Auricular point bean pressing auxiliary device
Through the integrated design of the ear acupoint pressing auxiliary device, the pressure is quantified and the probe rod and tweezers are integrated, which solves the problem of difficulty in quantifying pressure and frequent tool replacement in the prior art, and improves the accuracy and operating efficiency of acupoint detection.
Patent Information
- Application Number
- CN202421230055.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-31
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-05-31
AI Technical Summary
In the existing ear acupoint pressing operation, the ear acupoint probe cannot quantify the pressure requirements, and requires frequent replacement of tools, resulting in complex operation and low efficiency.
An integrated ear acupoint pressing auxiliary device is designed to integrate the probe rod and tweezers, quantify the pressure through the telescopicity of the probe, and use scale marks when exploring acupoints to reduce tool replacement.
It improves the accuracy and operation efficiency of acupoint exploration, reduces the steps of tool replacement, and simplifies the operation process.
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Figure CN223158600U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of traditional Chinese medicine physiotherapy instruments, and particularly relates to an auricular point pressing auxiliary device. Background Art
[0002] Auricular point pressing is a traditional Chinese medicine external treatment method that uses pill-shaped objects such as semen vaccariae and semen raphani to stick and press on the acupoints or reaction points on the auricle, and applies a little pressure to make the patient's ear feel stimulation reactions such as soreness, numbness, distension, and pain, so as to play the role of dredging meridians, promoting qi and blood circulation, regulating the yin and yang of the body, and achieving the therapeutic purpose; currently, the auxiliary tools required for auricular point pressing include auricular point exploration rods, forceps, auricular point stickers, etc. (refer to the appendix Figure 10 ). The auricular point exploration rod is a rod-shaped body, and a spherical pressing part is provided at the end of the rod. The specific auricular point pressing method is as follows: the user first applies a certain pressure to the corresponding part of the auricle with the auricular point exploration rod to explore the acupoints or reaction points. After detecting the acupoints or reaction points, use forceps to pick up a piece of adhesive sticker with a pill-shaped object from the auricular point sticker, align the pill-shaped object with the detected acupoints or reaction points, and stick and press the adhesive sticker firmly.
[0003] However, in the actual operation process, it is found that the above method has the following problems: (1) When using the auricular point exploration rod to find acupoints or reaction points, it is necessary to keep the pressure applied to the corresponding part of the auricle relatively consistent as much as possible to find the acupoints or reaction points more accurately. However, the current auricular point exploration rod cannot quantify the pressure applied to the corresponding part of the auricle, and has high requirements for the user's technique and operation experience; (2) When performing auricular point pressing operations, it is necessary to constantly replace auxiliary tools such as auricular point exploration rods and forceps for operation, which causes trouble to the user and reduces the operation efficiency; therefore, a new type of auricular point pressing auxiliary device is needed to solve the above problems. Summary of the Invention
[0004] To solve the problems mentioned in the above background art, the utility model provides an integrated auricular point pressing auxiliary device, which integrates the auricular point exploration rod for exploring acupoints or reaction points and the forceps for picking up auricular point stickers. When performing auricular point pressing operations, there is no need to replace tools for operation, which improves work efficiency. At the same time, the pressure applied by the auricular point exploration rod to the corresponding part of the auricle can be quantified by the telescopic length of the auricular point exploration rod, which improves the accuracy of exploring acupoints or reaction points.
[0005] The utility model adopts the following technical scheme: an auricular point pressing auxiliary device, comprising a rod body, a rod head, a probe, a probe ball, a clip body and a first spring. The probe ball is fixedly installed at the front end of the probe, and the clip body is installed at the rear end of the rod body for picking up auricular point stickers;
[0006] An installation hole is formed in the front end face of the rod body. The first spring is sleeved in the installation hole. The rod head is of a hollow structure. The probe passes through the inner cavity of the rod head and can telescopically move back and forth along the inner cavity of the rod head. The rear end of the rod head is detachably installed in the installation hole through a thread. Two ends of the first spring respectively abut against the rear end face of the probe and the end wall of the installation hole. A scale is arranged along the outer length direction of the probe.
[0007] Further, a baffle is fixedly arranged at the rear end of the probe. The outer diameter of the baffle is larger than the inner diameter of the inner cavity of the rod head. Two ends of the first spring respectively abut against the rear end face of the baffle and the end wall of the installation hole.
