CN221130326U - Surgical head support for transfusion port implantation - Google Patents

Surgical head support for transfusion port implantation Download PDF

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Publication number
CN221130326U
CN221130326U CN202322945751.8U CN202322945751U CN221130326U CN 221130326 U CN221130326 U CN 221130326U CN 202322945751 U CN202322945751 U CN 202322945751U CN 221130326 U CN221130326 U CN 221130326U
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China
Prior art keywords
panel
supporting
head support
connecting structure
port
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Application number
CN202322945751.8U
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Chinese (zh)
Inventor
王玲玲
丁昌利
张君宏
张智勇
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Shanghai Fourth People's Hospital
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Shanghai Fourth People's Hospital
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Priority to CN202322945751.8U priority Critical patent/CN221130326U/en
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Abstract

The utility model discloses an operation head support for an infusion port implantation operation, which comprises a panel and a supporting part, wherein the panel is used for supporting a covering curtain, and the supporting part is used for fixing and supporting the panel. The supporting part comprises bottom supporting feet parallel to the panel and a connecting structure, and the bottom supporting feet are arranged on the supporting surface and used for fixing the head support; one end of the connecting structure is connected with the panel, and the other end of the connecting structure is connected with the bottom supporting leg and is used for supporting the panel. The connection structure with the panel junction is provided with rotatory spacing module for make the panel can rotate. The operation head support can adjust the rotation angle and the height of the panel, is suitable for different patients, relieves the tension of the patients in operation, facilitates the communication of doctors and patients in the operation process, and improves the operation efficiency.

