Postoperative awakening device convenient for position adjustment in anesthesiology department

By designing an anesthesia postoperative awakening device that is easy to reposition, the device utilizes the sliding stimulation of the patient's lower limbs by the movable blocks of the awakening seat and drive components, thus solving the problem of potential injury during patient transfer and achieving a safe and efficient awakening effect.

CN121102676APending Publication Date: 2025-12-12CHINESE PEOPLES LIBERATION ARMY ARMY SPECIAL MEDICAL CENTER
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Patent Information

Application Number
CN202511535295.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2025-12-12

AI Technical Summary

Technical Problem

Existing wake-up devices require transferring patients from the surgical transport bed to a chair for anesthesia recovery. The patient's lower limb muscles are slumbering and weak, which can easily cause injury and affect the effectiveness of the device.

Method used

A postoperative awakening device for anesthesiology was designed that is easy to adjust. It consists of an awakening seat, an awakening component, and a drive component. The device uses movable blocks and stimulation blocks to slide in the movable slot to continuously stimulate and awaken the lower limbs of anesthetized patients, avoiding the surgical wound. Vertical movement is achieved by using a servo motor and a lead screw structure. Adjustment and adaptation components improve adaptability.

Benefits of technology

This technology enables lower limb anesthesia recovery without moving the patient, avoiding injury, and accelerates the awakening process through continuous stimulation, thus improving the adaptability and safety of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an anesthesiology department postoperative wake-up device convenient for position adjustment, and particularly relates to the technical field of medical apparatus and instruments, the anesthesiology department postoperative wake-up device comprises a wake-up seat for anesthesiology department postoperative wake-up, a wake-up assembly and a driving assembly; the awakening seat comprises a seat body and a supporting groove used for containing the anesthetized lower limbs of a patient. A supporting groove is formed in the top face of the base. The awakening assembly is arranged on the seat body; the awakening assembly comprises a movable groove, a movable block and a stimulation block; a movable groove is formed in the seat body; a plurality of movable blocks are movably arranged in the movable groove in a linear array through a driving assembly; a plurality of stimulation blocks are uniformly and fixedly arranged on the top surface of the movable block, and the end parts of the stimulation blocks penetrate through the movable groove and extend to the outside; the bottom surfaces of the movable blocks are V-shaped surfaces, and the motion trail formed by the plurality of movable blocks is wave-shaped; the anesthetic patient awakening device is reasonable in structural design, the awakening seat is placed between the lower limbs of an anesthetic patient and the transfer bed, an operation wound of the patient can be avoided, the position adjusting effect is achieved, and the anesthetic patient can be continuously stimulated.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of medical devices, more particularly, the present application relates to a postoperative awakening device for anesthesiology department. BACKGROUND

[0002] ‌Anesthesiology department is a clinical medicine department focusing on perioperative management, pain treatment and critical illness treatment. The core responsibilities include surgical anesthesia implementation, patient vital sign monitoring, acute and chronic pain intervention, etc. to ensure the safety and comfort of the medical process. Its work runs through preoperative assessment, intraoperative maintenance and postoperative recovery, and is a key discipline to ensure the smooth progress of surgery and patient safety.

[0003] As a postoperative awakening device for anesthesiology department provided by the Chinese utility model patent with publication number CN115970124A, including a seat, a limiting frame assembly is fixedly installed on one side of the seat, a back cushion is fixedly installed on one side of the top of the seat, and a seat cushion is fixedly installed on the top of the seat. Through the setting of the receiving plate, the second gear and the gear groove, the patient's leg awakening effect is good. The patient after lower limb anesthesia is moved to the top of the seat, the feet are located on the top of the receiving plate, the legs are clamped on one side of the fixed block, and the patient's legs are fixed by the fixing rope. Then the patient manually controls the controller, controls the rotating speed of the motor through the controller, drives the sliding block, the receiving plate and the fixed block to slide in the sliding groove through the motor, and drives the swing of the patient's calf. In the process of swinging, the stimulation of the patient's calf is increased, so as to achieve the effect of awakening the patient's leg.

