Heart failure hypertrophy myocardial ultrasonic ablation equipment
By introducing a moving mechanism, clamping component, wiping mechanism, and coating mechanism into the ultrasound ablation device for hypertrophic myocardium in heart failure, the problem of contact between the connecting wire and the human body is solved, and the probe is effectively fixed and cleaned, thus improving the quality of ablation work.
Patent Information
- Application Number
- CN202511263493.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-05
- Publication Date
- 2025-11-04
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In existing ultrasound ablation devices for hypertrophic myocardium in heart failure, the external connecting wire of the probe is prone to contact with the user's skin, which affects the ablation process, and the connection wire is prone to damage when it comes into contact with the ablation site.
An ultrasound ablation device for hypertrophic myocardium in heart failure was designed, comprising a moving mechanism, a clamping assembly, a wiping mechanism, and a coating mechanism. These mechanisms are used to adjust, fix, wipe, and coat the connecting wires and probes, preventing the connecting wires from contacting the human body and ensuring the cleanliness of the probes and the uniform application of coupling agent.
This effectively avoids contact between the connecting wire and the human body, prevents damage to the connecting wire, ensures probe cleanliness, and improves the efficiency and effectiveness of ablation work.
Smart Images

Figure CN120884343A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of ultrasonic ablation equipment, in particular to heart failure hypertrophic myocardial ultrasonic ablation equipment. BACKGROUND
[0002] Hypertrophic cardiomyopathy is a myocardial disease of unknown cause, characterized by asymmetric hypertrophy of the ventricular wall, often involving the interventricular septum, and the left ventricular lumen becomes smaller, and the left ventricular filling is blocked, and the left ventricular diastolic compliance decreases. According to whether there is obstruction in the left ventricular outflow tract, it is divided into obstructive and non-obstructive hypertrophic cardiomyopathy, which may be related to heredity.
[0003] In the patent with the publication number CN119327054A, a heart failure hypertrophic myocardial and fibrosis ultrasonic ablation equipment is disclosed, which is provided with a limiting frame in a spiral shape and a rotating plate, so that the focusing device is driven to rotate spirally along the limiting frame, so that spiral focusing treatment is carried out from the outside to the inside along the ventricular part, so as to ensure that the overall contraction degree of the hypertrophic ventricle is mutually adapted, thereby avoiding local position over-contracting and affecting the organ. However, in the ultrasonic ablation work, the connecting line is connected to the outside of the probe, and when the ultrasonic ablation work is carried out, the connecting line is easy to contact the skin of the user and is easy to contact the ablation position, thereby affecting the ablation work. SUMMARY
[0004] In order to overcome the problem that in the ultrasonic ablation work, the connecting line is connected to the outside of the probe, and when the ultrasonic ablation work is carried out, the connecting line is easy to contact the skin of the user and is easy to contact the ablation position, thereby affecting the ablation work, the application provides heart failure hypertrophic myocardial ultrasonic ablation equipment, which comprises a body;
[0005] A fixing groove is formed in the side surface of the body;
[0006] A first push rod is installed in the interior of the fixing groove;
[0007] Two cavities are formed in the interior of the body;
[0008] Two second push rods are installed in the interior of the two cavities;
[0009] A connecting line is installed on the exterior of the body, and a probe is installed on the exterior of the connecting line;
[0010] A moving mechanism is connected with the first push rod, and the moving mechanism comprises a first annular plate, a fourth push rod is installed at the bottom of the first annular plate, a second annular plate is installed at the bottom of the fourth push rod, a clamping assembly is arranged at the bottom of the second annular plate, and the fourth push rod is used for controlling the clamping assembly to drive the probe to move in the vertical direction.
[0011] Preferably, further comprising:
[0012] A moving base, which is installed at the bottom of the machine body;
[0013] A wiping mechanism, which is connected with the second push rod, and is used for wiping the probe;
[0014] A smearing mechanism, which is connected with the second push rod, and is used for smearing raw material on the probe.
[0015] Preferably, the moving mechanism further comprises:
[0016] A horizontal rod, which is connected with the telescopic end of the first push rod, and the top of the horizontal rod is installed with a buckle plate, which is arranged in a half-ring shape, and two buckle plates are symmetrically arranged;
[0017] A vertical rod, which is connected outside the horizontal rod;
[0018] A moving ring, which is slidingly connected outside the vertical rod, and is connected with the first annular plate;
[0019] A third push rod, which is installed at the bottom of the horizontal rod, and the telescopic end of the third push rod is connected with the moving ring.