Description

Surgical head support for transfusion port implantation
Technical Field
The utility model relates to the technical field of medical operation auxiliary instruments, in particular to an operation head support for an infusion port implantation operation.
Background
With the increasing number of oncological patients, fully implantable intravenous ports (TIVAP) are increasingly being used in order to provide more comfortable and convenient treatments for patients. It is not only pleasing to the eye, has made things convenient for medical personnel's operation after the patient implants, and patient's maintenance is also simpler than traditional dark vein catheterization. When carrying out TIVAP implantation, the operation in the art can the patient's head expose outside, and medical personnel cover patient's face with the operation piece of cloth, and this can cause patient's emotion tension, even dyspnea etc. simultaneously, patient and medical personnel's communication also have the obstacle, increases the degree of difficulty in the operation process.
For example, chinese patent CN216754624U discloses a surgical head frame for infusion port implantation, comprising a top plate disposed at the uppermost end for supporting a surgical sterile drape; the connecting plate is arranged below one side of the top plate and is of a telescopic structure, and one end of the top plate, which is close to the connecting plate, is hinged with the connecting plate; the fixed plate is arranged below the connecting plate and is vertically connected with the connecting plate; when the operation headstock is arranged on an operation table, the fixing plate is arranged below the mattress; the lower surface of the top plate is provided with an image education component used for playing the education image related to the transfusion port. This patent addresses the problem of performing promotional education during surgery, but this affects the effective communication of patients with doctors during surgery.
For another example, chinese patent CN212973439U discloses a head support used during surgery, at least comprising four vertical rods, the vertical rods are rod-shaped bodies capable of adjusting length and are arranged in parallel, the bottom of each vertical rod is provided with a fixing seat, the fixing seat is a "U" shaped groove, the openings of the two "U" shaped grooves on one side of the four fixing seats can form a rectangle and are opposite to the openings of the other two of the two "U" shaped grooves, the top ends of the vertical rods are provided with transverse supporting mechanisms, each transverse supporting mechanism at least comprises two transverse rods with equal length and capable of rotating around a central point, the length of each transverse rod can be adjusted, the end points of each transverse rod are respectively movably connected with the corresponding vertical rod, and fixing clamps are further arranged on the vertical rods. The invention solves the problem of surgical pressure sore, but for the implantation of transfusion harbor, the operation of the stent again in the operation is inconvenient.
Disclosure of utility model
In order to overcome the defects in the prior art, the utility model provides an operation head support for an infusion port implantation operation. The utility model improves the flexibility of the panel and the supporting base, has simple structure and easy control, can better cooperate with the needle threading operation in the operation, and has the advantages of low cost, easy operation, multiple functions and the like.
In order to achieve the above object, the present utility model provides the following technical solutions:
An infusion port implantation is with operation head support includes panel and supporting part, the panel is used for supporting covering curtain, the supporting part is used for fixing and supporting the panel. The supporting part comprises bottom supporting feet parallel to the panel and a connecting structure, and the bottom supporting feet are arranged on the supporting surface and used for fixing the head support; one end of the connecting structure is connected with the panel, and the other end of the connecting structure is connected with the bottom supporting leg and is used for supporting the panel. The connection structure with the panel junction is provided with rotatory spacing module for make the panel can rotate.
Further, the panel is provided with an oxygen port which can be used for connecting oxygen supply equipment; the inside flexible module that is provided with of connection structure can be used for adjusting the height of panel.
Further, the rotation limiting module comprises one or more limiting grooves arranged on one end side face of the connecting structure, and correspondingly, telescopic positioning teeth are arranged on the inner side face of the connecting part of the panel and the connecting structure, and the limiting grooves are matched with the positioning teeth so that the panel can rotate relative to the connecting structure.
Further, the connection structure with the one end that the panel is connected, its top is provided with the angle display dish, the angle display dish expose in the upper surface of panel, the lower extreme of angle display dish pass the panel with connection structure fixed connection sets up line and angle value corresponding to the position of location tooth for the rotatory angle of display panel.
Further, the upper surface of bottom supporting legs is provided with the track recess, the inside motion module that is provided with of track recess, motion module can make connection structure follows track recess motion.
Further, the lower extreme of connection structure is provided with fixed stabilizer blade, the one end of fixed stabilizer blade with connection structure can dismantle the connection, the other end with bottom supporting legs can dismantle the connection.
Further, a fixing component is arranged on the side face of the panel and used for fixing the covering curtain; the outer fringe of panel is provided with the rail, rail height is not more than 1cm.
