A detection device for meridian blockage points and the degree of blockage
By designing a method of working together with the stable coating components in the meridian detection device, the low detection efficiency and the fallout of the smear balls caused by frequent movement during the detection process are solved, and the stable application of normal saline and the improvement of detection efficiency are achieved.
Patent Information
- Application Number
- CN202510336739.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2045-03-21
AI Technical Summary
During the detection process, existing meridian detection devices require frequent movement of sensors, which leads to tension in the examiner's limbs or muscles, affects detection efficiency, and may cause the cotton ball to fall off and interrupt detection.
A device including a monitor and a detector is designed. The detector has a built-in stable coating assembly. The setting of the smear ball and the stabilizing pallet ensures stable application of normal saline. The swaying component and power component are used to adjust the distance and contact between the smear ball and the stabilizing pallet to prevent the smear ball from falling off.
Through the coordinated work of the stable coating component and the components, the stable application of normal saline when the detector moves on the human body surface is achieved, reducing the risk of smear ball falling off and improving the efficiency and accuracy of meridian detection.
Smart Images

Figure CN119837535B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of meridian detection, and particularly relates to a detection device for meridian blockage points and blockage degrees. Background Art
[0002] Meridians are the pathways for qi and blood circulation in the human body. They belong to the internal organs and are distributed throughout the body, connecting various tissues and organs into an organic whole. Jing, refers to the main meridians, like straight paths, which are the main trunks in the meridian system; Luo, refers to the collateral meridians, like a network, which are the fine branches of the meridians. Meridians are the general term for the main meridians and collateral meridians. Meridian blockage means that the qi and blood flow in the meridians is not smooth, which may cause various health problems. Therefore, a meridian detector is needed to detect meridian blockage points and blockage degrees, which can early detect abnormalities in the meridians and help prevent the occurrence of diseases. Currently, when the meridian detector detects meridian blockage points and blockage degrees in the human body, a cotton ball dipped in physiological saline needs to be stuffed into the working cavity of the sensor, and the cotton ball needs to protrude from the edge of the working cavity in the working cavity. Since physiological saline is a good conductive medium, the detection of human meridians often relies on the change of bioelectric signals, and the sensor needs to capture these signals through good contact with the skin. During the detection process, due to the multiplicity of acupoints to be detected, the detection position of the detection device needs to be continuously changed, so that the position of the sensor on the human body needs to be frequently moved. Frequent movement will cause the limbs or muscles of the examiner to be tense, which may lead to unstable contact between the sensor and the skin, resulting in the cotton ball falling off under the influence of external force, affecting the continuity of the cotton ball's application on the human body surface and reducing the detection efficiency of the device for the human meridian condition. Summary of the Invention
[0003] The purpose of the present invention is to provide a detection device for meridian blockage points and blockage degrees to solve the above deficiencies in the technology.
[0004] To achieve the above purpose, the present invention provides the following technical solution: A detection device for meridian blockage points and blockage degrees includes a display and a detector, and the detector is used to detect meridian blockage points and blockage degrees in the human body. One end of the detector is provided with a receiving cavity for placing the cotton ball.
