An infusion fixing structure for intensive care
By designing an infusion fixation structure for intensive care, using a wrist strap and protective components to clamp the patient's hand and adjust the needle angle, the problem that traditional fixation methods cannot protect the needle is solved, and the stability and safety of infusion are achieved.
Patent Information
- Application Number
- CN202411766762.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2044-12-04
AI Technical Summary
Traditional infusion fixation methods cannot effectively protect the needle in intensive care, causing the needle to be suddenly pulled out when the patient is unconscious or pulled by external force, causing pain, vascular damage and infection risks.
A fixed infusion structure for critical care was designed, which includes a wrist strap, a connecting frame, a hand strap, an upper splint and a protective component. By clamping and adjusting the needle angle, it prevents the needle from falling off and being pulled out suddenly, ensuring the continuity and safety of the infusion.
It effectively prevents the needle from falling off and being pulled out suddenly, avoids bleeding, pain and blood vessel damage, and ensures the stability and safety of infusion.
Smart Images

Figure CN119280577B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of infusion equipment, in particular to an infusion fixing structure for intensive care. Background Art
[0002] In the medical field, intensive care is a vital medical service that requires continuous and close monitoring and care of patients. Infusion, as a basic operation in intensive care, is of great significance to the treatment and rehabilitation of patients. However, in actual operations, especially in intensive care environments, patients often find it difficult to keep their hands still due to unconsciousness, limited physical mobility or other reasons, which greatly increases the risk of needle dislocation during infusion.
[0003] When the patient makes large hand movements unconsciously, or the infusion tube is accidentally pulled by external force, the traditional fixing method often cannot provide sufficient protection and cushioning, causing the needle to be suddenly pulled out at an unreasonable angle. This will not only cause severe pain to the patient, but may also cause blood vessel damage, increase the risk of infection, and even threaten the patient's life safety. In addition, there is a situation where part of the needle is pulled out, and the remaining part is still inside the back of the hand. Summary of the Invention
[0004] In view of the above problems existing in the existing infusion fixing structure for intensive care, the present invention is proposed.
[0005] Therefore, the problem to be solved by the present invention is that when the patient makes large hand movements in an unconscious state, or when the infusion tube is accidentally pulled by external force, the traditional fixing method often cannot provide sufficient protection and buffering, causing the needle to be suddenly pulled out at an unreasonable angle, which not only causes severe pain to the patient, but may also cause vascular damage and increase the risk of infection.
[0006] To solve the above technical problems, the present invention provides the following technical solutions: an infusion fixation structure for intensive care, comprising a main body assembly, including a wrist strap, a connecting frame, a hand strap, an upper splint, a lower splint, and a connecting block, wherein the hand strap and the wrist strap are fixed by Velcro straps attached to the wrist straps, the connecting frame is a rigid support frame, the connecting block is fixed to the top of the connecting frame, and the upper splint and the lower splint are fixed by bandages;
[0007] The top end of the sliding rod is fixed with a first spring, and the bottom end of the sliding rod is fixed with a first spring, and the second end of the sliding rod is fixed with a first spring, and the second end of the sliding rod is fixed with a first spring, and the second end of the sliding rod is fixed with a first spring, and the second end of the sliding rod is fixed with a first spring.
[0008] As a preferred solution of the infusion fixing structure for intensive care described in the present invention, the protective component also includes a protective part, which is arranged in the movable plate, including a third spring fixed to the inner wall of the movable plate, the other end of the third spring is fixed to the inner wall of the bracket, an insertion rod is sliding in the movable plate, a limiting groove is provided in the bracket, the end of the insertion rod is inserted into the limiting groove, the end of the insertion rod is provided with an inclined surface, and a fourth spring is fixed between the two insertion rods.
[0009] As a preferred solution of the infusion fixing structure for intensive care described in the present invention, the protective component also includes a clamping member, which is arranged in the movable plate, including a support plate sliding in the movable plate, a clamping block sliding on the surface of the support plate, a limiting block fixed in the clamping block, a fifth spring is arranged between the two clamping blocks, and a positioning block is fixed on the top of the support plate.
