of the elongated element is performed relative to an imaginary axis of rotation, during which the rotating element is rotated by means of the axial element along the imaginary axis of rotation relative to the housing of the second acting element and the first acting element is pushed into the anatomical opening of a person by means of the elongated element;wherein the elongated element is elastically straightened and thereby the second acting element is moved from the first position, in which the second acting element is brought closer to the first acting element, to the second position, in which the second acting element is distant from the first acting element; then a rotational manipulation of the second end of the elongated element is performed relative to the imaginary axis of rotation in the opposite direction, in which the rotating element is rotated by means of the axial element along the imaginary axis of rotation relative to the body of the second acting element in the opposite direction and the first acting element is pulled outward from the anatomical opening of the person by means of the elongated element;in this case, the original shape of the elongated element is restored and thereby the second acting element is moved from the second position, in which the second acting element is distant from the first acting element, to the first position, in which the second acting element is brought closer to the first acting element.
[0010] The implementation of the device is shown in the drawings:
[0011] Fig. 1 shows a side view of the device 100 in the first position, containing a first acting element 102, a second acting element 104 and an elongated element 106 with a first end 108, which is connected to the first acting element 102 and a second end 110, which is connected to the second acting element 104, which contains a rotating element 112, pivotally connected to the housing 114 by an axial element 116 and containing a support element 118. The following are symbolically shown: the axis of the axial element 120; a power source 122; a control means 126 containing a button 124 for an electric drive 128 of a membrane 130, progressively oscillating along a channel 132; an imaginary center 136 is located on an imaginary axis of rotation 134.
[0012] Fig. 2 shows a side view of the device 100A in the second position, in which the second acting element 104A is in the second position and the elongated element 106A is partially extended. The rotating element 112A is rotated relative to the imaginary axis 134 of the axial element 116.
[0013] Fig. 3 shows a front view of the device 100 in the first position, containing the first acting element 102, the second acting element 104 and the elongated element 106. The axis of the axial element 120 is fixed on the rotating element 112, and the axial element 116 itself is fixed on the housing 114, which contains a support element 118 with an external opening of the channel 132, inside which the membrane 130 is installed. The axis of rotation 134 is symbolically shown, on which the imaginary center 136 is located.
[0014] In Fig. 4 there is shown a side view of the device 200, containing the first acting element 202, the second acting element 204 and the elongated element 206 with the first end 208, which is connected to the first acting element 202 and the second end 210, which is connected to the second acting element 204, which contains the pressing element 212, the first rotating element 214, pivotally connected to the housing 216 by the first axial element 218 and containing the support element 220. The following are shown symbolically: the first axis of the axial element 222; the power source 224; the control means 228 containing the button 226 of the electric drive 230 of the element with elastic protrusions 232, rotating in the channel 234; an imaginary center 238 is located on the imaginary axis of rotation 236. An additional element 240 is connected to the device 200 near the second end 210 of the elongated element 206.The elastic element 242 is located along the elongated element 206 and is connected to it by a fixed end 244, and its free end 246 is located near the first acting element 202. An additional electromechanical means, in this case a vibrator 248, is installed in the first acting element 202.
[0015] Fig. 5 shows a front view of a device 200 containing a first acting element 202, an elongated element 206, a second acting element 204, which contains a pressing element 212, a first rotating element 214, which contains a first axis of an axial element 222 and is rotary connected with the help of the first axial element 218 to a housing 216, which contains a support element 220, a channel 234 in which an element with elastic projections 232 is located. Symmetrically to the longitudinal axis, the device contains a second rotating element 248, on which a second axis of an axial element 250 is fixed, providing a rotary connection with the help of the second axial element 252. The pressed position of the pressing element 212A is symbolically shown, giving a biased position to the second rotating element 248A and the release of the second axis of the axial element 250A.
[0016] Fig. 6 shows a part of the device 200 in axial section. The first rotating element 214 contains an electric conductor 254, passing through the first axis of the axial element 222 and connected to the contact element 256, which is adjacent to the contact element 258 of the first axial element 218. The second rotating element 248 is symmetrically located, which contains an electric conductor 260, passing through the second axis of the axial element 250 and connected to the contact element 262, which is adjacent to the contact element 264 of the second axial element 252. Inside the housing 216, an electric motor 266 of the electric drive 230 is installed, which is electrically connected to the said conductors.