[0005] A stable coating component is used to stably coat the physiological saline inside the detector on the surface of the human body when the detector moves along the surface of the human body. The stable coating component includes an coating ball that is rollingly installed in the accommodating cavity and a limiting ring that is rotatably connected to the accommodating cavity, and the coating ball is in an elliptical structure. The coating ball is used to coat the physiological saline outside it on the surface of the human body. Three stable support plates for limiting the coating ball are installed inside the limiting ring, and the three stable support plates are in an elliptical structure close to the coating ball to ensure that the coating ball moves in the three stable support plates without falling off. A mounting groove is provided on the side of the stable support plate close to the coating ball. A supplementary frame is fixedly connected to the inside of the mounting groove, and the outside of the supplementary frame is in contact with the coating ball for providing physiological saline to the surface of the coating ball. Two inclined interference frames are symmetrically connected to the supplementary frame, and the two interference frames cooperate with the stable support plate to form multi-point restrictions on the outside of the coating ball. A swing component for connection is provided between the limiting ring and the accommodating cavity, and the swing component is used to adjust the tightness between the stable support plate and the coating ball. , ensuring that the smear ball moves flexibly along the surface of the human body, and cooperates with the detector to accurately detect the condition of the human meridians. A folding control component for connection is arranged between the resistance frame and the replenishing frame, and the folding control component is used to make the resistance frame and the smear ball float and match each other, and freely adjust the flow rate of the internal physiological saline flowing on the replenishing frame; and a limiting ring sleeve is arranged on the outside of the smear ball, and there is a distance between the limiting ring and the smear ball for the movement of the stabilizing support plate, ensuring that the stabilizing support plate can move smoothly between the replenishing frame and the smear ball, which is conducive to maintaining good cooperation between the stabilizing support plate and the smear ball, and the outside of the smear ball is wrapped with absorbent cotton, and the inside is a hollow ball. Such material setting can avoid the deformation of the stabilizing support plates when restricting the smear ball, resulting in unstable restriction. Similarly, the outside of the replenishing frame is wrapped with absorbent cotton, and the inside is a hollow arc cylinder. In addition, the smear ball and the replenishing frame are in point contact, not in constant contact, so that the smear ball can intermittently contact with the replenishing frame when rolling, which is used to replenish its own physiological saline.
[0006] Preferably, the rocking assembly includes a centering ring frame fixedly connected to the accommodating cavity and a rocking seat installed at one end of the limiting ring, the top of the stabilizing support plate is fixedly connected to the rocking arm, the top of the rocking seat is provided with a guide groove for the movement of the rocking arm, one end of the centering ring frame is fixedly connected to a limiting column, the top of the rocking arm is provided with a concentric groove matching the limiting column, a power assembly is arranged between the centering ring frame and the limiting ring, and the power assembly is used to drive the limiting ring to rotate; and the number of the rocking seat, guide groove, rocking arm, concentric groove and limiting column is equal to that of the stabilizing support plate, and they are used in pairs, so the power assembly can synchronously drive the three under the action of the rocking assembly. The stabilizing support plate moves and adjusts at the same time, and the swinging assembly is used to drive the fine adjustment of the distance between the stabilizing support plate and the smear ball, so that the degree of restriction between the smear ball and the stabilizing support plate is adjusted at the same time, and the rolling condition of the smear ball can be adjusted according to the needs of the person being tested, ensuring that the physiological saline on the outside of the smear ball can be stably applied to the human body surface, so that the detector can accurately detect the human meridian condition. In addition, the structural setting of the smear ball and the stabilizing support plate can fine-tune the horizontal distance between the smear ball and the stabilizing support plate, so that the rolling direction of the smear ball also changes accordingly, and the contact between the smear ball and the replenishing rack and the resistance rack also changes at the same time, thereby improving the flexibility of the device.
[0007] Preferably, the power assembly includes a power motor fixedly connected to the side of the centering ring frame close to the limiting ring and a power ring installed between the centering ring frame and the limiting ring, the outer part of the power ring is fixedly sleeved with a gear ring, and the gear ring is used to drive the power ring and the limiting ring to rotate along one side of the centering ring frame, one end of the power motor is fixedly connected to a gear meshing with the gear ring, and a swing groove for the movement of the swing arm is formed between the limiting ring and the power ring; and the number of power rings, gear rings, power motors and gears is equal to that of the limiting ring and the centering ring frame, and they are matched with each other, and the power assembly is used to drive the limiting ring to rotate so that it can cooperate with the swing assembly, and is used to synchronously adjust the indirect contact between the three stabilizing pallets and the coating ball. At the same time, the contact between the stabilizing pallet, the resistance frame and the supplementary frame and the coating ball is also synchronously adjusted during the adjustment process, which can reduce unnecessary energy transfer, thereby improving the transmission efficiency of the equipment and reducing the time required for adjustment between the stabilizing pallet, the supplementary frame, the resistance frame and the coating ball.