[0010] As a preferred solution of the infusion fixing structure for intensive care described in the present invention, the clamping member further includes a driving handle fixed to one side of the clamping block, a positioning rod is fixed to one side of the clamping block, the positioning rod slides in the support plate, a card block is fixed to the end of the positioning rod, a fixing groove is opened in the movable plate, and the card block can be inserted into the fixing groove.
[0011] As a preferred solution of the infusion fixing structure for intensive care described in the present invention, the protective component also includes a support member, which is arranged on one side of the bracket, including a support seat fixed to the end of the bracket, a first support rod is rotatably connected in the bracket, a second support rod is hinged at the other end of the first support rod, a support wheel is rotatably connected to one side of the second support rod, and a drive rod is rotatably connected in the other end of the second support rod, and the drive rod is fixed to one side of the movable plate.
[0012] As a preferred solution of the infusion fixing structure for intensive care of the present invention, the protective component further includes a positioning member, which is arranged on one side of the wrist strap, including a connecting seat fixed to one side of the wrist strap, and the connecting seat is fixed with a connecting platform.
[0013] As a preferred solution of the infusion fixing structure for intensive care of the present invention, the first connecting ball is spherically connected to the inner side of the connecting platform, and a connecting sleeve is fixed to one side of the first connecting ball.
[0014] As a preferred solution of the infusion fixing structure for intensive care described in the present invention, an adjusting rod is slidably connected in the connecting sleeve, a fixing bolt is rotatably connected in the connecting sleeve through a thread, a shift rod is fixed to the end of the fixing bolt, and an extrusion groove is opened in the adjusting rod.
[0015] As a preferred solution of the infusion fixing structure for intensive care of the present invention, a second connecting ball is fixed to the end of the adjusting rod, the surface of the second connecting ball is spherically connected to a fixing platform, and a mounting frame is fixed to one side of the fixing platform.
[0016] As a preferred solution of the infusion fixing structure for intensive care described in the present invention, an extrusion plate is slidably arranged in the mounting frame, a fastening bolt is rotatably connected in the extrusion plate, the fastening bolt is rotatably connected to the mounting frame through a thread, and a knob is fixed on the end of the fastening bolt.
[0017] The beneficial effects of the present invention are as follows: by setting up a protective component and clamping the patient's hand, the needle is effectively prevented from falling off due to hand movements (such as unconscious grasping, swinging, etc.), thereby avoiding bleeding, pain and the trouble of re-puncture caused by the needle falling off; when the infusion tube is pulled by external force, the device can allow the needle to move away from the hand at a suitable angle, avoiding blood vessel damage caused by sudden pull-out, such as blood vessel rupture, thrombosis, etc. At the same time, it can also prevent the needle from retreating and injuring the blood vessels, further protecting the safety of the patient; it can automatically determine whether to separate from the hand according to the needle movement stroke. When the needle movement stroke does not exceed 1 / 3 of the needle tube, it maintains a stable connection with the hand to ensure the continuity of the infusion; when the needle movement stroke exceeds 1 / 3 of the needle tube, it will automatically drive the needle to separate from the hand to prevent the needle and the blood vessels on the back of the hand from being in an unstable connection state, thereby avoiding infusion interruption or blood vessel damage caused by unstable connection. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. Those skilled in the art can also derive other drawings based on these drawings without inventive effort. Among them:
[0019] Figure 1 This is a structural diagram of an infusion fixation structure for intensive care.
[0020] Figure 2 This is a cross-sectional structural diagram of a fixed platform for infusion fixation for intensive care.
[0021] Figure 3 Diagram of the upper splint structure for an infusion fixation structure used in intensive care.
[0022] Figure 4 Fixed structure for infusion in intensive care Figure 3 A magnified view of the local structure at point A.
