Abdominal acupoint positioning and marking device
By integrating a rangefinder and a skateboard into an abdominal acupoint positioning marker device, the problem of complex tool switching in existing technologies has been solved, achieving accurate acupoint positioning and a convenient measurement process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2026-03-06
AI Technical Summary
Existing acupoint positioning devices require frequent tool switching during measurement and positioning marking, which increases operational complexity and may affect positioning accuracy.
An abdominal acupoint positioning and marking device was designed, which integrates a rangefinder, a sliding plate, and a marking pen. The rangefinder measures the width of the finger, and the scale and marking holes on the locator enable precise acupoint positioning. The magnetic fixation and scale display improve the convenience and accuracy of the measurement.
It significantly improves the accuracy and convenience of acupoint location, simplifies the operation process, reduces the hassle of tool replacement, and improves work efficiency.
Smart Images

Figure CN223969285U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of auxiliary tools for traditional Chinese medicine nursing, and more specifically, to an abdominal acupoint positioning marker device. Background Technology
[0002] In traditional Chinese medicine nursing practice, accurate location of abdominal acupoints is crucial for treatment effectiveness. Traditional acupoint location methods rely heavily on the experience and feel of medical staff, which is inherently subjective and prone to error. To improve the accuracy and convenience of acupoint location, several acupoint location devices have emerged on the market.
[0003] Currently, in the process of locating acupoints in Traditional Chinese Medicine (TCM), it is usually necessary to first measure the width of the patient's fingers, known as "body cun," and then use this measurement as a reference to determine the specific location of the acupoint. However, existing acupoint location devices require a separate measuring tool to obtain the patient's finger width before marking the location. After obtaining the dimensional data, it is used as a reference before the acupoint location device is used to determine the location of the acupoint on the patient's abdomen, and finally, a punctuation pen is used for marking. However, during the use of acupoint location devices, medical staff need to frequently switch between measuring and marking tools, which not only increases the complexity of the operation but may also affect the accuracy of the location.
[0004] In view of this, it is indeed necessary to provide a technical solution to the above problems. Utility Model Content
[0005] The technical problem to be solved by this utility model is to provide an abdominal acupoint positioning marker device in view of the above-mentioned defects of the prior art.
[0006] The technical solution adopted by this utility model to solve its technical problem is:
[0007] An abdominal acupoint positioning and marking device is constructed, comprising a locator and a marking pen. The locator has a reference point hole, a first marking hole movable in the Y-axis direction with the reference point hole as the origin, and a second marking hole movable in the X-axis direction. The end of the marking pen has a groove along its length, and a sliding plate is slidably disposed in the groove. The outer end of the sliding plate has a mounting block, and a space for placing a finger can be formed between the mounting block and the end of the marking pen. A rangefinder is provided at the end of the marking pen to calculate the distance between the pen and the mounting block by measuring the round-trip time of the signal, thereby measuring the width of the finger in the space.
[0008] As an improvement to the abdominal acupoint positioning marking device, the end of the punctuation pen and the mounting block are respectively provided with a first magnetic block and a second magnetic block with opposite magnetic properties, so as to magnetically fix the mounting block and the punctuation pen together.
[0009] As an improvement to the abdominal acupoint positioning and marking device, the rangefinder is a laser rangefinder or an infrared rangefinder.
[0010] As an improvement to the abdominal acupoint positioning marking device, the marking pen is equipped with a display screen, which is used to display the length dimensions measured by the rangefinder.
[0011] As an improvement to the abdominal acupoint positioning marker device, the slide plate is also provided with a first scale, which can be used to display the length of the slide plate pulled out of the groove, so as to measure the width of the fingers in the accommodating space.
[0012] As an improvement to the abdominal acupoint positioning marking device, the punctuation pen has a mounting hole on its outer side that communicates with the slide groove, and a retaining shaft is provided in the mounting hole, which can limit the sliding plate by pressing the retaining shaft.
[0013] As an improvement to the abdominal acupoint positioning marking device, the locator includes a base and a first positioning cylinder, the first positioning cylinder being slidable along the length of the base; a mounting plate is provided on the positioning cylinder, and a second positioning cylinder is slidable along the length of the mounting plate; the reference point hole, the first marking hole, and the second marking hole are respectively located on the base, the first positioning cylinder, and the second positioning cylinder; the base plate and the mounting plate are respectively provided with a second scale and a third scale to measure the distance between the reference point hole and the first marking hole, and the distance between the first marking hole and the second marking hole.
