CN218075049U - Portable bedside use rack for ultrasonic instrument diagnosis - Google Patents

Portable bedside use rack for ultrasonic instrument diagnosis Download PDF

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Publication number
CN218075049U
CN218075049U CN202221792480.6U CN202221792480U CN218075049U CN 218075049 U CN218075049 U CN 218075049U CN 202221792480 U CN202221792480 U CN 202221792480U CN 218075049 U CN218075049 U CN 218075049U
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face
top end
base frame
frame
rods
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CN202221792480.6U
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季润琰
吴静
徐艳青
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Nantong Infectious Disease Prevention and Control Hospital
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Nantong Infectious Disease Prevention and Control Hospital
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Abstract

The utility model discloses a portable bedside use rack for ultrasonic diagnosis, which comprises a base frame, wherein the rear side of the top end surface of the base frame is supported with a height-adjusting plate through a scissors-shaped lifting mechanism; the rear end of the left side wall of the base frame is fixedly provided with a probe placing frame, and the side wall of the probe placing frame is provided with probe placing grooves which are symmetrical front and back; a supporting bottom plate is fixed at the front end of the left side wall of the base frame, a rotating bottom plate is rotatably connected to the top end face of the supporting bottom plate, a metal hose is installed above the rotating bottom plate, and a fixing clamp is installed at the free end of the metal hose; an angle adjusting plate is fixed on the front side of the outer side wall of the rotating bottom plate, and an arc-shaped cover plate which is abutted against the top end face of the angle adjusting plate is fixed on the top end face of the rotating bottom plate; the utility model has the advantages of reasonable design, can enough carry out the centre gripping to the probe and support, can also be convenient for medical personnel to carry.

