CN110664428B - Auxiliary lifting and lying device of CT examination bed - Google Patents
Auxiliary lifting and lying device of CT examination bed Download PDFInfo
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- CN110664428B CN110664428B CN201910969156.3A CN201910969156A CN110664428B CN 110664428 B CN110664428 B CN 110664428B CN 201910969156 A CN201910969156 A CN 201910969156A CN 110664428 B CN110664428 B CN 110664428B
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- 230000000630 rising effect Effects 0.000 claims abstract description 5
- 241000219098 Parthenocissus Species 0.000 claims description 10
- 230000005489 elastic deformation Effects 0.000 claims description 4
- 239000013013 elastic material Substances 0.000 claims description 3
- 238000007689 inspection Methods 0.000 claims description 3
- 238000002591 computed tomography Methods 0.000 abstract description 24
- 230000009286 beneficial effect Effects 0.000 abstract description 4
- 238000000034 method Methods 0.000 description 3
- 230000007306 turnover Effects 0.000 description 2
- 230000003471 anti-radiation Effects 0.000 description 1
- 230000005540 biological transmission Effects 0.000 description 1
- 238000006243 chemical reaction Methods 0.000 description 1
- 238000002059 diagnostic imaging Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 239000011521 glass Substances 0.000 description 1
- 230000037081 physical activity Effects 0.000 description 1
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B6/00—Apparatus or devices for radiation diagnosis; Apparatus or devices for radiation diagnosis combined with radiation therapy equipment
- A61B6/04—Positioning of patients; Tiltable beds or the like
- A61B6/0407—Supports, e.g. tables or beds, for the body or parts of the body
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B6/00—Apparatus or devices for radiation diagnosis; Apparatus or devices for radiation diagnosis combined with radiation therapy equipment
- A61B6/02—Arrangements for diagnosis sequentially in different planes; Stereoscopic radiation diagnosis
- A61B6/03—Computed tomography [CT]
- A61B6/032—Transmission computed tomography [CT]
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Abstract
The invention discloses an auxiliary lifting and lying device of a CT (computed tomography) examination bed, which comprises an embedded frame and a scanning bed base body, wherein the upper end of the scanning bed base body is provided with the embedded frame, so that the scanning bed base body drives the embedded frame to move back and forth, the outer side of the embedded frame is embedded with an outer sleeve frame, the outer sleeve frame is hinged with the rear end of the embedded frame, the left side and the right side of the front end of the outer sleeve frame are respectively provided with a detachable embedded structure, the lower end of the detachable embedded structure is hinged with an electric push rod, the lower end of the electric push rod is hinged with a front base, and the front base is arranged at the front end of the lower part of the scanning bed base body, so that the detachable embedded structure is in a non-detachable state, and the electric push rod can drive the outer sleeve frame to turn upwards relatively around the rear side of the embedded frame. On the basis of the existing scanning bed, the invention is additionally provided with a body auxiliary inclined structure, thereby facilitating the rising of the patient and being beneficial to reducing the workload of medical care personnel.
Description
Technical Field
The invention relates to the technical field of CT examination instruments, in particular to an auxiliary lifting device of a CT examination bed.
Background
CT examination is a modern, relatively advanced medical imaging examination technique, wherein CT examination typically includes scout CT, enhanced CT scan, and scout CT. In CT, X-ray beam is used to scan the layer of human body with a certain thickness, the X-ray transmitted through the layer is received by detector, converted into visible light, converted into electric signal by photoelectric conversion, converted into digital signal by A/D converter and input to computer for processing.
At present when carrying out the CT inspection, if when examining for old person and the not nimble patient of physical activity ability inadequately, patient is very difficult to rise by oneself, often need medical personnel to assist, this in-process medical personnel need leave the CT room after holding up CT examining table with patient, medical personnel need hold up the patient from CT examining table after the CT inspection is accomplished, it is very painstaking to come and go back, therefore, in order to reduce medical personnel's work load, hold up the patient through mechanical structure, a supplementary device of rising of CT examining table has specially designed.
