High-efficiency energy conversion type intervertebral disc herniation treatment equipment

By combining a rigid carrier plate with an energy conversion linkage, the energy is converted using the kinetic energy of the patient's leg, solving the problems of slippage and poor treatment effect of existing equipment, and achieving stable pressure and efficient pain relief.

CN223845807UActive Publication Date: 2026-01-30NANJING SHUANGJIAN MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202520210510.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2026-01-30
Estimated Expiration
2035-02-11

AI Technical Summary

Technical Problem

Existing disc herniation treatment equipment is prone to slippage during support, resulting in mediocre treatment effects and an inability to effectively distribute pressure on the lumbar spine, leading to increased lumbar spine injury when patients move.

Method used

The treatment employs a rigid carrier plate combined with a dual-end wearable structure. Through the connection between the primary and secondary compression rods and the energy conversion linkage, it utilizes the kinetic energy of the patient's legs for energy conversion, thereby achieving stable compression therapy on the intervertebral disc.

Benefits of technology

It effectively reduces lumbar spine injury in patients, improves treatment outcomes, ensures that the device does not affect patients' normal movement, enhances energy conversion efficiency, and provides stable pain relief.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses efficient energy conversion type intervertebral disc protrusion treatment equipment which comprises a rigid carrier plate, a back attaching cushion is fixedly installed in the middle of the outer front face of the rigid carrier plate, and positioning through holes are symmetrically formed in the upper end and the lower end of the middle of the back of the rigid carrier plate. The positioning through hole is of a through hole structure penetrating through the whole rigid carrier plate on the back of the rigid carrier plate, a first-stage elastic leg binding ring and a second-stage elastic leg binding ring are pre-arranged on the two sides of the lower end of the rigid carrier plate correspondingly, and a binding belt winding box is fixedly installed in the middle of the two sides of the rigid carrier plate; a butt joint inserting buckle is movably installed on the outer portion of the bridle winding box on one side of the rigid carrier plate, and an alignment inserting groove is formed in the outer portion of the bridle winding box on the other side of the rigid carrier plate in advance. A rigid supporting structure is combined with a double-end wearing structure, so that further damage to the lumbar vertebra caused by movement of a patient in normal life can be reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to intervertebral disc protrusion treatment instrument technical field, especially is high -efficient energy conversion type intervertebral disc protrusion treatment equipment. BACKGROUND

[0002] Intervertebral disc protrusion is common lumbar disease, on the basis of not with the aid of external auxiliary, it is difficult to intervertebral disc protrusion produced pain effectively alleviate, only by medicine can not complete the treatment of intervertebral disc protrusion, therefore need to intervertebral disc protrusion with the aid of equipment treatment.

[0003] However, the existing treatment equipment for intervertebral disc protrusion mostly has the problems that the whole is mostly simple instrument to support the intervertebral disc protrusion part with rigid structure, the overall treatment effect is general, and the whole is not convenient to stably clamp in the corresponding intervertebral disc protrusion position of the patient, and is easy to slip in the use condition in the supporting process by the influence of the patient's own action, and the overall dispersion effect of the pressure on the waist is general.

[0004] Based on this, the utility model provides high -efficient energy conversion type intervertebral disc protrusion treatment equipment to solve the above -mentioned problems. CONTENT OF THE UTILITY MODEL

[0005] The purpose of this part is to summarize some aspects of the embodiments of the utility model and briefly introduce some preferred embodiments. In this part and the abstract of the specification and the utility model name, some simplification or omission may be made to avoid obscuring the purpose of this part, the abstract of the specification and the utility model name, and such simplification or omission cannot be used to limit the scope of the utility model.

[0006] In view of the above and / or existing problems in the design of intervertebral disc protrusion treatment equipment, the utility model is proposed.

[0007] Therefore, one purpose of the utility model is to provide high -efficient energy conversion type intervertebral disc protrusion treatment equipment, which can greatly share the power of the waist by the leg by adopting rigid support structure combined with double-end wearing structure after wearing, which helps to reduce the further damage of the lumbar vertebrae due to the action of the patient in normal life.

