CN220442879U - Early rehabilitation exercise motion monitoring device after thoracic surgery operation - Google Patents

Early rehabilitation exercise motion monitoring device after thoracic surgery operation Download PDF

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Publication number
CN220442879U
CN220442879U CN202321572549.9U CN202321572549U CN220442879U CN 220442879 U CN220442879 U CN 220442879U CN 202321572549 U CN202321572549 U CN 202321572549U CN 220442879 U CN220442879 U CN 220442879U
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China
Prior art keywords
patient
monitoring device
bed
support body
drainage bottle
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CN202321572549.9U
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Chinese (zh)
Inventor
马佳佳
刘晓芯
薛蓓
张正敏
牛淑珍
杜风晨
陶慧
杨洋
华中艳
陈曦
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Shanghai Chest Hospital
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Shanghai Chest Hospital
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Abstract

The utility model discloses a monitoring device for early rehabilitation exercise after thoracic surgery, which comprises a supporting frame for supporting the body of a patient when the patient gets out of a bed to perform rehabilitation activities; an armrest for holding left and right hands of a patient when the patient gets out of the bed to perform rehabilitation activities, wherein the armrest is arranged on the support frame; the drainage bottle placing basket is used for placing the thoracic drainage bottle arranged on the patient when the patient gets out of the bed to perform rehabilitation activities, and the drainage bottle placing basket is arranged at the lower part of the supporting frame and is lower than the knee joint position of the patient. When the patient gets out of bed and carries out rehabilitation activities, place the drainage bottle in the drainage bottle places the basket, adopted this kind of structure not only reduced patient's family members and patient's intensity of labour to can reduce patient's discomfort of getting out of bed activity, can also make the position of drainage bottle be less than patient's knee joint position all the time, avoid taking place to flow backward, carry out the rehabilitation activity of getting out of bed for the patient who has settled the chest drainage bottle and brought great facility.