[0008] Further, the clip body includes a first connecting plate, a clamping plate and a connecting column. The two clamping plates are elastic and arranged oppositely. One end of each clamping plate is fixedly connected to the rear end face of the first connecting plate. The connecting column is fixedly arranged on the front end face of the first connecting plate. A thread is arranged on the outer side of the connecting column. A threaded hole is formed in the rear end face of the rod body. The connecting column is detachably connected to the threaded hole in a threaded manner.
[0009] Further, the clamping plate is of a trapezoidal structure and is inclined so that its rear ends approach each other.
[0010] Further, the auricular-plaster auxiliary device further includes a pressing connecting piece, a second spring and a marking pen core. A cavity is arranged at the rear end of the rod body. A partition plate is arranged between the cavity and the installation hole. A passage through hole is arranged on the partition plate. A strip-shaped groove communicating with the cavity is formed along the length direction of the side part of the rod body. The pressing connecting piece is installed in the cavity and can slide back and forth along the cavity. At least a part of the side part of the pressing connecting piece extends out of the strip-shaped groove. The second spring is installed in the cavity. One end of the second spring abuts against the pressing connecting piece, and the other end abuts against the partition plate. The rear end of the marking pen core is detachably connected to the pressing connecting piece through a connecting structure. A channel hole for the marking pen core to pass through is formed along the length direction of the probe. The channel hole extends out of the front end of the probe ball.
[0011] Further, the pressing connecting piece includes a connecting block, a second connecting plate and a pressing plate. The connecting block is fitted and installed in the cavity and can slide back and forth along the cavity. One end of the second connecting plate is fixedly connected to the side part of the connecting block, and the other end extends out of the strip-shaped groove. The pressing plate is fixedly connected to the other end of the second connecting plate.
[0012] Further, the connecting structure includes a connecting frustum arranged on the front end face of the connecting block. The rear end of the marking pen core is clamped on the connecting frustum. Or, the connecting structure includes a groove formed on the front end face of the connecting block. The groove includes a tapered hole and a straight hole which are connected in sequence from front to back. A plurality of clamping blocks are arranged in a circumferentially uniform manner in the straight hole. The rear end of the marking pen core is clamped in the connecting cavity surrounded by the plurality of clamping blocks.
[0013] Further, the marking pen core includes a pen tube for storing the marking liquid and a pen tip disposed at the front end of the pen barrel, and the pen tip can discharge the marking liquid in the pen tube.
[0014] Further, the distance between the front end of the marking pen core and the front end of the probe ball is greater than the stroke length of the first spring, and the distance between the front end of the marking pen core and the front end of the probe ball is less than the stroke length of the second spring.
[0015] When the auricular point pressing auxiliary device in the utility model patent explores acupoints or reaction points, the probe ball can apply force to the corresponding part of the auricle, so that the probe retracts relative to the rod head. Thus, the operator can quantify the applied pressure by the telescopic length of the probe and the corresponding scale change outside the probe. When exploring acupoints or reaction points, the pressure applied to the corresponding part of the auricle can be kept relatively consistent as much as possible, improving the accuracy of acupoint or reaction point exploration; at the same time, the clip body is integrated at the rear side of the rod body. When performing auricular point pressing operation, there is no need to replace items such as auricular probes and forceps for operation, which brings convenience to the user and improves the operation efficiency. Description of the Drawings
[0016] Att Figure 1 is a three-dimensional schematic diagram of the overall structure of the auricular point pressing auxiliary device in Embodiment 1 of the utility model.
[0017] Att Figure 2 is a cross-sectional schematic diagram of the overall structure of the auricular point pressing auxiliary device in Embodiment 1 of the utility model.
[0018] Att Figure 3 is an exploded schematic diagram of the disassembled components of the overall structure of the auricular point pressing auxiliary device in Embodiment 1 of the utility model.
[0019] Att Figure 4 is a schematic diagram of the structures of the probe 3 and the probe ball 4 in Embodiment 1 of the utility model.
[0020] Att Figure 5 is a three-dimensional schematic diagram of the overall structure of the auricular point pressing auxiliary device in Embodiment 2 of the utility model.