Description

Portable bedside use rack for ultrasonic instrument diagnosis
Technical Field
The utility model relates to a medical treatment auxiliary device technical field, concretely relates to portable ultrasonic apparatus is diagnostic with bedside and uses frame.
Background
The critical patients need to be subjected to bedside ultrasonic examination, then it is very time-consuming to push a heavy ultrasonic machine to the side of the patients, a computer type portable ultrasonic instrument is provided later, the height of a checking support still needs to be kept to enable the ultrasonic instrument and the eyes of doctors to be in the same horizontal line, the mobile phone type handheld ultrasonic instrument is developed to be provided at present, but a doctor cannot hold the handheld ultrasonic instrument by one hand to operate the patients by one hand, the support is still needed to fix the ultrasonic instrument in the process, during the ultrasonic examination in a medical examination or in a remote mountain area, a self-checking support carried by the portable ultrasonic instrument is very huge, seven cars are difficult to carry, as ultrasonic doctors, the ultrasonic instrument is usually placed on a common table by the doctor, and the ultrasonic instrument is inconvenient for patient examination. Therefore, how to design a portable bedside use rack for ultrasonic diagnosis, which is convenient for medical staff to use, becomes a technical problem to be solved urgently by technical staff in the field.
Disclosure of Invention
The utility model discloses the purpose is: the utility model provides a portable ultrasonic apparatus is diagnostic with bedside and uses frame, aims at making it carry out the centre gripping support to the probe, can also be convenient for medical personnel to carry.
The technical scheme of the utility model is that: a portable bedside use rack for ultrasonic instrument diagnosis comprises a base frame, wherein a height-adjusting plate is supported on the rear side of the top end face of the base frame through a scissors-shaped lifting mechanism; the rear end of the left side wall of the base frame is fixedly provided with a probe placing frame, and the side wall of the probe placing frame is provided with probe placing grooves which are symmetrical front and back; a supporting bottom plate is fixed at the front end of the left side wall of the base frame, a rotating bottom plate is rotatably connected to the top end face of the supporting bottom plate, a metal hose is mounted above the rotating bottom plate, and a fixing clamp is mounted at the free end of the metal hose; the front side of the outer side wall of the rotating base plate is fixed with an angle adjusting plate, an arc-shaped cover plate which is abutted to the top end face of the angle adjusting plate is fixed on the top end face of the rotating base plate, an angle adjusting groove is formed in the top end face of the arc-shaped cover plate, and an angle adjusting bolt which penetrates through the angle adjusting groove is spirally connected to the top end face of the angle adjusting plate.
Furthermore, the base frame bottom end face's edge all has the landing leg through the hinge mounting, the dual brake wheel is all installed to the bottom of landing leg, the hinge is current foldability hinge, can fold the landing leg and make it support on the bottom end face of base frame.
Further, a sorting and housing frame is mounted on the front side of the top end face of the base frame.
Furthermore, when the angle adjusting bolt is screwed tightly, the head end of the angle adjusting bolt is abutted against the top end face of the arc-shaped cover plate.
Furthermore, the scissors-shaped lifting mechanism comprises inner connecting rods which are symmetrical in the front-back direction and outer connecting rods which are symmetrical in the front-back direction, the adjacent inner connecting rods are rotatably connected with the outer connecting rods through damping shafts, the inner connecting rods which are symmetrical in the front-back direction are connected with height-adjusting cross rods which are rotatably connected with the side walls of the inner connecting rods in the front-back direction, spiral rods are spirally connected between the height-adjusting cross rods, threads in opposite directions are arranged at the left end and the right end of each spiral rod, and the spiral rods are spirally connected with the height-adjusting cross rods through threads; the top of interior connecting rod and outer connecting rod all slides from side to side along the bottom face of increaseing the board, and the bottom of interior connecting rod and outer connecting rod all slides from side to side along the top face of base frame.
Furthermore, the top ends of the inner connecting rod and the outer connecting rod are respectively connected through upper sliding rods which are bilaterally symmetrical and abut against the bottom end face of the heightening plate, one upper sliding rod is rotatably connected to the top end of the inner connecting rod through a damping shaft, the other upper sliding rod is rotatably connected to the top end of the outer connecting rod through a damping shaft, upper sliding frames which are symmetrical in the front-back direction are respectively fixed on the bottom end face of the heightening plate along the outer side of each upper sliding rod, upper sliding grooves are formed in the bottom end face of each upper sliding frame, and upper bolts which penetrate through the upper sliding grooves are spirally connected to the bottom end face of each upper sliding rod.