Description

Early rehabilitation exercise motion monitoring device after thoracic surgery operation
Technical Field
The utility model relates to the technical field of medical appliances, in particular to a monitoring device for early rehabilitation exercise after thoracic surgery.
Background
Pleural effusion is a clinically common pulmonary disease, and various pulmonary diseases such as inflammation, tuberculosis, malignant tumor and the like can cause pleural effusion, while extrapulmonary diseases such as heart failure, liver cirrhosis, pericardial effusion, malignant tumor of abdominal cavity, pancreatitis, nephrotic syndrome, malnutrition, chest trauma and the like are all common causes of pleural effusion. Once the hydrothorax is formed in a patient, the patient presses the lung and the heart when the hydrothorax is large, and the patient feels urgent, chest distress, hypoxia and even respiratory failure, so that the hydrothorax is required to be sufficiently drained during clinical treatment, and most of the hydrothorax is currently subjected to related drainage work through a drainage bottle, and the air and the liquid in the chest can be smoothly drained into the drainage bottle when the drainage is smooth, so that the effect of improving hydrothorax or pressing the air is achieved.
In order to promote the rapid recovery of diseases, the patient with the closed thoracic drainage bottle needs to move down the bed properly, and the prior method uses a belt to carry the hook bolt of the closed thoracic drainage bottle. The closed thoracic drainage bottle is moved along with the patient by lifting the hand by family members or the patient. However, the home lifting is inconsistent with the patient, so that the chest lead bottle is easy to keep in a horizontal position, and the drainage tube is easy to be pulled accidentally, so that the drainage tube is taken off or discomfort is brought to the patient. In addition, when the patient self-lifts the drainage bottle and moves, the discomfort of the patient is aggravated by the weight of the drainage liquid in the drainage bottle, and the recovery time is prolonged. Furthermore, the portable drainage bottle of the patient is difficult to reach below the knee joint, is easy to flow back, causes infection, is not high enough to maintain drainage pressure, and brings great inconvenience to the patient who is provided with the chest drainage bottle to take off the bed for rehabilitation activities.
Disclosure of Invention
In order to solve the problems in the prior art, the utility model aims to provide the multifunctional adjustable drainage auxiliary device which is reasonable in design, simple in structure and convenient to operate, and when a patient gets out of a bed to perform rehabilitation activities, the drainage bottle is placed in the drainage bottle placement basket, by adopting the structure, the labor intensity of the family members of the patient and the patient is reduced, the uncomfortable feeling of the patient getting out of the bed can be reduced, the position of the drainage bottle is always lower than the knee joint position of the patient, the occurrence of countercurrent is avoided, and the multifunctional adjustable drainage auxiliary device for thoracic surgery is greatly facilitated for the patient with the thoracic drainage bottle to perform the getting-out rehabilitation activities.
In order to solve the technical problems, the utility model is realized by adopting the following technical scheme:
early rehabilitation exercise motion monitoring device after thoracic surgery, characterized by comprising
A support frame for supporting the body of a patient when the patient gets out of the bed to perform rehabilitation activities;
an armrest for holding left and right hands of a patient when the patient gets out of the bed to perform rehabilitation activities, wherein the armrest is arranged on the support frame;
the drainage bottle placing basket is used for placing the thoracic drainage bottle arranged on the patient when the patient gets out of the bed to perform rehabilitation activities, and the drainage bottle placing basket is arranged at the lower part of the supporting frame and is lower than the knee joint position of the patient.
In a preferred embodiment of the present utility model, the supporting frame includes a front supporting body and a rear supporting body, the upper end of the front supporting body is connected to the upper portion of the rear supporting body through a diagonal strut, and the lower portion of the front supporting body is connected to the lower portion of the rear supporting body through a cross strut.
In a preferred embodiment of the present utility model, the lower end of the front support body is slightly higher than the lower end of the rear support body, and universal wheels with self-locking function are installed at the lower ends of the front support body and the rear support body.
In a preferred embodiment of the present utility model, the support frame further comprises a static support body for static support of the patient's body when the patient gets out of bed for rehabilitation activity for a short period of rest, the static support body being disposed at the rear side of the rear support body, the lower end of the static support body being on the same horizontal plane as the lower end of the front support body.
In a preferred embodiment of the utility model, the lower end of the armrest is slidably inserted into the upper end of the rear support, and an armrest height adjusting structure capable of adjusting the height of the armrest according to the height of the patient is provided at the upper end of the rear support.
In a preferred embodiment of the present utility model, the armrest includes a fixed section and a rotatable section, the lower end of the fixed section is inserted into the upper end of the rear support body, the upper end of the fixed section is provided with a sliding sleeve, the lower end of the rotatable section is disposed in the sliding sleeve and can slide up and down along the axial direction of the sliding sleeve, the lower end of the rotatable section is provided with a positioning pin, and the upper end of the fixed section is provided with a positioning slot corresponding to the positioning pin.
In a preferred embodiment of the utility model, the upper end of the rotatable segment is provided with an anti-slip sleeve for facilitating the gripping by the patient.
In a preferred embodiment of the present utility model, the chest surgical early rehabilitation exercise monitoring device further comprises a finger pulse oxygen detection structure for detecting finger pulse oxygen and pulse rate of the patient, the finger pulse oxygen detection structure being disposed on one of the handrails.
In a preferred embodiment of the present utility model, the thoracic surgery early rehabilitation exercise movement monitoring device further includes a 6-minute walk test display structure for a patient to perform a 6-minute walk test, the 6-minute walk test display structure being provided on the other armrest.
Compared with the prior art, when a patient gets out of the bed to perform rehabilitation activities, the drainage bottle is placed in the drainage bottle placing basket, the structure reduces the labor intensity of the family members of the patient and the patient, reduces the uncomfortable feeling of the patient getting out of the bed, enables the position of the drainage bottle to be always lower than the knee joint position of the patient, avoids countercurrent, and brings great convenience for the patient with the chest drainage bottle to perform the getting-out rehabilitation activities.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic structural view of the present utility model.
Fig. 2 is a schematic view of the structure of the present utility model after the fixed section and the rotatable section are separated.