[0023] Figure 5 Fixed structure for infusion in intensive care Figure 3 Enlarged view of the local structure at point B in the middle.
[0024] Figure 6 Diagram of the connection structure of the connecting frame and upper splint of the infusion fixation structure for intensive care.
[0025] Figure 7 Fixed structure for infusion in intensive care Figure 6 Enlarged view of the local structure at point C in the middle.
[0026] Figure 8 This is a partial cross-sectional structural diagram of a bracket for an infusion fixation structure used in intensive care.
[0027] Figure 9 This is a cross-sectional structural diagram of another part of the infusion fixation structure for intensive care.
[0028] Figure 10 Fixed structure for infusion in intensive care Figure 9 Enlarged view of the local structure at point D in the middle.
[0029] Figure 11 Fixed structure for infusion in intensive care Figure 9 Enlarged view of the local structure at point E in the middle.
[0030] Figure 12 Fixed structure for infusion in intensive care Figure 9 Enlarged view of the local structure at F in the middle.
[0031] Figure 13This is a diagram of the connection structure of the support plate and clamping block of the infusion fixation structure for intensive care.
[0032] Figure 14 This is a cross-sectional structural diagram of the clamping block of the infusion fixation structure for intensive care.
[0033] In the figure: main assembly 100; wrist strap 101; connecting frame 102; hand strap 103; upper splint 104; lower splint 105; connecting block 106; protective assembly 200; support block 201a; threaded rod 201b; threaded sleeve 201c; bracket 201d; slide bar 201e; first spring 201f; slide column 201g; slot 201d-1; drive column 201h; moving plate 201i; slot 201i-1; reset rod 201j; second spring 201k; protective member 202; third spring 202a; insertion rod 202b; limit slot 201d-2; inclined surface 202b-1; fourth spring 202c; clamping member 203; support plate 203a; clamping block 203a 03b; limit block 203c; fifth spring 203d; positioning block 203e; driving handle 203f; positioning rod 203g; blocking block 203h; fixing groove 201i-2; support member 204; support seat 204a; first support rod 204b; second support rod 204c; support wheel 204d; driving rod 204e; positioning member 205; connecting seat 205a; connecting platform 205b; first connecting ball 205c; connecting sleeve 205d; adjusting rod 205e; fixing bolt 205f; shift rod 205g; extrusion groove 205e-1; second connecting ball 205h; fixing platform 205i; mounting frame 205j; extrusion plate 205k; fastening bolt 205l; knob 205m. DETAILED DESCRIPTION
[0034] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.
[0035] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0036] Secondly, the term "one embodiment" or "embodiment" herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in various places throughout this specification does not necessarily refer to the same embodiment, nor does it refer to a separate or selective embodiment that is mutually exclusive of other embodiments.
[0037] Example 1, with reference to Figure 1 and Figure 2 , which is the first embodiment of the present invention, provides an infusion fixing structure for intensive care, which includes a main body component 100, including a wrist strap 101, a connecting frame 102, a hand strap 103, an upper splint 104, a lower splint 105 and a connecting block 106. The hand strap 103 and the wrist strap 101 are fixed by their own Velcro, the connecting frame 102 is a rigid support frame, the connecting block 106 is fixed to the top of the connecting frame 102, and the upper splint 104 and the lower splint 105 are fixed by bandages.
[0038] The connecting frame 102 is fixed by the wrist strap 101 and the hand strap 103. The upper splint 104 and the lower splint 105 clamp the hand and wrist to prevent the patient's hand and wrist from shaking randomly, thereby reducing the patient's hand movement. The upper splint 104 and the lower splint 105 do not affect the patient's finger movement, so that the patient's fingers can move, thereby preventing the fingers from becoming stiff due to long-term immobility.
