Novel anesthesia monitor
By installing a detection mechanism and circuit on the anesthesia monitor, and using a metal detection shell and wires attached to the patient's body, the problem of insufficient body displacement monitoring after the patient awakens is solved, enabling timely alerts to reduce collision injuries.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2026-03-27
AI Technical Summary
Existing anesthesia monitors cannot promptly monitor body movement after the patient awakens, leading to potential safety hazards such as injuries caused by hand or leg collisions.
A detection mechanism is installed on the anesthesia monitor. The metal detection shell and wires are attached to the patient's body. The detection circuit and buzzer alert medical staff to the patient's movement, reducing the risk of collision injuries.
It enables timely alerts to medical staff regarding patient movement during anesthesia, reducing the likelihood of injuries caused by collisions.
Smart Images

Figure CN224039207U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to medical monitoring equipment technical field, especially a novel anesthesia monitor. BACKGROUND
[0002] Anesthesia monitor is the instrument that monitors patient life index and physiological parameter in clinical anesthesia process, and anesthesia monitor can provide patient life index for anesthetist in the mode of data and graphics, and provides the basis for diagnosis and corresponding operation of anesthetist. The function of anesthesia monitor mainly includes the monitoring of oxygenation, the monitoring of respiration, the monitoring of circulation and the monitoring of body temperature, the monitoring of oxygenation includes the monitoring of blood oxygen saturation, the monitoring of respiration includes the monitoring of respiratory frequency, the monitoring of end-tidal carbon dioxide under general anesthesia, the monitoring of circulation includes the monitoring of blood pressure, the detection of heart rate, the monitoring of pulse and the monitoring of electrocardiogram, and anesthesia monitor is the cornerstone of guaranteeing anesthesia related safety, and protects the safety of patient in the anesthesia process.
[0003] Although the existing anesthesia monitor meets the needs to a certain extent, but due to the limitation of structure, there are still the following technical defects. Specifically, when the relevant anesthetist does not observe the relevant data displayed by the anesthesia monitor in time due to various reasons after the patient is anesthetized or in the anesthesia process, the patient is not relatively in time Corresponding processing after waking up, there is a certain safety hazard (for example, the patient shakes the hand movement too much, causes the indwelling needle and other articles to collide, and the skin is damaged, or the hand or leg after fracture collides with other foreign matters and is damaged). In summary, it is particularly necessary to provide an anesthesia monitor capable of monitoring the body displacement signal of the patient. CONTENT OF THE UTILITY MODEL
[0004] In order to overcome the disadvantages of the existing anesthesia monitor due to the limitation of structure, as described in the background, the utility model provides a novel anesthesia monitor based on the anesthesia monitor body, in application, the anesthetist can conveniently fix the displacement monitoring detection mechanism on the skin of the relevant part of the patient's body, when the relevant part of the patient moves forward or backward, left or right during the anesthesia process and after the anesthesia, the medical staff can be prompted in the first time through the sound of the buzzer, and the medical staff can timely corresponding disposal, reduce the probability of the relevant part of the patient's body being injured due to collision.
[0005] The technical scheme adopted by the utility model to solve the technical problems is:
[0006] The utility model provides a novel anesthetic monitor, including anesthetic monitor body still has detection mechanism, detection circuit, detection mechanism includes metal detection shell, insulating apron, detects metal ball, and one metal wire is installed on the upper end of metal ball, and one wire upper end is installed on the upper end of apron, the apron is installed on the detection shell, and the metal ball is located in the detection shell inside, and the double -sided adhesive tape has in the detection shell lower outer end, detection circuit installs in the electric control box of anesthetic monitor body, and the other metal wire is on the outside of detection shell, and the detection shell of detection mechanism is perpendicular distribution and is bonded on the patient's body part through the double -sided adhesive tape, signal output end of detection mechanism and signal input end of detection circuit electrically connected.
[0007] Further, the detection shell of each detection mechanism is a hollow structure.
[0008] Further, the metal wire is spiral and has elasticity.
