Adjustable pulse measuring device
By combining a support mechanism and a measuring mechanism, millimeter-wave radar is used to capture wrist vibrations without contact, solving the problems of subjective dependence and error in traditional pulse measurement. This enables accurate measurement of patients who cannot be directly touched, improving measurement accuracy and patient comfort.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2026-03-24
AI Technical Summary
Traditional pulse measurement relies on the doctor's finger touch, which is easily affected by subjective factors and cannot be accurately measured for patients who cannot be directly touched, leading to discomfort and errors.
By combining a support mechanism and a measuring mechanism, millimeter-wave radar is used to capture minute vibrations on the wrist surface without contact. The wrist direction is adjusted by combining a ring rod and a grip rod to achieve non-contact pulse measurement.
It reduces human error, minimizes patient discomfort, and improves measurement accuracy and stability, making it particularly suitable for infants, the elderly, and critically ill patients.
Smart Images

Figure CN224023560U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to pulse measurement technical field, concretely is adjustable pulse measurement device. BACKGROUND
[0002] Pulse (English: Pulse) is the palpable arterial pulsation of human body, human circulatory system is composed of heart, blood vessel, blood, is responsible for the delivery of human oxygen, carbon dioxide, nutrient and waste, blood is extruded to flow into aorta by left ventricle of heart contraction, and then is transmitted to the whole body artery, most of the existing is through the way of personnel pressing pulse to measure the pulse of patient, personnel manual pressing measurement will bring the patient discomfort, and in contact type pulse diagnosis, the measurement error occurs due to pressure, posture change, and in special circumstances, such as skin injury patient, the old and the baby with low immunity, in order to reduce the discomfort and accuracy of patient pulse measurement, we design a kind of adjustable pulse measurement device to solve the above problems. SUMMARY
[0003] In view of the deficiencies of prior art, the utility model provides a kind of adjustable pulse measurement device, solve the traditional Chinese medicine pulse diagnosis to rely on doctor's finger touch, highly dependent on doctor's experience and technique, it is easily influenced by subjective factor Condition, and the problem that pressing mode cannot be carried out pulse measurement when meeting the patient that cannot be directly touched.
[0004] To achieve the above object, the utility model is realized by the following technical scheme: a kind of adjustable pulse measurement device, including support mechanism and the measuring mechanism equipped with in support mechanism upper, the support mechanism includes base, the front side of the top of base is fixedly installed with measurement seat, the top of measurement seat is fixedly installed with wrist support, one side in the inside of measurement seat is provided with sliding slot, the inside of sliding slot is slidably installed with annular rod, the outer wall of annular rod is provided with gear groove, one side in the inside of measurement seat is fixedly installed with adjusting motor, the output of adjusting motor is fixedly installed with the driving gear of gear groove cooperation, one end of annular rod extends to the upper of measurement seat and is fixedly installed with holding rod;
[0005] The measuring mechanism includes lifting seat, the front side of the bottom of lifting seat is fixedly installed with millimeter wave radar used in cooperation with measurement seat, the outer wall of millimeter wave radar is fixedly installed with annular lamp, the top of lifting seat is fixedly installed with processing mainboard used in cooperation with millimeter wave radar, the outer side of the top of lifting seat is fixedly installed with shell, the front surface of shell is fixedly installed with prompter, the front side of the bottom of lifting seat is fixedly installed with glass cover.
[0006] Preferably, the upper front of the shell is fixedly provided with a display screen and operation buttons, and the display screen and operation buttons are fixedly connected with the processing mainboard through wires.
[0007] Preferably, the glass cover is provided with an annular groove on one side, and a flexible sleeve is fixedly installed on the inner wall of the annular groove.
[0008] Preferably, the outer wall of the holding rod is fixedly provided with a holding sleeve.
[0009] Preferably, the upper wall of the measuring seat is fixedly provided with a butt joint plate matched with the glass cover.
[0010] Preferably, the rear side of the top of the base is fixedly provided with two groups of electric push rods, and the output ends of the two groups of electric push rods are fixedly connected with the bottom of the lifting seat.
[0011] The adjustable pulse measuring device has the following beneficial effects compared with the prior art:
[0012] The adjustable pulse measuring device can hold and limit the wrist of the patient through the cooperation between the measuring seat and the millimeter wave radar, the millimeter wave radar can accurately capture the slight vibration of the wrist surface caused by the pulse, avoids the human error in the traditional contact type measurement, reduces the discomfort caused by physical contact, and can measure the patient who cannot be directly touched, and the annular rod and the holding rod can adjust the direction of the wrist, so that the device can quickly switch and select when measuring the pulse through the radial artery and the ulnar artery. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a whole structure schematic view of the utility model;
[0014] Figure 2 It is a measuring structure schematic view of the utility model;
[0015] Figure 3 It is a millimeter wave radar structure schematic view of the utility model;
[0016] Figure 4 It is an annular rod installation structure schematic view of the utility model;
[0017] Figure 5 It is a holding rod adjusting structure schematic view of the utility model.