[0008] In order to achieve the above effects, the utility model provides technical solutions as follows: the high -efficient energy conversion type intervertebral disc herniation treatment equipment, including rigid carrier plate, the middle position of rigid carrier plate external front is fixedly installed with pasting back soft pad, the upper and lower both ends position of the middle of rigid carrier plate back is opened to the symmetry and is equipped with positioning through -hole, the positioning through -hole is the through -hole structure of the whole rigid carrier plate in the rigid carrier plate back, the both sides position of rigid carrier plate lower extreme is respectively preset with a first elastic leg ring and second elastic leg ring, the middle position of rigid carrier plate both sides is fixedly installed with belt rolling box, the external movable mounting of rigid carrier plate one side belt rolling box is equipped with the butt joint of inserting buckle, the external preset of rigid carrier plate other side belt rolling box is equipped with the alignment of inserting slot, the inside movable mounting of belt rolling box is equipped with belt elastic rolling shaft, the butt joint of inserting buckle and the alignment of inserting slot with belt elastic rolling shaft are all fixedly connected with the associated elastic belt, the butt joint of inserting buckle and the alignment of inserting slot all are through the associated elastic belt and are movably connected between belt elastic rolling shaft.

[0009] As a preferred scheme of the high -efficient energy conversion type intervertebral disc herniation treatment equipment of the utility model, wherein: the inside movable mounting of the positioning through -hole of the upper end of the rigid carrier plate back is equipped with a first top pressure rod, the inside movable mounting of the positioning through -hole of the lower end of the rigid carrier plate back is equipped with a second top pressure rod, the middle position of both sides in the positioning through -hole is all fixedly installed with a positioning slider, the middle position of both sides of the first top pressure rod and the second top pressure rod is all opened to the symmetry and is equipped with directional sliding slot, the first top pressure rod and the second top pressure rod are slidably connected between directional sliding slot and positioning slider, the outside specification of positioning slider and the specification in the slot of directional sliding slot are corresponding and matched with each other;

[0010] By adding the first top pressure rod and the second top pressure rod of upper and lower positions, the continuous top pressure relief treatment effect of the patient can be effectively carried out, and the sliding connection structure between the positioning slider and the directional sliding slot can make the top pressure operation of the first top pressure rod and the second top pressure rod more smooth and stable.

[0011] As a preferred scheme of the high -efficient energy conversion type intervertebral disc herniation treatment equipment of the utility model, wherein: the one end of the first top pressure rod and the second top pressure rod is fixedly connected with a top pressure pad through the positioning through -hole, the outer diameter size of the top pressure pad is greater than the hole diameter size of the positioning through -hole, the other end of the first top pressure rod and the second top pressure rod is movably installed with a rotary butt joint support, the outside specification of the butt joint of inserting buckle and the specification in the slot of the alignment of inserting slot are corresponding and matched with each other;

[0012] By adding the top pressure pad, the hardness of the intervertebral disc of the patient contacted in the top pressure treatment operation can be reduced, and the damage can be reduced.

[0013] As a preferred scheme of the high-efficiency energy conversion type intervertebral disc herniation treatment equipment, the first elastic leg ring and the second elastic leg ring are both annular elastic leg ring structures, rotating connecting seats are fixedly installed at middle positions of inner sides of the first elastic leg ring and the second elastic leg ring, and the rotating connecting seats are externally rotatably connected with the alignment assembly supports.

[0014] The rotating connection structure is additionally arranged, so that the device can be most consistent with normal actions of the patient, and can convert kinetic energy generated by actions of the patient into mechanical energy, thereby greatly improving overall high-efficiency energy conversion operation.

[0015] As a preferred scheme of the high-efficiency energy conversion type intervertebral disc herniation treatment equipment, the rotating butt joint supports and the alignment assembly supports are of the same specification, the first energy conversion connecting rod is movably connected with the alignment assembly support on the inner side of the first elastic leg ring, and the second energy conversion connecting rod is movably connected with the alignment assembly support on the inner side of the second elastic leg ring.

[0016] The associated support structure of the first energy conversion connecting rod and the second energy conversion connecting rod can most effectively realize relief and treatment of the intervertebral disc herniation by energy conversion when the patient performs normal life actions.

[0017] As a preferred scheme of the high-efficiency energy conversion type intervertebral disc herniation treatment equipment, the first energy conversion connecting rod and the second energy conversion connecting rod are both symmetrically fixedly installed with end connecting pieces at two ends, the other end of the first energy conversion connecting rod is movably connected with the first top pressing rod end head rotating butt joint support through the end connecting piece, the other end of the second energy conversion connecting rod is movably connected with the second top pressing rod end head rotating butt joint support through the end connecting piece, and the length of the first energy conversion connecting rod is greater than the length of the second energy conversion connecting rod.

