CN213554916U - Transcranial magnetic stimulation instrument - Google Patents
Transcranial magnetic stimulation instrument Download PDFInfo
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- CN213554916U CN213554916U CN202020797391.5U CN202020797391U CN213554916U CN 213554916 U CN213554916 U CN 213554916U CN 202020797391 U CN202020797391 U CN 202020797391U CN 213554916 U CN213554916 U CN 213554916U
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Abstract
The utility model discloses a transcranial magnetic stimulation instrument, which relates to the technical field of medical instruments and solves the problem that the existing transcranial magnetic stimulation instrument has poor integral integrity and insufficient flexibility; the host, the computer integrated machine, the myoelectricity box, the liquid cooling machine, the handle bracket, the magnetic coil handle and other parts are all arranged on the frame; the number and the height of the trays of the utility model can be flexibly adjusted according to the height and the number of the actual placing machine; the arrangement of the liquid cooling machine facilitates the cooling of the magnetic coil, the host and the liquid cooling machine are reasonably arranged, the potential safety hazard easily caused by the overflow of the liquid cooling machine is avoided while the treatment effect of the magnetic coil is effectively guaranteed, the integration of the whole structure is strong, the performance integration is high, and the use is convenient.
Description
Technical Field
The utility model relates to the technical field of medical equipment, in particular to a transcranial magnetic stimulation instrument.
Background
The transcranial magnetic stimulation technology is a painless and noninvasive green treatment method, magnetic signals can penetrate through the skull without attenuation to stimulate cranial nerves, and the magnetic stimulation technology is not limited to stimulation of the head and the peripheral nerve and muscle can stimulate the cranial nerves in practical application, so that the magnetic stimulation technology is called magnetic stimulation at present. With the development of the technology, the transcranial magnetic stimulation technology is widely used, the domestic transcranial magnetic stimulation technology reaches the advanced level in the world, and the technology is applied to various aspects of neuropsychological departments (depression and seminal emission), rehabilitation departments, pediatrics (cerebral palsy, autism and the like) and the like. The curative effect on depression, sleep disorder and other diseases is taken as a non-drug treatment and achieves favorable performance in clinic.
The transcranial magnetic stimulation instrument generally comprises main components such as a host, a computer integrated machine, a cooler, a printer, a handle bracket, a handle and the like, and the currently used transcranial magnetic stimulation instrument has the following defects in treatment and use: the transcranial magnetic stimulation instrument has more components, the whole structure of the stimulation instrument is poor in simplicity, reasonable convenience is lacked, flexible adjustment is not convenient, and the use feeling is influenced; in the treatment process, the transcranial magnetic stimulation coil can generate redundant heat, and the treatment accuracy and the treatment feeling are influenced to a certain extent.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a: in order to solve the problems of the existing transcranial magnetic stimulation instrument, the utility model provides a transcranial magnetic stimulation instrument with good flexibility and convenient use.
The utility model discloses a realize above-mentioned purpose and specifically adopt following technical scheme: a transcranial magnetic stimulation apparatus comprising:
the automatic feeding device comprises a rack, wherein the rack comprises a base, two sides of the upper surface of the base are provided with supporting frames, a plurality of trays are arranged between the two supporting frames along the vertical direction, the trays are detachably fixed with the supporting frames on the two sides through a height adjusting mechanism, and the top of each supporting frame is provided with a horizontal desktop;
the device comprises at least one host, a plurality of sensors and a control module, wherein the host is respectively placed on one tray of a rack, a transcranial stimulator lead is led out of the host, and a host button is arranged on the host;
the myoelectricity box is fixed on the side wall of the support frame; the myoelectricity box is connected with an electrode wire and an electrode;
the computer all-in-one machine is arranged on the desktop and is electrically connected with the host and the myoelectricity box;
the liquid cooling machine is arranged on a tray below the main machine on the rack, a circulating water pipe is led out of the liquid cooling machine, and a control button is arranged on the liquid cooling machine;
the handle bracket is arranged on the desktop;
the magnetic coil handle is detachably fixed at the tail end of the handle support and is electrically connected with a lead of the transcranial stimulator, and the tail end of the circulating water pipe is communicated with the magnetic coil handle.
Preferably, a linearly integrated three-way box is further provided, the three-way box is provided with two inlet ends which are respectively connected with the transcranial stimulator lead and the circulating water pipe, the three-way box is provided with an outlet end which is communicated with an external pipeline, and the transcranial stimulator lead and the circulating water pipe are arranged in the external pipeline and finally reach the magnetic coil handle.
Preferably, the upper surface of the desktop is provided with a placing platform protruding upwards, the all-in-one computer is arranged on the placing platform, one side of the placing platform facing an operator is provided with a keyboard box capable of being pulled out, and an operation keyboard of the all-in-one computer is arranged in the keyboard box; the side wall of the desktop is provided with a plurality of magnetic coil hanging openings which are recessed towards the inside of the desktop.