[0021] Att Figure 6 is a cross-sectional schematic diagram of the overall structure of the auricular point pressing auxiliary device in Embodiment 2 of the utility model.
[0022] Att Figure 7 is an exploded schematic diagram of the disassembled components of the overall structure of the auricular point pressing auxiliary device in Embodiment 2 of the utility model.
[0023] Att Figure 8 is a cross-sectional structure schematic diagram of the rod body 1 in Embodiment 2 of the utility model and schematic diagrams of the structures and installation positions of the pressing connecting piece 7 and the second spring 8.
[0024] AttFigure 9 It is a schematic structural diagram of the probe 3 and the probe ball 4 in Embodiment 2 of the present utility model.
[0025] Appendix Figure 10 It is a physical diagram of the commonly used auricular point probing rod, forceps and auricular point paste for auricular point pressing and bean embedding at present.
[0026] Explanation of the reference numerals is as follows: rod body 1, mounting hole 11, cavity 12, partition 13, aisle through hole 14, strip groove 15, screw hole 16, rod head 2, probe 3, baffle 31, scale 32, channel hole 33, probe ball 4, clamp body 5, first connecting plate 51, clamping plate 52, connecting column 53, first spring 6, pressing connecting member 7, connecting block 71, second connecting plate 72, pressing plate 73, groove 74, clamping block 75, second spring 8, marking pen core 9. Specific implementation manners
[0027] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings. The following further describes the content of the utility model in conjunction with the drawings: Embodiment 1
[0028] Referring to the appendix of the specification Figures 1-3 , an auricular point pressing and bean embedding auxiliary device includes a rod body 1, a rod head 2, a probe 3, a probe ball 4, a clamp body 5 and a first spring 6. A mounting hole 11 is provided on the front end face of the rod body 1, and the first spring 6 is sleeved in the mounting hole 11. The initial state of the first spring 6 is a stretched state.
[0029] Referring to the appendix of the specification Figures 2-3 , the rod head 2 is a hollow structure, the probe 3 can pass through the inner cavity of the rod head 2 and can telescopically move back and forth along the inner cavity of the rod head 2. Threads are provided on the outer side of the rear end of the rod head 2 and the inner side of the front end of the mounting hole 11. The rear end of the rod head 2 is detachably installed with the mounting hole 11 through the thread.
[0030] Referring to the appendix of the specification Figure 4, the exploration ball 4 is fixedly installed at the front end of the probe 3. A baffle 31 is fixedly provided at the rear end of the probe 3. The outer diameter of the baffle 31 is greater than the inner diameter of the inner cavity of the rod head 2, preventing the probe 3 from falling out of the inner cavity of the rod head 2 and at the same time restricting the foremost position of the probe 3 extending out of the rod head 2. After the rod body 1 and the rod head 2 are installed, both ends of the first spring 6 abut against the rear end face of the baffle 31 and the end wall of the mounting hole 11 respectively. A scale 32 for marking the telescopic length of the probe 3 is arranged along the length direction of the probe 3. The scale 32 includes scale lines and corresponding scale values; when the operator holds the rod body 1, aligns the exploration ball 4 with the corresponding part of the auricle and applies pressure to the rod body 1, at this time the first spring 6 is compressed from the stretched state, the probe 3 retracts into the rod head 2, and the pressure is transmitted to the exploration ball 4 through the first spring 6 and the probe 3 and acts on the corresponding part of the auricle. The length of the probe 3 retracting relative to the rod head 2 can be converted into the relative force standard applied by the operator through the change of the scale 32;
[0031] For example, when no pressure is applied to the rod body 1, the front end face of the rod head 2 is aligned with the 0 scale line outside the probe 3. When gradually increasing pressure is applied to the rod body 1 and the probe 3 retracts until the front end face of the rod head 2 is aligned with the a scale line outside the probe 3, and when the acupuncture points or reaction points on the patient's auricle show stimulation reactions such as soreness, numbness, distension, and pain and feedback that no more force can be applied, then the force applied by the operator is quantified as a, and the force tolerated by the patient is a, making the pressure applied by the operator have a relatively specific quantification standard. When the operator explores the acupuncture points or reaction points on the auricle, the pressing force can be maintained relatively evenly (the quantification standard is the force corresponding to the a scale line) for exploration, and there is no need to continuously adjust the pressing force through experience or the patient's real-time feedback. When exploring the acupuncture points or reaction points on the auricle, maintaining the force corresponding to the a scale line can quickly find the acupuncture points or reaction points, saving time and effort and having high efficiency.