[0009] Further, the metal ball outside end and the detection shell inside end are spaced apart.
[0010] Further, the detection circuit includes an electrically connected resistor and a transistor, and a buzzer, one end of the resistor and the base of the transistor are connected, and the collector of the transistor and the negative power input end of the buzzer are connected.
[0011] Compared with the prior art, the utility model has the beneficial effects that: the utility model is based on anesthetic monitor body, and in application, the metal shell of multiple detection mechanisms is vertically distributed and bonded on the patient's legs, arms and the like through double -sided adhesive tape, and when the displacement of the relevant parts of the patient's legs or hands occurs before or after, left or right after the anesthetic effect or the anesthetic depth is not enough during the anesthetic process and after anesthesia, the detection circuit detects, and the medical staff can be prompted in the first time through the buzzer, the medical staff can timely corresponding disposal, and the probability that the relevant parts of the patient's body are injured due to collision is reduced. In conclusion, the utility model has good application prospect. BRIEF DESCRIPTION OF DRAWINGS
[0012] The utility model will be further explained in combination with the drawings and embodiments.
[0013] Figure 1 It is the whole structure schematic diagram of the utility model.
[0014] Figure 2 It is the local structure schematic diagram of the utility model.
[0015] Figure 3 It is the circuit diagram of the utility model. DETAILED DESCRIPTION
[0016] Figure 1 , 2The anesthesia monitor shown in the drawings comprises an anesthesia monitor body 1, a power switch S1, a power module A1, and further comprises a detection mechanism 2 and a detection circuit 3. The detection mechanism 2 has multiple sets (or only one set), each set of detection mechanism comprises a metal detection shell T, an insulating cover plate 21, and a detection metal ball Q. A metal wire is welded to the upper middle part of the metal ball Q, the upper end of the wire is welded into the middle hole of the upper end of the cover plate 21 and the hole is sealed with sealing glue (the upper end of the wire is located outside the upper end of the cover plate 21), and the metal ball Q is located in the middle of the detection shell T. The side end of the cover plate 21 is sealingly installed on the detection shell T, and the outer lower end of the detection shell T is bonded with a double-sided adhesive tape 22. The power module A1, the power switch S1 and the detection circuit 3 are installed in the electric control box 101 of the anesthesia monitor body, another metal wire is welded to the right outer upper end of the shell of the detection shell T, and the detection shells T of multiple sets of detection mechanisms are vertically distributed and bonded on the legs, arms and the like of a patient through the double-sided adhesive tape 22.
[0017] Figure 1 、 2 Each detection shell T of each set of detection mechanism is a cylindrical copper hollow material, the metal ball Q and the metal wire are copper materials. The metal wire is a spiral wire with elasticity. The outer side end of the metal ball Q and the inner side end of the detection shell T are spaced apart. The detection circuit comprises a resistor R1 and a transistor Q1 connected through a circuit board, and a buzzer B1. One end of the resistor R1 is connected with the base of the transistor Q1, the collector of the transistor Q1 is connected with the negative power input end of the buzzer B1. The power input ends 1 and 2 of the power module A1 are respectively connected with two poles of an alternating current 220V power supply through wires, the power output ends 3 and 4 of the power module A1 are respectively connected with the first metal wire of the multiple sets of detection mechanisms (the 3-pin of the power module A1 is connected with the upper end of the metal wire), the power input end of the detection circuit, the positive power input end of the buzzer B1 and the emitter of the transistor Q1 through wires, and the outer side end of the detection shell T of the multiple sets of detection mechanisms and the signal input end of the detection circuit are respectively connected with the other end of the resistor R1 through wires. Figure 2 In the embodiment, the power module A1 is an alternating current 220V to direct current 12V power module finished product; the resistance R1 has a resistance value of 10K; the transistor Q1 has a type of 9013 (NPN); and the buzzer B1 is a type MF12V active continuous sound buzzer alarm finished product.