[0017] Fig. 7 shows a side view of the device 300 in the first position, containing a first acting element 302, a second acting element 304 and an elongated element 306 with a first end 308, which is connected to the first acting element 302 and a second end 310, which is connected to the second acting element 304, which contains a rotating element 312, pivotally connected to the housing 314 by an axial element 316 and containing a support element 318. The following are symbolically shown: the axis of the axial element 320; a power source 322; a control means 326 containing a button 324 for an electric drive 328 of a membrane 330, progressively oscillating along a channel 332; an imaginary center 336 is located on the imaginary axis of rotation 334. The additional elongated element 338 is connected to the first acting element 302 by its first end 340, and its second end 342 is connected to the suction cup 344.
[0018] Fig. 8 shows a side view of the device 300A in the second position, in which the second acting element 304A is in the second position and the elongated element 306A is partially extended. The rotating element 312A is rotated relative to the imaginary axis 334 of the axial element 316.
[0019] Fig. 9 shows a front view of the device 300 in the first position, containing the first acting element 302, the second acting element 304 and the elongated element 306. The axis of the axial element 320 is fixed on the rotating element 312, and the axial element 316 itself is fixed on the housing 314, which contains a support element 318 with an external opening of the channel 332, inside which the membrane 330 is installed. The axis of rotation 334 is symbolically shown, on which the imaginary center 336 is located.
[0020] Fig. 10 shows a side view of a device 400 comprising a first actuating element 402, a second actuating element 404 and an elongated element 406 with a first end 408 which is connected to the first actuating element 402 and a second end 410 which is connected to the second actuating element 404 which comprises a pressing element 412, a first rotating element 414 which is pivotally connected to a housing 416 by a first axial element 418 and which contains a support element 420. The following are symbolically shown: a first axis of the axial element 422; a power source 424; a control means 428 containing a button 426 for an electric drive 430 of an element with elastic protrusions 432 rotating in a channel 434; an imaginary center 438 is located on the imaginary axis of rotation 436. The additional elongated element 440 is connected to the first acting element 402 by its first end 442, and its second end 444 is connected to the annular handle 446.The elastic element 448 is located along the additional element 440 and is connected to it by a fixed end 450, and its free end 452 is located near the first acting element 402. The additional electromechanical means, in this case the vibrator 454, is installed in the first acting element 402.
[0021] Fig. 11 shows a front view of a device 400 containing a first acting element 402, an elongated element 406, a second acting element 404, which contains a pressing element 412, a first rotating element 414, which contains a first axis of an axial element 422 and is rotary connected with a housing 416 by means of a first axial element 418, which contains a support element 420, a channel 434 in which an element with elastic projections 432 is located. Symmetrically to the longitudinal axis, the device contains a second rotating element 454 on which a second axis of an axial element 456 is fixed, providing a rotary connection by means of a second axial element 458. The pressed position of the pressing element 412A is symbolically shown, imparting a biased position to the second rotating element 454A and releasing the second axis 456A.
[0022] Fig. 12 shows a part of the device 400 in axial section. The first rotating element 414 contains an electrical conductor 460, passing through the first axis of the axial element 422 and connected to the contact element 462, which is adjacent to the contact element 464 of the first axial element 418. The second rotating element 454 is symmetrically located, which contains an electrical conductor 466, passing through the second axis of the axial element 456 and connected to the contact element 468, which is adjacent to the contact element 470 of the second axial element 458. Inside the housing 416, an electric motor 472 of the electric drive 430 is installed, which is electrically connected to the said conductors.
[0023] The drawings provided contain example implementations of the device for the purposes of illustrating possible modifications, conciseness, and ease of understanding of the claimed device. These examples do not limit legal protection, are advisory in nature, and may represent the best implementation for a complete disclosure of the information. Drawing positions pertaining to one modification may also pertain to other modifications, if such combinations are feasible.