Preferably, height adjusting mechanism includes several and the tray is close to the fixing bolt of the both sides wall threaded connection of support frame inner wall, fixing bolt's top is passed the tray lateral wall and is towards the support frame inner wall, set up the fixed slot that several height inequality can hold fixing bolt and stretch into on the inner wall of support frame.
Preferably, the printer is further arranged and arranged on the base, and the printer is electrically connected with the all-in-one computer.
Preferably, the bottom of the base is provided with universal wheels.
Preferably, the table top is provided with a push handle arranged on the side wall of the table top facing the operator.
The utility model has the advantages as follows:
1. the utility model is provided with a frame, a plurality of trays are arranged between the supporting frames of the frame along the vertical direction, the trays can be disassembled and fixed with the supporting frames at the two sides through a height adjusting mechanism, the trays are convenient for uniformly placing machines such as a host machine, a liquid cooling machine and the like, the structure is simple, the integration is strong, and the quantity and the height of the trays can be flexibly adjusted according to the height and the quantity of the actual placing machines; the device is suitable for placing hosts with different heights and quantities, and has strong flexibility and applicability; the liquid cooling machine is convenient for cooling the magnetic coil, so that excessive heat of the magnetic coil is avoided; the desktop is arranged at the top of the supporting frame, so that the computer all-in-one machine can be conveniently placed, and the operation is simple and convenient;
2. the host of the utility model is arranged above the liquid cooling machine, on one hand, the operation is convenient, and simultaneously, the circuit distance from the host to the magnetic coil is effectively reduced, and the magnetic coil is prevented from being attenuated due to too long length of the lead of the transcranial stimulator, thereby effectively ensuring the treatment effect; on the other hand, the liquid cooling machine is placed on the tray below the main machine, so that the water path can conveniently go from bottom to top, and the damage to the main machine caused by abnormal water adding and overflowing of the liquid cooling machine is avoided;
3. the utility model is provided with a three-way box for pipeline collection, the three-way box is provided with two inlet ends which are respectively connected with a transcranial stimulator lead and a circulating water pipe, the three-way box is provided with an outlet end which is communicated with an outer pipeline, the transcranial stimulator lead and the circulating water pipe are arranged in the outer pipeline and finally reach a magnetic coil handle, thus, on one hand, the phenomenon that the circulating water pipe of the liquid cooling machine is exposed outside to cause messy wiring pipes and influence on use convenience is avoided; on the other hand, the lead of the transcranial stimulator and the circulating water pipe are protected in the external pipeline, the lead of the transcranial stimulator and the circulating water pipe are protected, the damage to the line and the pipeline caused by external factors is avoided, and the installation of the magnetic coil handle is facilitated.
4. The utility model discloses the upper surface of desktop is equipped with the platform of placing that upwards swells, and the all-in-one computer sets up on the platform of placing, and the platform of placing is equipped with the keyboard box that can extract towards the operator's one side, and the operating keyboard of the all-in-one computer sets up in the keyboard box; when the keyboard box is not used, the keyboard box is put into the placing platform, so that redundant space is not occupied, interference on the periphery of equipment is avoided, and a certain dustproof and waterproof protection effect is achieved on a mouse keyboard; the side wall of the table top is provided with a plurality of magnetic coil hanging openings which are recessed towards the inner part of the table top and used for hanging and placing the standby magnetic coil handle, so that the standby magnetic coil handle is prevented from falling and is convenient to take and use.
5. The utility model discloses a height adjusting mechanism includes that several and tray are close to the both sides wall threaded connection's of support inner wall fixing bolt, and the tray lateral wall is passed towards support inner wall on fixing bolt's top, set up the fixed slot that the unequal holding fixing bolt of several height stretched into on the inner wall of support frame, with the fixed slot of tray lateral wall to its co-altitude to can realize the not fixed of tray co-altitude with fixing bolt screw in fixed slot, simple structure is stable, easy dismounting, the operation of being convenient for.
6. The utility model discloses be equipped with the printer, the printer setting is on the base, further improves the function integration nature and the use convenience of whole transcranial magnetic stimulation appearance.
7. The utility model discloses the bottom of base is equipped with the universal wheel, and the amazing appearance overall movement of being convenient for, desktop are equipped with and promote the handle, and the setting of handle promotes and command shift position and distance when being convenient for amazing appearance and remove, and convenient operation is laborsaving.