[0020] Preferably, the moving mechanism further comprises:
[0021] A plurality of inclined rods, some of which are respectively installed at the top and bottom of the first annular plate, and the other of which are respectively installed at the top and bottom of the second annular plate;
[0022] A limiting ball, which is installed outside the inclined rod, and is in contact with the connecting line.
[0023] Preferably, the clamping assembly comprises:
[0024] A first adjusting rod, which is installed at the bottom of the second annular plate;
[0025] An outer ring, which is connected at the bottom of the first adjusting rod;
[0026] A second adjusting rod, which is installed outside the outer ring, and is provided with a plurality of second adjusting rods;
[0027] An inclined plate, which is connected outside the second adjusting rod, is made of rubber, and is in contact with the probe.
[0028] Preferably, the wiping mechanism comprises:
[0029] A first box body connected with the second push rod;
[0030] A motor box mounted in the interior of the first box body, and an interior of the motor box is provided with a motor;
[0031] A telescopic column connected with an output end of the motor.
[0032] Preferably, the wiping mechanism further comprises:
[0033] A first electric slide rail mounted in the interior of the first box body, and the first electric slide rail is provided with two and symmetrically arranged;
[0034] A first sliding plate slidingly connected in the interior of the first electric slide rail, and the first sliding plate is provided with two;
[0035] A first telescopic rod mounted in the exterior of the first sliding plate;
[0036] A first half ring mounted in the exterior of the first telescopic rod;
[0037] A first center column in contact with the first half ring;
[0038] A first recess groove opened in the interior of the first center column;
[0039] An angle plate provided in the exterior of the first center column, and the angle plate is provided with a plurality of and uniformly arranged.
[0040] Preferably, the smearing mechanism comprises:
[0041] A second box body connected with a telescopic end of the second push rod;
[0042] A second electric slide rail mounted in the interior of the second box body, and the second electric slide rail is provided with two and symmetrically arranged;
[0043] A second sliding plate slidingly connected in the interior of the second electric slide rail;
[0044] A clamp mounted in the exterior of the second sliding plate;
[0045] A second center column provided in the interior of the clamp, and a second recess groove is opened in the interior of the second center column.
[0046] Preferably, the smearing mechanism further comprises:
[0047] A second telescopic rod mounted in the interior of the second box body, and the second telescopic rod is provided with two and symmetrically arranged;
[0048] A second half ring is mounted outside the second telescopic rod;
[0049] A card seat is mounted inside the second box body;
[0050] A bottle body is mounted inside the card seat, and the bottle body is in contact with the second half ring.
[0051] The present application provides a heart failure hypertrophic myocardium ultrasonic ablation device. It has the following advantages:
[0052] 1. The heart failure hypertrophic myocardium ultrasonic ablation device adjusts the position of the connecting line through the movement mechanism. In the existing ultrasonic ablation device, the probe is connected with a connecting line. When performing ultrasonic ablation work, the connecting line is easy to contact the user's skin and the ablation position, affecting the ablation work. Therefore, the movement mechanism is set, two buckles and multiple groups of inclined rods and limit balls are used to fix the connecting line locally, and the length of the connecting line is reserved at multiple positions, so that the probe can straighten the connecting line when it contacts the human body, thereby avoiding the contact between the connecting line and the human body.
[0053] 2. The heart failure hypertrophic myocardium ultrasonic ablation device controls the position of the connecting line and the probe through the movement mechanism and the clamping assembly. A length of the connecting line is reserved between the half ring close to the machine body and the machine body, and a length of the connecting line is reserved between the first ring plate and the second ring plate, so that when the first push rod or the fourth push rod is opened, the reserved length of the connecting line can be pulled, avoiding excessive stretching of the fixed connecting line and causing damage to the connecting line.