[0039] When in use, first fix the wrist strap 101 and the hand strap 103 to the patient's hand and wrist, so as to position the connecting frame 102. At this time, the infusion needle can be inserted into the blood vessel on the back of the patient's hand, and hemostatic cotton is applied to the insertion site. At this time, the upper splint 104 and the lower splint 105 are fixed by bandages, and the connecting block 106 is snapped into the upper splint 104, so as to fix the position of the upper splint 104, so that the relative position of the upper splint 104 and the infusion needle is fixed.
[0040] The protective assembly 200 is arranged on the upper clamping plate 104 and includes a support block 201a fixed to the top of the upper clamping plate 104. A threaded rod 201b is fixed to one side of the support block 201a. A threaded sleeve 201c is connected to the surface of the threaded rod 201b by a threaded rotation. A bracket 201d is slidably connected to the surface of the threaded rod 201b. The bracket 201d and the threaded rod 201b are connected by a torsion spring. A sliding rod 201e slides in the bracket 201d. A first spring 201f is fixed to the end of the sliding rod 201e. A sliding column 201e slides in the sliding rod 201e. 1g, a slot 201d-1 is provided in the bracket 201d, the sliding column 201g is inserted into the slot 201d-1, and a driving column 201h is fixed to the end of the sliding column 201g. A movable plate 201i slides in the bracket 201d, and a slot 201i-1 is provided on one side of the movable plate 201i. The driving column 201h can be inserted into the slot 201i-1. A reset rod 201j slides in the movable plate 201i, and a second spring 201k is fixed on one side of the driving column 201h, and the other end of the second spring 201k is fixed to the inner wall of the sliding rod 201e.
[0041] The bracket 201d and the threaded rod 201b are connected by a torsion spring, so that the bracket 201d can be pressed toward the upper clamping plate 104 under the action of the reset elastic force of the torsion spring. By rotating the threaded sleeve 201c, the position of the threaded sleeve 201c on the threaded rod 201b can be adjusted, thereby adjusting the position of the bracket 201d, so as to facilitate the movable plate 201i to support the infusion needle. The infusion needle is fixed in the movable plate 201i. When the infusion needle is pulled by the infusion tube, the movable plate 201i can be driven to move synchronously. The first spring 201f is in a stretched state, used to pull the slide rod 201e, and the second spring 201k is in a compressed state, used to push the drive column 201h into the slot 201i-1.
[0042] Specifically, the protective component 200 also includes a protective part 202, which is arranged in the movable plate 201i, including a third spring 202a fixed to the inner wall of the movable plate 201i, the other end of the third spring 202a is fixed to the inner wall of the bracket 201d, and an insertion rod 202b is sliding in the movable plate 201i, a limiting groove 201d-2 is provided in the bracket 201d, the end of the insertion rod 202b is inserted into the limiting groove 201d-2, and a slope 202b-1 is provided at the end of the insertion rod 202b, and a fourth spring 202c is fixed between the two insertion rods 202b.
[0043] The third spring 202a is in a stretched state, and is used to pull the movable plate 201i so that the movable plate 201i will not slide easily in the bracket 201d. The fourth spring 202c is in a compressed state, and is used to push the insertion rod 202b. By inserting the insertion rod 202b into the limiting groove 201d-2, the movable plate 201i will not move in the opposite direction after sliding.
[0044] When the infusion needle fixed in the movable plate 201i is pulled by the infusion tube, the movable plate 201i can be driven to move synchronously, so that the movable plate 201i slides in the bracket 201d. At this time, the inclined surface 202b-1 of the insertion rod 202b slides past the side of the limit groove 201d-2. When the infusion needle stops moving, the insertion rod 202b is inserted into the limit groove 201d-2, so that the movable plate 201i will not move in the opposite direction after sliding, thereby preventing the infusion needle from moving back and injuring the blood vessel, thereby further protecting the safety of the patient.
[0045] Specifically, the protective component 200 also includes a clamping member 203, which is arranged in the movable plate 201i, including a support plate 203a sliding in the movable plate 201i, a clamping block 203b sliding on the surface of the support plate 203a, a limiting block 203c fixed in the clamping block 203b, a fifth spring 203d is arranged between the two clamping blocks 203b, and a positioning block 203e is fixed on the top of the support plate 203a.