[0008] Preferably, the folding control assembly includes a folding control frame connected to one end of the resistance frame close to the supplementing frame and a hinge seat fixedly connected to one end of the supplementing frame, the hinge seat is hinged with a hinge plate at one end away from the supplementing frame, a ball frame plate for connection is arranged between the folding control frame and the hinge plate, the inner top wall of the mounting groove is fixedly connected with a second connecting ring, the top of the folding control frame is fixedly connected with a ball position groove, and the top of the ball position groove is slidably connected to the inside of the second connecting ring, the outside of the ball position groove is sleeved with a first connecting ring, and a spring is commonly connected between the first connecting ring and the second connecting ring, a replenishing assembly is arranged in the ball position groove, and the replenishing assembly It is used to replenish the physiological saline solution outside the replenishment rack; and the contact rack and the smear ball move upward or downward along the installation groove under the action of the folding control rack and the ball position groove, so that the contact rack can float when in contact with the smear ball, thereby achieving the restriction between the contact rack and the smear ball without being too tight, ensuring that the smear ball can be in stable contact with the human body surface. In addition, the power component, the contact rack, the folding control rack and the spring can maintain coordinated cooperation, and the degree of contact between the contact rack and the smear ball also changes during the adjustment process between the stable support plate and the smear ball, so that the stable support plate and the contact rack can maintain a more stable restriction on the smear ball.
[0009] Preferably, a ball rack plate is fixedly connected to one side of the folding control frame close to the hinge plate, and a ball position slot for the ball rack plate to move is opened on the top of the hinge plate; and the bottom of the ball rack plate is a spherical structure, and the spherical structure at the bottom of the ball rack plate is located inside the ball position slot, and the ball rack plate and the ball position slot can move left and right without detaching, so that there is a floating effect between the folding control frame and the hinge plate, which is beneficial for the folding control frame to move upward and drive the ball rack plate to move at the same time. During this process, the ball rack plate pulls the ball position slot upward, and the inside of the ball position slot keeps moving with the ball rack plate, so that the hinge plate can keep moving upward synchronously with the folding control frame.
[0010] Preferably, the replenishment assembly includes a supply groove opened on the application ball and the ball position groove and a supply port fixedly connected to the bottom of the ball position groove, and the supply port is used to flow the physiological saline in the supply groove to the outside of the replenishment rack, and the interior of the supply port is communicated with the interior of the ball position groove and the supply groove; and the supply groove can store additional physiological saline, and the physiological saline in the supply groove flows outward through the supply port, and the physiological saline output from the supply port drips on the outside of the replenishment rack, which is used to replenish the physiological saline on the replenishment rack, thereby ensuring the continuity of the application of physiological saline by the application ball and improving the convenience of the detector in detecting meridian conditions.
[0011] Preferably, a blocking groove is further provided at the top of the ball position groove, a blocking ring matching the supply groove and the supply port is inserted into the inside of the blocking groove, and the blocking ring is used to open and close the communication position between the supply port and the supply groove, and a liquid outlet groove communicating with the supply port and the inside of the supply groove is provided on the outside of the blocking ring, and the top of the blocking ring extends to the outside of the blocking groove and is connected to the top of the second connecting ring; when the liquid outlet groove is staggered at a place where it fails to communicate with the supply port and the supply groove, the outside of the blocking ring remains closed to the communication between the supply port and the supply groove, thereby preventing the normal saline in the supply groove from flowing out freely, and when the liquid outlet groove is staggered at a place where it communicates with the supply port and the supply groove, a channel for the normal saline in the supply groove to circulate is formed between the liquid outlet groove, the supply groove and the supply port.
[0012] Preferably, a plug rod is plugged in and connected to the inside of the supply tank, and the plug rod is used to open or close the inside of the supply tank; after the plug rod is pulled upward from the inside of the supply tank, the inside of the supply tank is exposed, making it convenient for the user to replenish the physiological saline inside the supply tank.
[0013] In the above technical solution, the technical effects and advantages provided by the present invention are:
[0014] 1. By setting up the stable coating component, the physiological saline inside the detector can be stably applied to the human body surface when the detector moves along the human body surface, avoiding the situation where the coating ball is affected by external force and falls off due to frequent movement of the detector on the human body, ensuring the continuity of the coating ball on the human body surface, and improving the detection efficiency of the device on the human meridian condition.
[0015] 2. By setting up the smear ball, stabilizing support plate, supplementary rack and resistance rack, the smear ball can be kept restricted at multiple points in the accommodating cavity, which can prevent the frequent movement of the detector from causing the examiner's limbs or muscles to tense up, causing the smear ball to fall off due to external force, and allows the smear ball to move continuously between the accommodating cavity and the human body surface.