[0054] 3. The heart failure hypertrophic myocardium ultrasonic ablation device performs wiping pretreatment before use and wiping cleaning work after use through the wiping mechanism. In the existing device, the probe is mostly exposed to the outside for a long time. Before using the probe, the coupling agent is applied to the outside of the probe. Since the outside of the probe is easy to be contaminated with dust, the coupling agent is easy to be distributed unevenly on the outside of the probe and be contaminated. A first box body is arranged in the chamber, two first center columns are arranged in the first box body, and a first groove containing wiping paper or cleaning cloth is opened above each of the two first center columns, so as to facilitate wiping treatment of the bottom of the probe. The dust on the bottom of the probe can be wiped, and the coupling agent on the bottom of the probe can be wiped. The wiping paper and the cleaning cloth are convenient to replace manually.
[0055] 4、The heart failure hypertrophic myocardium ultrasonic ablation equipment, through setting smearing mechanism, smears coupling agent on the bottom of the probe. The existing ablation equipment, all need manual smearing coupling agent on the probe, manual holding the probe, the probe is placed upward, smearing coupling agent, the coupling agent is easy to slide down, deep into the probe interior is easy to cause the probe damage. Through setting the second center column with the second groove, in the probe is in the state of placing downward, by the probe and the coupling agent in the second groove contact, to smear the coupling agent for the probe. BRIEF DESCRIPTION OF DRAWINGS
[0056] Figure 1 It is whole structure schematic diagram of the present application;
[0057] Figure 2 It is back structure schematic diagram of the present application;
[0058] Figure 3 It is moving mechanism structure schematic diagram of the present application;
[0059] Figure 4 It is structure schematic diagram in A of the present application; Figure 3
[0060] Figure 5 It is clamping assembly structure schematic diagram of the present application;
[0061] Figure 6 It is wiping mechanism structure schematic diagram of the present application;
[0062] Figure 7 It is structure schematic diagram in B of the present application; Figure 6
[0063] Figure 8 It is smearing mechanism structure schematic diagram of the present application.
[0064] In the figure: 1, body; 2, fixed groove; 3, first push rod; 4, moving mechanism; 401, cross bar; 402, vertical bar; 403, third push rod; 404, moving ring; 405, first annular plate; 406, fourth push rod; 407, second annular plate; 408, clamping assembly; 4081, first adjusting rod; 4082, outer ring; 4083, second adjusting rod; 4084, inclined plate; 409, buckle plate; 410, inclined rod; 411, limiting ball; 5, cavity; 6, second push rod; 7, wiping mechanism; 701, first box body; 702, motor box; 703, telescopic column; 704, first electric sliding rail; 705, first sliding plate; 706, first telescopic rod; 707, first half ring; 708, first center column; 709, first groove; 710, angle plate; 8, smearing mechanism; 801, second box body; 802, second electric sliding rail; 803, second sliding plate; 804, clamp; 805, second center column; 806, second groove; 807, second telescopic rod; 808, second half ring; 809, clamping seat; 810, bottle body; 9, connecting line; 10, moving seat; 11, probe. DETAILED DESCRIPTION
[0065] The application will be described in further detail below with reference to the drawings and specific embodiments. The embodiments of the application are given for illustrative and descriptive purposes only and are not intended to be exhaustive or to limit the application to the forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments were chosen and described in order to best explain the principles of the application and its practical application, and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.
[0066] As shown in the drawings, Figures 1-8 the application provides a technical solution: comprising a body 1;
[0067] A fixed groove 2 is formed on the side of the body 1;
[0068] A first push rod 3 is installed inside the fixed groove 2;
[0069] Two cavities 5 are formed, both of which are formed inside the body 1;
[0070] Two second push rods 6 are provided, each of which is installed inside the two cavities 5;
[0071] A connecting line 9 is installed outside the body 1, and a probe 11 is installed outside the connecting line 9;
[0072] The moving mechanism 4 is connected with the first push rod 3, and the moving mechanism 4 comprises a first annular plate 405, the bottom of the first annular plate 405 is provided with a fourth push rod 406, the bottom of the fourth push rod 406 is provided with a second annular plate 407, the bottom of the second annular plate 407 is provided with a clamping assembly 408, and the fourth push rod 406 is used for controlling the clamping assembly 408 to drive the probe 11 to move in the vertical direction;
[0073] The moving seat 10 is arranged at the bottom of the machine body 1, and the moving seat 10 is provided with universal wheels at the bottom, and the universal wheels have a self-locking function;
[0074] The wiping mechanism 7 is connected with the second push rod 6 above, and the wiping mechanism 7 is used for wiping the probe 11;
[0075] The smearing mechanism 8 is connected with the second push rod 6 below, and the smearing mechanism 8 is used for smearing raw materials on the probe 11.
