Anesthesia care device

By designing an anesthesia nursing device with a support mechanism and a lifting and monitoring mechanism, and using an arc-shaped lifting and stretching rod and sensors to monitor the patient's posture, the problems of airway obstruction and kicking behavior during the anesthesia recovery period were solved, thus improving the patient's safety and comfort.

CN120788841BActive Publication Date: 2025-12-12THE SECOND AFFILIATED HOSPITAL ARMY MEDICAL UNIV
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Patent Information

Application Number
CN202511068143.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-31
Publication Date
2025-12-12
Estimated Expiration
2045-07-31

AI Technical Summary

Technical Problem

Patients may experience head drooping during the anesthesia recovery period, leading to airway obstruction and poor comfort. Furthermore, existing nursing devices cannot monitor and address patients' kicking behavior in a timely manner, posing a safety hazard.

Method used

An anesthesia nursing device was designed, which includes a support mechanism and a tilt monitoring mechanism. The device uses an arc-shaped tilt lever and a pressure sensor to monitor changes in the patient's posture. An angle sensor and a controller control an alarm to emit different alarm sounds to prevent airway obstruction and to promptly address kicking behavior.

Benefits of technology

It improves patient safety and comfort during anesthesia recovery, allows for timely monitoring and management of patient kicking behavior, prevents airway obstruction, and promotes consciousness arousal.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the field of anesthetic nursing, in particular to an anesthesiology nursing device which comprises a supporting pad, two tiltable supporting plates and two head-tilting monitoring mechanisms. Each head-tilting monitoring mechanism comprises an arch, a head-tilting belt, a controller, an alarm and two head-tilting monitoring units. Each head-tilting monitoring unit comprises a head-tilting part, a boom rotatably connected with the arch and a carrier plate fixedly connected with the boom. The head-tilting belt connects the two carrier plates. The head-tilting part comprises a pull rope, a spring, an arc-shaped head-tilting tube rotatably connected with the carrier plate, an arc-shaped head-tilting rod slidably connected with the arc-shaped head-tilting tube and a power element arranged in the arc-shaped head-tilting tube. The power element is connected with one end of the arc-shaped head-tilting rod through the pull rope and the spring. The other ends of the two arc-shaped head-tilting rods can be contacted, and a pressure sensor is arranged at the contact end. An angle sensor is arranged on the boom. The angle sensor and the pressure sensor are electrically connected with the controller and the alarm. The technical scheme is favorable for improving the safety of patients during anesthetic recovery.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of anesthesia nursing, in particular to an anesthesia nursing device. BACKGROUND

[0002] During the anesthesia recovery period, the patient may vomit or hang his head due to the continuous effect of the anesthetic, which is very dangerous to the patient, so the patient needs to be nursed during the recovery period, usually by lying on a nursing board with an inclined support, but the problem is that the patient may still hang his head, and the patient is not comfortable lying on the nursing board with the same inclined angle during the recovery period, and the medical staff may not know when the patient has some uncomfortable conditions. SUMMARY

[0003] The present application aims to provide an anesthesia nursing device to improve the safety of patients during the anesthesia recovery period.

[0004] To achieve the above-mentioned purpose, the present application adopts the following technical scheme: an anesthesia nursing device, characterized by comprising a support mechanism and two head-up monitoring mechanisms, the support mechanism comprising a support frame, a support pad, and two inclined support units located at both ends of the support frame, each inclined support unit comprising a support plate and a driving member, the support plate being rotatably connected to the support frame and rotating the support plate through the driving member, the support pad being provided on the two support plates;

[0005] Each of the two head-up monitoring mechanisms is located at one end of the support pad, and each head-up monitoring mechanism comprises an arch, a supporting belt, a controller, an alarm, and two head-up monitoring units, the arch being fixedly connected to the support plate, each head-up monitoring unit comprising a lifting part, a boom rotatably connected to the arch, and a carrier plate fixedly connected to the boom, one end of the supporting belt being fixedly connected to one of the carrier plates of the head-up monitoring unit, and the other end of the supporting belt being buckled to the other carrier plate of the head-up monitoring unit.