[0004] In order to speed up the recovery time of the patient, it is usually necessary to use an awakening device to awaken the postoperative patient in the anesthesiology department. However, in the process of using the existing awakening device, the patient needs to be transferred from the operating transfer bed to the seat before the lower limbs of the patient can be anesthetized. When the patient is pushed out of the operating room, the lower limb muscles of the patient are in a sleep state, and external force is needed for recovery. However, the patient is usually very weak after surgery, and the surgical wounds on the body have not healed. At this time, it is very troublesome to transfer the patient to the seat for lower limb muscle anesthesia recovery, and it is easy to cause unnecessary harm to the patient, thereby affecting the use effect of the awakening device. SUMMARY

[0005] In order to overcome the above-mentioned defects of the prior art, the present application provides a postoperative awakening device for anesthesiology department, which solves the technical problem that the existing awakening device needs to transfer the patient from the operating transfer bed to the seat before the lower limbs of the patient can be anesthetized, and the patient needs to be revived by external force when being pushed out of the operating room because the lower limbs of the patient are in a sleep state, but the patient is usually very weak after the operation, and the wounds left by the operation on the body have not healed, so it is very troublesome to transfer the patient to the seat for lower limb muscle anesthetic recovery, and it is easy to cause unnecessary harm to the patient, thereby affecting the use effect of the awakening device.

[0006] In order to achieve the above-mentioned purpose, the present application provides the following technical scheme: a postoperative awakening device for anesthesiology department, which includes an awakening seat for postoperative awakening of anesthesiology department, an awakening assembly and a driving assembly; the awakening seat includes a seat body and a support groove for placing the anesthetized lower limbs of the patient; the top surface of the seat body is provided with the support groove; the awakening assembly is arranged on the seat body; the awakening assembly includes a movable groove, movable blocks and stimulating blocks; the seat body is provided with the movable groove; a plurality of movable blocks are movably arranged in the movable groove in a linear array through the driving assembly; a plurality of stimulating blocks are uniformly and fixedly arranged on the top surface of the movable blocks, and the end portions of the stimulating blocks extend to the outside through the movable groove.

[0007] As a further scheme of the present application: the support groove is in an arc structure, the top surface of the movable block is in an arc surface, and the curvature of the movable block is the same as that of the support groove.

[0008] As a further scheme of the present application: the bottom surface of the movable block is in a V-shaped surface, and the movement track formed by the plurality of movable blocks is in a wave shape.

[0009] As a further scheme of the present application: the awakening assembly further includes a guide groove A, a guide block A and a spring; at least one guide groove A is arranged in the movable groove; at least one guide block A is fixedly arranged on the movable block, and the guide block A is in sliding cooperation with the guide groove A; the spring is fixedly connected with the inner wall of the guide groove A and the guide block A at both ends.

[0010] As a further scheme of the present application: the driving assembly includes a servo motor, a reciprocating screw rod, a sliding block and a reciprocating pin; the servo motor is fixedly arranged on the seat body through a motor base, and the output end of the servo motor extends to the movable groove through the seat body; the reciprocating screw rod is fixedly connected with the output end of the servo motor; the sliding block is sleeved on the reciprocating screw rod and is in sliding cooperation with the movable groove; the reciprocating pin is slidably arranged in the reciprocating groove of the reciprocating screw rod and is fixedly connected with the sliding block through the adjusting assembly.

[0011] As a further scheme of the present application: the top surface of the sliding block is in a V-shaped surface, and the V-shaped surface of the sliding block is in sliding contact with the V-shaped surface of the movable block.

[0012] As a further scheme of the present application: the adjusting assembly comprises a groove, a moving groove, a moving block, a fixed block, a pressing block, a pressing groove, a guide groove B and a guide block B; the groove is arranged on the sliding block, and the reciprocating wire rod is in sliding fit with the groove; the moving groove is arranged in the groove; the moving block is in sliding fit in the moving groove and is fixedly connected with the reciprocating pin; at least two fixed blocks are linearly arranged in the moving groove; two pressing blocks are symmetrically arranged in the moving groove through an adaptive assembly; two pressing grooves are symmetrically arranged on one side of the sliding block; four guide grooves B are symmetrically arranged on the inner wall of the moving groove; two guide blocks B are symmetrically arranged on the two sides of the guide groove B, and the guide block B is in sliding fit with the guide groove B.