[0046] The support plate 203a is used to support the clamping block 203b, and the positioning block 203e is used to support the two clamping blocks 203b. Two limit blocks 203c are fixed in each clamping block 203b. The fifth spring 203d is in a stretched state, used to pull the two clamping blocks 203b closer to each other. Through the cooperation of the clamping block 203b and the limit block 203c, the base of the infusion needle can be clamped and fixed, and through the cooperation of the movable plate 201i, the bracket 201d, the upper splint 104 and the lower splint 105, the infusion needle is fixed to the patient's hand, effectively preventing the needle from falling off due to hand movements such as unconscious grasping, swinging, etc., thereby avoiding bleeding, pain and the trouble of needing to re-puncture due to the falling needle.
[0047] Specifically, the clamping member 203 also includes a driving handle 203f fixed to one side of the clamping block 203b, a positioning rod 203g is fixed to one side of the clamping block 203b, the positioning rod 203g slides in the support plate 203a, and a clamping block 203h is fixed at the end of the positioning rod 203g. A fixed groove 201i-2 is opened in the movable plate 201i, and the clamping block 203h can be inserted into the fixed groove 201i-2.
[0048] By moving the driving handle 203f, the two clamping blocks 203b can be moved away from each other. When the clamping block 203b moves away from the positioning block 203e, the positioning rod 203g can be driven to move, so that the positioning rod 203g drives the clamping block 203h to move out of the fixed groove 201i-2, thereby releasing the limit on the support plate 203a, so that the position of the support plate 203a in the movable plate 201i can be adjusted, so that the clamping block 203b is moved to one side of the infusion needle base, thereby facilitating the clamping and positioning of the infusion needle base.
[0049] Specifically, the protective component 200 also includes a support member 204, which is arranged on one side of the bracket 201d, including a support base 204a fixed to the end of the bracket 201d, a first support rod 204b is rotatably connected inside the bracket 201d, and a second support rod 204c is hinged at the other end of the first support rod 204b, one side of the second support rod 204c is rotatably connected to a support wheel 204d, and the other end of the second support rod 204c is rotatably connected inside the drive rod 204e, and the drive rod 204e is fixed to one side of the movable plate 201i.
[0050] The support base 204a is used to support the bracket 201d, so that the bracket 201d can provide stable support for the movable plate 201i.
[0051] When the infusion needle is pulled by the infusion tube, the movable plate 201i can be driven to move synchronously, so that the movable plate 201i can drive the driving rod 204e to move, so that the driving rod 204e drives the end of the second support rod 204c to slide in the bracket 201d. At this time, the second support rod 204c and the first support rod 204b are close to each other, so that the bracket 201d is swung upward by the support of the second support rod 204c and the first support rod 204b, thereby adjusting the angle of the movable plate 201i in the bracket 201d, so that the infusion needle in the movable plate 201i changes its angle as it moves away from the hand, allowing the infusion needle needle to move away from the hand at a suitable angle, avoiding blood vessel damage caused by sudden pulling out, such as blood vessel rupture, thrombosis, etc.
[0052] Example 2, reference Figures 2 to 7 , which is the second embodiment of the present invention, and is based on the previous embodiment.
[0053] Specifically, the protective assembly 200 further includes a positioning member 205 , which is disposed on one side of the wrist strap 101 and includes a connecting seat 205 a fixed to one side of the wrist strap 101 , and a connecting platform 205 b is fixed to the connecting seat 205 a .
[0054] The connecting seat 205a is used to fix and support the connecting platform 205b. The setting of the connecting seat 205a is used to connect the connecting platform 205b and the wrist strap 101. According to needs, the connection method between the connecting seat 205a and the connecting platform 205b can be changed to a quick-release structure of the existing technology, which is more convenient to use.