[0032] When using the auricular plaster pressing auxiliary device, the operator holds the rod body 1. In order to prevent the rod body 1 from sliding during use, anti-slip lines are evenly arranged along the length direction of the outer side surface of the rod body 1.
[0033] Refer to the attached instructions Figures 1-3 , the clip body 5 includes a first connecting plate 51, a clamping plate 52 and a connecting column 53. The two clamping plates 52 are elastic and arranged oppositely. One end of them is fixedly connected to the rear end face of the first connecting plate 51. The clamping plate 52 is of a trapezoidal structure and is inclined so that its rear ends are close to each other;
[0034] The connecting column 53 is fixedly arranged on the front end face of the first connecting plate 51. A thread is provided on the outer side of the connecting column 53. A threaded hole 16 is opened on the rear end face of the rod body 1. The connecting column 53 is detachably threadedly connected in the threaded hole 16, realizing the detachable installation of the clip body 5 at the rear end of the rod body 1.
[0035] Anti-slip patterns are provided at corresponding positions on the outer sides of the two clamping plates 52. After the acupoints or reaction points corresponding to the auricle are found through the probe ball 4, the operator does not need to change tools. The operator only needs to turn the device around. The operator can hold the rod body 1 with the palm of the hand and pinch the anti-slip pattern parts of the two clamping plates 52 with two fingers to achieve the clamping and pressing of the auricular plaster.
[0036] The usage method of the auricular-plaster pressing auxiliary device in this embodiment is as follows: The operator fixes the patient's auricle with one hand, holds the rod body 1 with the other hand, and contacts the probe ball 4 with the corresponding part of the auricle, and applies pressure to the rod body 1. At this time, the first spring 6 is compressed, and the probe 3 retracts into the rod head 2. The pressure is transmitted through the first spring 6 and the probe 3 to the probe ball 4 and acts on the corresponding part of the auricle. Through the stimulation reactions such as soreness, numbness, distension, and pain that appear in the corresponding part of the auricle, a certain acupoint or reaction point on the auricle is found, or a certain acupoint or reaction point on the auricle is found through the commonly used auricular probe and the corresponding method at present. Using this acupoint or reaction point as the pressure test point, align the probe ball 4 with this acupoint or reaction point, and apply gradually increasing pressure to the rod body 1. When the probe 3 retracts until the front end face of the rod head 2 is aligned with the a scale line outside the probe 3 and the patient has obvious stimulation reactions such as soreness, numbness, distension, and pain and feedbacks that no more force can be applied, then the force applied by the operator is quantified as a, and the force tolerated by the patient is a.
[0037] When exploring subsequent acupoints or reaction points, directly apply pressure to the rod body 1 to retract the probe 3 until the front end face of the rod head 2 is aligned with the a scale line outside the probe 3, and ask the patient about the stimulation reaction. If the patient feedbacks obvious stimulation reactions such as soreness, numbness, distension, and pain and feedbacks that no more force can be applied, then this point is an acupoint or reaction point; otherwise, it is not an acupoint or reaction point.
[0038] After the acupoint or reaction point is detected, since the probe ball 4 forms pressure on the skin, there will be indentations on the skin. The operator turns the device around. The operator can hold the rod body 1 with the palm of the hand and pinch the anti-slip pattern parts of the two clamping plates 52 with two fingers, pick up a piece of adhesive plaster with a pellet from the auricular plaster, align the pellet with the skin indentation part, and press and fix the adhesive plaster on the auricle.
[0039] Embodiment 2
[0040] The inventor found that when the auricular-plaster pressing auxiliary device in Embodiment 1 is used, since it is marked by skin indentations after the acupoint or reaction point is found, on the one hand, the skin indentation marks are not obvious, and at the same time, the skin indentations generally recover quickly and the acupoints or reaction points are lost. On the other hand, it is necessary to quickly press the adhesive plaster with a pellet after finding one acupoint or reaction point to prevent the loss of the acupoint or reaction point after the skin indentation recovers. Therefore, in view of the above problems,
[0041] Refer to the attached drawings of the specification Figures 5-9, and based on Embodiment 1, an auricular plaster pressing assisting device includes a rod body 1, a rod head 2, a probe 3, a probe ball 4, a clamp body 5, a first spring 6, a pressing connecting piece 7, a second spring 8, and a marking pen core 9.