[0016] 3. Through the setting of the swing component, the smear ball, the stable support plate and the detector, the distance between the stable support plate and the smear ball can be fine-tuned, so that the degree of restriction between the smear ball and the stable support plate can be adjusted simultaneously, and the rolling condition of the smear ball can be adjusted according to the needs of the person being tested, so that the movement state of the smear ball in contact with the human body surface is changed from rolling to sliding, ensuring that the physiological saline on the outside of the smear ball can be stably applied to the human body surface, so that the detector can accurately detect the condition of the human meridians.
[0017] 4. Through the setting of the power component, the swing component, the stable support plate, the supplementary frame, the smear ball and the resistance frame, the contact between the resistance frame and the supplementary frame and the smear ball can be adjusted synchronously during the adjustment process of the stable support plate, thereby reducing unnecessary energy transfer, thereby improving the transmission efficiency of the equipment, reducing the time required for adjustment between the stable support plate, the supplementary frame, the resistance frame and the smear ball, and improving the convenience of the detector for human meridian detection.
[0018] 5. Through the setting of the power component, folding control component, stable support plate, application ball and resistance frame, the resistance frame can float when in contact with the application ball, so that the resistance frame and the application ball are restricted but not too tight, ensuring that the application ball can be in stable contact with the surface of the human body, ensuring the continuity of the application of the application ball on the surface of the human body, and further improving the efficiency of the device in detecting the meridian conditions of the human body.
[0019] 6. Through the setting of the folding control component, the supply tank, the resistance frame and the replenishing frame, the water output size of the saline solution in the supply tank can be coordinated, so that the saline solution in the supply tank can flow out intermittently, so that the outflowing saline solution can replenish the surface of the replenishing frame, ensuring the continuity of the application of saline solution by the application ball and improving the convenience of the detector in detecting the meridian condition. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.
[0021] Figure 1 It is a structural schematic diagram of the detector of the present invention;
[0022] Figure 2 It is a schematic diagram of the structure of the coating ball and the stabilizing support plate of the present invention;
[0023] Figure 3 For the present invention Figure 2 A local enlarged view of point A in FIG.
[0024] Figure 4 A partial cross-sectional view of a stabilizing support plate of the present invention;
[0025] Figure 5 It is a schematic diagram of the structure of the limiting ring of the present invention;
[0026] Figure 6 It is a structural schematic diagram of the centering ring frame of the present invention;
[0027] Figure 7 An exploded view of the swing assembly of the present invention;
[0028] Figure 8 Schematic diagram of the structure of the interference rack of the present invention;
[0029] Figure 9 Schematic diagram of the structure of the hinge plate of the present invention;
[0030] Figure 10 Exploded view of the folding control assembly of the present invention;
[0031] Figure 11 Exploded view of the supply assembly of the present invention;
[0032] Figure 12 For the present invention Figure 4 Partial enlarged view at position B in;
[0033] Figure 13 Flow chart of the meridian detection of the present invention.
[0034] Explanation of reference numerals:
[0035] 1. Display; 11. Detector; 12. Accommodation cavity;
[0036] 2. Stable coating assembly; 21. Coating ball; 22. Stable support plate; 23. Supplementary rack; 24. Interference rack; 25. Installation groove; 26. Limiting ring;
[0037] 3. Swing assembly; 31. Centering ring frame; 32. Swing seat; 33. Guide groove; 34. Swing rod; 35. Limiting column; 36. Concentric groove;
[0038] 4. Power assembly; 41. Power ring; 42. Tooth ring; 43. Gear; 44. Power motor; 45. Swing groove;
[0039] 5. Folding control assembly; 51. Folding control rack; 52. Hinge seat; 53. Hinge plate; 54. Ball frame plate; 55. Ball position groove; 56. First connecting ring; 57. Spring; 58. Second connecting ring;
[0040] 6. Supply assembly; 61. Supply groove; 62. Blocking groove; 63. Blocking ring; 64. Supply port; 65. Liquid outlet groove; 66. Plug rod. Detailed implementation manners
[0041] In order to enable those skilled in the art to better understand the technical solutions of the present invention, the present invention will be further introduced in detail below with reference to the accompanying drawings.