[0014] As an improvement to the abdominal acupoint positioning marker device, the base has a movable groove along its length, and the first positioning cylinder slides within the movable groove.
[0015] As an improvement to the abdominal acupoint positioning marker device, the mounting plate is rotatably connected to the first positioning cylinder.
[0016] As an improvement to the abdominal acupoint positioning marker device, a handle is provided at the end of the base plate.
[0017] The beneficial effects of this utility model are as follows: by measuring the width of the finger with a rangefinder to complete the body measurement, and then moving the first and second marking holes to the corresponding positions according to the finger width and the scale on the locator, the acupoints are marked accurately with a punctuation pen. By combining the measurement of finger width and the locator, the location of abdominal acupoints can be accurately found, which significantly improves the accuracy of positioning.
[0018] Furthermore, the rangefinder, slide, and mounting part for measuring finger width are integrated into the punctuation pen, allowing users to measure finger width anytime, anywhere using only the punctuation pen, eliminating the hassle of using additional measuring tools and significantly improving the convenience of measurement. After measuring finger width, the same punctuation pen can be used directly for acupoint marking without the need to change tools. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the utility model will be further described below in conjunction with the accompanying drawings and embodiments. The drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0021] Figure 2 This is a top view of the present invention;
[0022] Figure 3 This is a three-dimensional structural diagram of the punctuation pen of this utility model;
[0023] Figure 4 This is one of the three-dimensional structural diagrams of the punctuation pen's slide plate in an outward-pulled-out state;
[0024] Figure 5 This is the second three-dimensional structural diagram of the punctuation pen of this utility model with the slide plate in an outward pulling state;
[0025] Figure 6 This is a cross-sectional view of a portion of the structure of this utility model;
[0026] Figure 7 This is an enlarged view of section A of this utility model.
[0027] In the diagram: 1. Positioner; 11. Reference point hole; 12. First marking hole; 13. Second marking hole; 14. Base plate; 141. Movable groove; 142. Handle; 15. First positioning cylinder; 16. Mounting plate; 17. Second positioning cylinder; 2. Marking pen; 21. Slide groove; 22. Slide plate; 23. Mounting block; 24. Rangefinder; 25. Display screen; 26. Mounting hole; 27. Snap pin; 3. First scale; 4. Second scale; 5. Third scale; 6. First magnetic block; 7. Second magnetic block; 8. Accommodation space. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, a clear and complete description will be provided below in conjunction with the technical solutions in the embodiments of this utility model. Obviously, the described embodiments are some, but not all, embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0029] like Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown, an abdominal acupoint positioning and marking device includes a locator 1 and a marking pen 2. The locator 1 has a reference point hole 11, a first marking hole 12 that can move in the Y-axis direction with the reference point hole 11 as the origin, and a second marking hole 13 that can move in the X-axis direction. The tail end of the marking pen 2 has a groove 21 along the length direction. A slide plate 22 is slidably arranged in the groove 21. The outer end of the slide plate 22 has a mounting block 23. A accommodating space 8 for placing a finger can be formed between the mounting block 23 and the tail end of the marking pen 2. A rangefinder 24 is provided at the tail end of the marking pen 2. The distance between the pen 24 and the mounting block 23 is calculated by the round-trip time of the signal, thereby measuring the width of the finger in the accommodating space 8.
[0030] Specifically, during use, the slide plate 22 is pulled outwards, and a gap exists between the mounting block 23 and the end of the punctuation pen 2, forming a receiving space 8. The user places the finger to be measured in the receiving space 8, with the finger perpendicular to the punctuation pen 2. After the fingers on both sides of the receiving space 8 contact the end of the punctuation pen 2 and the mounting block 23 respectively, the length of the receiving space 8 is the width of the finger to be measured. Then, the rangefinder 24 is activated, and the rangefinder 24 measures the straight-line distance between the end of the punctuation pen 2 and the mounting block 23 to obtain the width of the finger to be measured. The body measurement is then completed. The finger width dimensions specifically include: the distance between the two transverse creases on the inner side of the middle finger when the middle joint is flexed is one inch; the width of the thumb joint is one inch; with the index, middle, ring, and little fingers together, the width of the four fingers measured at the transverse crease of the middle joint of the middle finger is 3 inches; and the width of the index and middle fingers together is 1.5 inches. Based on the finger width measured by the punctuation pen 2, with the reference point hole 11 aligned with the navel on the abdomen as the origin, the first marking hole 12 and the second marking hole 13 are moved to find the corresponding acupoints; finally, the punctuation pen 2 is used to mark the location.