Disclosure of Invention
Aiming at the existing problems, the invention provides an auxiliary rising and lying device of a CT examination bed, which is additionally provided with a body auxiliary inclined structure on the basis of the existing scanning bed, is convenient for a patient to rise and is beneficial to reducing the workload of medical staff.
The technical scheme of the invention is as follows:
the invention provides an auxiliary lifting device of a CT (computed tomography) examination bed, which comprises an embedded frame and a scanning bed base body, wherein the embedded frame is arranged at the upper end of the scanning bed base body, so that the scanning bed base body drives the embedded frame to move back and forth, an outer sleeve frame is embedded at the outer side of the embedded frame, the outer sleeve frame is hinged with the rear end of the embedded frame, the left side and the right side of the front end of the outer sleeve frame are respectively provided with a detachable embedded structure, the lower end of the detachable embedded structure is hinged with an electric push rod, the lower end of the electric push rod is hinged with a front base, the front base is arranged at the front end of the lower part of the scanning bed base body, so that the detachable embedded structure is in a non-detachable state, and the electric push rod can drive the outer sleeve frame to turn upwards relatively around the rear side of the embedded frame.
Furthermore, the upper end and the lower end of the electric push rod are respectively provided with an automatic vertical righting hinge structure, and the automatic vertical righting hinge structure is respectively connected with the detachable embedded structure and the front base in a hinged mode capable of automatically and vertically righting, so that the electric push rod can automatically vertically swing back and forth in an elastic mode relative to the front base, and the detachable embedded structure can automatically vertically swing back and forth in an elastic mode relative to the electric push rod.
Furthermore, the automatic vertical centering hinge structure comprises a hinge embedding block, a hinge shaft, a hinge sleeve block and a torsion spring, wherein the hinge embedding block is embedded in the hinge sleeve block from top to bottom, opposite ends of the hinge embedding block and the hinge sleeve block are respectively used as the upper end and the lower end of the automatic vertical centering hinge structure, and the hinge shaft transversely and sequentially penetrates through the hinge embedding block and the hinge sleeve block, so that the hinge embedding block can swing back and forth relative to the hinge sleeve block;
the articulated shaft is in about between articulated embedding piece and the articulated cover piece about two parts respectively the nested torsional spring that has, the both ends of torsional spring are fixed embedding respectively in articulated embedding piece and articulated cover piece for under the natural state of torsional spring, articulated embedding piece is vertical in articulated cover piece, under the state that receives the exogenic action, articulated embedding piece and articulated cover piece rotate relatively, the torsional spring produces elastic deformation.
Furthermore, can dismantle gomphosis structure includes horizontal cover piece and embedding cover piece, horizontal cover piece is C shape structure and two relative openings of horizontal cover piece do not imbed and have the embedding cover piece, the fixed front end left and right sides that sets up at the outer cover frame of embedding cover piece, horizontal cover piece is fixed to be set up at automatic vertical articulated structure's of righting upper end.
Further, the fixed service creeper that is provided with of upside of overcoat frame, the service creeper is rectangle platelike structure and upside and adopts elastic material to make for the patient lies on the service creeper.
Further, the fixed outer layer board that is provided with of front end downside of embedded frame, outer layer board is the U-shaped plate column structure that the level was placed, the upside of outer layer board holds in the palm and leans on the front end downside at the overcoat frame for when the upper end of overcoat frame and embedded frame is in same horizontal plane, the embedded frame produces supporting role to the overcoat frame through the outer layer board.
Further, the lower extreme rear side of scanning bed base member is equipped with the back base, the left and right sides of base is fixed respectively and is provided with the side hand frame, the upper end of side hand frame is in one side at overcoat frame rear portion, and under the driving overcoat frame upset by electric putter and the service creeper tilt state, the patient slided down to the back below from the service creeper, and both hands can support the side hand frame respectively.