[0013] As a further scheme of the present application: the pressing block and the pressing groove are both in right triangle structure, and the inclined surface of the pressing block is in sliding contact with the inclined surface of the pressing groove.

[0014] As a further scheme of the present application: the adaptive assembly comprises a connecting groove, an adaptive groove, an adaptive block, a containing groove, a connecting block, a limiting groove, a limiting pin and a screw rod; the connecting groove is arranged in the fixed block; two adaptive grooves are symmetrically arranged on the fixed block, and the two adaptive grooves are in communication with the connecting groove; the adaptive block is in sliding fit in the adaptive groove and is fixedly connected with the pressing block; the containing groove is arranged on the adaptive block; the connecting block is in sliding fit in the containing groove and is in sliding fit with the connecting groove; two limiting grooves are symmetrically arranged on the connecting block; the limiting pin is in sliding fit in the limiting groove and is fixedly connected with the inner wall of the containing groove; at least two screw rods are symmetrically screwed on the seat body, and the screw rod is rotatably connected with one of the adaptive blocks through a rotating shaft.

[0015] As a further scheme of the present application: the limiting groove is in inclined structure, and the distance between the two limiting grooves close to the screw rod is greater than the distance between the two limiting grooves away from the screw rod.

[0016] The present application has the following beneficial effects: The present application sets the seat body between the lower limbs of the anesthetized patient and the transfer bed, and makes the lower limbs of the anesthetized patient in the supporting groove, then drives the movable block to slide upward in the movable groove by the driving assembly, makes the stimulating block extend out of the movable groove and stimulate the lower limbs of the anesthetized patient, makes the guide block A slide in the guide groove A, and makes the spring contract under stress until the movable block moves to the maximum limit, at this time, the movable block drives the stimulating block to slide downward in the movable groove under the elastic force of the spring, makes the guide block A slide reversely in the guide groove A until the spring returns to the original shape, and the sliding block contacts with the movable blocks, which makes the movable blocks move in a wavy track to continuously stimulate the anesthetized patient, thereby achieving the effect of awakening.

[0017] The present application sets the driving assembly, starts the servo motor, and makes the servo motor output shaft drive the reciprocating screw rod to rotate through the adjusting assembly, so as to make the sliding block V surface extrude the movable block V surface, make the movable block slide upward in the movable groove, and convert the horizontal movement of the sliding block into the vertical movement of the movable block, thereby achieving the stimulating effect on the lower limbs of the anesthetized patient.

[0018] The present application sets the adjusting assembly, makes the upper extrusion block inclined surface extrude the upper extrusion groove inclined surface through the adaptive assembly, and makes the lower extrusion block inclined surface always contact with the lower extrusion groove inclined surface, so as to make the sliding block slide upward in the movable groove, make the moving block slide in the moving groove, and make the guide block B slide in the guide groove B when the extrusion block moves, thereby improving the support strength of the two sides of the extrusion block, and adjusting the stimulating effect of the stimulating block according to the actual situation of the anesthetized patient, thereby improving the adaptability of the present application.