[0042] Refer to the accompanying Figure 8 , a cavity 12 is provided at the rear end of the rod body 1, a partition 13 is provided between the cavity 12 and the mounting hole 11, a passage through hole 14 connecting the cavity 12 and the mounting hole 11 is provided on the partition 13, and the aperture of the passage through hole 14 is larger than the outer diameter of the marking pen core 9. A strip-shaped groove 15 communicating with the cavity 12 is formed along the length direction of the side of the rod body 1. The pressing connecting piece 7 is installed in the cavity 12 and can slide back and forth along the cavity 12, and its side extends out of the strip-shaped groove 15. The second spring 8 is installed in the cavity 12. The initial state of the second spring 8 is a stretched state. One end of it abuts against the front end face of the pressing connecting piece 7, and the other end abuts against the rear end face of the partition 13.
[0043] Refer to the accompanying Figure 9 , a channel hole 33 for the marking pen core 9 to pass through is formed along the length direction of the probe 3, and the channel hole 33 extends out of the probe ball 4. The mounting hole 11, the cavity 12, the channel hole 33, and the passage through hole 14 together form a channel for the installation and expansion of the marking pen core 9.
[0044] Refer to the accompanying Figure 8 , the pressing connecting piece 7 includes a connecting block 71, a second connecting plate 72, and a pressing plate 73. The connecting block 71 is fitted and installed in the cavity 12 and can slide back and forth along the cavity 12. One end of the second connecting plate 72 is fixedly connected to the side of the connecting block 71, and the other end extends out of the strip-shaped groove 15. The pressing plate 73 is fixedly connected to the other end of the second connecting plate 72, and anti-slip lines are provided on the pressing plate 73.
[0045] Refer to the accompanying Figure 6 , 7 , 8, the rear end of the marking pen core 9 is detachably connected to the pressing connecting piece 7 through a connecting structure. The marking pen core 9 includes a cylindrical pen tube for storing marking liquid and a pen tip provided at the front end of the pen rod. The pen tip can discharge the marking liquid in the pen tube. The marking pen core 9 can directly select an existing ballpoint pen core or a marker pen core that can be installed into the channel formed by the mounting hole 11, the cavity 12, the channel hole 33, and the passage through hole 14 together;
[0046] The connecting structure includes a connecting frustum arranged on the front end face of the connecting block 71. The outer side of the connecting frustum is a conical surface. The rear end of the cylindrical pen tube is clamped on the connecting frustum to achieve plug-in fixation, similar to the connection method between a syringe and a needle. Or, the connecting structure includes a groove 74 opened on the front end face of the connecting block 71. The groove 74 includes a tapered hole and a straight hole that are connected from front to back. The tapered hole is used to guide the rear end of the cylindrical pen tube into the straight hole. A plurality of clamping blocks 75 are arranged in a circumferential and uniform manner in the straight hole, that is, the plurality of clamping blocks 75 surround a circle with an inner diameter less than or equal to the outer diameter of the cylindrical pen tube. The rear end of the cylindrical pen tube is clamped in the circular connecting cavity surrounded by the plurality of clamping blocks 75;
[0047] Refer to the attached drawings of the specification Figure 8 , one end of the plurality of clamping blocks 75 facing the marking pen core 9 is an inclined surface, and the slope of this inclined surface is the same as the slope of the tapered hole, and this inclined surface is connected to the inclined surface of the tapered hole, so that after the rear end of the cylindrical pen tube is guided into the straight hole by the tapered hole, it enters the circular connecting cavity surrounded by the plurality of clamping blocks 75 along the inclined surfaces of the plurality of clamping blocks 75, and finally, the rear end of the cylindrical pen tube is tightly inserted into the circular connecting cavity surrounded by the plurality of clamping blocks 75 with force.