[0055] Specifically, the first connecting ball 205c is spherically connected to the connecting platform 205b, and a connecting sleeve 205d is fixed to one side of the first connecting ball 205c.
[0056] Through the spherical connection between the first connecting ball 205c and the connecting platform 205b, the connecting sleeve 205d can be transformed in any direction relative to the connecting platform 205b.
[0057] Specifically, an adjusting rod 205e is slidably connected to the connecting sleeve 205d, a fixing bolt 205f is rotatably connected to the connecting sleeve 205d through a thread, a shift rod 205g is fixed to the end of the fixing bolt 205f, and an extrusion groove 205e-1 is opened in the adjusting rod 205e.
[0058] By cooperating with the adjusting rod 205e and the connecting sleeve 205d, the distance between the patient's hand and the bed railing can be adjusted. By rotating the lever 205g, the fixing bolt 205f can be driven to rotate, so that the fixing bolt 205f squeezes the extrusion groove 205e-1, thereby fixing the adjusting rod 205e and the connecting sleeve 205d.
[0059] Example 3, reference Figures 1 to 14 , which is the third embodiment of the present invention, is based on the first two embodiments.
[0060] Specifically, a second connecting ball 205h is fixed to the end of the adjusting rod 205e, a surface of the second connecting ball 205h is spherically connected to a fixing platform 205i, and a mounting bracket 205j is fixed to one side of the fixing platform 205i.
[0061] Through the spherical connection between the second connecting ball 205h and the fixing platform 205i, the angles of the mounting bracket 205j and the adjusting rod 205e can be adjusted in any direction. The mounting bracket 205j is used to be installed on the bed railing.
[0062] Specifically, an extrusion plate 205k slides inside the mounting frame 205j, a fastening bolt 2051 is rotatably connected inside the extrusion plate 205k, the fastening bolt 2051 is rotatably connected to the mounting frame 205j through a thread, and a knob 205m is fixed to the end of the fastening bolt 205l.
[0063] By turning the knob 205m, the fastening bolt 205l can be rotated relative to the mounting frame 205j, so that the fastening bolt 205l pushes the extrusion plate 205k, so that the extrusion plate 205k clamps the bed railing stuck by the mounting frame 205j, thereby completing the fixed installation of the mounting frame 205j.
[0064] In summary, the present invention has the following beneficial effects:
[0065] 1. By clamping the patient's hand, it effectively prevents the needle from falling out due to hand movements such as unconscious grasping and swinging, thereby avoiding bleeding, pain and the need for re-puncture caused by the needle falling out;
[0066] 2. When the infusion tube is pulled by external force, this device can allow the needle to be pulled away from the hand at an appropriate angle, avoiding blood vessel damage caused by sudden withdrawal, such as blood vessel rupture and thrombosis. At the same time, it can also prevent the needle from moving back and injuring the blood vessels, further protecting the patient's safety.
[0067] 3. It can automatically decide whether to separate from the hand according to the movement of the needle. When the movement of the needle does not exceed 1 / 3 of the needle tube, it maintains a stable connection with the hand to ensure the continuity of the infusion;
[0068] 4. When the needle moves more than 1 / 3 of the needle tube, it will automatically drive the needle to separate from the hand to prevent the needle and the blood vessels on the back of the hand from being in an unstable connection state, thereby avoiding infusion interruption or blood vessel damage that may be caused by unstable connection.
[0069] During use, first fix the wrist strap 101 and the hand strap 103 to the patient's hand and wrist, thereby positioning the connecting frame 102. At this time, the infusion needle can be inserted into the blood vessel on the back of the patient's hand, and hemostatic cotton is applied to the insertion site. At this time, the upper splint 104 and the lower splint 105 are fixed by bandages, and the connecting block 106 is snapped into the upper splint 104, thereby fixing the position of the upper splint 104, so that the relative position of the upper splint 104 and the infusion needle is fixed.