[0042] The present invention provides as Figures 1 - 13The device for detecting meridian blockage points and blockage degree shown in the figure comprises a display 1 and a detector 11, and a receiving cavity 12 is provided at one end of the detector 11; the specific structures and principles of the detector 11 and the display 1 are prior art, so they are not described in detail in this application; currently, in the detection of meridian blockage points and blockage degree, the process of the detector 11 and the display 1 generally comprises the following steps:
[0043] First, place the detector 11 on the acupuncture points of the human body. When detection is required, start the detector 11. The detector 11 applies physiological saline to the surface of the human body. In addition, the detector 11 releases microbial electricity for detection, and sends the analog signal obtained by real-time detection to the analog-to-digital conversion unit. After analog-to-digital conversion, data composed of digital signals are obtained. After eliminating the error, this data is compared with the data in the database in the data comparison unit. If the error between the collected data and the data in the database is large, it is judged that the data of the human body is normal. If the error between the collected data and the data in the database is within the range, the data is sent to the data storage unit for storage, and the buzzer in the prompt device is started to remind the user to pay attention, and the data transceiver unit sends the data to the diagnosis and treatment unit for remote diagnosis and judgment. The diagnosis and treatment unit analyzes the blockage points and the degree of blockage of the human meridians for medical personnel based on the compared data.
[0044] The stable coating component 2 is used to stably apply the physiological saline inside the detector 11 to the human body surface when the detector 11 moves along the human body surface. The stable coating component 2 includes an application ball 21 that is rollingly installed in the accommodating cavity 12 and a limiting ring 26 that is rotatably connected to the accommodating cavity 12. The application ball 21 has an elliptical structure. The application ball 21 is used to apply the physiological saline outside it to the human body surface. Three stable support plates 22 for limiting the application ball 21 are installed inside the limiting ring 26. The three stable support plates 22 are elliptical structures close to the application ball 21 to ensure that the application ball 21 moves in the three stable support plates 22 without falling off. A mounting groove 25 is provided on the side of the stable support plate 22 close to the application ball 21. A supplement rack 23 is fixedly connected to the inside of the mounting groove 25, and the outside of the supplement rack 23 is connected to the application ball 21. The ball 21 contacts with the smear ball 21, and is used to provide physiological saline to the surface of the smear ball 21. Two inclined abutment frames 24 are symmetrically connected to the replenishing frame 23, and the two abutment frames 24 cooperate with the stabilizing support plate 22 to form multi-point restrictions on the outside of the smear ball 21. A swing component 3 for connection is provided between the limiting ring 26 and the accommodating cavity 12, and the swing component 3 is used to adjust the tightness between the stabilizing support plate 22 and the smear ball 21 to ensure that the smear ball 21 can move flexibly along the surface of the human body, and cooperate with the detector 11 to accurately detect the meridian conditions of the human body. A folding control component 5 for connection is provided between the abutment frame 24 and the replenishing frame 23, and the folding control component 5 is used to float the abutment frame 24 with the smear ball 21, and freely adjust the flow rate of the physiological saline inside it flowing on the replenishing frame 23.
[0045] refer to Figures 1 - 7 As shown, the rocking assembly 3 includes a centering ring frame 31 fixedly connected to the accommodating cavity 12 and a rocking seat 32 installed at one end of the limiting ring 26. The top of the stabilizing support plate 22 is fixedly connected to a rocking rod 34. The top of the rocking seat 32 is provided with a guide groove 33 for the rocking rod 34 to move. One end of the centering ring frame 31 is fixedly connected to a limiting column 35. The top of the rocking rod 34 is provided with a concentric groove 36 that matches the limiting column 35. A power assembly 4 is arranged between the centering ring frame 31 and the limiting ring 26, and the power assembly 4 is used to drive the limiting The ring 26 rotates; the power assembly 4 includes a power motor 44 fixedly connected to the side of the centering ring frame 31 close to the limiting ring 26 and a power ring 41 installed between the centering ring frame 31 and the limiting ring 26, and a gear ring 42 is fixedly sleeved on the outside of the power ring 41, and the gear ring 42 is used to drive the power ring 41 and the limiting ring 26 to rotate along one side of the centering ring frame 31, one end of the power motor 44 is fixedly connected to a gear 43 meshing with the gear ring 42, and a swing groove 45 for the swing arm 34 to move is formed between the limiting ring 26 and the power ring 41.