[0018] The device can most effectively alleviate the waist of the patient by the associated structure of the energy conversion connecting rod when the patient performs normal actions, thereby effectively reducing further damage to the lumbar vertebrae of the patient in normal life, and the associated structure of the energy conversion connecting rod can effectively convert kinetic energy into mechanical energy to drive the top pressing structure to stably and continuously press the intervertebral disc herniation position, thereby effectively improving pain relief and treatment effect of the intervertebral disc herniation of the patient, and the associated structure of the energy conversion connecting rod is based on the rotating support, so that the device does not interfere with and affect the action of the patient after complete wearing, thereby effectively enriching the overall use functionality. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative labor on the basis of these drawings. Among them:

[0020] Figure 1 It is a front structure schematic diagram of the present application;

[0021] Figure 2 It is a back structure schematic diagram of the present application;

[0022] Figure 3 It is a side structure schematic diagram of the present application;

[0023] Figure 4 It is a top view structure schematic diagram of the present application;

[0024] Figure 5 It is a structure schematic diagram of the present application Figure 2 in A place;

[0025] Figure 6 It is a structure schematic diagram of the present application Figure 3 in B place.

[0026] In the drawing, 1 is a rigid carrier plate; 2 is a back soft pad; 3 is a positioning through hole; 4 is a belt rolling box; 5 is a primary elastic leg belt ring; 6 is a secondary elastic leg belt ring; 7 is a butt joint plug buckle; 8 is a butt joint plug slot; 9 is a belt elastic rolling shaft; 10 is an associated elastic belt; 11 is a primary top pressing rod; 12 is a positioning sliding block; 13 is a rotary connecting seat; 14 is a secondary top pressing rod; 15 is a rotary butt joint support; 16 is a directional sliding groove; 17 is a top pressing pad; 18 is a butt joint assembly support; 19 is a primary energy conversion connecting rod; 20 is a secondary energy conversion connecting rod; 21 is an end connector. DETAILED DESCRIPTION

[0027] In order to make the above-mentioned purposes, features and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the drawings of the specification.

[0028] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and those skilled in the art can make similar generalizations without departing from the connotation of the present application, therefore the present application is not limited to the specific implementation schemes disclosed below.

[0029] Second, the utility model in combination with the schematic diagram is described in detail, when the utility model implementation scheme is described in detail, for the convenience of explanation, the sectional view of the device structure will be partially enlarged without the general proportion, and the schematic diagram is only an example, which should not limit the range of the utility model protection here. In addition, the three-dimensional space size of length, width and depth should be included in actual production.