[0019] The present application sets the adaptive assembly, synchronously and in the same direction rotates the two screw rods, makes the screw rods threadedly connected with the seat body, makes the upper adaptive block slide in the upper adaptive groove, makes the upper extrusion block inclined surface extrude the upper extrusion groove inclined surface, makes the upper limit pin extrude the inner wall of the upper limit groove, makes the upper limit pin slide in the upper limit groove, makes the connecting block slide upward in the connecting groove, makes the lower limit groove inner wall extrude the lower limit pin, makes the lower limit pin slide in the lower limit groove, and makes the lower extrusion block inclined surface always contact with the lower extrusion groove inclined surface, thereby making the position of the sliding block in the movable groove more stable. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is the overall structure schematic diagram of the present application; Figure 2It is a sectional view of the overall structure of the present application; Figure 3 It is a sectional view of the seat body structure of the present application; Figure 4 It is a split schematic diagram of the wake-up assembly of the present application; Figure 5 It is a split sectional view of the adjusting assembly of the present application; Figure 6 It is a split sectional view of the adapting assembly of the present application; Figure 7 It is a split sectional view of the adapting assembly of the present application; Figure 2 It is an enlarged schematic diagram at A in the figure; Figure 8 It is a split sectional view of the adjusting assembly of the present application; Figure 2 It is an enlarged schematic diagram at B in the figure; Figure 9 It is a split sectional view of the adapting assembly of the present application; Figure 7 It is an enlarged schematic diagram at C in the figure.

[0021] In the figure: 1, wake-up seat; 2, wake-up assembly; 3, driving assembly; 4, adjusting assembly; 5, adapting assembly; 101, seat body; 102, support groove; 201, movable groove; 202, movable block; 203, stimulating block; 204, guide groove A; 205, guide block A; 206, spring; 301, servo motor; 302, reciprocating screw rod; 303, sliding block; 304, reciprocating pin; 401, groove; 402, moving groove; 403, moving block; 404, fixed block; 405, extrusion block; 406, extrusion groove; 407, guide groove B; 408, guide block B; 501, connecting groove; 502, adapting groove; 503, adapting block; 504, containing groove; 505, connecting block; 506, limiting groove; 507, limiting pin; 508, screw rod. DETAILED DESCRIPTION

[0022] 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 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.

[0023] As Figures 1 to 9As shown, the present application provides a convenient positioning postoperative awakening device in anesthesiology department, which comprises a wakeup seat 1 for postoperative awakening in anesthesiology department, a wakeup assembly 2 and a driving assembly 3; the wakeup seat 1 comprises a seat body 101 and a support groove 102 for placing the anesthetized lower limbs of patients; the top surface of the seat body 101 is provided with the support groove 102; the wakeup assembly 2 is arranged on the seat body 101; the wakeup assembly 2 comprises a movable groove 201, a movable block 202, a stimulating block 203, a guide groove A 204, a guide block A 205 and a spring 206; the seat body 101 is provided with the movable groove 201; a plurality of movable blocks 202 are linearly arranged in the movable groove 201 by the driving assembly 3; five stimulating blocks 203 are uniformly fixedly connected to the top surface of the movable block 202, and the end portions of the stimulating blocks 203 extend to the outside through the movable groove 201; the support groove 102 is of an arc structure to facilitate adaptation to the profile of the lower limbs of anesthetized patients; the top surface of the movable block 202 is of an arc surface, and the curvature of the movable block 202 is the same as that of the support groove 102 to facilitate the top surface of the movable block 202 to be attached to the inner top wall of the movable groove 201; the bottom surface of the movable block 202 is of a V-shaped surface, and the movement track formed by the plurality of movable blocks 202 is of a wavy shape; two guide grooves A 204 are symmetrically provided on the both sides of the inner wall of the movable groove 201; two guide blocks A 205 are symmetrically fixedly connected to the both sides of the movable block 202, and the guide block A 205 is in sliding fit with the guide groove A 204; the both ends of the spring 206 are fixedly connected with the inner wall of the guide groove A 204 and the guide block A 205.