[0046] refer to Figure 2 , Figure 3 , Figure 4 , Figure 8 , Figure 9 , Figure 10 , Figure 11 and Figure 12 As shown, the folding control assembly 5 includes a folding control frame 51 connected to the end of the abutting frame 24 close to the supplementing frame 23 and a hinge seat 52 fixedly connected to one end of the supplementing frame 23, and the hinge seat 52 is hinged to the end away from the supplementing frame 23. A hinge plate 53 is hingedly connected, and a ball rack plate 54 for connection is arranged between the folding control frame 51 and the hinge plate 53. The inner top wall of the mounting groove 25 is fixedly connected to a second connecting ring 58. The top of the folding control frame 51 is fixedly connected to a ball slot 55, and the top of the ball slot 55 slides The ball slot 55 is movably connected to the inside of the second connecting ring 58, the first connecting ring 56 is sleeved on the outside of the ball slot 55, and a spring 57 is commonly connected between the first connecting ring 56 and the second connecting ring 58, a supply assembly 6 is arranged in the ball slot 55, and the supply assembly 6 is used to supply the physiological saline outside the replenishment rack 23; a ball rack plate 54 is fixedly connected to the side of the folding control rack 51 close to the hinge plate 53, and a ball slot 55 for the ball rack plate 54 to move is provided on the top of the hinge plate 53.
[0047] refer to Figure 4 , Figure 7 , Figure 9 , Figure 10 , Figure 11 and Figure 12As shown in the figure, the supply component 6 includes a supply groove 61 formed in the coating ball 21 and the ball position groove 55, and a supply port 64 fixedly connected to the bottom of the ball position groove 55. The supply port 64 is used to let the physiological saline inside the supply groove 61 flow out to the outside of the supply rack 23. The inside of the supply port 64 is communicated with the inside of the ball position groove 55 and the supply groove 61. A blocking groove 62 is also formed at the top of the ball position groove 55. A blocking ring 63 that cooperates with the supply groove 61 and the supply port 64 is inserted into the inside of the blocking groove 62. The blocking ring 63 is used to open and close the communicating position between the supply port 64 and the supply groove 61. An out-flow groove 65 that is communicated with the inside of the supply port 64 and the supply groove 61 is formed on the outside of the blocking ring 63. The top of the blocking ring 63 extends to the outside of the blocking groove 62 and is connected to the top of the second connecting ring 58. A plug rod 66 is also inserted and connected inside the supply groove 61, and the plug rod 66 is used to open or close the inside of the supply groove 61.
[0048] Through the above technical solution:
[0049] During use;
[0050] First step, when it is necessary to keep the coating ball 21 stable in the accommodation cavity 12 to ensure stable contact between the coating ball 21 and the human body surface, the driving motor 44 is driven to drive the gear 43 to rotate simultaneously. Then, the gear 43 rotates and meshes with the gear ring 42 for transmission. At this time, the gear ring 42 rotates to drive the limiting ring 26 to rotate simultaneously, and the limiting ring 26 rotates to drive the swing seat 32 to rotate. The swing seat 32 rotates to move the guiding groove 33 formed on one side of it along the outside of the swing rod 34. Moreover, the guiding groove 33 moves and forms a resistance with the swing rod 34, which is used to push the swing rod 34 to swing downward along the swing groove 45. As the swing rod 34 moves, the concentric groove 36 formed on one side of it rotates along the outside of the limiting column 35. Then, the swing rod 34 moves in a circular motion along the outside of the limiting column 35. Subsequently, the swing rod 34 moves to push the stable support plate 22 to approach the outside of the coating ball 21 inward along the limiting ring 26, which is used to keep the coating ball 21 stable in the stable support plate 22 and the accommodation cavity 12, and avoid the situation that the coating ball 21 falls off due to the influence of external forces caused by the frequent movement of the detector 11 on the human body, and ensure the continuity of the coating of the coating ball 21 on the human body surface.
