Medical device transfer support
Patent Information
- Application Number
- CN202520966203.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-15
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-05-15
AI Technical Summary
然而,目前只能依靠护士在转运重症患者时,同时携带转运呼吸机和微量泵,这不仅消耗了护士们大量的精力和体力,较为麻烦,而且在紧急情况下和需要频繁转运的时候还面临着非计划性拔管的问题,此外,转移重症患者的过程中要求护士需要动态观察的指标关键点,而目前的方式会导致护士的注意力容易分散到其他方面,严重影响重症患者的生命安全
[0022]本实用新型的医疗设备转运支架通过将立架连接于底架的一侧构成“L”形的架体结构,再通过将放置架连接于立架上并位于底架的正上方构成倒“F”形的架体结构,从而形成用于放置呼吸机的第一空腔和用于放置微量泵的第二空腔,在需要转移病人时,通过立架上的挂钩即可将整个医疗设备转运支架挂设于病人的床架上,从而将所需的医疗设备能够跟随病人同步转移,避免出现非计划性拔管的风险,提高转移重症患者的安全系数和降低护士的劳动强度。
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Figure CN224711251U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of ventilator support devices, specifically a medical equipment transport bracket. Background Technology
[0002] In clinical practice, transferring critically ill patients often requires the simultaneous transfer of various types of equipment, among which ventilators and infusion pumps are essential. However, currently, nurses must carry both the ventilator and infusion pump simultaneously during patient transfers. This not only consumes a significant amount of nurses' energy and physical strength and is quite cumbersome, but also raises the issue of unplanned extubation in emergency situations and when frequent transfers are necessary. Furthermore, the current method of dynamically monitoring key indicators during patient transfers can easily distract nurses, seriously impacting the patient's safety.
[0003] Based on this, the technical problem to be solved by this application is: how to solve the problem of simultaneously transferring ventilators and microinfusion pumps when transferring critically ill patients. Utility Model Content
[0004] To address the aforementioned technical problems, this utility model provides a medical equipment transport bracket. The transport bracket has a first cavity capable of accommodating a ventilator and a second cavity capable of accommodating a micro-infusion pump. The entire transport bracket is then hung on a bed frame via hooks, thereby enabling the simultaneous transfer of the ventilator and micro-infusion pump during the transfer of critically ill patients. This improves the safety of transferring critically ill patients and reduces the workload of nurses.
[0005] The technical solution of this utility model is:
[0006] A medical device transport bracket includes a base frame, a stand, hooks, and a placement rack;
[0007] The upright frame is connected to one side of the base frame;
[0008] The hook is connected to the upright frame and is used to connect the bed frame;
[0009] The placement rack is connected to the upright frame; the placement rack is arranged directly above the base frame, and the placement rack is spaced apart from the base frame;
[0010] A first cavity for placing a ventilator is formed between the placement frame, the base frame, and the upright frame; a second cavity for placing a micro-infusion pump is formed between the placement frame and the upright frame, and the second cavity is located above the first cavity.
[0011] In the aforementioned medical equipment transport bracket, the base frame includes multiple first connecting rods; the multiple first connecting rods are connected end to end in sequence to form the base frame; the upright frame is connected to one of the first connecting rods.
[0012] In the aforementioned medical equipment transport bracket, the base frame is provided with at least two support rods; the two ends of each support rod along its length are respectively connected to two oppositely arranged first connecting rods.
[0013] In the aforementioned medical equipment transport bracket, the base frame is further provided with a mounting seat; the mounting seat is connected to the upper end face of the support rod, and the mounting seat is used for positioning and mounting the ventilator.
[0014] In the aforementioned medical equipment transport bracket, the support frame includes a pair of symmetrically arranged uprights; each upright is connected to the hook.
[0015] The upright includes a first straight rod, a diagonal rod, and a second straight rod; both the first straight rod and the second straight rod extend in a vertical direction, one end of the first straight rod along its length direction is connected to the first connecting rod, and the other end is connected to the diagonal rod; the diagonal rod extends obliquely towards the first cavity, and the end of the diagonal rod away from the first straight rod along its length direction is connected to the second straight rod.