Furthermore, the side hand-held frame is in an inverted U-shaped rod-shaped structure, and the lower end of the side hand-held frame is fixedly arranged on the rear base.
Furthermore, electric putter includes telescopic link and electronic flexible driving body, the lower extreme of electronic flexible driving body is equipped with driving motor and drive mechanism, telescopic link top-down embedding is in electronic flexible driving body and by electronic flexible driving body drive relative electronic flexible driving body flexible from top to bottom.
Furthermore, the rear end of the outer sleeve frame is fixed with an inner hinged lug on the inner side, a groove is formed in the upper side of the inner hinged lug, a frame hinged shaft extending leftwards and rightwards is embedded in the groove, the left end and the right end of the frame hinged shaft are embedded in the left side and the right side of the rear end of the inner sleeve frame respectively, and therefore the outer sleeve frame is hinged relatively on the inner sleeve frame and can be detached from the inner sleeve frame in a detachable mode.
Due to the adoption of the technology, compared with the prior art, the invention has the following specific positive beneficial effects:
1. on the basis of the existing scanning bed, the invention adds a body auxiliary tilting structure, is convenient for the patient to get up, and is beneficial to reducing the workload of medical care personnel.
2. The invention takes the movable frame above the existing scanning bed as the embedded frame, the embedded frame is nested and hinged with the outer sleeve frame, and the electric push rod is adopted to drive the outer sleeve frame to turn over relative to the embedded frame, thus realizing remote wired control and facilitating the operation of mobile personnel outside a CT examination room through anti-radiation glass.
3. According to the invention, the upper end and the lower end of the electric push rod are respectively provided with the automatic vertical righting hinge structures, so that the electric push rod can be righted automatically, the detachable embedded structure can also be righted automatically relative to the electric push rod, and when the embedded frame moves to the rearmost end under the drive of the scanning bed substrate, the horizontal sleeve block is automatically embedded on the embedded sleeve block, so that the driving force of the electric push rod can be transmitted to the outer sleeve frame.
Drawings
FIG. 1 is a schematic structural view of the present invention in a lifted state;
FIG. 2 is a schematic view of the invention in a flat position with the lying plate removed;
fig. 3 is a schematic structural view of the automatic vertical centering hinge structure of the present invention.
In the figure: 1-horizontal nesting block, 2-embedding nesting block, 3-lying plate, 4-outer nesting frame, 5-inner nesting frame, 6-outer supporting plate, 7-scanning bed base body, 8-telescopic rod, 9-electric telescopic driving body, 10-first outer clamping block, 11-second outer clamping block, 12-side hand rest, 13-inner hinged lug, 14-automatic vertical centering hinged structure, 15-hinged nesting block, 16-hinged shaft, 17-hinged nesting block and 18-torsion spring.
Detailed Description
The first embodiment is as follows:
as shown in attached drawings 1 and 2, the invention provides an auxiliary lifting and lying device of a CT (computed tomography) examination bed, which comprises an embedded frame 5 and a scanning bed base body 7, wherein the embedded frame 5 is arranged at the upper end of the scanning bed base body 7, so that the scanning bed base body 7 drives the embedded frame 5 to move back and forth, an outer sleeve frame 4 is embedded at the outer side of the embedded frame 5, the outer sleeve frame 4 is hinged with the rear end of the embedded frame 5, the left side and the right side of the front end of the outer sleeve frame 4 are respectively provided with a detachable embedded structure, the lower end of the detachable embedded structure is hinged with an electric push rod, the lower end of the electric push rod is hinged with a front base 10, the front base 10 is arranged at the front end of the lower part of the scanning bed base body 7, so that the detachable embedded structure is in a non-detachable state, and the electric push rod can drive the outer sleeve frame 4 to turn upwards around the rear side of the embedded frame 5 relatively.