[0076] Before using the device, the moving mechanism 4 and the wiping mechanism 7 are adjusted, the position of the probe 11 is adjusted, the probe 11 enters the wiping mechanism 7, and the probe 11 is pretreated. Then the moving mechanism 4 and the smearing mechanism 8 are adjusted, and the ultrasonic coupling agent is smeared on the probe 11. Then the moving mechanism 4 is adjusted, the position of the probe 11 is controlled, and the user is treated by ultrasonic ablation. After the work is finished, the moving mechanism 4 and the wiping mechanism 7 are adjusted again, the position of the probe 11 is adjusted, the probe 11 enters the wiping mechanism 7, and the probe 11 is wiped.
[0077] The moving mechanism 4 further comprises:
[0078] The horizontal rod 401 is connected with the telescopic end of the first push rod 3, the top of the horizontal rod 401 is detachably provided with a buckle plate 409, the buckle plate 409 is arranged in a half-annular shape, and two buckle plates 409 are symmetrically arranged;
[0079] The vertical rod 402 is connected to the outside of the horizontal rod 401;
[0080] The moving ring 404 is slidably connected to the outside of the vertical rod 402, and the moving ring 404 is connected with the first annular plate 405;
[0081] The third push rod 403 is fixedly arranged at the bottom of the horizontal rod 401, and the telescopic end of the third push rod 403 is connected with the moving ring 404;
[0082] The inclined rod 410 is provided with a plurality of inclined rods 410, part of the inclined rods 410 are fixedly arranged at the top and the bottom of the first annular plate 405, and the other part of the inclined rods 410 are fixedly arranged at the top and the bottom of the second annular plate 407, and the inclined rod 410 is made of rubber.
[0083] Limiting ball 411 is installed at the upper end of inclined rod 410, and limiting ball 411 is in contact with connecting line 9.
[0084] Before use, manually pass probe 11 and connecting line 9 through two buckle plates 409, and reserve a length of connecting line 9 between body 1 and the buckle plate 409 close to body 1, and sequentially pass through first annular plate 405 and second annular plate 407, and manually push inclined rod 410 and limiting ball 411, so that limiting ball 411 is pressed outside connecting line 9, thereby fixing the position of connecting line 9, and reserving a length of connecting line 9 between first annular plate 405 and second annular plate 407. Then adjust clamping assembly 408 to fix the position of probe 11.
[0085] Before wiping or applying work, open fourth push rod 406 to the corresponding stroke, fourth push rod 406 drives clamping assembly 408 and probe 11 to move downward, probe 11 enters wiping mechanism 7 or applying mechanism 8 to perform wiping or applying work.
[0086] Before ultrasonic ablation work, according to the position of the user, open first push rod 3 to the corresponding stroke, first push rod 3 drives moving mechanism 4 to move towards the user until probe 11 is directly above the ablation position, then adjust fourth push rod 406 to the corresponding stroke, fourth push rod 406 drives clamping assembly 408 and probe 11 to move downward until probe 11 contacts the user, then adjust the stroke of first push rod 3 and fourth push rod 406 according to the ablation position to perform ablation treatment.
[0087] Clamping assembly 408 comprises:
[0088] First adjusting rod 4081 is installed at the bottom of second annular plate 407;
[0089] Outer ring 4082 is connected to the bottom of first adjusting rod 4081;
[0090] Second adjusting rod 4083 is inserted outside outer ring 4082, and second adjusting rod 4083 is provided with a plurality of;
[0091] Inclined plate 4084 is connected outside second adjusting rod 4083, and inclined plate 4084 is made of rubber material, and inclined plate 4084 is in contact with probe 11.
[0092] Manually adjust the depth of second adjusting rod 4083 inserted into outer ring 4082, so that inclined plate 4084 approaches probe 11, the position of inclined plate 4084 is controlled by second adjusting rod 4083, and then a plurality of inclined plates 4084 are used to fix the position of probe 11.