[0024] The present application sets the wakeup assembly 2, places the seat body 101 between the lower limbs of anesthetized patients and the transfer bed, and makes the lower limbs of the anesthetized patients in the support groove 102, then drives the movable block 202 to slide upward in the movable groove 201 by the driving assembly 3, makes the stimulating block 203 extend out of the movable groove 201 and stimulate the lower limbs of the anesthetized patients, makes the guide block A 205 slide in the guide groove A 204, and makes the spring 206 contract under stress until the movable block 202 moves to the maximum limit, at this time, the movable block 202 drives the stimulating block 203 to slide downward in the movable groove 201 under the elastic force of the spring 206, makes the guide block A 205 slide reversely in the guide groove A 204, until the spring 206 returns to the original shape, and the sliding block 303 contacts with the plurality of movable blocks 202 in the process, which makes the movement track of the plurality of movable blocks 202 form a wavy shape, to realize continuous stimulation of the anesthetized patients, to achieve the awakening effect, compared with the prior art, the present application has reasonable structure design, by placing the wakeup seat 1 between the lower limbs of anesthetized patients and the transfer bed, not only can avoid the surgical wound of the patient, realize the positioning effect, but also can continuously stimulate the anesthetized patients.

[0025] As a preferred embodiment, the driving assembly 3 comprises a servo motor 301, a reciprocating screw rod 302, a sliding block 303 and a reciprocating pin 304; the servo motor 301 is fixedly connected to the seat body 101 through a motor base, and an output end of the servo motor 301 extends into the movable groove 201 through the seat body 101; the reciprocating screw rod 302 is fixedly connected to the output end of the servo motor 301; the sliding block 303 is sleeved on the reciprocating screw rod 302 and is in sliding fit with the movable groove 201; the reciprocating pin 304 is slidably arranged in a reciprocating groove of the reciprocating screw rod 302 and is fixedly connected to the sliding block 303 through the adjusting assembly 4; a top surface of the sliding block 303 is a V-shaped surface, and the V-shaped surface of the sliding block 303 is in sliding contact with a V-shaped surface of the movable block 202.

[0026] The driving assembly 3 is arranged, the servo motor 301 is started, the output shaft of the servo motor 301 drives the reciprocating screw rod 302 to rotate through the adjusting assembly 4, the V-shaped surface of the sliding block 303 extrudes the V-shaped surface of the movable block 202, the movable block 202 is upwardly slid in the movable groove 201, the horizontal movement of the sliding block 303 is converted into the vertical movement of the movable block 202, and the stimulation effect on the lower limbs of the anesthetized patient is realized.

[0027] As a preferred embodiment, the adjusting assembly 4 comprises a groove 401, a moving groove 402, a moving block 403, a fixed block 404, an extrusion block 405, an extrusion groove 406, a guide groove B 407 and a guide block B 408; the groove 401 is arranged on the sliding block 303 and is in sliding fit with the reciprocating screw rod 302; the moving groove 402 is arranged in the groove 401; the moving block 403 is slidably arranged in the moving groove 402 and is fixedly connected to the reciprocating pin 304; the two fixed blocks 404 are linearly arrayed and fixedly connected in the movable groove 201, and a gap exists between the fixed blocks 404 and the inner side walls of the movable groove 201; the two extrusion blocks 405 are symmetrically arranged in the movable groove 201 through the adapting assembly 5; the two extrusion grooves 406 are symmetrically arranged on one side of the sliding block 303; the four guide grooves B 407 are symmetrically arranged on the inner walls of the movable groove 201; the two guide blocks B 408 are symmetrically fixedly connected to the two sides of the guide grooves B 407 and are in sliding fit with the guide grooves B 407; the extrusion block 405 and the extrusion groove 406 are both right-angled triangular structures, and the inclined surface of the extrusion block 405 is in sliding contact with the inclined surface of the extrusion groove 406.

[0028] The present application adjusts the component 4, and the upper extrusion block 405 is extruded on the upper extrusion groove 406 through the adaptive component 5, the lower extrusion block 405 is always in contact with the lower extrusion groove 406, the sliding block 303 is slid upward in the activity groove 201, the moving block 403 is slid in the moving groove 402, and the extrusion block 405 is slid, which makes the guide block B 408 slid in the guide groove B 407, so that the guide block B 408 and the guide groove B 407 can improve the support strength of the two sides of the extrusion block 405, until the sliding block 303 is slid to the appropriate position, so as to adjust the stimulation effect of the stimulation block 203 according to the actual situation of the patient needing anesthesia, so as to improve the adaptability of the present application.