Wherein in order to realize the relative preceding base 10 self return of electric putter and can dismantle the relative electric putter self return of mosaic structure, both ends are equipped with automatic vertical hinge structure 14 of rightting respectively in electric putter's upper and lower both ends, through automatic vertical hinge structure 14 of righting realize respectively with can dismantle mosaic structure and preceding base 10 can automatic vertical the articulated connection of righting for base 10 is automatic vertical and can the fore-and-aft elastic swing before the electric putter is relative, can dismantle the relative electric putter of mosaic structure is automatic vertical and can the fore-and-aft elastic swing.
As shown in fig. 3, the automatic vertical centering hinge structure 14 includes a hinge embedding block 15, a hinge shaft 16, a hinge sleeve block 17 and a torsion spring 18, the hinge embedding block 15 is embedded in the hinge sleeve block 17 from top to bottom, opposite ends of the hinge embedding block 15 and the hinge sleeve block 17 are respectively used as upper and lower ends of the automatic vertical centering hinge structure 14, and the hinge shaft 16 transversely penetrates through the hinge embedding block 15 and the hinge sleeve block 17 in sequence, so that the hinge embedding block 15 can swing back and forth relative to the hinge sleeve block 17;
the hinge shaft 16 is positioned between the hinge embedded block 15 and the hinge sleeve block 17, the left part and the right part are respectively embedded with a torsion spring 18, two ends of the torsion spring 18 are respectively fixedly embedded in the hinge embedded block 15 and the hinge sleeve block 17, so that under the natural state of the torsion spring 18, the hinge embedded block 15 is vertical in the hinge sleeve block 17, under the state of being driven by the electric push rod, the hinge embedded block 15 and the hinge sleeve block 17 rotate relatively, the torsion spring 18 generates elastic deformation, and under the initial state of retracting the electric push rod, the elastic deformation of the torsion spring 18 is recovered, and the hinge embedded block 15 is vertical in the hinge sleeve block 17.
Wherein, can dismantle gomphosis structure includes horizontal cover piece 1 and embedding cover piece 2, and horizontal cover piece 1 is C shape structure and two relative openings part of horizontal cover piece 1 and has inlayed embedding cover piece 2 respectively, and embedding cover piece 2 is fixed to be set up in the front end left and right sides of outer cover frame 4, and horizontal cover piece 1 is fixed to be set up in the automatic vertical upper end of rightting hinge structure 14.
In order to facilitate the patient to lie on the outer sleeve frame 4, the lying plate 3 is fixedly arranged on the upper side of the outer sleeve frame 4, the lying plate 3 is of a rectangular plate-shaped structure, and the upper side of the lying plate 3 is made of elastic materials, so that the patient lies on the lying plate 3.
In order to guarantee the stress pressure of the lying plate 3 when the outer sleeve frame 4 is sleeved with the inner sleeve frame 5, an outer supporting plate 6 is fixedly arranged on the lower side of the front end of the inner sleeve frame 5, the outer supporting plate 6 is of a U-shaped plate structure placed horizontally, the upper side of the outer supporting plate 6 is supported against the lower side of the front end of the outer sleeve frame 4, and when the upper ends of the outer sleeve frame 4 and the inner sleeve frame 5 are located at the same horizontal plane, the inner sleeve frame 5 can support the outer sleeve frame 4 through the outer supporting plate 6.
In order to prevent the patient from falling down from the lying plate 3, a rear base 11 is arranged on the rear side of the lower end of the scanning bed base body 7, side hand supports 12 are fixedly arranged on the left side and the right side of the base respectively, the upper ends of the side hand supports 12 are located on one side of the rear portion of the outer sleeve frame 4, the patient slides down from the upper portion to the rear lower portion of the lying plate 3 under the driving of an electric push rod to drive the outer sleeve frame 4 to overturn and the lying plate 3 to be inclined, and the side hand supports 12 can be supported by two hands respectively.