[0018] In the figure: 1, support mechanism; 101, base; 102, electric push rod; 103, measuring seat; 104, butt joint plate; 105, wrist support; 106, sliding groove; 2, measuring mechanism; 201, lifting seat; 202, shell; 203, display screen; 204, operation button; 205, prompter; 3, glass cover; 301, annular groove; 302, flexible sleeve; 4, millimeter wave radar; 401, annular lamp; 402, processing mainboard; 5, annular rod; 501, gear groove; 502, drive gear; 503, adjusting motor; 504, holding rod; 505, holding sleeve. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0020] Please refer to Figures 1-5 The present application provides a technical solution: an adjustable pulse measuring device, comprising a support mechanism 1 and a measuring mechanism 2 assembled above the support mechanism 1, the support mechanism 1 comprising a base 101, the top of the base 101 being fixedly installed with a measuring seat 103 on the front side, the top of the measuring seat 103 being fixedly installed with a wrist support 105, one side of the inside of the measuring seat 103 being provided with a sliding groove 106, the inside of the sliding groove 106 being slidingly installed with an annular rod 5, the outer wall of the annular rod 5 being provided with a gear groove 501, one side of the inside of the measuring seat 103 being fixedly installed with an adjusting motor 503, the output end of the adjusting motor 503 being fixedly installed with a drive gear 502 used in cooperation with the gear groove 501, one end of the annular rod 5 extending above the measuring seat 103 and being fixedly installed with a holding rod 504, the measuring mechanism 2 comprising a lifting seat 201, the front side of the bottom of the lifting seat 201 being fixedly installed with a millimeter wave radar 4 used in cooperation with the measuring seat 103, the outer wall of the millimeter wave radar 4 being fixedly installed with an annular lamp 401, the top of the lifting seat 201 being fixedly installed with a processing mainboard 402 used in cooperation with the millimeter wave radar 4, the outside of the top of the lifting seat 201 being fixedly installed with a shell 202, the front of the shell 202 being fixedly installed with a prompter 205, the front side of the bottom of the lifting seat 201 being fixedly installed with a glass cover 3.
[0021] Based on the structure of the above setting, the adjustable pulse measuring device is composed of a supporting mechanism 1 and a measuring mechanism 2, wherein the supporting mechanism 1 is a patient's wrist lifting limiting mechanism, and the patient's wrist placing direction can be adjusted by means of the supporting mechanism 1; the measuring mechanism 2 is a patient's pulse detection mechanism, and the patient's pulse can be measured by means of the measuring mechanism 2 in a non-contact manner. Specifically, during the working process, the base 101 can support the bottom of the device, thereby facilitating the placement of the device during operation; the wrist support 105 installed on the top front side of the base 101 can lift and limit the patient's wrist; when the patient places the wrist on the measuring seat 103, the wrist support 105 can protrude and support the wrist; the millimeter wave radar 4 is installed on the bottom front side of the lifting seat 201; the lifting seat 201 can move the millimeter wave radar 4 to the measuring position by descending, so that the millimeter wave radar 4 can capture the slight vibration on the surface of the person's wrist on the measuring seat 103 caused by the pulse, thereby realizing the function of measuring the pulse of the person in a non-contact manner. The device is applied to traditional Chinese medicine pulse diagnosis, and realizes the non-contact collection of pulse signals.Compared with the traditional contact pulse diagnosis method, the detection method of the millimeter wave radar 4 can avoid signal errors caused by pressure, position and posture changes, provide more objective and consistent pulse data, greatly improve the accuracy and stability of pulse diagnosis, and reduce the burden on the patient. It is especially suitable for contact-sensitive patient groups such as infants, the elderly and critically ill patients. The processing mainboard 402 can collect the data measured by the millimeter wave radar 4, and calculate the data measured by the millimeter wave radar 4 through the built-in AFD algorithm. It can decompose the complex pulse signal into multiple basic components and extract the key physiological characteristics (such as frequency, amplitude and waveform shape). These characteristics are important basis for traditional Chinese medicine pulse diagnosis, which can more accurately capture subtle changes in pulse signals and provide reliable data basis for subsequent pulse type classification. The prompter 205 can sound a prompt when the device measures the pulse of the person, and the prompter 205 can sound a prompt when the measurement is started and ended, so that the person can measure the pulse for a single time. The ring-shaped lamp 401 outside the millimeter wave radar 4 can illuminate the patient's wrist on the measurement seat 103, increasing the brightness of the device when measuring the pulse of the person. The holding rod 504 facilitates the hand to hold the holding rod 504 when the person's wrist is placed on the measurement seat 103. When the person's wrist is placed face up inside the measurement seat 103, the millimeter wave radar 4 can measure the pulse of the radial artery. The annular rod 5 is slidingly installed inside the sliding groove 106, and the annular rod 5 can install and support the holding rod 504. The drive gear 502 installed at the output end of the adjusting motor 503 is engaged with the gear groove 501 on the outer wall of the annular rod 5, so that the adjusting motor 503 can drive the annular rod 5 to move in the sliding groove 106 through the drive gear 502 and the gear groove 501. When the annular rod 5 moves, it can adjust the rotation of the holding rod 504, and through the holding rod 504, it can adjust the rotation of the person's hand and wrist, so that the millimeter wave radar 4 can adjust and replace the measurement position of the person's wrist. When the person's radial artery is occluded or other conditions cause the radial artery to beat less obviously, the rotation of the holding rod 504 can adjust and replace the measurement position of the person's wrist, so that the millimeter wave radar 4 can measure the pulse of the person's ulnar artery, increasing the functionality of the device and improving the way the device detects the pulse of the person. When the lifting seat 201 is lowered, it can lower the glass cover 3, so that the glass cover 3 can protect the person's wrist and palm on the measurement seat 103, and can also provide sound insulation when the millimeter wave radar 4 measures the pulse of the person, avoiding external noise affecting the measurement accuracy of the millimeter wave radar 4.