[0093] The position of the connecting line 9 and the probe 11 is controlled by setting the moving mechanism 4 and the clamping assembly 408. By reserving a length of the connecting line 9 between the semi-ring close to the machine body 1 and the machine body 1, and reserving a length of the connecting line 9 between the first annular plate 405 and the second annular plate 407, and the length of the reserved part is less than the distance between the first annular plate 405 and the second annular plate 407, so as to avoid the contact between the connecting line 9 and the probe 11 at this time, and facilitate pulling the reserved length of the connecting line 9 when the first push rod 3 or the fourth push rod 406 is opened, so as to avoid the problem of excessive stretching of the fixed connecting line 9, which causes damage to the connecting line 9.
[0094] The wiping mechanism 7 comprises:
[0095] A first box body 701, which is connected with the second push rod 6 above, and the first box body 701 is in the chamber 5 above when the second push rod 6 is not opened;
[0096] A motor box 702, which is installed inside the first box body 701, and a motor is arranged inside the motor box 702;
[0097] A telescopic column 703, which is connected with the output end of the motor;
[0098] A first electric sliding rail 704, which is installed inside the first box body 701, and two first electric sliding rails 704 are symmetrically arranged;
[0099] A first sliding plate 705, which is slidably connected inside the first electric sliding rail 704, and two first sliding plates 705 are arranged;
[0100] A first telescopic rod 706, which is installed outside the first sliding plate 705;
[0101] A first semi-ring 707, which is installed outside the first telescopic rod 706;
[0102] A first center column 708, which is in contact with the first semi-ring 707, and the bottom of the first center column 708 is clamped with the telescopic column 703;
[0103] A first recess 709, which is arranged inside the first center column 708, and two first center columns 708 and first recesses 709 are arranged, respectively;
[0104] An angle plate 710, which is arranged outside the first center column 708, and a plurality of angle plates 710 are uniformly arranged.
[0105] Before using the device, the first telescopic rod 706 is in the open state, the first center column 708 is between the two first half rings 707, the wiping paper and the cleaning cloth are in the two first grooves 709 respectively, the angle plate 710 is clamped outside the first center column 708 and presses on the wiping paper or the cleaning cloth.
[0106] Before applying the coupling agent, the first electric sliding rail 704 is opened, the first sliding plate 705 drives the first telescopic rod 706 and the first half ring 707 to move towards the telescopic column 703, until the first center column 708 is directly above the telescopic column 703, the telescopic column 703 is opened and moves upward, the telescopic column 703 gradually clamps into the bottom of the first center column 708, at this time, the two first telescopic rods 706 are adjusted to the initial state, the first telescopic rod 706 drives the first half ring 707 to move away from the first center column 708, the motor in the motor box 702 is opened, the motor drives the telescopic column 703 to rotate, the telescopic column 703 drives the first center column 708 to rotate, and then drives the cleaning cloth in the first groove 709 to rotate, the cleaning cloth contacts the probe 11 and wipes the probe 11.
[0107] After the ablation work is completed, the first electric sliding rail 704 is continuously started, the first sliding plate 705 with the wiping paper starts to move towards the telescopic column 703, and the first sliding plate 705 with the cleaning cloth starts to slide out of the telescopic column 703, the first telescopic rod 706 and the first half ring 707 are driven by the first sliding plate 705 to move towards the telescopic column 703, until the first center column 708 is directly above the telescopic column 703, the telescopic column 703 is opened and moves upward, the telescopic column 703 gradually clamps into the bottom of the first center column 708, at this time, the two first telescopic rods 706 are adjusted to the initial state, the first telescopic rod 706 drives the first half ring 707 to move away from the first center column 708, the motor in the motor box 702 is opened, the motor drives the telescopic column 703 to rotate, the telescopic column 703 drives the first center column 708 to rotate, and then drives the wiping paper in the first groove 709 to rotate, the wiping paper contacts the probe 11 and wipes the coupling agent on the probe 11.
[0108] When replacing the first center column 708, the travel of the first telescopic rod 706 is adjusted, the two first half rings 707 are fixed outside the first center column 708, the telescopic column 703 is adjusted to the initial state, the telescopic column 703 is separated from the first center column 708, and the first sliding rail 704 is started to make the two first center columns 708 slide forward synchronously, so that the position of the first center column 708 above the telescopic column 703 is adjusted.