Fig. 3 is a schematic view of the structure of the present utility model after the stationary segment and the rotatable segment are mated.
Detailed Description
The utility model is further described with reference to the following detailed drawings in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the implementation of the utility model easy to understand.
Referring to fig. 1 and 3, there is shown a monitoring device for early rehabilitation exercise after thoracic surgery, comprising a support frame 100, an armrest 200, and a drainage bottle placement basket 300.
The support 100 is used for supporting the body of the patient when the patient gets out of the bed for rehabilitation activities, the handrail 200 is used for being held by the left hand and the right hand of the patient when the patient gets out of the bed for rehabilitation activities, and the handrail 200 is arranged on the support.
The drainage bottle placing basket 300 is used for placing a thoracic drainage bottle mounted on a patient when the patient gets out of bed for rehabilitation activities, and the drainage bottle placing basket 300 is arranged at the lower part of the supporting frame 100 and is lower than the knee joint position of the patient.
The support frame 100 includes preceding support body 110 and back support body 120, and the upper end of preceding support body 110 is connected with the upper portion of back support body 120 through oblique branch 130, and the lower part of preceding support body 110 is connected with the lower part of back support body 120 through cross strut 140, and drainage bottle places basket 300 and establishes the cross strut on the left side or the cross strut on the right side through the couple, and according to patient's chest drainage bottle's position, adopts this kind of structure effectual holistic stability who has improved the support frame.
The lower extreme of preceding support body 110 is slightly higher than the lower extreme of back support body 120, all installs the universal wheel 150 that has the self-locking function at the lower extreme of preceding support body 110 and back support body 120, adopts this kind of structure can make the patient when getting out of bed and carrying out rehabilitation activity the health slightly incline forward, and the patient of being convenient for carries out rehabilitation activity, has further improved this auxiliary device's practicality.
The support 100 further comprises a static support 160 for static support of the patient's body when the patient gets out of bed for rehabilitation activity for a short time, the static support 160 is disposed at the rear side of the rear support 120, and the lower end of the static support 160 is on the same horizontal plane with the lower end of the front support 110.
When a patient gets out of bed to perform rehabilitation activities and needs to perform short rest, the patient can stand with the body inclined slightly forward, and the static support body 160 can be contacted with the ground under the gravity of the body while standing straight, so that the patient with short rest can be effectively supported statically.
The infusion support can be arranged on the support 100, so that a patient can conveniently input relevant liquid medicine when getting out of bed for rehabilitation activities, and the practicality of the auxiliary device is effectively improved.
The lower extreme of handrail 200 slides and pegs graft in the upper end of back support 120, is equipped with a handrail height adjustment structure 400 that can adjust the height of handrail according to patient's height in the upper end department of back support 120, when needs are adjusted the handrail height, only need unscrew handrail height adjustment structure 400, slide the lower extreme of handrail 200 along the upper end of back support 120 afterwards, slide to the required height of patient after, with handrail height adjustment structure 400 screw up can.
The armrest 200 includes a fixed section 210 and a rotatable section 230, the lower end of the fixed section 210 is inserted into the upper end of the rear support body 120, a sliding sleeve 220 is disposed at the upper end of the fixed section 210, the lower end of the rotatable section 230 is disposed in the sliding sleeve 220 and can slide up and down along the axial direction of the sliding sleeve 220, a positioning pin 231 is disposed at the lower end of the rotatable section 230, and a positioning slot 211 corresponding to the positioning pin 231 is disposed at the upper end of the fixed section 210.
When the auxiliary device is required to be fixed close to a sickbed, the rotatable section is only required to be lifted upwards slightly, the positioning feet are pulled out from the positioning grooves, then the rotatable section rotates around the axis of the sliding sleeve, after 90 degrees of rotation, namely, when the rotatable section and the rear supporting body are positioned on the same plane, the positioning feet are inserted into the other positioning grooves to be positioned, if a patient needs to get off the sickbed to move, the patient only needs to lift the rotatable section upwards to rotate reversely to be positioned, and the auxiliary device is conveniently fixed beside the sickbed by adopting the structure.
The upper end of rotatable section 230 is equipped with the antiskid cover 232 that makes things convenient for the patient to grip, adopts this kind of structure can effectually improve the frictional force between patient's hand and the handrail, avoids the hand to slide down from the handrail in patient's the recovered activity in-process, has further improved this auxiliary device's security performance.
The early rehabilitation exercise movement monitoring device after the chest surgery further comprises a finger pulse oxygen detection structure for detecting finger pulse oxygen and pulse rate of a patient, wherein the finger pulse oxygen detection structure is arranged on one of the handrails.
The finger pulse oxygen detection structure is provided with a power supply module, the power supply module can be replaced, a power supply wire is not required to provide power, when the finger pulse oxygen and the pulse rate of a patient need to be detected, the finger pulse oxygen detection structure is only required to be clamped on the finger of the patient, medical staff can read out the finger pulse oxygen and the pulse rate of the patient through the finger pulse oxygen display screen arranged on the finger pulse oxygen detection structure, and if abnormal conditions occur, the medical staff can conveniently treat the patient in time.
The monitoring device for early rehabilitation exercise after chest surgery further comprises a 6-minute walking test display structure for a patient to perform a 6-minute walking test, wherein the 6-minute walking test display structure is arranged on the other handrail.
When medical staff needs to carry out 6 minutes walking test to the patient, only need press the timing button of 6 minutes walking test display structure, the distance and the time that the patient walked can show on the distance display screen that sets up on 6 minutes walking test display structure afterwards, the effectual practicality that has improved this auxiliary device.
In summary, when the patient gets out of the bed to perform rehabilitation activities, the drainage bottle is placed in the drainage bottle placement basket, by adopting the structure, not only the family members of the patient and the labor intensity of the patient are reduced, but also the uncomfortable feeling of the patient getting out of the bed can be reduced, the position of the drainage bottle is always lower than the knee joint position of the patient, the occurrence of countercurrent is avoided, and great convenience is brought to the patient with the chest drainage bottle for getting out of the bed to perform rehabilitation activities.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (8)