[0006] The lifting part comprises a pull rope, a spring, an arc-shaped lifting tube rotatably connected to the carrier plate, an arc-shaped lifting rod slidably connected to the arc-shaped lifting tube, and a power member provided in the arc-shaped lifting tube, the arc-shaped lifting rod being capable of pressing the support pad, the power member being connected to one end of the arc-shaped lifting rod through the pull rope and the spring, the other end of the arc-shaped lifting rod of the two head-up monitoring units being capable of contacting and having a pressure sensor at the contacting end, an angle sensor being installed on the boom, the angle sensor and the pressure sensor being electrically connected to the controller and the alarm, and the alarm being capable of emitting different alarm sounds.

[0007] The beneficial effects of the scheme are: the nursing staff rotates the two plates at one end of the patient's leg to make the two arc-shaped plates contact, and then places the patient's feet on the outside of the two plates and in contact with the plates; the support plate at one end of the patient's head begins to tilt, and the nursing staff also rotates the two plates at this end to make the two arc-shaped plates contact, and then buckles the strap around the patient's chin to the plate, which helps to prevent airway obstruction caused by the patient's head; during the recovery process, the driving member periodically drives the support plate to rotate downward, which helps to improve the comfort of the patient's lying down. Since the support pad moves relative to the patient's head during the rotation of the support plate, the hair at the back of the patient's head is easily raised and messy. The arc-shaped lifting tube and the arc-shaped lifting rod pass through the contact position of the head and the support pad during each rotation of the support plate, which helps to comb the hair. At the same time, the arc-shaped lifting rod extrudes the support pad to deform, which helps to open the airway by tilting the head backward. When the arc-shaped lifting tube and the arc-shaped lifting rod rotate to the position of the patient's neck, the power member pulls the two arc-shaped lifting rods apart through the pull rope, and the two arc-shaped lifting rods are reset under the action of the spring after passing through the neck. The two arc-shaped lifting rods make a sound when they contact, which helps to promote the patient's consciousness and wake up. Of course, the pressure of the two arc-shaped lifting rods in contact does not reach the alarm value of the pressure sensor in this case.

[0008] Since the patient will have a shock and kick phenomenon during the recovery period after anesthesia, the essence is that when the patient's consciousness and nerve function transition from anesthetized inhibition to wakefulness, the central nervous system control is unbalanced, peripheral stimulation or discomfort triggers a stress response. Usually, simultaneous kicking of both feet is related to systemic stimulation, overall discomfort or symmetrical functional abnormalities (such as pain, respiratory and circulatory problems, drug residue poisoning), and single foot kicking is related to local stimulation, unilateral nerve recovery asymmetry or local discomfort (such as unilateral puncture pain, compression, nerve function recovery). The risk of simultaneous kicking of both feet is higher, and it is necessary to prioritize emergency assessment of vital signs, quickly correct physiological disorders, control agitation and investigate fatal causes; the risk of single foot kicking is relatively low, the core is to investigate local stimulation or unilateral nerve dysfunction, remove local factors and monitor overall status, and be vigilant for a small number of cases of nerve damage.

[0009] In view of this, the scheme can also monitor and remind nursing staff to handle in time when the patient's single foot pedaling, if the patient's single foot pedaling, any one of the two arc-shaped lifting rods close to one end of the leg can rotate freely, thereby driving the carrier plate and the boom to rotate by a large angle, and the angle sensor transmits the signal to the controller to control the alarm to emit a relatively slow alarm sound, if the double feet are pedaled at the same time, the patient may have dangerous conditions, since the two arc-shaped lifting rods close to one end of the leg are in contact, so when the patient's double feet are pedaled at the same time, the carrier plate rotates by a small angle, and the force is transmitted to the arc-shaped lifting rod through the carrier plate, so that the force detected by the pressure sensor is instantaneously increased, thereby transmitting the signal to the controller to control the alarm to emit a relatively urgent alarm sound, reminding the nursing staff to take measures, which is very safe for the health of the patient in the anesthesia recovery period, and the nursing staff will reset the carrier plate after taking measures.

[0010] Further, the two arc-shaped lifting rods contact, the power member cooperates with the spring to further drive the arc-shaped lifting rods to slide outward, so that the two carrier plates rotate. The beneficial effects of the scheme are that the carrier plate rotates to apply a slight force to the patient's foot, which is beneficial to promote the patient's consciousness awakening.