[0029] As a preferred embodiment, the adaptive component 5 comprises a connecting groove 501, an adaptive groove 502, an adaptive block 503, a containing groove 504, a connecting block 505, a limiting groove 506, a limiting pin 507 and a screw rod 508; the connecting groove 501 is arranged in the fixed block 404; two adaptive grooves 502 are symmetrically arranged on the fixed block 404 and communicate with the connecting groove 501, and the adaptive grooves 502 are divided into upper adaptive grooves 502 and lower adaptive grooves 502; the adaptive block 503 is slidably arranged in the adaptive groove 502 and fixedly connected with the extrusion block 405; the containing groove 504 is arranged on the adaptive block 503; the connecting block 505 is slidably arranged in the containing groove 504 and slidably matched with the connecting groove 501; two limiting grooves 506 are symmetrically arranged on the connecting block 505; the limiting pin 507 is slidably arranged in the limiting groove 506 and fixedly connected with the inner wall of the containing groove 504; two screw rods 508 are symmetrically screwed on the seat body 101, and the screw rod 508 is rotatably connected with the upper adaptive block 503 through a rotating shaft, the diameter of the screw rod 508 is smaller than the thickness of the adaptive block 503, so that the screw rod 508 can be moved into the adaptive groove 502; the limiting groove 506 is an inclined structure, and the distance between the two limiting grooves 506 close to the screw rod 508 is greater than the distance between the two limiting grooves 506 away from the screw rod 508; when the upper limiting pin 507 is slid to the bottom wall of the upper limiting groove 506, the top surface of the movable block 202 is in contact with the top wall of the activity groove 201, the side surface of the connecting block 505 is not in contact with the side wall of the connecting groove 501, the side surface of the moving block 403 is not in contact with the side wall of the moving groove 402, and the inclined surface of the extrusion block 405 is still in contact with the inclined surface of the extrusion groove 406; when the upper limiting pin 507 is slid to the top wall of the upper limiting groove 506, the V-shaped surface of the sliding block 303 is still in contact with the V-shaped surface of the movable block 202, and the bottom surface of the movable block 202 is in contact with the bottom wall of the activity groove 201.

[0030] The application is characterized in that the adaptive assembly 5 is arranged to synchronously and co-directionally rotate the two screw rods 508, the screw rod 508 is in threaded connection with the seat body 101, the upper adaptive block 503 is arranged to slide in the upper adaptive groove 502, the upper extrusion block 405 is arranged to extrude the upper extrusion groove 406, the upper limit pin 507 is arranged to extrude the inner wall of the upper limit groove 506, the upper limit pin 507 is arranged to slide in the upper limit groove 506, the connecting block 505 is arranged to slide upward in the connecting groove 501, the lower limit groove 506 is arranged to extrude the lower limit pin 507, the lower limit pin 507 is arranged to slide in the lower limit groove 506, and the lower extrusion block 405 is arranged to always contact the lower extrusion groove 406, so that the position of the sliding block 303 in the activity groove 201 is more stable due to the restriction of the two extrusion blocks 405 on the position of the sliding block 303 in the activity groove 201.