Furthermore, the bottom of the inner connecting rod and the bottom of the outer connecting rod are respectively and rotatably connected with a lower sliding block which is abutted against the top end face of the base frame, the top end face of the base frame is fixedly provided with a lower sliding frame along the outer side of the lower sliding block, the top end face of the lower sliding frame is provided with a lower sliding groove, and the top end face of the lower sliding block is respectively and spirally connected with a lower bolt which penetrates along the lower sliding groove.
Furthermore, when the screw rod rotates, the two heightening transverse rods gradually get close to or get away from each other.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model discloses an increase base frame, heightening board, the frame is put into to the probe, the groove is put into to the probe, supporting baseplate, rotating bottom plate, metal collapsible tube, fixation clamp, angle adjusting plate, arc cover plate, angle adjusting groove and angle adjusting bolt's design supports the supersound appearance through this device, can adjust the height of supersound appearance according to medical personnel's height, can also carry out the centre gripping to the probe at the diagnostic process and support, and is functional strong.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required to be used in the description of the embodiments are briefly introduced below, the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is an enlarged schematic view of a part of the structure of the present invention;
fig. 3 is an enlarged schematic view of the structure of the height-adjusting plate of the present invention;
fig. 4 is a schematic bottom view of the height adjusting plate of the present invention.
Wherein: 1, a base frame; 2, heightening the plate; 3, placing the probe into a frame; 4, placing a probe into the groove; 5 supporting the bottom plate; 6, rotating the bottom plate; 7 a metal hose; 8, fixing a clamp; 9 an angle adjusting plate; 10 arc cover plate; 11 an angle adjusting groove; 12 an angle adjusting bolt; 13, a hinge; 14 support legs; 15 double brake wheels; 16 a classified storage frame; 17 an inner link; 18 an outer link; 19 a damper shaft; 20, heightening the cross rod; 21 a screw rod; 22 screw threads; 23, sliding rods are arranged; 24 lower sliding blocks; 25, sliding on the frame; 26 an upper chute; 27, screwing a bolt; 28 sliding down the frame; 29 lower chute; and 30 lower bolts.
Detailed Description
The above-described scheme is further illustrated below with reference to specific examples. It should be understood that these examples are for illustrative purposes and are not intended to limit the scope of the present invention. The conditions used in the examples may be further adjusted according to specific conditions, and the conditions used in the experiments are not specifically mentioned.
As shown in fig. 1 to 2, a portable bedside use rack for ultrasonic diagnosis comprises a base frame 1, wherein a height-adjusting plate 2 is supported on the rear side of the top end face of the base frame 1 through a scissors-shaped lifting mechanism; a probe placing frame 3 is fixed at the rear end of the left side wall of the base frame 1, and probe placing grooves 4 which are symmetrical in the front and back are formed in the side wall of the probe placing frame 3; a supporting bottom plate 5 is fixed at the front end of the left side wall of the base frame 1, a rotating bottom plate 6 is rotatably connected to the top end face of the supporting bottom plate 5, a metal hose 7 is installed above the rotating bottom plate 6, and a fixing clamp 8 is installed at the free end of the metal hose 7; an angle adjusting plate 9 is fixed on the front side of the outer side wall of the rotating base plate 6, an arc-shaped cover plate 10 which abuts against the top end face of the angle adjusting plate 9 is fixed on the top end face of the rotating base plate 6, an angle adjusting groove 11 is formed in the top end face of the arc-shaped cover plate 10, and an angle adjusting bolt 12 which penetrates through the angle adjusting groove 11 is spirally connected to the top end face of the angle adjusting plate 9.
The supporting legs 14 are mounted at the corners of the bottom end face of the base frame 1 through hinges 13, the double-brake wheels 15 are mounted at the bottom ends of the supporting legs 14, the hinges 13 are existing foldable hinges, and the supporting legs 14 can be folded to abut against the bottom end face of the base frame 1; a classification storage frame 16 is arranged on the front side of the top end surface of the base frame 1; when the angle adjusting bolt 12 is screwed, the head end of the angle adjusting bolt 12 abuts against the top end face of the arc-shaped cover plate 10.