[0109] The probe 11 is wiped before use and cleaned after use by setting the wiping mechanism 7. In the existing device, the probe 11 is mostly exposed for a long time. Before using the probe 11, the coupling agent is applied to the outside of the probe 11. Since the outside of the probe 11 is easy to get dust, the coupling agent is easy to be unevenly distributed and contaminated on the outside of the probe 11. By setting the first box body 701 in the chamber 5, and setting two first center columns 708 in the first box body 701, and opening the first groove 709 with wiping paper or cleaning cloth above the two first center columns 708, the bottom of the probe 11 is wiped, which can wipe the dust on the bottom of the probe 11, and can also wipe the coupling agent on the bottom of the probe 11, and the wiping paper and cleaning cloth are easy to replace manually.
[0110] The application discloses a probe cleaning device.
[0111] The second box body 801 is connected with the telescopic end of the second push rod 6.
[0112] The second electric sliding rail 802 is installed in the inside of the second box body 801, and two second electric sliding rails 802 are symmetrically arranged.
[0113] The second sliding plate 803 is slidably connected in the inside of the second electric sliding rail 802.
[0114] The clamp 804 is installed on the outside of the second sliding plate 803.
[0115] The second center column 805 is arranged in the inside of the clamp 804, and the second recess 806 is arranged in the inside of the second center column 805 and is matched with the lower end of the probe 11.
[0116] The second telescopic rod 807 is installed in the inside of the second box body 801, and two second telescopic rods 807 are symmetrically arranged.
[0117] The second half ring 808 is installed on the outside of the second telescopic rod 807.
[0118] The card seat 809 is installed in the inside of the second box body 801.
[0119] The bottle body 810 is installed in the inside of the card seat 809, and the bottle body 810 is in contact with the second half ring 808. The bottle body 810 is arranged as a squeeze bottle, and the bottle body 810 is used to store the coupling agent.
[0120] Before the coupling agent is applied, the second center column 805 is directly below the bottle body 810, the second telescopic rod 807 is opened, the second telescopic rod 807 drives the second half ring 808 to extrude the bottle body 810, and the coupling agent in the bottle body 810 flows downward into the second groove 806. Then the second electric sliding rail 802 is opened, the second sliding plate 803 drives the clamp 804 and the second center column 805 to move to the position directly below the probe 11. In the process of the probe 11 descending to contact the second groove 806, the probe 11 begins to contact the coupling agent in the second groove 806. Since the second groove 806 is fitted to the lower end of the probe 11, the coupling agent is arranged on the probe 11 in the process of the probe 11 being pressed into the second groove 806, and can be extruded with the second groove 806 to avoid excessive coupling agent adhering to it.
[0121] By setting the smearing mechanism 8, the coupling agent is applied to the bottom of the probe 11. The existing ablation equipment all need to manually smear the coupling agent on the probe 11. When the probe 11 is manually held upward, the coupling agent is easy to slide downward and enter the interior of the probe 11, which can cause damage to the probe 11. By setting the second center column 805 with the second groove 806, the probe 11 contacts the coupling agent in the second groove 806 in the state of being placed downward, thereby smearing the coupling agent for the probe 11.
[0122] Working principle: Before using the equipment, adjust the moving mechanism 4 and the wiping mechanism 7 to adjust the position of the probe 11, so that the probe 11 enters the wiping mechanism 7 to pre-treat the probe 11. Before using the equipment, the first telescopic rod 706 is in an open state, at this time the first center column 708 is between the two first half rings 707, the wiping paper and the cleaning cloth are respectively in the two first grooves 709, and the angle plate 710 is clamped outside the first center column 708 and pressed on the wiping paper or the cleaning cloth.
[0123] Before use, manually pass the probe 11 and the connecting line 9 through the two buckle plates 409, and reserve a length of the connecting line 9 between the body 1 and the buckle plate 409 close to the body 1. Then pass the first annular plate 405 and the second annular plate 407 in turn, and manually rotate the inclined rod 410 and the limiting ball 411 to extrude the limiting ball 411 outside the connecting line 9, so as to fix the position of the connecting line 9 and reserve a length of the connecting line 9 between the first annular plate 405 and the second annular plate 407. Then adjust the clamping assembly 408 to fix the position of the probe 11.