[0070] When fixing the upper splint 104, by adjusting the position of the bracket 201d and the support plate 203a, the clamping block 203b can clamp and fix the base of the infusion needle, and then the mounting frame 205j is fixed to the bed railing, thereby limiting the patient's hand and effectively preventing the needle from falling off due to hand movements such as unconscious grasping and swinging, thereby avoiding bleeding, pain and the trouble of needing to re-puncture due to the falling needle.
[0071] When an external force pulls the infusion tube, the infusion needle is driven, causing the infusion needle to drive the movable plate 201i to move synchronously, causing the movable plate 201i to slide in the bracket 201d. At this time, the inclined surface 202b-1 of the insertion rod 202b slides past the side of the limit groove 201d-2. When the infusion needle stops moving, the insertion rod 202b is inserted into the limit groove 201d-2, so that the movable plate 201i will not move in the opposite direction after sliding, thereby preventing the infusion needle from moving back and injuring the blood vessel, further protecting the patient's safety.
[0072] At the same time, the movable plate 201i can drive the driving rod 204e to move, so that the driving rod 204e drives the end of the second support rod 204c to slide in the bracket 201d. At this time, the second support rod 204c and the first support rod 204b are close to each other, so that the bracket 201d is swung upward through the support of the second support rod 204c and the first support rod 204b, thereby adjusting the angle of the movable plate 201i in the bracket 201d, so that the infusion needle in the movable plate 201i changes its angle as it moves away from the hand, allowing the infusion needle needle to move away from the hand at a suitable angle, avoiding vascular damage caused by sudden pulling out, such as blood vessel rupture, thrombosis, etc.
[0073] If the movement stroke of the infusion needle exceeds 1 / 3 of the needle tube, the slot 201i-1 on the movable plate 201i moves to the side of the driving column 201h. The driving column 201h can be inserted into the slot 201i-1 through the reset elastic force of the second spring 201k. At this time, the reset tension of the first spring 201f can drive the movable plate 201i to continue moving, so that the movable plate 201i drives the infusion needle to separate from the back of the hand, thereby removing the infusion needle and preventing the needle and the blood vessel on the back of the hand from being in an unstable connection state, thereby avoiding infusion interruption or blood vessel damage caused by unstable connection.
[0074] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, which should all be included in the scope of the claims of the present invention.
Claims
1. An infusion fixing structure for intensive care, characterized by: include, A main body component (100) includes a wrist strap (101), a connecting frame (102), a hand strap (103), an upper splint (104), a lower splint (105), and a connecting block (106), wherein the hand strap (103) and the wrist strap (101) are fixed by Velcro straps of their own straps, the connecting frame (102) is a rigid support frame, the connecting block (106) is fixed to the top of the connecting frame (102), and the upper splint (104) and the lower splint (105) are fixed by bandages; A protective assembly (200) is provided on the upper clamping plate (104), comprising a support block (201a) fixed to the top of the upper clamping plate (104), a threaded rod (201b) being fixed to one side of the support block (201a), a threaded sleeve (201c) being connected to the surface of the threaded rod (201b) by threaded rotation, a bracket (201d) being slidably connected to the surface of the threaded rod (201b), the bracket (201d) and the threaded rod (201b) being connected by a torsion spring, a sliding rod (201e) sliding in the bracket (201d), a first spring (201f) being fixed to the end of the sliding rod (201e), and a sliding column (201g) sliding in the sliding rod (201e). A slot (201d-1) is provided in the bracket (201d), the sliding column (201g) is inserted into the slot (201d-1), a driving column (201h) is fixed to the end of the sliding column (201g), a movable plate (201i) is slidable in the bracket (201d), a slot (201i-1) is provided on one side of the movable plate (201i), the driving column (201h) can be inserted into the slot (201i-1), a reset rod (201j) is slidable in the movable plate (201i), a second spring (201k) is fixed on one side of the driving column (201h), and the other end of the second spring (201k) is fixed to the inner wall of the sliding column (201e); The protection component (200) further includes a protection member (202), which is arranged in the movable plate (201i) and includes a third spring (202a) fixed to the inner wall of the movable plate (201i), the other end of the third spring (202a) being fixed to the inner wall of the bracket (201d), an insertion rod (202b) sliding in the movable plate (201i), a limiting groove (201d-2) being provided in the bracket (201d), an end of the insertion rod (202b) being inserted into the limiting groove (201d-2), an inclined surface (202b-1) being provided at the end of the insertion rod (202b), and a fourth spring (202c) being fixed between the two insertion rods (202b).