[0031] The working principle of the present application is as follows: in use, first, the seat body 101 is placed between the lower limbs of an anesthetized patient and the transfer bed, and the lower limbs of the anesthetized patient are placed in the supporting groove 102, then, according to the actual situation of the anesthetized patient, the two screw rods 508 are synchronously and synchronously rotated, the screw rod 508 is screwed with the seat body 101, the upper adaptive block 503 slides in the upper adaptive groove 502, the upper extrusion block 405 oblique surface extrudes the upper extrusion groove 406 oblique surface, the upper limit pin 507 extrudes the inner wall of the upper limit groove 506, the upper limit pin 507 slides in the upper limit groove 506, the connecting block 505 slides upward in the connecting groove 501, the lower limit groove 506 extrudes the lower limit pin 507, the lower limit pin 507 slides in the lower limit groove 506, the lower extrusion block 405 oblique surface is always in contact with the lower extrusion groove 406 oblique surface, the sliding block 303 slides upward in the movable groove 201, the moving block 403 slides in the moving groove 402, and the extrusion block 405 slides, which makes the guide block B 408 slide in the guide groove B 407, so that the guide block B 408 and the guide groove B 407 can improve the support strength of the two sides of the extrusion block 405, until the sliding block 303 slides to the appropriate position, if it is needed to make the sliding block 303 slide downward in the movable groove 201, the screw rod 508 is reversely rotated, then the servo motor 301 is started, the output shaft of the servo motor 301 drives the reciprocating screw rod 302 to rotate, and the reciprocating screw rod 302 extrudes the reciprocating pin 304 in the reciprocating groove, because the two extrusion blocks 405 limit the position of the sliding block 303 in the movable groove 201, the sliding block 303 will slide horizontally in the movable groove 201, the sliding block 303 V-shaped surface extrudes the movable block 202 V-shaped surface, the movable block 202 slides upward in the movable groove 201, the stimulating block 203 extends out of the movable groove 201 and stimulates the lower limbs of the anesthetized patient, the guide block A 205 slides in the guide groove A 204, and the spring 206 is stressed to contract, until the sliding block 303 V-shaped surface is in contact with the movable block 202 V-shaped surface, at this time, the sliding block 303 V-shaped surface no longer extrudes the movable block 202 V-shaped surface, and under the action of the elastic force of the spring 206, the movable block 202 drives the stimulating block 203 to slide downward in the movable groove 201, the guide block A 205 reversely slides in the guide groove A 204, until the spring 206 returns to the original shape, and during the contact between the sliding block 303 and the plurality of movable blocks 202, the movement trajectories of the plurality of movable blocks 202 form a wave shape, so as to continuously stimulate the anesthetized patient and achieve the effect of awakening.

[0032] Finally should be explained a few points are: first, in the description of the present application, it should be pointed out that, unless otherwise specified and limited, the term "installation", "connected", "connection" should be broad, can be mechanical or electrical connection, but also can be two elements inside the communication, can be directly connected, "up", "down", "left", "right" and so on, only for indicating the relative position relationship, when the absolute position of the described object changes, the relative position relationship may change; Second: the present application discloses the embodiment in the drawing, only relates to the structure involved in the present application, other structures can refer to the usual design, in the case of no conflict, the same embodiment and different embodiments of the present application can be combined with each other; The above description is only the preferred embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art in the technical range disclosed by the present application, according to the technical scheme and the inventive concept of the present application, equivalent replacement or change, should be covered in the protection scope of the present application.

Claims

1. A post-anesthesia awakening device that is easy to reposition, characterized in that, The device includes an awakening seat (1), an awakening component (2), and a driving component (3) for postoperative awakening in anesthesia. The awakening seat (1) includes a seat body (101) and a support groove (102) for placing the patient's anesthetized lower limbs. The support groove (102) is provided on the top surface of the seat body (101). The awakening component (2) is arranged on the seat body (101). The awakening component (2) includes a movable groove (201), a movable block (202), and a stimulation block (203). The movable groove (201) is provided inside the seat body (101). Several movable blocks (202) are arranged in a linear array in the movable groove (201) through the driving component (3). Several stimulation blocks (203) are uniformly fixed on the top surface of the movable block (202), and the ends of the stimulation blocks (203) extend to the outside through the movable groove (201).

2. The anesthesiology postoperative awakening device for easy repositioning according to claim 1, characterized in that, The support groove (102) has an arc-shaped structure, and the top surface of the movable block (202) is an arc-shaped surface. The arc of the movable block (202) is the same as the arc of the support groove (102).

3. The anesthesiology postoperative awakening device for easy repositioning according to claim 2, characterized in that, The bottom surface of the movable block (202) is V-shaped, and the motion trajectory formed by several movable blocks (202) is wavy.