[0030] Please refer to Figures 1-6The utility model provides a technical scheme: high -efficient energy conversion type intervertebral disc herniation treatment equipment, including rigid carrier board 1, paste back soft pad 2, positioning through -hole 3, belt rolling box 4, primary elastic leg band 5, secondary elastic leg band 6, butt joint plug buckle 7, alignment plug -in groove 8, belt elastic rolling shaft 9, associated elastic belt 10, primary top pressure rod 11, positioning sliding block 12, rotary connecting seat 13, secondary top pressure rod 14, rotary butt joint support 15, directional sliding slot 16, top pressure pad 17, alignment assembly support 18, primary energy conversion connecting rod 19, secondary energy conversion connecting rod 20 and end connector 21, the middle position fixed mounting of rigid carrier board 1 outside front is pasted back soft pad 2, the upper and lower both ends position symmetry of rigid carrier board 1 back middle part is provided with positioning through -hole 3, and the positioning through -hole 3 is the through -hole structure of the whole of rigid carrier board 1 in rigid carrier board 1 back, and the both sides position of rigid carrier board 1 lower extreme is respectively preset with primary elastic leg band 5 and secondary elastic leg band 6, and the middle position fixed mounting of rigid carrier board 1 both sides is pasted with belt rolling box 4, and the outside movable mounting of rigid carrier board 1 one side belt rolling box 4 is pasted with butt joint plug buckle 7, and the outside preset of rigid carrier board 1 the other side belt rolling box 4 is alignment plug -in groove 8, and the inside movable mounting of belt rolling box 4 is belt elastic rolling shaft 9, and the fixed connection of butt joint plug buckle 7 and alignment plug -in groove 8 with belt elastic rolling shaft 9 is associated with elastic belt 10, and butt joint plug buckle 7 and alignment plug -in groove 8 are all through associated elastic belt 10 and belt elastic rolling shaft 9 between each other movable connection, and the inside movable mounting of positioning through -hole 3 of rigid carrier board 1 back upper end is primary top pressure rod 11, and the inside movable mounting of positioning through -hole 3 of rigid carrier board 1 back lower end is secondary top pressure rod 14, and the middle position of both sides in positioning through -hole 3 is all fixedly installed with positioning sliding block 12, and the middle position of both sides of primary top pressure rod 11 and secondary top pressure rod 14 is all opened directional sliding slot 16, and primary top pressure rod 11 and secondary top pressure rod 14 are slidably connected between directional sliding slot 16 and positioning sliding block 12, and the outside specification of positioning sliding block 12 and the specification in the slot of directional sliding slot 16 correspond and match each other, and one end of primary top pressure rod 11 and secondary top pressure rod 14 is all fixedly connected with top pressure pad 17, and the outer diameter size of top pressure pad 17 is greater than the aperture size of positioning through -hole 3, and the other end of primary top pressure rod 11 and secondary top pressure rod 14 is all movably installed with rotary butt joint support 15, and the outside specification of butt joint plug buckle 7 and the specification in the slot of alignment plug -in groove 8 correspond and match each other, and primary elastic leg band 5 and secondary elastic leg band 6 are all annular elastic belt structure, and the middle position of inside of primary elastic leg band 5 and secondary elastic leg band 6 is all fixedly installed with rotary connecting seat 13, and the outside rotary movable connection of rotary connecting seat 13 has alignment assembly support 18, and the specification of rotary butt joint support 15 and alignment assembly support 18 is same, and the inside movable connection of alignment assembly support 18 of inside of primary elastic leg band 5 has primary energy conversion connecting rod 19,The inside of the secondary elastic leg ring 6 is movably connected with the secondary energy conversion connecting rod 20 through the support 18, the two ends of the primary energy conversion connecting rod 19 and the secondary energy conversion connecting rod 20 are symmetrically fixedly connected with the end connector 21, the other end of the primary energy conversion connecting rod 19 is movably connected with the rotary butt joint support 15 between the end of the primary top pressing rod 11 through the end connector 21, the other end of the secondary energy conversion connecting rod 20 is movably connected with the rotary butt joint support 15 between the end of the secondary top pressing rod 14 through the end connector 21, and the length of the primary energy conversion connecting rod 19 is greater than that of the secondary energy conversion connecting rod 20.

[0031] The first and second top pressing rods 11 and 14 can effectively relieve the patient by continuously pressing, the sliding connection structure between the positioning sliding block 12 and the directional sliding groove 16 can make the pressing operation of the first and second top pressing rods 11 and 14 more smooth and stable, the top pressing pad 17 can reduce the hardness of the intervertebral disc of the patient in the pressing treatment operation, and the rotary connection structure can make the device conform to the normal action of the patient to the greatest extent, and can convert the kinetic energy generated by the action of the patient into mechanical energy, greatly improving the overall efficient energy conversion operation, and the associated support structure of the first and second energy conversion connecting rods 19 and 20 can maximize the use of energy conversion to achieve the relief treatment effect of the intervertebral disc protrusion when the patient is in normal life action.

[0032] Working principle:

[0033] First, the primary elastic leg band 5 and the secondary elastic leg band 6 are elastically slipped onto the patient's two legs respectively. Then, the rigid carrier plate 1 is fitted with the back-adhesive soft pad 2 against the herniated disc on the patient's back. Utilizing the elastic properties of the associated elastic strap 10, the docking buckle 7 and the alignment insertion slot 8 are pulled around the patient's waist to dock with each other, thus achieving complete wear of the device on the patient. When the patient wears the treatment device and performs actions such as walking or raising their legs in place, the staggered raising and lowering of the patient's legs causes the primary elastic leg band 5 and the secondary elastic leg band 6 to rise and fall alternately. This, through the interconnected structure between the primary elastic leg band 5 and the secondary elastic leg band 6 and the primary and secondary pressure rods 11 and 14 respectively via the primary energy conversion link 19 and the secondary energy conversion link 20, drives the primary pressure rod 11 and the secondary pressure rod 14. The pressure rod 14 utilizes the sliding connection between the positioning slider 12 and the directional groove 16 in the positioning through hole 3 to perform reciprocating pressing operations in the positioning through hole 3. This drives the pressure pad 17 to continuously press on the upper and lower positions of the herniated disc, thus providing a certain degree of relief and treatment. It effectively converts the energy generated by the patient's own movements into mechanical energy for pressure therapy. The structural characteristics of the rigid carrier plate 1, combined with the movable installation structure of the first-stage pressure rod 11 and the second-stage pressure rod 14 passing through the positioning through hole 3 at the upper and lower positions of the herniated disc, allow the patient to transfer some of the force to the legs through the connection structure of the first-stage energy conversion link 19 and the second-stage energy conversion link 20 when the lumbar region needs to exert force. This helps reduce the force on the patient's lumbar region and improves the overall treatment effect of herniated disc.