[0011] Further, the inner wall of the arc-shaped lifting tube is provided with a limiting groove, and the side wall of the arc-shaped lifting rod is fixedly provided with a limiting block which is slidingly arranged in the limiting groove.

[0012] Further, the carrier plate and the arch are provided with a wire embedding pipe.

[0013] Further, the support frame is a sickbed, the driving member is a gas cylinder, the gas cylinder is inclinedly arranged, one end of the gas cylinder is hingedly connected with the sickbed, and the other end of the gas cylinder is hingedly connected with the support plate.

[0014] Further, the boom is provided with a limiting disc which is located above the arch. SUMMARY

[0015] Figure 1 is a three-dimensional view of the present application;

[0016] Figure 2 is a partial enlarged view of A in the present application Figure 1

[0017] Figure 3 is a sectional view of the lifting part of the present application.

[0018] The following will be further described in detail through specific embodiments:

[0019] The reference signs in the drawings of the specification include: support pad 1, support plate 2, arch 3, support belt 4, boom 5, carrier plate 6, pull rope 7, spring 8, arc-shaped lifting tube 9, arc-shaped lifting rod 10, power member 11, motor 12. DETAILED DESCRIPTION​

[0020] Embodiment

[0021] The embodiment is basically as shown in the accompanying drawings, and as shown in the accompanying drawings, Figures 1-3 The embodiment is basically as shown in the accompanying drawings, and as shown in the accompanying drawings, Figure 1 The embodiment is basically as shown in the accompanying drawings, and as shown in the accompanying drawings, an anesthesia nursing device comprises a supporting mechanism and two head-up monitoring mechanisms, the supporting mechanism comprises a supporting frame, a supporting pad 1 and two inclined supporting units at both ends of the supporting frame, the supporting frame is a sickbed, each inclined supporting unit comprises a supporting plate 2 and a driving member, the driving member is a cylinder arranged obliquely, the supporting plate 2 is rotationally connected with the supporting frame through a pin shaft, one end of the cylinder is hinged with the sickbed through a pin shaft, the other end of the cylinder is hinged with the supporting plate 2, and the supporting pad 1 is arranged on the two supporting plates 2.

[0022] The two head-up monitoring mechanisms are respectively located at one end of the supporting pad 1, Figure 1 The embodiment is basically as shown in the accompanying drawings, and as shown in the accompanying drawings, Figure 2 Each head-up monitoring mechanism comprises an arch frame 3, a head-up supporting belt 4, a controller, an alarm and two head-up monitoring units, the arch frame 3 is welded with the supporting plate 2, each head-up monitoring unit comprises a head-up supporting part, a boom 5 rotationally connected with the arch frame 3 and a carrier plate 6 welded with the boom 5, a limiting disc is welded on the boom 5 and located above the arch frame 3, one end of the head-up supporting belt 4 is screw-fixed with one carrier plate 6 of the head-up monitoring unit, and the other end of the head-up supporting belt 4 is buckled with the other carrier plate 6 of the head-up monitoring unit, that is, a buckling column is welded on the carrier plate 6, a buckling hole is formed in the other end of the head-up supporting belt 4, and the head-up supporting belt 4 can be selected as an elastic head-up supporting belt 4.

[0023] As shown in the accompanying drawings, Figure 3 The head-up supporting part comprises a pull rope 7, a spring 8, an arc-shaped head-up supporting tube 9, an arc-shaped head-up supporting rod 10 and a power member 11, a motor 12 is fixedly installed on the carrier plate 6 through a bolt, an output shaft of the motor 12 penetrates through the carrier plate 6 and is welded with the arc-shaped head-up supporting tube 9, Figure 2 The arc-shaped head-up supporting tube 9 is in an initial position, the arc-shaped head-up supporting tube 9 rotates one circle to return to the initial position after the supporting plate 2 rotates, the arc-shaped head-up supporting rod 10 is slidingly connected with the arc-shaped head-up supporting tube 9, an inner wall of the arc-shaped head-up supporting tube 9 is provided with a limiting groove, a limiting block is welded on a side wall of the arc-shaped head-up supporting rod 10 and slidingly arranged in the limiting groove, the power member 11 can also be selected as a cylinder and fixedly installed in the arc-shaped head-up supporting tube 9, the power member 11 can be selected as a rechargeable battery for power supply, the rechargeable battery is also located in the arc-shaped head-up supporting tube 9, an output shaft of the cylinder is connected with one end of the arc-shaped head-up supporting rod 10 through the pull rope 7, and the spring 8 is welded on a shell of the cylinder and one end of the arc-shaped head-up supporting rod 10.