[0124] Before the coupling agent is applied, the first electric sliding rail 704 is opened, the first sliding plate 705 drives the first telescopic rod 706 and the first half ring 707 to move towards the telescopic column 703 until the first center column 708 is directly above the telescopic column 703, the telescopic column 703 is opened and moves upward, the telescopic column 703 is gradually clamped into the bottom of the first center column 708, at this time, the two first telescopic rods 706 are adjusted to the initial state, the first telescopic rod 706 drives the first half ring 707 to move away from the first center column 708, the motor in the motor box 702 is opened, the motor drives the telescopic column 703 to rotate, the telescopic column 703 drives the first center column 708 to rotate, and then drives the cleaning cloth in the first groove 709 to rotate, the cleaning cloth contacts the probe 11 to wipe and clean the probe 11.
[0125] Before the coupling agent is applied, the second center column 805 is directly below the bottle body 810, the second telescopic rod 807 is opened, the second telescopic rod 807 drives the second half ring 808 to press the bottle body 810, and the coupling agent in the bottle body 810 flows downward into the second groove 806. Then the second electric sliding rail 802 is opened, the second sliding plate 803 drives the clamp 804 and the second center column 805 to move towards the probe 11, in the process of the probe 11 descending to contact the second groove 806, the probe 11 starts to contact the coupling agent in the second groove 806, and because the second groove 806 is attached to the lower end of the probe 11, the coupling agent is arranged on the probe 11 in the process of the probe 11 being pressed into the second groove 806, and can cooperate with the second groove 806 to produce a pressing effect on the coupling agent, avoiding too much coupling agent adhering thereto.
[0126] Before the ultrasonic ablation work, according to the position of the user, the first push rod 3 is opened to the corresponding stroke, the first push rod 3 drives the moving mechanism 4 to move towards the user until the probe 11 is directly above the ablation position, then the fourth push rod 406 is adjusted to the corresponding stroke, the fourth push rod 406 drives the clamping assembly 408 and the probe 11 to move downward until the probe 11 contacts the user, then according to the ablation position, the stroke of the first push rod 3 and the fourth push rod 406 is adjusted for ablation treatment.
[0127] After the ablation work is completed, the first electric sliding rail 704 is continuously started, the first sliding plate 705 with the wiping paper starts to move towards the telescopic column 703, and the first sliding plate 705 with the cleaning cloth starts to move away from the telescopic column 703. The first sliding plate 705 drives the first telescopic rod 706 and the first half ring 707 to move towards the telescopic column 703 until the first center column 708 is directly above the telescopic column 703. The telescopic column 703 is opened and moves upwards. The telescopic column 703 is gradually clamped into the bottom of the first center column 708. At this time, the two first telescopic rods 706 are adjusted to the initial state. The first telescopic rod 706 drives the first half ring 707 to move away from the first center column 708. The motor in the motor box 702 is started. The motor drives the telescopic column 703 to rotate. The telescopic column 703 drives the first center column 708 to rotate, and further drives the wiping paper in the first groove 709 to rotate. The wiping paper contacts the probe 11 and wipes and cleans the coupling agent on the probe 11.
[0128] Obviously, the embodiments described are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art and related fields without creative labor should belong to the protection scope of the present application. The structures, devices and operation methods not specifically described and explained in the present application are implemented according to the conventional means in the art, unless specifically described and limited.
Claims
1. A device for ultrasound ablation of hypertrophic myocardium in heart failure, comprising a body (1), characterized in that: Fixing groove (2), the fixing groove (2) is formed on the side of the body (1); The first push rod (3) is installed inside the fixing groove (2); The cavity (5) has two chambers, both of which are located inside the body (1); The second push rod (6) is provided in two parts, and the two second push rods (6) are respectively installed inside the two chambers (5); A connecting wire (9) is installed on the outside of the body (1), and a probe (11) is installed on the outside of the connecting wire (9); The moving mechanism (4) is connected to the first push rod (3). The moving mechanism (4) includes a first annular plate (405). A fourth push rod (406) is installed at the bottom of the first annular plate (405). A second annular plate (407) is installed at the bottom of the fourth push rod (406). A clamping assembly (408) is provided at the bottom of the second annular plate (407). The fourth push rod (406) is used to control the clamping assembly (408) to drive the probe (11) to move in the vertical direction.