[0018] Figure 1 、 2The new type is based on the anesthesia monitor body 1, and mainly monitors oxygenation, respiration, circulation and body temperature of a patient during surgery, wherein the oxygenation monitoring includes monitoring of blood oxygen saturation; the respiration monitoring includes detection of respiratory rate and monitoring of end-tidal carbon dioxide under general anesthesia; the circulation monitoring includes monitoring of blood pressure, detection of heart rate, monitoring of pulse and monitoring of electrocardiogram, and thus the anesthesia monitor body can guarantee anesthesia safety and protect the patient during anesthesia. The above is the mature technology, and the present application will not be described again. After the 220V AC power enters the power input end of the power module A1, the stable DC 12V power output from the 3 and 4 pins of the power module A1 enters the power input end of the multiple sets of detection mechanisms and detection circuits. Before the present application is applied, the medical staff (anesthesiologists) vertically distribute the metal shell T of one or more sets of detection mechanisms on the patient's legs, arms, head and the like according to the needs (at this moment, the interval distance between the metal ball Q and the inner side of the detection shell T does not affect the operation of the surgeon at the bonding position). During the operation, when the relevant parts of the patient do not displace, the metal ball Q of the corresponding one or more sets of detection mechanisms will not displace forward or backward, left or right (or the displacement interval is extremely small), and the metal ball Q and the detection shell T are spaced apart, so that the buzzer B1 will not be powered and sound, representing that the relevant body parts of the patient have not displaced. When the relevant parts of the patient displace, the metal ball Q of the corresponding one or more sets of detection mechanisms will displace forward or backward, left or right, and the metal ball Q and the detection shell T are in contact, so that the 12V power will enter the base electrode of the triode Q1 through the metal ball Q, the detection shell T and the resistor R1 for voltage reduction and current limiting, the triode Q1 is turned on, the collector electrode outputs a low level to the negative power input end of the buzzer B1, the buzzer B1 is powered and sounds, prompting the medical staff that the relevant parts of the patient's body have displaced due to various reasons, and the medical staff can timely make corresponding disposal, reducing the probability that the relevant parts of the patient's body are injured due to collision.
[0019] The basic principle and main features of the present application and the advantages of the present application are shown and described above, and it is obvious for those skilled in the art that the present application is limited to the details of the above exemplary embodiments, and the present application can be realized in other specific forms without departing from the spirit or basic characteristics of the present application. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application.
[0020] Furthermore, it should be understood that, although the specification is described in terms of embodiments, the embodiments do not include only singular implementations, but that the specification can include plural implementations of individual systems, methods, articles, or apparatuses. It should also be understood that the terminology used herein is for the purpose of describing specific embodiments only and is not intended to be limiting.
Claims
1. A new type of anesthesia monitor comprising an anesthesia monitor body, characterized in that, The probe mechanism comprises a metal detection shell, an insulating cover plate and a metal ball, one metal wire is installed on the upper end of the metal ball, and the upper end of the other metal wire is installed on the upper end of the cover plate; the cover plate is installed on the detection shell, the metal ball is located inside the detection shell, and the lower outer end of the detection shell is provided with double-sided adhesive tape; the probe circuit is installed in the electric control box of the anesthesia monitor body, the other metal wire is located on the outer side of the detection shell, the detection shell of the probe mechanism is vertically distributed and adhered to the body part of the patient through the double-sided adhesive tape; and the signal output end of the probe mechanism and the signal input end of the probe circuit are electrically connected.
2. A new type of anesthesia monitor according to claim 1, characterized in that, The detection shell of each set of probe mechanism is a hollow structure.
3. The new anesthetic monitor according to claim 1, characterized in that, The metal wire is in a spiral shape and has elasticity.
4. The new anesthetic monitor according to claim 1, characterized in that, The outer side end of the metal ball and the inner side end of the detection shell are spaced apart.
5. The new anesthetic monitor according to claim 1, characterized in that, The probe circuit comprises an electrically connected resistor and triode and a buzzer, one end of the resistor is connected with the base of the triode, and the collector of the triode is connected with the negative electrode power input end of the buzzer.