Further, the panel is designed to be oval, and telescopic extension plates are arranged on two sides of the oval, so that the operation area of the panel can be increased.
Further, the bottom support feet are arcuate for placement around the patient's head.
Further, the surrounding area of the supporting leg is provided with a supporting pad, and the supporting pad is detachably connected with the bottom supporting leg.
Compared with the prior art, the utility model has the following advantages and positive effects by taking the technical scheme as an example:
the operation head support provided by the utility model has the advantages that the panel can horizontally rotate and change the height, the use area is enlarged according to actual conditions, the convenience is provided for puncture operation, and the operation head support is suitable for different patients. In the operation process, the patient does not need to directly cover the operation towel on the face, the operation towel keeps a certain distance with the patient, the dyspnea of the patient caused by the coverage of the operation towel is avoided, the tension of the patient can be effectively relieved, the communication efficiency of doctors and the patient is improved, and the efficient operation is facilitated. The utility model also has the advantages of simple structure and easy operation.
Drawings
Fig. 1 is a schematic structural view of an operation head support for an implantation of an infusion port according to an embodiment of the present utility model.
Fig. 2 is a schematic diagram of a connection structure provided by the present utility model.
Fig. 3 is a schematic structural view of the bottom support leg according to the present utility model.
Fig. 4 is a schematic diagram of a motion module structure according to the present utility model.
Fig. 5 is a schematic structural view of an operation head support for an implantation port according to another embodiment of the present utility model.
Reference numerals illustrate:
100-surgical head support
200-Panel, 201-positioning teeth, 202-angle display disc, 203-oxygen inlet, 204-fixing component, 205-fence, 206-telescopic structure;
300-supporting parts, 310-connecting structures, 311-telescopic modules, 312-limit grooves, 313-adjusting knobs, 314-fixed support legs and 315-clamping grooves;
320-bottom supporting feet, 321-rails, 322-motion modules, 323-limit plates and 324-springs.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. It will be apparent that the described embodiments are only some, but not all, embodiments of the utility model; all other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1, a surgical head support 100 for an infusion port implant according to the present utility model includes a panel 200 for supporting a masking curtain, which may be a surgical towel, gauze, etc., and a supporting portion 300. The support 300 may be provided in 1 or more. By way of example and not limitation, the surgical head support 100 illustrated in fig. 1 is provided with 1 support. The supporting part 300 includes a bottom supporting leg 320 parallel to the panel 200 and a connecting structure 310. The bottom supporting feet are arranged on the supporting surface and are used for fixing the head support 100; one end of the connecting structure 310 is connected to the panel 200, and the other end is connected to the bottom supporting leg 320; the panel 200 is supported, and a rotation limiting module is disposed at the connection part between the connection structure and the panel 200 at 310, so that the panel can rotate.
In this embodiment, the panel 200 is provided with an oxygen port 203, which can be used for connecting with an oxygen supply device; an oxygen supply device may be connected to supply oxygen to the patient during the preparation phase of the operation or during the operation, if necessary.
Referring to fig. 2, a schematic diagram of the connection structure is shown. The connection structure 310 is provided with a telescopic module 311. By way of example and not limitation, the telescoping module 311 is one or both of a manual telescoping module, a pneumatic telescoping module, and an electric telescoping module.
In this embodiment, the telescopic module 311 is a manual telescopic module, and the telescopic module 311 is provided with an adjusting knob 313. Depending on the patient's particular situation, the medical staff can conveniently adjust the height of the panel 200 using the adjustment knob 313.
As shown in fig. 2, the rotation limiting module includes one or more limiting slots 312 disposed on a side surface of one end of the connection structure 310, and corresponding telescopic positioning teeth 201 disposed on an inner side surface of a connection portion between the panel 200 and the connection structure 310. The limiting groove 312 can be matched with the positioning teeth 201, so that the panel 200 can rotate relative to the connecting structure 310.
In this embodiment, the connecting structure 310 is disposed at one end of the panel 200, and an angle display disc 202 is disposed at the top of the connecting structure, the angle display disc 202 is exposed on the upper surface of the panel 200, the lower end of the angle display disc 202 passes through the panel 200 and is fixedly connected with the connecting structure 310, and a scribing line and an angle value are set corresponding to the position of the positioning teeth 201 for displaying the rotating angle of the panel.
According to the position of the patient needing to be punctured, the specific illness state of the patient or the operation habit of a doctor, the doctor can adjust different rotation angles of the panel, so that the whole operation process is smoother.
The medical staff can clearly position the proper rotation angle during operation. In addition, according to different puncture operations, medical staff can effectively reduce the dependence degree of the operation process on the experience of doctors by sorting and summarizing the data of the rotation angles and using the data as a reference index of the operation process. Even a novice doctor can reasonably select the rotation angle of the panel 200 according to the tidying data.