[0034] It should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.

Claims

1. A high energy conversion type intervertebral disc hernia treatment device comprising a rigid carrier plate (1), characterized by: The middle position of the outer front face of the rigid carrier plate (1) is fixedly installed with a soft pad (2), the upper and lower ends of the middle of the back of the rigid carrier plate (1) are symmetrically provided with positioning through holes (3), the positioning through holes (3) are through holes penetrating the whole rigid carrier plate (1) on the back of the rigid carrier plate (1), the two sides of the lower end of the rigid carrier plate (1) are respectively provided with a first elastic leg ring (5) and a second elastic leg ring (6), the middle positions of the two sides of the rigid carrier plate (1) are fixedly installed with a belt rolling box (4), the outer side of the belt rolling box (4) on one side of the rigid carrier plate (1) is movably installed with a butt plug (7), the outer side of the belt rolling box (4) on the other side of the rigid carrier plate (1) is provided with a counter plug slot (8), the inside of the belt rolling box (4) is movably installed with a belt elastic rolling shaft (9), the butt plug (7) and the counter plug slot (8) are fixedly connected with an associated elastic belt (10) between the belt elastic rolling shaft (9), and the butt plug (7) and the counter plug slot (8) are movably connected with each other through the associated elastic belt (10) between the belt elastic rolling shaft (9).

2. The high energy converting herniated disc treatment device of claim 1, wherein: The inside of the positioning through hole (3) at the upper end of the back of the rigid carrier plate (1) is movably installed with a first top pressing rod (11), the inside of the positioning through hole (3) at the lower end of the back of the rigid carrier plate (1) is movably installed with a second top pressing rod (14), the middle positions of the two sides of the inside of the positioning through hole (3) are symmetrically fixedly installed with positioning sliding blocks (12), the middle positions of the two sides of the first top pressing rod (11) and the second top pressing rod (14) are symmetrically provided with directional sliding grooves (16), the first top pressing rod (11) and the second top pressing rod (14) are movably connected with each other through the directional sliding grooves (16) and the positioning sliding blocks (12), and the outside specifications of the positioning sliding blocks (12) and the specifications in the grooves of the directional sliding grooves (16) are correspondingly matched.

3. The high energy converting herniated disc treatment device of claim 2, wherein: One end of the first top pressing rod (11) and the second top pressing rod (14) is fixedly connected with a top pressing pad (17) penetrating the positioning through hole (3), the outer diameter of the top pressing pad (17) is larger than the hole diameter of the positioning through hole (3), and the other end of the first top pressing rod (11) and the second top pressing rod (14) is movably installed with a rotary butt support (15), and the outside specifications of the butt plug (7) and the specifications in the grooves of the counter plug slot (8) are correspondingly matched.

4. The high energy converting herniated disc treatment device of claim 3, wherein: The first elastic leg ring (5) and the second elastic leg ring (6) are annular elastic belt structures, the middle positions of the inner sides of the first elastic leg ring (5) and the second elastic leg ring (6) are fixedly installed with rotary connecting seats (13), and the outer sides of the rotary connecting seats (13) are rotatably connected with counter assembly supports (18).

5. The high energy converting herniated disc treatment device of claim 4, wherein: The specifications of the rotary butt support (15) and the counter assembly support (18) are the same, the inside of the counter assembly support (18) on the inner side of the first elastic leg ring (5) is movably connected with a first energy conversion connecting rod (19), and the inside of the counter assembly support (18) on the inner side of the second elastic leg ring (6) is movably connected with a second energy conversion connecting rod (20).

6. The high energy converting herniated disc treatment device of claim 5, wherein: The two ends of the primary energy conversion connecting rod (19) and the secondary energy conversion connecting rod (20) are symmetrically fixedly provided with end connecting pieces (21), the other end of the primary energy conversion connecting rod (19) is movably connected between the end rotating butt joint support (15) of the primary top pressing rod (11) through the end connecting piece (21), the other end of the secondary energy conversion connecting rod (20) is movably connected between the end rotating butt joint support (15) of the secondary top pressing rod (14) through the end connecting piece (21), and the length size of the primary energy conversion connecting rod (19) is greater than that of the secondary energy conversion connecting rod (20).