2. The ultrasound ablation device for hypertrophic myocardium in heart failure according to claim 1, characterized in that: Also includes: A movable base (10) is mounted on the bottom of the body (1); Wiping mechanism (7), which is connected to the second push rod (6), is used to wipe the probe (11); The coating mechanism (8) is connected to the second push rod (6) and is used to coat the probe (11) with raw materials.
3. The ultrasound ablation device for hypertrophic myocardium in heart failure according to claim 1, characterized in that: The moving mechanism (4) also includes: A crossbar (401) is connected to the telescopic end of the first push rod (3). A buckle plate (409) is installed on the top of the crossbar (401). The buckle plate (409) is set as a semi-circular shape. There are two buckle plates (409) and they are arranged symmetrically. A vertical rod (402) is connected to the outside of the horizontal rod (401); A movable ring (404) is slidably connected to the outside of the vertical rod (402), and the movable ring (404) is connected to the first annular plate (405); The third push rod (403) has its fixed end installed at the bottom of the crossbar (401), and its telescopic end is connected to the movable ring (404).
4. The ultrasound ablation device for hypertrophic myocardium in heart failure according to claim 3, characterized in that: The moving mechanism (4) also includes: Diagonal braces (410), a plurality of which are provided, some of which are installed on the top and bottom of the first annular plate (405), and others of which are installed on the top and bottom of the second annular plate (407); A limiting ball (411) is installed outside the diagonal bar (410) and contacts the connecting line (9).
5. The ultrasound ablation device for hypertrophic myocardium in heart failure according to claim 1, characterized in that: The clamping assembly (408) includes: The first adjusting rod (4081) is installed at the bottom of the second annular plate (407); An outer ring (4082) is connected to the bottom of the first adjusting rod (4081); The second adjusting rod (4083) is installed outside the outer ring (4082), and multiple second adjusting rods (4083) are provided; Inclined plate (4084) is inserted into the outside of the second adjusting rod (4083). The inclined plate (4084) is made of rubber and contacts the probe (11).
6. The ultrasound ablation device for hypertrophic myocardium in heart failure according to claim 2, characterized in that: The wiping mechanism (7) includes: The first housing (701) is connected to the second push rod (6); A motor housing (702) is installed inside the first housing (701), and a motor is installed inside the motor housing (702); Telescopic column (703) is connected to the output end of the motor.
7. The ultrasound ablation device for hypertrophic myocardium in heart failure according to claim 6, characterized in that: The wiping mechanism (7) also includes: The first electric slide rail (704) is installed inside the first housing (701). There are two first electric slide rails (704) arranged symmetrically. The first slide plate (705) is slidably connected to the inside of the first electric slide rail (704), and there are two first slide plates (705); The first telescopic rod (706) is installed on the outside of the first sliding plate (705); The first half-ring (707) is installed on the outside of the first telescopic rod (706); The first central post (708) is in contact with the first semi-ring (707); The first groove (709) is formed inside the first central post (708); Angle plate (710) is provided outside the first central column (708). Multiple angle plates (710) are provided and are evenly distributed.
8. The ultrasound ablation device for hypertrophic myocardium in heart failure according to claim 2, characterized in that: The application mechanism (8) includes: The second housing (801) is connected to the telescopic end of the second push rod (6); The second electric slide rail (802) is installed inside the second housing (801). There are two second electric slide rails (802) arranged symmetrically. The second slide plate (803) is slidably connected inside the second electric slide rail (802); A clamp (804) is mounted on the outside of the second slide plate (803); The second center post (805) is disposed inside the clamp (804), and the second center post (805) has a second groove (806) inside.
9. The ultrasound ablation device for hypertrophic myocardium in heart failure according to claim 8, characterized in that: The application mechanism (8) also includes: The second telescopic rod (807) is installed inside the second housing (801). There are two second telescopic rods (807) arranged symmetrically. The second half-ring (808) is installed on the outside of the second telescopic rod (807); Card holder (809), said card holder (809) is installed inside the second housing (801); Bottle body (810), the bottle body (810) is installed inside the card holder (809), the bottle body (810) is in contact with the second half ring (808).
Citation Information
Patent Citations
Heart failure hypertrophic myocardium and fibrosis ultrasonic ablation equipment
CN119327054A