[0031] During marking, the locator 1 aligns the reference point hole 11 with the navel on the abdomen, establishes a coordinate axis with the reference point hole 11 as the origin, and sets the coordinate direction to... Figure 2The standard indication in the upper right corner is used as the reference. Since both the first marking hole 12 and the second marking hole 13 are located below the reference point hole 11, and the first marking hole 12 can move along the Y-axis with the reference point hole 11 as the origin, while the second marking hole 13 can move along the X-axis, the acupoints located in the third and fourth quadrants of the coordinate axis can be marked and located by inserting the marking pen 2 into the first marking hole 12 and the second marking hole 13.
[0032] For example, when the acupoint to be marked is located directly below the reference point hole 11, the first marking hole 12 is moved along the Y-axis until it coincides with the acupoint. The acupoint is then marked by inserting the punctuation pen 2 into the first marking hole 12. When the acupoint to be marked is located in the third or fourth quadrant of the coordinate axis, the first marking hole 12 is first moved along the Y-axis until it aligns with the acupoint. Then, the second marking hole 13 is moved along the X-axis until it coincides with the acupoint. The acupoint is then marked by inserting the punctuation pen 2 into the second marking hole 13.
[0033] This invention measures finger width using a rangefinder 24 to complete body-scale measurement. Then, based on the finger width and the scale on the locator 1, the first marking hole 12 and the second marking hole 13 are moved to their corresponding positions. Finally, a punctuation pen 2 is used for precise acupoint marking. Combining finger width measurement with the locator 1, the location of abdominal acupoints can be accurately found, significantly improving positioning accuracy. Furthermore, by integrating the rangefinder 24, slide plate 22, and mounting part onto the punctuation pen 2, users can measure finger width anytime, anywhere using only the punctuation pen 2, eliminating the need for additional measuring tools and significantly improving measurement convenience. After measuring finger width, the same punctuation pen 2 can be used directly for acupoint marking without changing tools, simplifying the operation process and improving work efficiency. This multi-purpose design enhances the overall practicality of the product.
[0034] In some embodiments of this example, the end of the punctuation pen 2 and the mounting block 23 are respectively provided with a first magnetic block 6 and a second magnetic block 7 with opposite magnetic properties, so as to magnetically fix the mounting block 23 and the punctuation pen 2 together. Specifically, when it is not necessary to measure the width of the finger, the first magnetic block 6 and the second magnetic block 7 can be tightly fixed together with the mounting block 23 and the punctuation pen 2 by utilizing the principle of mutual magnetic attraction; this ensures the firmness of the mounting block 23 at the end of the punctuation pen 2 and effectively prevents the slide plate 22 and the mounting block 23 from shaking or falling off during the marking process of using the punctuation pen 2.
[0035] Simply place the mounting block 23 near the end of the punctuation pen 2 for quick and easy fixation; similarly, it can be easily disassembled by gently separating the two, improving ease of use and making operation smoother and more efficient. Furthermore, the magnetic fixation method is not dependent on a specific connection structure or size and does not affect the end face of the punctuation pen 2 or the end face of the mounting block 23, thus adapting well to fingers of different sizes and shapes.
[0036] In some embodiments of this example, the rangefinder 24 is a laser rangefinder or an infrared rangefinder.
[0037] The laser rangefinder calculates the distance to the target object by emitting a laser beam and measuring the time it takes for the laser beam to travel from emission to reflection back from the target object; the infrared rangefinder utilizes the characteristics of infrared light, emitting infrared light and receiving infrared light reflected back from the target object, and measures the distance by calculating the round-trip time of the infrared light; the target object is the mounting block 23.