[0024] The arc-shaped lifting rod 10 can press the supporting pad 1 during rotation, the other end of the arc-shaped lifting rod 10 supporting the monitoring unit can contact and contact one end provided with a pressure sensor, the pressure sensor is installed at the end of one of the arc-shaped lifting rods 10, an angle sensor is installed at the top of the boom 5, the angle sensor and the pressure sensor are electrically connected with the alarm through the controller, and the alarm can emit different alarm sounds.

[0025] After the two arc-shaped lifting rods 10 contact, the power member 11 can continue to be elongated and drive the arc-shaped lifting rod 10 to slide outward under the cooperation of the spring 8, so that the two load plates 6 rotate, the power member 11 is retracted to drive the load plate 6 to rotate in the opposite direction through the pull rope 7. In addition, the load plate 6 and the arch 3 are welded with a buried wire pipe, so that the wire harness of the motor can be arranged.

[0026] The above is only an embodiment of the present application, and the specific technical solutions and / or common knowledge of the scheme are not described in detail. It should be pointed out that for those skilled in the art, without departing from the technical scheme of the present application, a number of deformations and improvements can be made, which should also be regarded as the protection scope of the present application, which will not affect the effect and practicality of the present application. The protection scope of the present application should be subject to the content of its claims, and the specific implementation mode and the like in the specification can be used to explain the content of the claims.

Claims

1. An anesthesiology care device, characterized by: The support mechanism comprises a support frame, a support pad and two inclined support units at both ends of the support frame, each of the inclined support units comprises a support plate and a driving member, the support plate is rotationally connected with the support frame and the support plate is rotated by the driving member, and the support pad is arranged on the two support plates; Each of the two monitoring mechanisms is located at one end of the support pad, each of the monitoring mechanisms comprises an arch frame, a supporting belt, a controller, an alarm and two monitoring units, the arch frame is fixedly connected with the support plate, each of the monitoring units comprises a lifting part, a boom rotationally connected with the arch frame and a carrier plate fixedly connected with the boom, one end of the supporting belt is fixedly connected with one of the carrier plates of the monitoring units, and the other end of the supporting belt is buckled with the other carrier plate of the monitoring units; The lifting part comprises a pull rope, a spring, an arc-shaped lifting tube rotationally connected with the carrier plate, an arc-shaped lifting rod slidingly connected with the arc-shaped lifting tube and a power member arranged in the arc-shaped lifting tube, the arc-shaped lifting rod can press the support pad, the power member is connected with one end of the arc-shaped lifting rod through the pull rope and the spring, the other ends of the arc-shaped lifting rods of the two monitoring units can contact each other and the contact end is provided with a pressure sensor, an angle sensor is arranged on the boom, the angle sensor and the pressure sensor are electrically connected with the controller and the alarm, and the alarm can emit different alarm sounds.

2. An anaesthesiology care device according to claim 1, characterized in that: The power member and the spring can further drive the arc-shaped lifting rods to slide outward after the two arc-shaped lifting rods contact each other, so as to rotate the two carrier plates.

3. An anaesthesiology care device according to claim 2, characterized in that: The inner wall of the arc-shaped lifting tube is provided with a limiting groove, and the side wall of the arc-shaped lifting rod is fixedly provided with a limiting block which is slidingly arranged in the limiting groove.

4. An anaesthesia care device according to claim 3, characterised in that: The carrier plate and the arch frame are provided with a wire embedding pipe.

5. An anaesthesia care device according to claim 4, characterised in that: The support frame is a sickbed, the driving member is a gas cylinder, the gas cylinder is arranged obliquely, one end of the gas cylinder is hingedly connected with the sickbed, and the other end of the gas cylinder is hingedly connected with the support plate.

6. An anaesthesiology care device according to claim 5, characterized in that: A limiting disc is arranged on the boom and located above the arch frame.

Citation Information

Patent Citations

  • Anesthesia head frame

    CN116712186A

  • Postoperative head and neck protection pillow

    CN220833402U