[0051] In the second step, when the smear ball 21 rolls on the surface of the human body and contacts the resistance frame 24, the outer part of the smear ball 21 is indirectly in contact with the resistance frame 24 through the rolling of the smear ball 21, and then the outer part of the smear ball 21 contacts the resistance frame 24 and pushes the resistance frame 24 to move upward. At this time, the resistance frame 24 moves upward to drive the folding control frame 51 to move upward, and the folding control frame 51 moves upward to drive the ball rack plate 54 to move upward at the same time. In this process, the ball rack plate 54 pulls the ball position slot 55 upward, and the inside of the ball position slot 55 keeps moving with the ball rack plate 54, so that the ball rack plate 54 pulls the hinge plate 53 upward when moving, which is used to drive the hinge plate 53 to keep moving upward synchronously with the folding control frame 51, and the part of the hinge plate 53 in the hinge seat 52 rotates Adjustment, and the simultaneous upward movement of the folding control frame 51 and the hinged plate 53 can push the ball position slot 55 to move upward along the inside of the second connecting ring 58. As the ball position slot 55 moves, it drives the first connecting ring 56 to move upward, and the spring 57 is squeezed between the first connecting ring 56 and the second connecting ring 58. Then the spring 57's own elasticity gives a downward thrust to one side of the first connecting ring 56, generating a reaction force on the first connecting ring 56. Then the first connecting ring 56 moves downward to push the folding control frame 51, and then the folding control frame 51 pushes the contact frame 24 to contact the application ball 21, so that the contact frame 24 and the application ball 21 maintain a floating effect, so that the contact frame 24 and the application ball 21 are restricted but not too tight, ensuring that the application ball 21 can stably contact the human body surface.
[0052] In the third step, when the ball position slot 55 moves upward along the inside of the second connecting ring 58, the movement of the ball position slot 55 drives the supply slot 61 to move at the same time, and then the inside of the blocking slot 62 moves upward along the outside of the blocking ring 63. At this time, the liquid outlet slot 65 and the place where the supply port 64 and the supply slot 61 are connected are staggered, so that a channel for the flow of physiological saline inside the supply slot 61 is formed between the liquid outlet slot 65, the supply slot 61 and the supply port 64, and then the physiological saline moves along the inside of the supply slot 61 to the inside of the liquid outlet slot 65, and the liquid outlet slot 65 transports the physiological saline inside it to the inside of the supply port 64, and then the supply port 64 discharges the physiological saline inside it to the outside, so that the discharged physiological saline drips on the outside of the replenishing rack 23, which is used to replenish the physiological saline outside the replenishing rack 23.
[0053] The above only describes certain exemplary embodiments of the present invention by way of illustration. Undoubtedly, a person skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. A device for detecting meridian blockage points and blockage degrees, comprising a display (1) and a detector (11), wherein a receiving cavity (12) is provided at one end of the detector (11), and wherein: A stable coating component (2) is used to stably coat the physiological saline inside the detector (11) on the surface of the human body when the detector (11) moves along the surface of the human body. The stable coating component (2) comprises a coating ball (21) that is rollingly mounted in the accommodating chamber (12) and a limiting ring (26) that is rotatably connected to the accommodating chamber (12). The coating ball (21) is in an elliptical structure. The coating ball (21) is used to coat the physiological saline outside the coating ball (21) on the surface of the human body. Three stable support plates (22) for limiting the coating ball (21) are installed inside the limiting ring (26). The three stable support plates (22) are in an elliptical structure on the side close to the coating ball (21) to ensure that the coating ball (21) moves inside the three stable support plates (22) without being separated. A mounting groove (25) is provided on the side close to the coating ball (21). A supplementing frame (23) is fixedly connected to the inside of the mounting groove (25). The outside of the supplementing frame (23) is connected to the coating ball (21). The smear ball (21) is in contact with the smear ball (21) and is used to provide physiological saline to the surface of the smear ball (21). The replenishing frame (23) is symmetrically connected with two inclined abutment frames (24), and the two abutment frames (24) cooperate with the stabilizing support plate (22) to form multiple-point restrictions on the outside of the smear ball (21). A swinging assembly (3) for connection is provided between the limiting ring (26) and the accommodating cavity (12), and the swinging assembly (3) is used to adjust the tightness between the stabilizing support plate (22) and the smear ball (21), so as