Drawings
Fig. 1 is a schematic perspective view of the present invention;
FIG. 2 is a left side view of FIG. 1;
FIG. 3 is a schematic view of the overall appearance structure of the three-way box of the present invention;
FIG. 4 is a schematic structural view of the fixing card box of the three-way box of the present invention;
FIG. 5 is a schematic structural view of the movable card box of the three-way box of the present invention;
FIG. 6 is a schematic structural view of the clamping connection of the double-tube quick connector of the fixed card box and the movable card box of the three-way box of the present invention;
fig. 7 is a partial schematic view of the tray and the supporting frame fixed by the height adjusting mechanism.
Reference numerals: 1-base, 2-printer, 3-liquid cooler, 4-first host, 5-second host, 6-desktop, 7-placing platform, 8-computer integrated machine, 9-handle bracket, 10-slot, 11-keyboard box, 12-spare handle, 13-magnetic coil hanging port, 14-pushing handle, 15-hand pulling slot, 16-myoelectricity box, 17-tray, 18-supporting frame, 19-universal wheel, 20-outer pipeline, 21-magnetic coil handle, 22-transcranial stimulator lead, 23-tee box, 24-fixed slot, 25-fixed bolt, 26-threaded through hole, 27-movable card box, 28-first double-pipe quick connector, 29-second double-pipe quick connector, 29-magnetic coil hanging port, 30-fixed card box, 31-second inlet, 32-button, 33-outlet end, 34-first inlet, 35-elastic clamping tube, 36-quick plug end and 37-upper box cover.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. The components of embodiments of the present invention, as generally described and illustrated in the figures herein, may be arranged and designed in a wide variety of different configurations.
Thus, the following detailed description of the embodiments of the present invention, presented in the accompanying drawings, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures. Furthermore, the terms "first," "second," and the like are used merely to distinguish one description from another, and are not to be construed as indicating or implying relative importance.
In the description of the embodiments of the present invention, it should be noted that the terms "inside", "outside", "up", and the like indicate the directions or positional relationships based on the directions or positional relationships shown in the drawings, or the directions or positional relationships that the products of the present invention are conventionally placed when used, and are only for convenience of describing the present invention and simplifying the description, but do not indicate or imply that the device or element to which the term refers must have a specific direction, be constructed and operated in a specific direction, and thus, should not be construed as limiting the present invention.
Example 1
As shown in fig. 1 to 7, the present embodiment provides a transcranial magnetic stimulation apparatus, including:
the table comprises a frame and a table top, wherein the frame comprises a base 1, two sides of the upper surface of the base 1 are provided with support frames 18, three trays 17 are arranged between the two support frames 18 along the vertical direction, the three trays 17 are detachably fixed with the support frames 18 at the two sides through a height adjusting mechanism, and the top of each support frame 18 is provided with a horizontal table top 6;
two main machines are arranged, the two main machines comprise a first main machine 4 and a second main machine 5 which are respectively arranged on a first tray 17 and a second tray 17 of the rack from top to bottom, a transcranial stimulator lead 22 is led out from each main machine to send out two stimulation outputs, and main machine buttons (not shown in the figure) are arranged on each main machine;
the myoelectricity box 16 is fixed on the side wall of the support frame 18, and the myoelectricity box 16 is connected with an electrode wire and an electrode;
the all-in-one computer 8 is arranged on the desktop 6 and is electrically connected with the host and the myoelectricity box;
the liquid cooling machine 3 is arranged on a third tray 17 from top to bottom of the rack, a circulating water pipe is led out of the liquid cooling machine 3, and a control button (not shown in the figure) is arranged on the liquid cooling machine 3;
the handle supports 9 are arranged on the desktop 6, and the two hosts are arranged in the embodiment, so that the two handle supports 9 are respectively arranged at two corners of the desktop 6 behind the computer all-in-one machine 8, and the existing mature supports can be selected as the handle supports 9;
the magnetic coil handle 21 is detachably fixed at the tail end of the handle bracket 9, the magnetic coil handle 21 is electrically connected with a transcranial stimulator lead 22, and the tail end of the circulating water pipe is communicated with the magnetic coil handle 21; in this embodiment, a common magnetic coil handle is used.