[0048] The inventor found that when exploring acupoints or reaction points, the probe 3 will retract relative to the rod head 2. Then, when retracting, the marking pen core 9 cannot extend from the front end of the probe ball 4. Only after finding the acupoint or reaction point can the marking pen core 9 extend from the front end of the probe ball 4 for marking; therefore, the distance between the front end of the marking pen core 9 and the front end of the probe ball 4 is greater than the stroke length of the first spring 6, and the distance between the front end of the marking pen core 9 and the front end of the probe ball 4 is less than the stroke length of the second spring 8;
[0049] After detecting the acupoint or reaction point, position the probe ball 4 at this position, and drive the marking pen core 9 to move by sliding and pressing the connecting piece 7, and the marking pen core 9 extends out from the through hole 33 in the middle of the probe ball 4, and the marking pen core 9 makes a mark at the corresponding position.
[0050] The usage method of the auricular-plaster pressing auxiliary device in this embodiment is as follows: An operator fixes the patient's auricle with one hand, holds the rod body 1 with the other hand, makes the probe ball 4 contact the corresponding part of the auricle, and applies pressure to the rod body 1. At this time, the first spring 6 is compressed, and the probe 3 retracts into the rod head 2. The pressure is transmitted to the probe ball 4 through the first spring 6 and the probe 3 and acts on the corresponding part of the auricle. An acupuncture point or reaction point on the auricle is found through the stimulation reactions such as soreness, numbness, distension, and pain that appear on the corresponding part of the auricle, or an acupuncture point or reaction point on the auricle is found through the commonly used auricular probe and the corresponding method at present. Taking this acupuncture point or reaction point as the pressure test point, align the probe ball 4 with this acupuncture point or reaction point, and apply gradually increasing pressure to the rod body 1. When the probe 3 retracts until the front end face of the rod head 2 is aligned with the a scale line outside the probe 3 and the patient has obvious stimulation reactions such as soreness, numbness, distension, and pain and feedbacks that no more force can be added, then the force applied by the operator is quantified as a, and the force tolerated by the patient is a;
[0051] When exploring subsequent acupuncture points or reaction points, directly apply pressure to the rod body 1 to make the probe 3 retract until the front end face of the rod head 2 is aligned with the a scale line outside the probe 3, and ask the patient about the stimulation reaction. If the patient feedbacks that there are obvious stimulation reactions such as soreness, numbness, distension, and pain and feedbacks that no more force can be added, then this point is an acupuncture point or reaction point; otherwise, it is not an acupuncture point or reaction point;
[0052] After detecting the acupuncture point or reaction point, the operator positions the probe ball 4 at this position, drives the pressing connecting piece 7 to slide forward with the thumb, compresses the second spring 8, drives the marking pen core 9 to move forward until the pen tip of the marking pen core 9 extends out from the channel hole 33 in the middle of the probe ball 4, and applies the marking liquid at the corresponding position of the acupuncture point or reaction point as an intuitive marking point. Release the pressing connecting piece 7, and under the resilience of the second spring 8, the pressing connecting piece 7 returns to its original position, driving the marking pen core 9 to retract into the rod head 2;
[0053] After all the acupuncture points or reaction points on the auricle that need auricular-plaster pressing are marked by the above method, the operator turns the device around. The operator can hold the rod body 1 with the hand and pinch the anti-slip pattern parts of the two clamping plates 52 with two fingers, pick up a piece of adhesive patch with a pill from the auricular plaster, align the pill with the skin marking point, and stick and press the adhesive patch on the auricle. Repeat the above operation until all the marked point parts are stuck and pressed with pills;
[0054] Obviously, components of the above auricular-plaster pressing auxiliary device and the corresponding method can be modified and / or added without departing from the scope and field of the present utility model.
[0055] It is also clear that although the present utility model has described the auricular-plaster pressing auxiliary device in detail, those skilled in the art will surely be able to obtain many other equivalent forms of auricular-plaster pressing auxiliary devices and corresponding methods, which have the features as described in the claims, and thus are all within the scope of protection defined thereby.