[0024] Practical application of the device with references to the drawing positions corresponding to the presented modifications. The user inserts the first actuating element 102 or 202 or 302 or 402 into the anatomical opening and, if present, the free end 246 or 452 of the elastic element 242 or 448, respectively. The second influencing element 104 or 204 or 304 or 404 is placed on the soft tissues surrounding the anatomical opening by the supporting element 118 or 220 or 318 or 420 of the housing 114 or 216 or 314 or 416, respectively, so that their protruding portions are in the channel 132 or 234 or 332 or 434. The user rotates the elongated element 106 or 206 or 306 or 406, holding, if present, the additional element 240 or 338 or 340, respectively, pushing the first influencing element 102 or 202 or 302 or 402 deep into the anatomical opening.In this case, the rotating element 112 or 312, or the rotating elements 212 and 248 or 412 and 454 are rotated with the help of the axial element 116 or 316, or the elements 218 and 252 or 418 and 458 relative to the imaginary axis 134 or 236 or 334 or 436, respectively. As it is immersed, the elongated element 106 or 206 or 306 or 406 is elastically straightened and the device 102 or 202 or 302 or 402 is transformed into a second position, in particular 100A or 300A, in which the elongated element 106A or 306A is straightened, the second acting element 104A or 304A is distant from the first acting element 102 or 302, and the rotating element 112A or 312A is rotated on the axial element 116 or 316 relative to the imaginary axis and the imaginary center 134 and 136 or 334 and 336, respectively.Upon reaching the required immersion depth, the user performs a reverse rotation of the elongated element 106 or 206 or 306 or 406, which, due to elasticity, restores its shape and thereby pulls the first acting element 102 or 202 or 302 or 402 and returns the device 100 or 200 or 300 or 400 to the first position, respectively. During operation, the user activates the electromechanical means for mechanical action on the soft tissues surrounding the anatomical opening, for which he presses the button 124 or 226 or 324 or 426 of the control means 126 or 228 or 326 or 428, which supplies electric power from the power source 122 or 224 or 322 or 424 to the electric drive 128 or 230 or 328 or 430, which actuates the membrane 130 or 330 or the element with elastic protrusions 232 or 432, respectively.In modification 100 or 300, the electromechanical means is completely built into the housing 114 or 314, and in modification 200 or 400, the control means 228 or 428 and the power source 224 or 424 are located outside the housing 216 or 416, and the power supply to the electric drive 230 or 430 is carried out through the rotating elements 212 and 248 or 412 and 454, respectively. For this, the axes of the axial element 222 and 250 contain contact elements 256 and 262, and the axes of the axial element 422 and 456 contain contact elements 462 and 468, which are electrically connected to the wires 254 and 260 or 460 and 466, respectively. Axial elements 218 and 252 comprise contact elements 258 and 264, while axial elements 418 and 458 comprise contact elements 464 and 470, which are connected to electric motor 266 or 472, respectively. These contact elements form contact groups that provide electrical power during rotation of the rotating elements relative to their housings.Additionally, modifications 200 or 400 allow for interchangeability of their housings, for example, 216 with housing 416 and vice versa. For this purpose, rotating element 248 or 454 is designed to be retractable using a spring-loaded pressure element 212 or 412, respectively, which presses the aforementioned contact groups. When pressed, housing 216 or 416 is released, and another housing containing an electromechanical actuator with a different action can be installed in its place.
[0025] The device may be equipped with a removable power source, a removable electromechanical component, a remote control, and magnetic or contactless battery charging. The device may be manufactured from silicone rubber or thermoplastic elastomers and have a housing, a rotating element, an axial element, and other components made of plastic or metal, as well as all known options for similar devices. The elongated element may be curved in a circle, spiral, or ellipse, or combinations thereof. The imaginary axis of rotation may be offset from the imaginary center. The axial element may be made of an elastically deformable material and connected to the housing and the rotating element, such that rotation is achieved through elastic deformation of the axial element, such as a coil spring.The electromechanical device may employ vacuum, tapping, or vibration, or a combination thereof, and may additionally be installed in the first actuating element. The rotating element of the electromechanical device may be configured to rotate the actuating elements along or across the plane of curvature of the elongated element. The moving parts of the electromechanical device may be configured to perform translational or multidirectional cyclic movements simulating a massage effect. The surface of the device may have a textured surface and may also be heated. The device may be mounted to a surface or connected to another user's body, have a mechanical drive, and be moisture- and water-resistant.
[0026] The implementation of the claimed device is not limited by the description but is considered based on the understanding of the state of the art by a person skilled in the art, including references to all necessary electromechanical components of the device, printed circuit boards, microprocessors, communications equipment, software, and the functional connections between the device's components. The specified modifications are preferred and do not limit implementation; any combination of technical solutions, features, elements, and means listed in the description and claims may be embodied in a single device, depending on the feasibility of their combination. The description of combinations in one device is advisory in nature and does not limit their implementation in another device for the same purpose; any improvements must be considered within the scope of protection.