4. The anesthesiology postoperative awakening device for easy repositioning according to claim 3, characterized in that, The wake-up component (2) further includes a guide groove A (204), a guide block A (205), and a spring (206); at least one guide groove A (204) is provided in the movable groove (201); at least one guide block A (205) is fixed on the movable block (202), and the guide block A (205) slides with the guide groove A (204); the two ends of the spring (206) are fixedly connected to the inner wall of the guide groove A (204) and the guide block A (205) respectively.

5. The anesthesiology postoperative awakening device for easy repositioning according to claim 4, characterized in that, The drive assembly (3) includes a servo motor (301), a reciprocating lead screw (302), a sliding block (303), and a reciprocating pin (304). The servo motor (301) is fixed on the base (101) by a motor mount, and the output end of the servo motor (301) extends through the base (101) into the movable slot (201). The reciprocating lead screw (302) is fixedly connected to the output end of the servo motor (301). The sliding block (303) is sleeved on the reciprocating lead screw (302) and slides in cooperation with the movable slot (201). The reciprocating pin (304) slides through the reciprocating slot of the reciprocating lead screw (302) and is fixedly connected to the sliding block (303) by an adjustment assembly (4).

6. The anesthesiology postoperative awakening device for easy repositioning according to claim 5, characterized in that, The top surface of the sliding block (303) is a V-shaped surface, and the V-shaped surface of the sliding block (303) slides in contact with the V-shaped surface of the movable block (202).

7. The anesthesiology postoperative awakening device for easy repositioning according to claim 5, characterized in that, The adjusting component (4) includes a groove (401), a moving groove (402), a moving block (403), a fixed block (404), a pressing block (405), a pressing groove (406), a guide groove B (407), and a guide block B (408); the sliding block (303) has a groove (401) and the reciprocating screw (302) slides in cooperation with the groove (401); the moving groove (402) is provided in the groove (401); the moving block (403) is slidably disposed in the moving groove (402) and fixed with the reciprocating pin (304). Fixed connection; at least two fixed blocks (404) are linearly arrayed and fixed in the movable groove (201); two extrusion blocks (405) are symmetrically arranged in the movable groove (201) through the adaptation component (5); two extrusion grooves (406) are symmetrically opened on one side of the sliding block (303); four guide grooves B (407) are symmetrically opened on both sides of the inner wall of the movable groove (201); two guide blocks B (408) are symmetrically fixed on both sides of the guide grooves B (407), and the guide blocks B (408) and the guide grooves B (407) slide in cooperation.

8. A post-anesthesia awakening device for easy repositioning according to claim 7, characterized in that, Both the extrusion block (405) and the extrusion groove (406) are right-angled triangular structures, and the inclined surface of the extrusion block (405) slides in contact with the inclined surface of the extrusion groove (406).

9. A post-anesthesia awakening device for easy repositioning according to claim 7, characterized in that, The adapting component (5) includes a connecting groove (501), an adapting groove (502), an adapting block (503), a receiving groove (504), a connecting block (505), a limiting groove (506), a limiting pin (507), and a screw (508); the fixing block (404) has a connecting groove (501) inside; the fixing block (404) has two symmetrically opened adapting grooves (502), and the two adapting grooves (502) are connected to the connecting groove (501); the adapting block (503) slides through the adapting groove (502) and is fixed to the pressing block (405). Connection; the adapting block (503) is provided with a receiving groove (504); the connecting block (505) is slidably inserted into the receiving groove (504) and slidably engaged with the connecting groove (501); the connecting block (505) is symmetrically provided with two limiting grooves (506); the limiting pin (507) is slidably inserted into the limiting groove (506) and fixedly connected to the inner wall of the receiving groove (504); at least two screws (508) are symmetrically screwed onto the base (101), and the ends of the screws (508) are rotatably connected to one of the adapting blocks (503) through a rotating shaft.

10. A post-anesthesia awakening device for easy repositioning according to claim 9, characterized in that, The limiting groove (506) is an inclined structure, and the distance between the two limiting grooves (506) near the end of the screw (508) is greater than the distance between the two limiting grooves (506) away from the end of the screw (508).

Citation Information

Patent Citations

  • Postoperative awakening device for anesthesiology department

    CN115970124A