In particular use, for example, in port implants, a physician may need to puncture from a patient's collarbone vein. After the puncture position is determined, if the puncture is performed at the collarbone on the right side of the patient, the panel 200 can be rotated leftwards by 20-50 degrees, so that the collarbone area on the right side of the patient is exposed, and the puncture is performed by medical staff conveniently. The rotation angle and direction of the panel are recorded according to body data of different patients, which can be performed as a usage specification.
Preferably, the lower end of the connecting structure 310 is provided with a fixing leg 314, one end of the fixing leg 314 is detachably connected to the connecting structure 310, and the other end is detachably connected to the bottom supporting leg 320. The detachable connection may be a snap connection, or the like. When the attachment structure 310 is in place, the securing legs 314 serve to stiffen the support, making the panel 200 more stable.
Referring to fig. 3, a schematic structure of the bottom support leg according to the present utility model is shown.
In particular use, when the problem of convenience in operation cannot be solved by rotating the panel 200, the panel 200 needs to be moved in some positions on a horizontal plane. In this embodiment, the upper surface of the bottom support leg 320 is provided with a track groove 321, and a movement module 322 is disposed inside the track groove 321, and the movement module 322 can move the connection structure 310 along the track groove 321.
By way of example and not limitation, the motion module 322 may be a rail and pulley motion module, a crawler motion module, or other motion modules.
Referring to fig. 4, an enlarged view of a sport module 322 is provided in accordance with the present utility model.
In this embodiment, a plurality of movement modules 322 are uniformly disposed inside the track groove 321. Preferably, the distance between two adjacent motion modules 322 is slightly greater than the diameter of the lower end of the connecting structure 310. The movement module 322 includes a limiting plate 323 and a spring 324, and correspondingly, a clamping groove 315 is provided at the lower end of the connection structure 310.
During use, the user moves the connection structure 310 to move in a certain direction in the track groove 321, when the lower end of the connection structure 310 moves to the lower end of the limiting plate 323, the limiting plate 323 is pressed down to move towards the upper end of the limiting plate, and when the lower end of the connection structure 310 moves to the position right above the movement module, the limiting plate 323 is just clamped into the clamping groove 315 at the lower end of the connection structure 310, so that the connection structure 310 is fixed.
Preferably, the fixing legs 314 at the lower end of the connection structure 310 can be used to assist in fixing the connection structure 310. The lower ends of the fixed support legs can be provided with clamping grooves which are matched with other movement modules 322; or by other known removable attachment means.
Referring to fig. 5, a schematic structural view of another surgical head support for an implantation of an infusion port according to the present embodiment is shown. In this embodiment, two supporting parts 300 are provided, and two bottom supporting feet 320 are respectively connected to two connecting structures 310.
Preferably, the side of the panel 200 is provided with a securing assembly 204 for securing the covering curtain. The fastening assembly 204 may be one of a buckle, a velcro, and a zipper fastener.
Preferably, the outer edge of the panel is provided with a rail 205, the height of the rail 205 is not more than 1cm. By way of example and not limitation, the rail 205 is provided with a height of 0.5-0.8cm. In use, surgical towels or other items placed on the panel 200 are less likely to slip off, reducing injury to medical personnel or patients.
In this embodiment, the panel 200 is designed to be elliptical in shape, and the telescopic structures 206 are disposed on two sides of the panel 200, so that the panel 200 can be extended to two sides. Thereby increasing the operating area of the medical staff.
Preferably, the two sides of the panel 200 are provided with storage tanks, and the extension plates are stored in the storage tanks and connected in a sliding rail type structure.
Preferably, the extension panel is configured to be stored in a folded-down manner, and can be unfolded in a folded-up manner when the panel is to be enlarged.
By way of example and not limitation, the faceplate 200 is made of a transparent material to facilitate the health care provider's observation of the patient's response during the procedure.
Preferably, the bottom support feet 320 are arcuate for placement around the patient's head.
Preferably, the surrounding area of the bottom support leg 320 is provided with a support pad, and the support pad is detachably connected to the bottom support leg 320. By way of example and not limitation, ties are provided around the support pad to enable the support pad to be tied to the bottom support leg 320 during use.
The specific operational flow is described below.
1. Preoperative preparation stage: before the implantation operation of the transfusion port, the patient lies on the operating bed. The patient positions his/her head with his/her head in a lying position, and the base support feet 320 are positioned around the patient's head, and the connection structure 310 is positioned at the top of the patient's head or at both sides of the top of the head. The height of the panel is adjusted by the adjusting knob 313 according to the actual condition of the patient. The doctor can judge whether the extension plate needs to be opened according to own operation habit. It is necessary to know whether the patient has a condition such as hypoxia or overstress before operation, at which time an oxygen tube can be prepared in advance, and the ventilation state of the oxygen port 203 can be checked for time and time.