Claims
1. An auricular plaster therapy assisting device, characterized in that: It includes a rod body (1), a rod head (2), a probe (3), a probe ball (4), a clamping body (5) and a first spring (6). The probe ball (4) is fixedly installed at the front end of the probe (3). The clamping body (5) is installed at the rear end of the rod body (1) and is used for clamping auricular point stickers. An installation hole (11) is formed in the front end face of the rod body (1). The first spring (6) is sleeved in the installation hole (11). The rod head (2) is of a hollow structure. The probe (3) passes through the inner cavity of the rod head (2) and can telescopically move back and forth along the inner cavity of the rod head (2). The rear end of the rod head (2) is detachably installed in the installation hole (11) by means of a thread. Two ends of the first spring (6) respectively abut against the rear end face of the probe (3) and the end wall of the installation hole (11). A scale (32) is arranged along the outer length direction of the probe (3).
2. The auricular-plaster-assisted device according to claim 1, wherein: A baffle (31) is fixedly arranged at the rear end of the probe (3). The outer diameter of the baffle (31) is larger than the inner diameter of the inner cavity of the rod head (2). Two ends of the first spring (6) respectively abut against the rear end face of the baffle (31) and the end wall of the installation hole (11).
3. The auricular-plaster-assisted device according to claim 1, characterized in that: The clamping body (5) includes a first connecting plate (51), clamping plates (52) and connecting columns (53). The two clamping plates (52) are elastic and arranged oppositely. One end of each clamping plate is fixedly connected to the rear end face of the first connecting plate (51). The connecting columns (53) are fixedly arranged on the front end face of the first connecting plate (51). Threads are arranged on the outer sides of the connecting columns (53). A threaded hole (16) is formed in the rear end face of the rod body (1). The connecting columns (53) are detachably connected to the threaded hole (16) by means of threads.
4. The auricular-plaster assisting device according to claim 3, wherein: The clamping plates (52) are of a trapezoidal structure and are inclined so that their rear ends are close to each other.
5. The auricular-plaster assistant device according to claim 1, wherein: The auricular point pressing auxiliary device further includes a pressing connecting piece (7), a second spring (8) and a marking pen core (9). A cavity (12) is arranged at the rear end of the rod body (1). A partition plate (13) is arranged between the cavity (12) and the installation hole (11). A passage through hole (14) is arranged on the partition plate (13). A strip-shaped groove (15) communicating with the cavity (12) is formed along the side length direction of the rod body (1). The pressing connecting piece (7) is installed in the cavity (12) and can slide back and forth along the cavity (12). At least a part of the side of the pressing connecting piece extends out of the strip-shaped groove (15). The second spring (8) is installed in the cavity (12). One end of the second spring abuts against the pressing connecting piece (7), and the other end abuts against the partition plate (13). The rear end of the marking pen core (9) is detachably connected to the pressing connecting piece (7) through a connecting structure. A channel hole (33) for the marking pen core (9) to pass through is formed along the length direction of the probe (3). The channel hole (33) extends out of the front end of the probe ball (4).
6. The auricular plaster pressing auxiliary device according to claim 5, characterized in that: The pressing connecting member (7) includes a connecting block (71), a second connecting plate (72) and a pressing plate (73). The connecting block (71) is fitted and installed in the cavity (12) and can slide back and forth along the cavity (12). One end of the second connecting plate (72) is fixedly connected to the side of the connecting block (71), and the other end extends out of the strip-shaped groove (15). The pressing plate (73) is fixedly connected to the other end of the second connecting plate (72).
7. The auricular-plaster auxiliary device according to claim 5, characterized in that: The connecting structure includes a connecting frustum provided on the front end face of the connecting block (71), and the rear end of the marking pen core (9) is clamped on the connecting frustum. Or, the connecting structure includes a groove (74) formed on the front end face of the connecting block (71). The groove (74) includes a tapered hole and a straight hole that are connected from front to back. A plurality of clamping blocks (75) are arranged in a circumferential and uniform manner in the straight hole, and the rear end of the marking pen core (9) is clamped in the connecting cavity surrounded by the plurality of clamping blocks (75).
8. The auricular plaster therapy assisting device according to claim 5, wherein: The marking pen core (9) includes a pen tube for storing the marking liquid and a pen tip provided at the front end of the pen rod. The pen tip can discharge the marking liquid in the pen tube.
9. The auricular-plaster assisting device according to claim 5, wherein: The distance from the front end of the marking pen core (9) to the front end of the probe ball (4) is greater than the stroke length of the first spring (6), and the distance from the front end of the marking pen core (9) to the front end of the probe ball (4) is less than the stroke length of the second spring (8).