[0038] In some embodiments of this example, the punctuation pen 2 is equipped with a display screen 25, which displays the length dimension measured by the rangefinder 24. Specifically, the display screen 25 on the punctuation pen 2 is connected to the rangefinder 24. When the rangefinder 24 transmits a signal and receives the reflected signal, it calculates the round-trip time of the signal to determine the distance between itself and the mounting block 23. The rangefinder 24 transmits the calculated distance data to the display screen 25, which then displays the length dimension instantly. Users can intuitively see the finger width dimension measured by the rangefinder 24, improving the readability and accuracy of the measurement. The instant feedback from the display screen 25 helps users quickly confirm the measurement results, improving efficiency and convenience.
[0039] In some embodiments of this example, the skateboard 22 is also provided with a first scale 3, which can display the length of the skateboard 22 pulled out from the slide groove 21, so as to measure the width of the fingers in the accommodating space 8.
[0040] Specifically, the first scale 3 on the skateboard 22 indicates the length of the skateboard 22 pulled out relative to the slide groove 21. When the skateboard 22 is pulled out of the slide groove 21, the first scale 3 on the skateboard 22 will gradually become visible as the skateboard 22 moves. The user can measure the width of the finger within the accommodating space 8 by observing the first scale 3 visible on the skateboard 22, that is, the length of the skateboard 22 pushed out by the finger. This measurement method can measure the finger width simply and intuitively, without relying on the electronic rangefinder 24 or additional measuring tools. This positioning marking device is equipped with both the first scale 3 and the rangefinder 24. The user can choose to measure the desired finger width using either the first scale 3 or the rangefinder 24. Furthermore, even if the rangefinder 24 has no power or malfunctions, the user can still measure the finger width using the first scale 3.
[0041] In other embodiments, only one of the rangefinder 24 and the first scale 3 may be provided as needed. For example, if cost savings are required, only the first scale 3 can be provided on the slide plate 22 to achieve basic measurement functions.
[0042] In some embodiments of this example, such as Figure 6 and Figure 7 As shown, the punctuation pen 2 has a mounting hole 26 on its outer side that communicates with the slide groove 21. A retaining shaft 27 is provided in the mounting hole 26, and the slide plate 22 can be limited by pressing the retaining shaft 27.
[0043] Specifically, the mounting hole 26 on the outside of the punctuation pen 2 communicates with the slide groove 21, and the retaining shaft 27 is set in the mounting hole 26 and can slide within the mounting hole 26. When the slide plate 22 is pulled out, and the finger to be measured is placed into the receiving space 8 formed by the tail end of the punctuation pen 2 and the mounting block 23 and perpendicular to the punctuation pen 2, the user can press the retaining shaft 27 to squeeze the slide plate 22 and generate friction, thereby limiting the sliding of the slide plate 22. This ensures that the slide plate 22 will not easily slide when subjected to external force, thus guaranteeing the stability of the measurement. Through the limiting effect of the retaining shaft 27 on the slide plate 22, it is ensured that the slide plate 22 will not slide when the user reads the first scale 3 on the slide plate 22, thereby improving the accuracy of the measurement. This allows the user to remove their finger from the receiving space 8 without worrying about the slide plate 22 sliding and to easily read the scale, improving the convenience of use.
[0044] In some embodiments of this example, the positioner 1 includes a base and a first positioning cylinder 15, which can slide along the length of the base; a mounting plate 16 is provided on the positioning cylinder, and a second positioning cylinder 17 can slide along the length of the mounting plate 16; a reference point hole 11, a first marking hole 12, and a second marking hole 13 are respectively located on the base, the first positioning cylinder 15, and the second positioning cylinder 17; a base plate 14 and a mounting plate 16 are respectively provided with a second scale 4 and a third scale 5 to measure the distance between the reference point hole 11 and the first marking hole 12 and the distance between the first marking hole 12 and the second marking hole 13.