In order to ensure the stability of the structure of the side hand-held frame 12 and resist the impact force generated by the up-and-down sliding of the patient from the lying plate 3, the side hand-held frame 12 is arranged in an inverted U-shaped rod-shaped structure, and the lower end of the side hand-held frame is fixedly arranged on the rear base 11.
The electric push rod is a commonly used electric push rod, electric power is used as energy, the maximum pushing mass is more than 200Kg, specifically, the electric push rod comprises a telescopic rod 8 and an electric telescopic driving body 9, a driving motor and a transmission mechanism are arranged at the lower end of the electric telescopic driving body 9, and the telescopic rod 8 is embedded into the electric telescopic driving body 9 from top to bottom and is driven by the electric telescopic driving body 9 to stretch up and down relative to the electric telescopic driving body 9.
In order to facilitate the detachment of the outer sleeve frame 4 from the inner embedded frame 5, an inner hinge projection 13 is fixedly arranged on the inner side of the rear end of the outer sleeve frame 4, a groove is formed in the upper side of the inner hinge projection 13, a frame hinge shaft 16 extending leftwards and rightwards is embedded in the groove, and the left end and the right end of the frame hinge shaft 16 are respectively embedded in the left side and the right side of the rear end of the inner embedded frame 5, so that the outer sleeve frame 4 is relatively hinged to the inner embedded frame 5 and can be detached from the inner embedded frame 5 in a detachable mode.
When the device is used, under the general condition, the whole device is in a non-working state, the outer sleeve frame 4 is sleeved in the inner embedded frame 5, the lower side of the front end of the outer sleeve frame 4 is pressed against the outer supporting plate 6, the outer sleeve frame 4 moves back and forth along with the inner embedded frame 5 under the driving of the scanning bed base 7, the horizontal sleeve block 1 is nested on the embedded sleeve block 2 when the inner embedded frame 5 moves to the rearmost end under the driving of the scanning bed base 7, and the horizontal sleeve block 1 is nested and separated from the embedded sleeve block 2 when the inner embedded frame 5 moves forwards under the driving of the scanning bed base 7;
after the CT examination is finished, if a patient needs to get off the lying plate 3, the embedded frame 5 moves to the rearmost end under the driving of the scanning bed base body 7, the horizontal sleeve block 1 is embedded in the embedded sleeve block 2, medical staff can synchronously control two electric push rods to extend upwards through the single-chip microcomputer controller to push the outer sleeve frame 4 to turn over relative to the inner embedded frame 5, so that the upper body of the patient turns upwards relative to the lower body, legs slowly slide down from the lying plate 3, and the side hand-held frame 12 can be held by two hands in the process to avoid the inclined falling off of the lying plate 3; and after the patient gets on or off the lying plate 3, the medical staff can synchronously control the two electric push rods to contract downwards through the single chip microcomputer controller, and the outer sleeve frame 4 falls back to the embedded frame 5.
Claims (8)
1. The utility model provides a supplementary device of lying of getting up of CT inspection bed, includes embedded frame and scanning bed base member, the upper end of scanning bed base member is equipped with embedded frame for the embedded frame back-and-forth movement of scanning bed base member drive, its characterized in that: an outer sleeve frame is nested on the outer side of the inner embedded frame, the outer sleeve frame is hinged with the rear end of the inner embedded frame, detachable embedded structures are respectively arranged on the left side and the right side of the front end of the outer sleeve frame, an electric push rod is hinged to the lower end of each detachable embedded structure, a front base is hinged to the lower end of each electric push rod, the front bases are arranged at the front ends of the lower portions of the scanning bed base bodies, so that the detachable embedded structures are in a non-splitting state, and the electric push rods can drive the outer sleeve frame to turn upwards relatively around the rear side of the inner embedded frame;
the upper end and the lower end of the electric push rod are respectively provided with an automatic vertical righting hinge structure, the automatic vertical righting hinge structures are respectively hinged with the detachable embedded structure and the front base, so that the electric push rod is automatically vertical relative to the front base and can elastically swing back and forth, and the detachable embedded structure is automatically vertical relative to the electric push rod and can elastically swing back and forth;
can dismantle gomphosis structure includes horizontal cover piece and embedding cover piece, horizontal cover piece is C shape structure and two relative openings part of horizontal cover piece and has imbedded the embedding cover piece respectively, the fixed front end left and right sides that sets up at the overcoat frame of embedding cover piece, horizontal cover piece is fixed to be set up in the automatic vertical articulated structure's of rightting upper end that is located electric putter.