[0016] In the aforementioned medical device transport bracket, the support frame further includes at least one first reinforcing rod; the two ends of the first reinforcing rod along its length direction are respectively connected to the second straight rods of the two support frames.
[0017] In the aforementioned medical device transport bracket, there are multiple first reinforcing rods, which are spaced apart from top to bottom; a second reinforcing rod connects two adjacent first reinforcing rods; and the two ends of the second reinforcing rod along its length are respectively connected to two first reinforcing rods.
[0018] In the aforementioned medical device transport bracket, the placement frame includes multiple second connecting rods and at least one third reinforcing rod; the multiple second connecting rods are connected end to end in sequence to the upright frame to form the placement frame; the two ends of the third reinforcing rod along its length direction are respectively connected to two second connecting rods.
[0019] In the aforementioned medical device transport bracket, the placement frame is provided with a stop block; there are multiple stop blocks, which are spaced apart and connected to the edge of the placement frame; a second cavity is formed between the placement frame, the stop blocks, and the upright frame; there is a gap between the stop block and the upright frame near the upright frame; the gap is used to fix the connecting tube between the micro-infusion pump and the ventilator.
[0020] In the aforementioned medical equipment transport bracket, the medical equipment transport bracket also includes casters; the casters are located at the bottom end of the base frame.
[0021] This utility model has at least one of the following advantages or beneficial effects:
[0022] This utility model's medical equipment transport bracket forms an "L"-shaped frame structure by connecting the upright to one side of the base frame, and an inverted "F"-shaped frame structure by connecting the placement frame to the upright and placing it directly above the base frame. This creates a first cavity for placing a ventilator and a second cavity for placing a micro-infusion pump. When a patient needs to be transferred, the entire medical equipment transport bracket can be hung on the patient's bed frame using hooks on the upright, allowing the necessary medical equipment to be transferred synchronously with the patient. This avoids the risk of unplanned extubation, improves the safety of transferring critically ill patients, and reduces the workload of nurses. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the operation of the medical device transport bracket of this utility model;
[0024] Figure 2 This is a three-dimensional schematic diagram of the medical device transport bracket of this utility model;
[0025] Figure 3 This is a side view of the medical device transport bracket of this utility model;
[0026] Figure 4 This is a rear view of the medical device transport bracket of this utility model.
[0027] Explanation of reference numerals in the attached figures:
[0028] Base frame 1; First connecting rod 11; Mounting base 12; Upright frame 2; Upright pole 21; First straight rod 211; Diagonal rod 212; Second straight rod 213; First reinforcing rod 214; Second reinforcing rod 215; Hook 201; Placement rack 3; Second connecting rod 31; Third reinforcing rod 32; Stop block 33; Casters 4; Bed frame 5; Ventilator 6; Micro-infusion pump 7; First cavity 1a; Second cavity 1b. Detailed Implementation
[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0030] As attached Figures 1-4As shown, an embodiment of this utility model provides a medical device transport bracket, including a base frame 1, a stand 2, a hook 201, and a placement rack 3;
[0031] The upright frame 2 is connected to one side of the base frame 1;
[0032] The hook 201 is connected to the upright frame 2; the hook 201 is used to connect the bed frame 5.
[0033] The placement rack 3 is connected to the upright frame 2; the placement rack 3 is arranged directly above the base frame 1, and the placement rack 3 is spaced apart from the base frame 1;
[0034] A first cavity 1a for placing a ventilator 6 is formed between the placement frame 3, the base frame 1, and the upright frame 2; a second cavity 1b for placing a micro-infusion pump 7 is formed between the placement frame 3 and the upright frame 2, and the second cavity 1b is located above the first cavity 1a.