[0045] Specifically, the locator 1, through the arrangement of the base, the first positioning cylinder 15, and the second positioning cylinder 17, forms a movable and adjustable structure. The first positioning cylinder 15 can slide along its length on the base, and the distance between the reference point hole 11 and the first marker hole 12 can be measured through the second scale 4 on the base. The second positioning cylinder 17 can slide along its length on the mounting plate 16 on the first positioning cylinder 15, and the distance between the first marker hole 12 and the second marker hole 13 can be measured through the third scale 5 on the mounting plate 16. Users can determine the specific positions of the reference point hole 11, the first marker hole 12, and the second marker hole 13 on the abdominal acupoints by adjusting the positions of the first positioning cylinder 15 and the second positioning cylinder 17 as needed. The arrangement of the second scale 4 and the third scale 5 allows users to accurately measure and record the distances between the reference point hole 11, the first marker hole 12, and the second marker hole 13, thereby improving the accuracy of positioning.
[0046] In some embodiments of this example, the base has a movable groove 141 along its length, and the first positioning cylinder 15 slides within the movable groove 141. Specifically, the base has a movable groove 141 along its length, and the first positioning cylinder 15 is disposed within the movable groove 141, allowing the first positioning cylinder 15 to slide freely along the length of the movable groove 141. By sliding the first positioning cylinder 15 within the movable groove 141, the position of the first marking hole 12 relative to the reference point hole 11 can be precisely adjusted, ensuring positioning accuracy.
[0047] In some embodiments of this example, the mounting plate 16 and the first positioning cylinder 15 are rotatably connected. Specifically, the mounting plate 16 can rotate with the first positioning cylinder 15 as the center point, and the mounting plate 16 can rotate by an angle of 180 degrees. By rotating the mounting plate 16 by 180 degrees, the second positioning cylinder 17 is switched between the third quadrant and the fourth quadrant, so that the second marking hole 13 can coincide with the acupoints on the left and right sides of the substrate 14, thereby marking and positioning.
[0048] In some embodiments of this example, a handle 142 is provided at the end of the substrate 14. The handle 142 allows the user to easily hold the locator 1, facilitating the location and marking of acupoints; by holding the handle 142, the user can control the locator 1 more stably, reducing shaking and errors during operation and improving the accuracy of positioning.
[0049] It should be understood that those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.
Claims
1. An abdominal acupoint positioning marker device, characterized in that, The application relates to a positioner and a marking pen, wherein the positioner is provided with a reference point hole, a first marking hole movable in the Y-axis direction with the reference point hole as the original point, and a second marking hole movable in the X-axis direction; a sliding groove is formed in the length direction of the tail end of the marking pen, a sliding plate is arranged in the sliding groove, the outer end of the sliding plate is provided with a mounting block, a containing space for fingers is formed between the mounting block and the tail end of the marking pen, a distance measurer is arranged at the tail end of the marking pen, the distance between the mounting block and the tail end of the marking pen is calculated through the round trip time of signals, and then the width of the fingers in the containing space is measured; the tail end of the marking pen and the mounting block are respectively provided with a first magnetic block and a second magnetic block with opposite magnetism, so that the mounting block and the marking pen are magnetically fixed; the distance measurer is a laser distance measuring sensor or an infrared distance measuring sensor. The positioner comprises a base plate and a first positioning cylinder, the first positioning cylinder is slidable in the length direction of the base plate, and the end of the base plate is provided with a handle; the base plate is provided with a movable groove in the length direction, and the first positioning cylinder is slidable in the movable groove; the positioning cylinder is provided with a mounting plate, a second positioning cylinder is slidable in the length direction of the mounting plate, and the reference point hole, the first marking hole and the second marking hole are respectively arranged on the base plate, the first positioning cylinder and the second positioning cylinder; The base plate and the mounting plate are respectively provided with a second scale and a third scale, so as to measure the distance between the reference point hole and the first marking hole and the distance between the first marking hole and the second marking hole; the sliding plate is further provided with a first scale, the length of the sliding plate pulled out of the sliding groove can be displayed through the first scale, so as to measure the width of the fingers in the containing space; The marking pen is provided with a mounting hole communicated with the sliding groove on the outside, a clamping shaft is arranged in the mounting hole, and the sliding plate can be limited through pressing the clamping shaft.
2. The abdominal acupoint positioning marker device according to claim 1, characterized in that, The marking pen is provided with a display screen, and the display screen is used for displaying the length size measured by the distance measurer.
3. The abdominal acupoint positioning marker device according to claim 1, characterized in that, The mounting plate and the first positioning cylinder are rotatably connected.