[0022] Further, the upper front of the shell 202 is fixedly installed with a display screen 203 and an operation button 204, and the display screen 203 and the operation button 204 are fixedly connected with the processing mainboard 402 through wires. The display screen 203 can display the data analyzed and calculated by the processing mainboard 402, and the operation button 204 is convenient for medical staff to adjust and operate the device.
[0023] Further, the glass cover 3 is provided with an annular groove 301 on one side, and a flexible sleeve 302 is fixedly installed on the inner wall of the annular groove 301. The annular groove 301 can cooperate with the arm of the person, avoiding the situation that the glass cover 3 collides with the arm of the person when it is lowered, and the flexible sleeve 302 can flexibly contact the arm of the person, thereby increasing the sealing performance of the glass cover 3 when it is closed.
[0024] Further, the outer wall of the holding rod 504 is fixedly installed with a holding sleeve 505. The holding sleeve 505 increases the softness of the outer wall of the holding rod 504, and improves the comfort of the person when holding the holding rod 504.
[0025] Further, the upper wall of the measuring seat 103 is fixedly installed with a butt joint plate 104 used in cooperation with the glass cover 3. The butt joint plate 104 can support and limit the bottom of the glass cover 3 when it is lowered, and can also seal the bottom of the glass cover 3.
[0026] Further, the rear side of the top of the base 101 is fixedly installed with two groups of electric push rods 102, and the output ends of the two groups of electric push rods 102 are fixedly connected with the bottom of the lifting seat 201. The electric push rods 102 can support the lifting seat 201, and the lifting seat 201 can be lowered by the contraction of the electric push rods 102, thereby facilitating the measurement of the pulse of the person by the millimeter wave radar 4.
[0027] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
Claims
1. An adjustable pulse measuring device, characterized by: The utility model provides a millimeter wave radar measuring device, including support mechanism (1) and the assembly in support mechanism (1) top measuring mechanism (2), support mechanism (1) includes base (101), the top front side of base (101) is fixedly installed with measuring seat (103), the top of measuring seat (103) is fixedly installed with wrist support (105), one side in measuring seat (103) inside is provided with sliding slot (106), the inside sliding of sliding slot (106) is installed with annular rod (5), the outer wall of annular rod (5) is provided with gear groove (501), one side in measuring seat (103) inside is fixedly installed with adjusting motor (503), the output of adjusting motor (503) is fixedly installed with the drive gear (502) of gear groove (501) cooperation uses, one end of annular rod (5) extends to the top of measuring seat (103) and is fixedly installed with holding rod (504); Measuring mechanism (2) includes lifting seat (201), the bottom front side of lifting seat (201) is fixedly installed with millimeter wave radar (4) with measuring seat (103) cooperation uses, the outer wall of millimeter wave radar (4) is fixedly installed with annular lamp (401), the top of lifting seat (201) is fixedly installed with processing mainboard (402) with millimeter wave radar (4) cooperation uses, the outer side of lifting seat (201) top is fixedly installed with shell (202), the front of shell (202) is fixedly installed with prompter (205), the bottom front side of lifting seat (201) is fixedly installed with glass cover (3).
2. An adjustable pulse measuring device according to claim 1, characterized in that: The front of shell (202) is fixedly installed with display screen (203) and operating button (204) above, display screen (203) and operating button (204) are all fixedly connected with processing mainboard (402) through wire.
3. An adjustable pulse measuring device according to claim 1, wherein: One side of glass cover (3) is provided with annular groove (301), the inner wall of annular groove (301) is fixedly installed with flexible sleeve (302).
4. An adjustable pulse measuring device according to claim 1, wherein: The outer wall of holding rod (504) is fixedly installed with holding sleeve (505).
5. An adjustable pulse measuring device according to claim 1, wherein: The outer wall of measuring seat (103) is fixedly installed with docking plate (104) above with glass cover (3) cooperation uses.
6. An adjustable pulse measuring device according to claim 1, wherein: The rear side of base (101) top is fixedly installed with two groups of electric push rod (102), and the output of two groups of electric push rod (102) is all fixedly connected with the bottom of lifting seat (201).