2. The infusion fixing structure for intensive care according to claim 1, characterized in that: The protective assembly (200) further comprises a clamping member (203), which is arranged in the movable plate (201i) and comprises a support plate (203a) sliding in the movable plate (201i); a clamping block (203b) sliding on the surface of the support plate (203a); a limiting block (203c) fixed in the clamping block (203b); a fifth spring (203d) being arranged between the two clamping blocks (203b); and a positioning block (203e) being fixed on the top of the support plate (203a).
3. The infusion fixing structure for intensive care according to claim 2, characterized in that: The clamping member (203) further comprises a driving handle (203f) fixed to one side of the clamping block (203b); a positioning rod (203g) is fixed to one side of the clamping block (203b); the positioning rod (203g) slides in the support plate (203a); a clamping block (203h) is fixed to the end of the positioning rod (203g); a fixing groove (201i-2) is provided in the movable plate (201i); and the clamping block (203h) can be plugged into the fixing groove (201i-2).
4. The infusion fixing structure for intensive care according to claim 3, characterized in that: The protection component (200) further includes a support member (204), which is arranged on one side of the bracket (201d) and includes a support seat (204a) fixed to the end of the bracket (201d); a first support rod (204b) is rotatably connected inside the bracket (201d); a second support rod (204c) is hinged to the other end of the first support rod (204b); one side of the second support rod (204c) is rotatably connected to a support wheel (204d); the other end of the second support rod (204c) is rotatably connected to a drive rod (204e); and the drive rod (204e) is fixed to one side of the movable plate (201i).
5. The fixed structure for infusion in intensive care according to claim 4 or 3, characterized in that: The protective assembly (200) further includes a positioning member (205) disposed on one side of the wrist strap (101), including a connecting seat (205a) fixed to one side of the wrist strap (101), wherein the connecting seat (205a) is fixed with a connecting platform (205b).
6. The infusion fixing structure for intensive care according to claim 5, characterized in that: The connecting platform (205b) is spherically connected to a first connecting ball (205c), and a connecting sleeve (205d) is fixed to one side of the first connecting ball (205c).
7. The infusion fixing structure for intensive care according to claim 6, characterized in that: An adjusting rod (205e) is slidably connected in the connecting sleeve (205d), a fixing bolt (205f) is rotatably connected in the connecting sleeve (205d) through a thread, a shifting rod (205g) is fixed to the end of the fixing bolt (205f), and an extrusion groove (205e-1) is provided in the adjusting rod (205e).
8. The infusion fixing structure for intensive care according to claim 7, characterized in that: A second connecting ball (205h) is fixed to the end of the regulating rod (205e), a surface of the second connecting ball (205h) is spherically connected to a fixing platform (205i), and a mounting frame (205j) is fixed to one side of the fixing platform (205i).
9. The infusion fixing structure for intensive care according to claim 8, characterized in that: An extrusion plate (205k) slides inside the mounting frame (205j), a fastening bolt (205l) is rotatably connected inside the extrusion plate (205k), the fastening bolt (205l) is rotatably connected to the mounting frame (205j) via a thread, and a knob (205m) is fixed to the end of the fastening bolt (205l).
Citation Information
Patent Citations
Wrist fixing band with indwelling needle fixing mechanism
CN112295054A
Intravenous infusion fixing device
CN221181253U