2. Stage of preparation in operation: the surgical towel is fixed on the side of the panel 200 by means of velcro, a zipper, etc., and after the fixation, the doctor inquires about the comfort of the patient, and according to the patient, the doctor can directly adjust the angle of the panel by twisting the panel 200 and/or adjust the height of the panel 200 by means of the adjusting knob 313. The panel 200 may be used to house sterile items after a sterile process.
3. The doctor can adjust the angle of the panel for a plurality of times according to the requirement of the operation process. When the angle problem can not be solved by rotating the panel, the position of the panel can be changed by moving the connecting structure, so that convenience is brought to the operation process.
The surgical towel is not directly covered on the face of the patient, but is fixed from the periphery of the head support, so that the patient has sufficient breathing and relaxing space; the face plate made of transparent materials is matched, so that doctors can observe face color changes of patients at a good moment. The patient can communicate with doctors without barriers, so that the experience of the patient in the operation process is improved.
In the embodiments of the telescopic module and the movement module according to the present utility model, if an electric telescopic module or an electric movement module is used, a power supply system is provided in the head support structure. The specific structure is prior art in the art, and will not be described in detail herein.
In addition, while embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations may be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. An operative head support for an infusion port implantation operation, which is characterized in that: the device comprises a panel and a supporting part, wherein the panel is used for supporting a covering curtain, and the supporting part is used for fixing and supporting the panel; the supporting part comprises bottom supporting feet parallel to the panel and a connecting structure, and the bottom supporting feet are arranged on the supporting surface and used for fixing the head support; one end of the connecting structure is connected with the panel, the other end of the connecting structure is connected with the bottom supporting leg and used for supporting the panel, and a rotation limiting module is arranged at the joint of the connecting structure and the panel and used for enabling the panel to rotate.
2. The surgical head support for port implantation of claim 1, wherein: the panel is provided with an oxygen port which can be used for connecting oxygen supply equipment; the inside flexible module that is provided with of connection structure can be used for adjusting the height of panel.
3. The surgical head support for port implantation of claim 1, wherein: the rotating limiting module comprises one or more limiting grooves arranged on one end side surface of the connecting structure, and correspondingly, telescopic positioning teeth are arranged on the inner side surface of the connecting part of the panel and the connecting structure, and the limiting grooves are matched with the positioning teeth so that the panel can rotate relative to the connecting structure.
4. A surgical head support for port implantation as set forth in claim 3, wherein: the connecting structure with the one end that the panel is connected, its top is provided with the angle display dish, the angle display dish expose in the upper surface of panel, the lower extreme of angle display dish pass the panel with connecting structure fixed connection, correspond to the position of location tooth sets up line and angle value for the rotatory angle of display panel.
5. The surgical head support for port implantation of claim 1, wherein: the upper surface of bottom supporting legs is provided with the track recess, the inside motion module that is provided with of track recess, motion module can make connection structure follows track recess motion.
6. The surgical head support for port implantation of claim 1, wherein: the lower extreme of connection structure is provided with fixed stabilizer blade, the one end of fixed stabilizer blade with connection structure can dismantle the connection, the other end with bottom supporting legs can dismantle the connection.
7. The surgical head support for port implantation of claim 1, wherein: the side surface of the panel is provided with a fixing component for fixing the covering curtain; the outer fringe of panel is provided with the rail, rail height is not more than 1cm.
8. The surgical head support for port implantation of claim 1, wherein: the panel is designed to be oval, and telescopic extension plates are arranged on two sides of the oval, so that the operation area of the panel can be increased.
9. The surgical head support for port implantation of claim 1, wherein: the bottom support feet are arcuate for placement around the head of a patient.
10. The port implantable surgical head support of claim 9, wherein: the surrounding area of the bottom supporting leg is provided with a supporting pad, and the supporting pad is detachably connected with the bottom supporting leg.
CN202322945751.8U 2023-11-01 2023-11-01 Surgical head support for transfusion port implantation Active CN221130326U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322945751.8U CN221130326U (en) 2023-11-01 2023-11-01 Surgical head support for transfusion port implantation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322945751.8U CN221130326U (en) 2023-11-01 2023-11-01 Surgical head support for transfusion port implantation

Publications (1)

Publication Number Publication Date
CN221130326U true CN221130326U (en) 2024-06-14

Family

ID=91429552

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322945751.8U Active CN221130326U (en) 2023-11-01 2023-11-01 Surgical head support for transfusion port implantation

Country Status (1)

Country Link
CN (1) CN221130326U (en)

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