Claims
Formula 1. A device for mechanical action on human soft tissues, comprising a first acting element, a second acting element and an elongated element with a first end and a second end, wherein the elongated element is made with a bend that is made along a rotational trajectory relative to an imaginary center, and the first end of the elongated element is connected to the first acting element, wherein the first acting element is made with the possibility of being inserted into an anatomical opening of a person, the second acting element is connected to the second end of the elongated element and is made with a housing containing an electromechanical means that is made with the possibility of mechanical action on soft tissues surrounding an anatomical opening of a person, wherein the elongated element is made with the possibility of elastically unbending and thereby moving the second acting element from the first position in which the second acting element is close to the first acting element,into a second position in which the second actuating element is distant from the first actuating element, characterized in that the second actuating element comprises at least one axial element which is connected to the body of the second actuating element, and at least one rotating element which ensures the connection of the second actuating element to the second end of the elongated element and is connected to at least one axial element with the possibility of rotation relative to the body of the second actuating element in the plane of bending of the elongated element, wherein the imaginary axis of rotation of at least one rotating element is close to the imaginary center and intersects the body of the second actuating element, wherein the body of the second actuating element contains a support element,which is designed with the ability to rest on the soft tissues surrounding the anatomical opening of a person during the process of mechanical action by an electromechanical means on the soft tissues surrounding the anatomical opening of a person.
2. The device according to claim 1, characterized in that the axial element consists of two parts, wherein the first part is connected to at least one rotating element, and the second part is connected to the body of the second acting element, and is designed to be movable and detachable connect said at least one rotating element with said body of the second actuating element.
3. The device according to claim 1, characterized in that at least one axial element is designed with the possibility of conducting electrical power between at least one rotating element and the body of the second acting element.
4. The device according to claim 1, characterized in that the second actuating element contains two rotating elements, two axial elements, and the housing of the second actuating element is located between the said two axial elements and the two rotating elements.
5. The device according to claim 1, characterized in that the second actuating element contains two rotating elements, two axial elements and the housing of the second actuating element is located between the said two axial elements and the two rotating elements, the said axial elements are made detachable and at least one of them is made with the possibility of conducting electrical power, and the second actuating element contains at least one pressing element made with the possibility of moving aside at least one rotating element when pressing on the said at least one pressing element and thereby disconnecting the said housing of the second actuating element from the said two rotating elements.
6. The device according to claim 1, characterized in that an elastic element is located along the elongated element and in the plane of bending of the elongated element, which is connected by a fixed end near the second end of the elongated element and is designed with the possibility of being inserted into a human anatomical opening with its free end.
7. The device according to claim 1, characterized in that it contains an additional element, designed with the possibility of holding and manipulating by hand and communicating movement to the first acting element through an elongated element, wherein the additional element is connected to the device, including detachably, near the second end of the elongated element.
8. The device according to claim 1, characterized in that it contains an additional element designed with the possibility of holding and manipulating by hand and communicating movement directly to the first acting element, made elongated with a first end and a second end, wherein the additional element is connected to the device, including detachably, by its first end near the first end of the elongated element and the second end of the additional element is connected to the retaining element, including the suction cup, including detachably.
9. The device according to claim 1, characterized in that the second acting element is made with the possibility of replacing the said housing from a set, each of which is made with the same connection and a different method of action, for example, a set consisting of a first housing with an electromechanical means that contains a generator of mechanical vibrations that ensures the vibration of the soft tissues surrounding the anatomical opening of a person, including contactless, and a second housing with an electromechanical means that contains a rotating element that ensures the action on the soft tissues surrounding the anatomical opening of a person by friction, including friction of the protrusions of the rotating element.
10. A method for mechanical action on human soft tissues, characterized in that the device according to claim 1 is used, wherein the first acting element is inserted into the anatomical opening of a person, the supporting element of the housing of the second acting element is placed on the soft tissues surrounding the anatomical opening of a person, the electromechanical means is activated and the soft tissues surrounding the anatomical opening of a person are mechanically acted upon, rotational manipulation of the second end of the elongated element is performed relative to an imaginary axis of rotation, during which the rotating element is rotated by means of the axial element along an imaginary axis of rotation relative to the housing of the second acting element and the first acting element is pushed into the anatomical opening of a person by means of the elongated element, while the elongated element is elastically straightened and thereby the second acting element is moved from the first position,in which the second acting element is brought closer to the first acting element, into a second position in which the second acting element is removed from the first acting element, then a rotational manipulation of the second end of the elongated element is performed relative to the imaginary axis of rotation in the opposite direction, in which the rotating element is rotated by means of the axial element along an imaginary axis of rotation relative to the body of the second acting element in the opposite direction and by means of the elongated element the first acting element is pulled outward from the anatomical opening of the person, while the original shape of the elongated element is restored and thereby the second acting element is moved from the second position, in which the second acting element is distant from the first acting element, to the first position, in which the second acting element is brought closer to the first acting element.
Citation Information
Patent Citations
Systems, devices, and methods for personal massage
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