to ensure that the smear ball (21) can move flexibly along the surface of the human body and cooperate with the detector (11) to accurately detect the meridian conditions of the human body. A folding control assembly (5) for connection is provided between the abutment frame (24) and the replenishing frame (23), and the folding control assembly (5) is used to float the abutment frame (24) and the smear ball (21) and freely adjust the flow rate of the physiological saline inside the abutment frame (24) flowing on the replenishing frame (23); The swing assembly (3) comprises a centering ring frame (31) fixedly connected to the accommodating cavity (12) and a swing seat (32) mounted on one end of the limiting ring (26); the top of the stabilizing support plate (22) is fixedly connected to a swing rod (34); the top of the swing seat (32) is provided with a guide groove (33) for the swing rod (34) to move; one end of the centering ring frame (31) is fixedly connected to a limiting column (35); the top of the swing rod (34) is provided with a concentric groove (36) matching the limiting column (35); a power assembly (4) is arranged between the centering ring frame (31) and the limiting ring (26), and the power assembly (4) is used to drive the limiting ring (26) to rotate; The folding control assembly (5) comprises a folding control frame (51) connected to one end of the abutting frame (24) close to the supplementing frame (23) and a hinge seat (52) fixedly connected to one end of the supplementing frame (23); an end of the hinge seat (52) away from the supplementing frame (23) is hingedly connected to a hinge plate (53); a ball rack plate (54) for connection is provided between the folding control frame (51) and the hinge plate (53); a second connecting ring (58) is fixedly connected to the inner top wall of the mounting groove (25); The top of the folding control frame (51) is fixedly connected to a ball slot (55), and the top of the ball slot (55) is slidably connected to the inside of a second connecting ring (58). The outside of the ball slot (55) is sleeved with a first connecting ring (56), and a spring (57) is commonly connected between the first connecting ring (56) and the second connecting ring (58). A replenishment assembly (6) is arranged in the ball slot (55), and the replenishment assembly (6) is used to replenish physiological saline outside the replenishment frame (23).
2. A device for detecting meridian blockage points and blockage degrees according to claim 1, characterized in that: The power assembly (4) comprises a power motor (44) fixedly connected to a side of a centering ring frame (31) close to a limiting ring (26) and a power ring (41) installed between the centering ring frame (31) and the limiting ring (26); a gear ring (42) is fixedly sleeved on the outside of the power ring (41), and the gear ring (42) is used to drive the power ring (41) and the limiting ring (26) to rotate along one side of the centering ring frame (31); one end of the power motor (44) is fixedly connected to a gear (43) meshing with the gear ring (42); and a swing groove (45) for the swing rod (34) to move is formed between the limiting ring (26) and the power ring (41).
3. A device for detecting meridian blockage points and blockage degrees according to claim 1, characterized in that: A ball rack plate (54) is fixedly connected to one side of the folding control frame (51) close to the hinge plate (53), and a ball position groove (55) for the ball rack plate (54) to move is provided on the top of the hinge plate (53).
4. A device for detecting meridian blockage points and blockage degrees according to claim 3, characterized in that: The replenishment assembly (6) comprises a replenishment groove (61) provided on the smear ball (21) and the ball position groove (55), and a replenishment port (64) fixedly connected to the bottom of the ball position groove (55), wherein the replenishment port (64) is used to flow the physiological saline in the replenishment groove (61) to the outside of the replenishment rack (23), and the interior of the replenishment port (64) is communicated with the interior of the ball position groove (55) and the replenishment groove (61).
5. The device for detecting meridian blockage points and blockage degrees according to claim 4, characterized in that: The top of the ball position groove (55) is also provided with a blocking groove (62), the inside of which is inserted a blocking ring (63) that matches the supply groove (61) and the supply port (64), and the blocking ring (63) is used to open and close the communication position between the supply port (64) and the supply groove (61), and the outside of the blocking ring (63) is provided with a liquid outlet groove (65) that communicates with the supply port (64) and the inside of the supply groove (61), and the top of the blocking ring (63) extends to the outside of the blocking groove (62) and is connected to the top of the second connecting ring (58).
6. A device for detecting meridian blockage points and blockage degrees according to claim 5, characterized in that: The interior of the supply groove (61) is also pluggably connected to a plug rod (66), and the plug rod (66) is used to open or close the interior of the supply groove (61).
Citation Information
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