As shown in fig. 3 to 4, the scissors-shaped lifting mechanism comprises inner connecting rods 17 and outer connecting rods 18 which are symmetrical front and back, the adjacent inner connecting rods 17 and outer connecting rods 18 are rotationally connected through a damping shaft 19, the inner connecting rods 17 which are symmetrical front and back are connected through heightening cross rods 20 which are rotationally connected on the side walls of the inner connecting rods, spiral rods 21 are spirally connected between the heightening cross rods 20, threads 22 in opposite directions are arranged at the left end and the right end of each spiral rod 21, and the spiral rods 21 and the heightening cross rods 20 are spirally connected through the threads 22; the top ends of the inner connecting rod 17 and the outer connecting rod 18 slide left and right along the bottom end surface of the height-adjusting plate 2, and the bottom ends of the inner connecting rod 17 and the outer connecting rod 18 slide left and right along the top end surface of the base frame 1; the top ends of the inner connecting rod 17 and the outer connecting rod 18 are connected through upper sliding rods 23 which are bilaterally symmetrical and abut against the bottom end face of the heightening plate 2 respectively, one of the upper sliding rods 23 is rotatably connected to the top end of the inner connecting rod 17 through a damping shaft 19, the other upper sliding rod 23 is rotatably connected to the top end of the outer connecting rod 18 through a damping shaft 19, upper sliding frames 25 which are symmetrical in the front and back are fixed on the bottom end face of the heightening plate 2 along the outer sides of the upper sliding rods 23 respectively, upper sliding grooves 26 are formed in the bottom end face of the upper sliding frames 25, and upper bolts 27 which penetrate through the upper sliding grooves 26 are spirally connected to the bottom end face of the upper sliding rods 23.
The bottom ends of the inner connecting rod 17 and the outer connecting rod 18 are respectively and rotatably connected with a lower sliding block 24 which is propped against the top end face of the base frame 1, the top end face of the base frame 1 is respectively and fixedly provided with a lower sliding frame 28 along the outer side of the lower sliding block 24, the top end face of the lower sliding frame 28 is respectively provided with a lower sliding chute 29, and the top end face of the lower sliding block 24 is respectively and spirally connected with a lower bolt 30 which penetrates along the inner part of the lower sliding chute 29; when the screw rod 21 rotates, the two heightening cross rods 20 gradually get close to or get away from each other.
When the ultrasonic height-adjusting device is used, firstly, an ultrasonic instrument is placed on the height-adjusting plate 2, then the upper bolt 27 and the lower bolt 30 are screwed loose, the screw rod 21 is rotated to enable the two height-adjusting cross rods 20 to gradually approach or depart from each other, at the moment, the upper slide rod 23 slides left and right in the upper slide frame 25, the lower slide block 24 slides left and right in the lower slide frame 28, when the height-adjusting cross rods 20 gradually approach each other, the height of the ultrasonic instrument is gradually increased by the height-adjusting plate 2, otherwise, when the height-adjusting cross rods 20 gradually depart from each other, the height-adjusting plate 2 drives the ultrasonic instrument to gradually decrease until the height of the ultrasonic instrument is proper, and then the upper bolt 27 and the lower bolt 30 are screwed tightly to fix the upper slide rod 23 and the lower slide block 24.
When diagnosing, can be with the probe centre gripping in fixation clamp 8, if need adjust the position of fixation clamp 8, can screw earlier and loosen angle adjusting bolt 12 and rotate rotating bottom plate 6 again, screw down angle adjusting bolt 12 and make when the position of metal collapsible tube 7 tip is suitable, fix rotating bottom plate 6 through fixed angle adjusting plate 9, at this moment, can adjust the height of its free end through the elasticity of metal collapsible tube 7 to can fix the probe in suitable position department. And after the diagnosis, can put the probe and accomodate in probe income groove 4, when needs carry the transition to this use frame, accessible hinge 13 is folded landing leg 14 and is made it support on the bottom end face of base frame 1 to make this device portable. The utility model discloses a portable ultrasonic apparatus diagnoses uses a frame structure reasonable in design with the bed side, can enough carry out the centre gripping to the probe and support, and medical personnel that can also be convenient for carry, and the practicality is strong, has splendid market spreading value.
The above is only a specific application example of the present invention, and does not constitute any limitation to the protection scope of the present invention. In addition to the above embodiments, other embodiments of the present invention are also possible. All the technical solutions formed by adopting equivalent substitutions or equivalent transformations fall within the scope of the present invention as claimed.