2. The auxiliary lifting device for CT examination bed as claimed in claim 1, wherein: the automatic vertical righting hinge structure comprises a hinge embedding block, a hinge shaft, a hinge sleeve block and a torsion spring, wherein the hinge embedding block is embedded in the hinge sleeve block from top to bottom, opposite ends of the hinge embedding block and the hinge sleeve block are respectively used as the upper end and the lower end of the automatic vertical righting hinge structure, and the hinge shaft transversely penetrates through the hinge embedding block and the hinge sleeve block in sequence, so that the hinge embedding block can swing back and forth relative to the hinge sleeve block;
the articulated shaft is in about between articulated embedding piece and the articulated cover piece about two parts respectively the nested torsional spring that has, the both ends of torsional spring are fixed embedding respectively in articulated embedding piece and articulated cover piece for under the natural state of torsional spring, articulated embedding piece is vertical in articulated cover piece, under the state that receives the exogenic action, articulated embedding piece and articulated cover piece rotate relatively, the torsional spring produces elastic deformation.
3. The auxiliary lifting device for CT examination bed as claimed in claim 2, wherein: the fixed service creeper that is provided with of upside of overcoat frame, the service creeper is rectangle platelike structure and upside and adopts elastic material to make for the patient lies on the service creeper.
4. The auxiliary lifting device of CT examination bed as claimed in claim 3, wherein: the utility model discloses a fixed structure of embedded frame, including the overcoat frame, the front end of embedded frame, the front end downside of embedded frame is fixed and is provided with outer layer board, outer layer board is the U-shaped plate column structure that the level was placed, the upside of outer layer board holds in the palm and leans on the front end downside of overcoat frame for when the upper end of overcoat frame and embedded frame is in same horizontal plane, the embedded frame produces supporting role to the overcoat frame through outer layer board.
5. The auxiliary lifting device of CT examination bed as claimed in claim 4, wherein: the lower extreme rear side of scanning bed base member is equipped with the back base, the left and right sides of base is fixed respectively and is provided with the side handrail frame, the upper end of side handrail frame is in one side at overcoat frame rear portion, and under the upset of outer overcoat frame and the service creeper tilt state by electric putter drive, the patient slides down to the rear below from the service creeper, and the side handrail frame can be supported respectively to both hands.
6. The auxiliary lifting and lying device of the CT examining table as claimed in claim 5, wherein: the side hand rest is of an inverted U-shaped rod-shaped structure, and the lower end of the side hand rest is fixedly arranged on the rear base.
7. The auxiliary rising and lying device of the CT examination bed as claimed in any one of claims 1 to 6, wherein: electric putter includes telescopic link and electric telescopic driving body, electric telescopic driving body's lower extreme is equipped with driving motor and drive mechanism, telescopic link top-down embedding is flexible from top to bottom at electric telescopic driving body and by electric telescopic driving body drive relative electric telescopic driving body.
8. The auxiliary rising and lying device of the CT examination bed as claimed in any one of claims 1 to 6, wherein: the rear end inboard of overcoat frame is fixed to be provided with interior articulated lug, the upside of interior articulated lug is equipped with the recess, the embedding has about the frame hinge axis that extends in the recess, both ends imbed respectively including the rear end left and right sides of embedding the frame about the frame hinge axis, make on the embedding frame including the overcoat frame is articulated relatively and detachably dismantles from the embedding frame.
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