[0035] The medical equipment transport bracket in this embodiment forms an "L"-shaped frame structure by connecting the upright 2 to one side of the base frame 1, and an inverted "F"-shaped frame structure by connecting the placement frame 3 to the upright 2 and placing it directly above the base frame 1. This forms a first cavity 1a for placing the ventilator 6 and a second cavity 1b for placing the micro-infusion pump 7. When it is necessary to transfer the patient, the entire medical equipment transport bracket can be hung on the patient's bed frame 5 by using the hook 201 on the upright 2. This allows the required medical equipment to be transferred synchronously with the patient, avoiding the risk of unplanned extubation, improving the safety factor of transferring critically ill patients and reducing the workload of nurses.
[0036] In this embodiment, preferably, the medical device transfer bracket further includes casters 4; the casters 4 are disposed at the bottom end of the base frame 1. This design facilitates the handling of the medical device transfer bracket by staff, who can move the transfer bracket around using the casters 4 and transport the medical device to the required location.
[0037] In this embodiment, the base frame 1 includes four first connecting rods 11; the four first connecting rods 11 are connected end to end to form the base frame 1, the base frame 1 is a rectangular structure and is horizontal to the ground; the upright frame 2 is connected to one of the first connecting rods 11 to form an "L" shaped frame structure.
[0038] In a preferred embodiment, the base frame 1 is provided with two support rods (not shown in the figure); the two ends of the support rods are respectively connected to two opposing first connecting rods 11, and the two support rods are arranged side by side. In a further preferred embodiment, to prevent the ventilator 6 from shifting during transfer, the base frame 1 is also provided with a mounting base 12; the mounting base 12 is connected to the upper end face of the support rods and is used for positioning and mounting the ventilator 6. It should be noted that the ventilator 6 used in this embodiment is the Mindray Medical SV300 (only the main body of the ventilator 6, excluding its built-in support), which has a detachable mounting base 12; therefore, this application will not describe the mounting base 12 in detail. Of course, those skilled in the art can also use other types of ventilators 6 and adaptable mounting bases 12 for positioning and mounting, which should also fall within the scope of protection of this embodiment.
[0039] refer to Figure 3 In this embodiment, the support frame 2 comprises a pair of symmetrically arranged uprights 21; each upright 21 is connected to a hook 201; specifically, each upright 21 includes a first straight rod 211, a diagonal rod 212, and a second straight rod 213; both the first straight rod 211 and the second straight rod 213 extend vertically; one end of the first straight rod 211 along its length is connected to the first connecting rod 11, and the other end is connected to the diagonal rod 212; the diagonal rod 212 extends obliquely upwards towards the first cavity 1a, and the end of the diagonal rod 212 along its length away from the first straight rod 211 is connected to the second straight rod 213. Under this design, refer to Figure 1 The purpose of the diagonal bar 212 is to avoid the bed frame 5. After the medical equipment transfer bracket is hung on the bed frame 5, the first cavity 1a will be located at the lower part of the bed frame 5, thereby saving the space occupied by the bracket in this embodiment.
[0040] In a preferred embodiment, the support frame 2 further includes two first reinforcing rods 214, which are arranged vertically at intervals. The two ends of each first reinforcing rod 214 along its length are respectively connected to the second straight rods 211 of the two support frames 21. A second reinforcing rod 215 is connected between the two first reinforcing rods; the second reinforcing rod 215 extends vertically; and its two ends are respectively connected to the two first reinforcing rods 214. In this preferred embodiment, the first reinforcing rods 214 and 215 serve two purposes: firstly, to increase the stability of the entire medical device transport support; and secondly, to form a second receiving cavity with the placement frame 3 described below, which prevents the micro-pump 7 from shifting during transport.
[0041] In this embodiment, the placement frame 3 includes three second connecting rods 31; the three second connecting rods 31 are connected end to end in sequence, and one end of the second connecting rods 31 located on both sides is connected to the upright frame 2 to form a rectangular placement frame 3. Preferably, to improve the stability and load-bearing capacity of the placement frame 3, the placement frame 3 also includes two third reinforcing rods 32; the two ends of the third reinforcing rods 32 along their length are respectively connected to the two second connecting rods 31.