Claims (8)

1. The utility model provides a portable diagnostic bedside of supersound appearance uses frame which characterized in that: the lifting mechanism comprises a base frame (1), wherein a height-adjusting plate (2) is supported on the rear side of the top end face of the base frame (1) through a scissors-shaped lifting mechanism; the rear end of the left side wall of the base frame (1) is fixedly provided with a probe placing frame (3), and the side wall of the probe placing frame (3) is provided with probe placing grooves (4) which are symmetrical front and back; a supporting bottom plate (5) is fixed at the front end of the left side wall of the base frame (1), a rotating bottom plate (6) is rotatably connected to the top end face of the supporting bottom plate (5), a metal hose (7) is installed above the rotating bottom plate (6), and a fixing clamp (8) is installed at the free end of the metal hose (7); the front side of rotating bottom plate (6) lateral wall is fixed with angle adjusting plate (9), be fixed with arc cover plate (10) of supporting on angle adjusting plate (9) top face on the top face of rotating bottom plate (6), angle adjusting groove (11) have been seted up on the top face of arc cover plate (10), screwed connection has angle adjusting bolt (12) of passing in angle adjusting groove (11) along angle adjusting groove (9) on the top face of angle adjusting plate (9).
2. The portable bedside stand for ultrasonic diagnosis of claim 1, wherein the bottom end face of the base frame (1) is provided with legs (14) at the corners thereof via hinges (13), and the bottom ends of the legs (14) are provided with dual-brake wheels (15).
3. The bedside use stand for diagnosis of a portable ultrasonic apparatus according to claim 1, wherein a classification storage frame (16) is installed on the front side of the top end face of the base frame (1).
4. The bedside use stand for portable ultrasonic diagnosis according to claim 1, wherein when the angle adjusting bolt (12) is screwed, the head end of the angle adjusting bolt (12) abuts against the top end face of the arc-shaped cover plate (10).
5. The bedside use rack for the diagnosis of the portable ultrasonic instrument according to claim 1, wherein the scissors-shaped lifting mechanism comprises inner connecting rods (17) and outer connecting rods (18) which are symmetrical in the front and back direction, the adjacent inner connecting rods (17) and the outer connecting rods (18) are rotationally connected through a damping shaft (19), the inner connecting rods (17) which are symmetrical in the front and back direction are connected through heightening cross rods (20) which are rotationally connected on the side walls of the inner connecting rods, spiral rods (21) are spirally connected between the heightening cross rods (20), opposite threads (22) are arranged at the left end and the right end of each spiral rod (21), and the spiral rods (21) and the heightening cross rods (20) are spirally connected through the threads (22); the top ends of the inner connecting rod (17) and the outer connecting rod (18) slide left and right along the bottom end face of the height-adjusting plate (2), and the bottom ends of the inner connecting rod (17) and the outer connecting rod (18) slide left and right along the top end face of the base frame (1).
6. The bedside use rack for the diagnosis of a portable ultrasonic apparatus according to claim 5, wherein the top ends of the inner connecting rod (17) and the outer connecting rod (18) are connected through upper sliding rods (23) which are bilaterally symmetrical and abut against the bottom end surface of the height-adjusting plate (2), one of the upper sliding rods (23) is rotatably connected to the top end of the inner connecting rod (17) through a damping shaft (19), the other upper sliding rod (23) is rotatably connected to the top end of the outer connecting rod (18) through a damping shaft (19), upper sliding frames (25) which are symmetrical in the front and back directions are respectively fixed on the bottom end surface of the height-adjusting plate (2) along the outer sides of each upper sliding rod (23), upper sliding grooves (26) are respectively formed on the bottom end surface of each upper sliding frame (25), and upper bolts (27) which pass through the upper sliding grooves (26) are spirally connected to the bottom end surface of each upper sliding rod (23).
7. The portable bedside usage frame for ultrasonic diagnosis of claim 5, wherein the bottom ends of the inner connecting rod (17) and the outer connecting rod (18) are respectively and rotatably connected with a lower sliding block (24) which abuts against the top end face of the base frame (1), the bottom end face of the base frame (1) is fixed with a lower sliding frame (28) along the outer side of the lower sliding block (24), the top end face of the lower sliding frame (28) is provided with a lower sliding groove (29), and the top end face of the lower sliding block (24) is respectively and spirally connected with a lower bolt (30) which penetrates along the inner side of the lower sliding groove (29).
8. The portable bedside stand for ultrasonic diagnostic apparatus of claim 5, wherein the two height-adjusting bars (20) gradually get closer to or farther away from each other when the screw rods (21) rotate.
CN202221792480.6U 2022-07-13 2022-07-13 Portable bedside use rack for ultrasonic instrument diagnosis Active CN218075049U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221792480.6U CN218075049U (en) 2022-07-13 2022-07-13 Portable bedside use rack for ultrasonic instrument diagnosis

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221792480.6U CN218075049U (en) 2022-07-13 2022-07-13 Portable bedside use rack for ultrasonic instrument diagnosis

Publications (1)

Publication Number Publication Date
CN218075049U true CN218075049U (en) 2022-12-20

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ID=84480445

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221792480.6U Active CN218075049U (en) 2022-07-13 2022-07-13 Portable bedside use rack for ultrasonic instrument diagnosis

Country Status (1)

Country Link
CN (1) CN218075049U (en)

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