1. Early rehabilitation exercise motion monitoring device after thoracic surgery, characterized by comprising
A support frame for supporting the body of a patient when the patient gets out of the bed to perform rehabilitation activities;
an armrest for holding left and right hands of a patient when the patient gets out of the bed to perform rehabilitation activities, wherein the armrest is arranged on the support frame;
the drainage bottle placing basket is used for placing a thoracic drainage bottle arranged on a patient when the patient gets out of the bed to perform rehabilitation activities, and is arranged at the lower part of the supporting frame and lower than the knee joint position of the patient;
the support frame includes preceding supporter and back supporter, the upper end of preceding supporter is connected with the upper portion of back supporter through oblique branch, the lower part of preceding supporter is connected with the lower part of back supporter through horizontal branch.
2. The thoracic surgery early rehabilitation exercise movement monitoring device of claim 1 wherein: the lower end of the front support body is slightly higher than the lower end of the rear support body, and universal wheels with self-locking functions are arranged at the lower ends of the front support body and the rear support body.
3. The thoracic surgery early rehabilitation exercise movement monitoring device of claim 1 wherein: the support frame also comprises a static support body for carrying out static support on the body of the patient when the patient gets out of the bed to carry out rehabilitation activities for a short time, the static support body is arranged at the rear side of the rear support body, and the lower end of the static support body and the lower end of the front support body are positioned on the same horizontal plane.
4. The thoracic surgery early rehabilitation exercise movement monitoring device of claim 1 wherein: the lower end of the armrest is inserted into the upper end of the rear support body in a sliding way, and an armrest height adjusting structure capable of adjusting the height of the armrest according to the height of a patient is arranged at the upper end of the rear support body.
5. The thoracic surgery early rehabilitation exercise movement monitoring device of claim 1 wherein: the handrail comprises a fixed section and a rotatable section, wherein the lower end of the fixed section is inserted into the upper end of the rear supporting body, a sliding sleeve is arranged at the upper end of the fixed section, the lower end of the rotatable section is arranged in the sliding sleeve and can slide up and down along the axial direction of the sliding sleeve, a positioning foot is arranged at the lower end of the rotatable section, and a positioning groove corresponding to the positioning foot is formed in the upper end of the fixed section.
6. The thoracic surgery early rehabilitation exercise movement monitoring device of claim 5 wherein: the upper end of rotatable section is equipped with the antiskid cover that makes things convenient for the patient to grip.
7. The thoracic surgery early rehabilitation exercise movement monitoring device of claim 1 wherein: the early rehabilitation exercise movement monitoring device after the chest surgery further comprises a finger pulse oxygen detection structure for detecting finger pulse oxygen and pulse rate of a patient, and the finger pulse oxygen detection structure is arranged on one of the handrails.
8. The thoracic surgery early rehabilitation exercise movement monitoring device of claim 1 wherein: the monitoring device for early rehabilitation exercise after chest surgery further comprises a 6-minute walking test display structure for a patient to perform a 6-minute walking test, wherein the 6-minute walking test display structure is arranged on the other armrest.
CN202321572549.9U 2023-06-20 2023-06-20 Early rehabilitation exercise motion monitoring device after thoracic surgery operation Active CN220442879U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321572549.9U CN220442879U (en) 2023-06-20 2023-06-20 Early rehabilitation exercise motion monitoring device after thoracic surgery operation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321572549.9U CN220442879U (en) 2023-06-20 2023-06-20 Early rehabilitation exercise motion monitoring device after thoracic surgery operation

Publications (1)

Publication Number Publication Date
CN220442879U true CN220442879U (en) 2024-02-06

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ID=89724286

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321572549.9U Active CN220442879U (en) 2023-06-20 2023-06-20 Early rehabilitation exercise motion monitoring device after thoracic surgery operation

Country Status (1)

Country Link
CN (1) CN220442879U (en)

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