[0042] As a further preferred embodiment, the placement rack 3 is provided with a stop block 33; there are multiple stop blocks 33, which are spaced apart and connected to the edge of the placement rack 3; the placement rack 3, the stop blocks 33, and the stand 2 form the second cavity 1b. In this design, the second cavity 1b is only open at the top, so the micro-pump 7 can only be placed or removed from the top of the second cavity 1b, preventing the placement rack 3 from accidentally detaching from the second cavity 1b. In this embodiment, the stop block 33 extends vertically upwards, and its height depends on the required number of micro-pumps 7. In clinical applications, its height should be sufficient for stacking at least three micro-pumps 7.
[0043] In this embodiment, there is a gap between the stop block 33 near the stand 2 and the stand 2; the gap is used to fix the connecting tube of the micro-infusion pump 7 and the ventilator 6 (not shown in the figure).
[0044] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A medical device transport stand, characterized in that, Includes base frame, upright frame, hooks, and placement rack; The upright frame is connected to one side of the base frame; The hook is connected to the upright frame and is used to connect the bed frame; The placement rack is connected to the upright frame; the placement rack is arranged directly above the base frame, and the placement rack is spaced apart from the base frame; A first cavity for placing a ventilator is formed between the placement frame, the base frame, and the upright frame; a second cavity for placing a micro-infusion pump is formed between the placement frame and the upright frame, and the second cavity is located above the first cavity; The placement rack is equipped with multiple stops, which are spaced apart and connected to the edge of the placement rack. The second cavity is formed between the placement frame, the stop block, and the upright frame; there is a gap between the stop block and the upright frame near the upright frame; the gap is used to fix the connecting tube between the micro-infusion pump and the ventilator.
2. The medical device transport bracket according to claim 1, characterized in that, The base frame includes multiple first connecting rods; the multiple first connecting rods are connected end to end in sequence to form the base frame; the upright is connected to one of the first connecting rods.
3. The medical device transport bracket according to claim 2, characterized in that, The base frame is provided with at least two support rods; the two ends of the support rods along their length are respectively connected to two oppositely arranged first connecting rods.
4. The medical device transport bracket according to claim 3, characterized in that, The base frame is also provided with a mounting base; the mounting base is connected to the upper end face of the support rod, and the mounting base is used to position and install the ventilator.
5. The medical device transport bracket according to claim 2, characterized in that, The support frame includes a pair of symmetrically arranged uprights; each upright is connected to the hook. The upright includes a first straight rod, a diagonal rod, and a second straight rod; both the first straight rod and the second straight rod extend in a vertical direction, one end of the first straight rod along its length direction is connected to the first connecting rod, and the other end is connected to the diagonal rod; the diagonal rod extends obliquely towards the first cavity, and the end of the diagonal rod away from the first straight rod along its length direction is connected to the second straight rod.
6. The medical device transport bracket according to claim 5, characterized in that, The support frame also includes at least one first reinforcing rod; the two ends of the first reinforcing rod along its length are respectively connected to the second straight rods of the two supports.
7. The medical device transport bracket according to claim 6, characterized in that, The first reinforcing rod consists of multiple rods, which are spaced apart from top to bottom; a second reinforcing rod connects two adjacent first reinforcing rods; and the two ends of the second reinforcing rod along its length are respectively connected to two first reinforcing rods.
8. The medical device transport bracket according to claim 1, characterized in that, The placement frame includes multiple second connecting rods and at least one third reinforcing rod; the multiple second connecting rods are connected end to end in sequence to form the placement frame; the two ends of the third reinforcing rod along its length are respectively connected to two second connecting rods.
9. The medical device transport bracket according to claim 1, characterized in that, The medical equipment transport bracket also includes casters; the casters are located at the bottom of the base frame.