As a preferred embodiment of this embodiment, a tee box 23 is disposed on the left side wall of the supporting frame 18, the tee box 23 includes a fixed card box 30 with an upper opening fixedly connected with the left supporting frame 18, a movable card box 27 with an upper opening detachably connected with the fixed card box 30 and disposed on the left side of the fixed card box 30, and an upper box cover 37 capable of being closed and clamped with the upper openings of the fixed card box 30 and the movable card box 27, a first inlet 34 is disposed at the right end of the upper box cover 37 for connecting with a lead of a transcranial stimulator, through holes are disposed at corresponding positions on the inner wall of the fixed card box 30 and the wall of the supporting frame 18 to form a second inlet 31 for connecting with a circulating water pipe of the liquid cooler 3, two double-pipe type quick connectors capable of being engaged and connected with each other are disposed at the adjacent ends of the fixed card box 30 and the movable card box 27, and are, the right end of the first double-tube type quick connection-peg 28 is an elastic clamping tube 35, the left end of the second double-tube type quick connection-peg 29 is a quick connection-peg 36, the quick connection-peg 36 is inserted into the elastic clamping tube 35 to realize clamping, the fixed card box 30 and the movable card box 27 are detachably connected through the first double-tube type quick connection-peg 28 and the second double-tube type quick connection-peg 29, the left and right ends of the first double-tube type quick connection-peg 28 and the second double-tube type quick connection-peg 29 are respectively communicated with a liquid outlet pipe and a liquid return pipe of a circulating water pipe of the liquid cooling machine 3 according to an upper and lower passage, a through hole is arranged at the connection part of the right end of the movable card box 27 and the upper box cover 37 to form an, the main lead of the transcranial stimulator connected from the first inlet 34, the liquid outlet pipe and the liquid return pipe of the circulating water pipe of the liquid cooling machine 3 communicated with the left end of the second double-pipe type quick-connection-peg 29 are all wrapped in the outer pipeline 20 and finally reach the magnetic coil handle 21. Therefore, the water pipe of the liquid cooling machine 3 can be effectively prevented from being exposed, and potential safety hazards are avoided while the problem that a circuit pipeline is messy is effectively solved.
In this embodiment, in order to facilitate the quick disconnection between the first dual-tube quick connector 28 and the second dual-tube quick connector 29, a button 32 extending to the outer wall of the movable card box 27 is disposed on the outer wall of the elastic clamping tube 35 of the first dual-tube quick connector 28 (the connection between the first dual-tube quick connector 28 and the second dual-tube quick connector 29 and the disconnection mechanism of the button 32 refer to the existing quick connector structure, which is not described herein in detail), and the quick disconnection between the first dual-tube quick connector 28 and the second dual-tube quick connector 29 can be realized by pressing the button 32 from the outer wall of the tee box 23. In order to keep the tee box stable, the movable clamping box can be fixed on the supporting frame through a clamping groove and clamping block mechanism or other conventional detachable mechanisms.
When the utility model is used, the magnetic coil handle 21 is to be used and fixed on the handle support 9, the magnetic coil handle 21 is ensured to be communicated with the transcranial stimulator wire 22, the power is switched on, the myoelectricity box 16 power supply, the starter and the myoelectricity box 16 are connected, and the starting liquid cooler 3 can cool the magnetic coil handle.
Example 2
As shown in fig. 1, the present embodiment is further optimized based on embodiment 1, specifically:
the upper surface of the desktop 6 is provided with an upward protruding placing platform 7, the all-in-one computer 8 is arranged on the placing platform 7, one side, facing an operator, of the placing platform 7 is provided with a keyboard box 11 capable of being extracted, an operation keyboard of the all-in-one computer 8 is arranged in the keyboard box 11, specifically, a slot 10 is arranged in the placing platform 7, the keyboard box 11 is slidably inserted in the slot 10 through a slide rail (not shown in the figure), and in order to facilitate the extraction of the keyboard box 11, the outer side wall of the keyboard box 11 is provided with a hand-pulled slot 15; the keyboard box 11 which can be drawn out is used for placing a mouse and a keyboard, when the keyboard box is not used, the keyboard box 11 is put into the placing platform 7, no redundant space is occupied, no interference is caused to the periphery of equipment, a certain dustproof and waterproof protection effect is achieved on the mouse and the keyboard, and the space of the desktop 6 is further optimized; the left side wall and the right side wall of the table top 6 are respectively provided with two magnetic coil hanging openings 13 which are recessed towards the inside of the table top 6 and are used for hanging the standby handle 12, so that the standby handle is convenient to store and take.
Example 3
As shown in fig. 7, the present embodiment is further optimized on the basis of embodiments 1 and 2, specifically:
height adjusting mechanism includes the fixing bolt 25 that is close to the both sides wall threaded connection of support frame 18 inner wall with tray 17, in order to ensure stably and balanced, two pairs of lateral walls of same tray 17 all are symmetrical to the mid point and distribute there are two at least fixing bolt 25, the screw thread through-hole 26 of tray 17 lateral wall is passed on fixing bolt 25's top and towards support frame 18 inner wall, the unequal horizontally fixed slot 24 of several height has been seted up on support frame 18's the inner wall, the width of fixed slot 24 and fixing bolt 25's diameter adaptation, can hold fixing bolt 25 and stretch into. Fixing bolt 25 through rotatory tray 17 both sides wall makes it stretch into in fixed slot 24 and can realize the fixed of tray 17 in support frame 18, through with fixing bolt 25 screw in fixed slot 24 of co-altitude not, can realize the height control of tray 17, overall structure is simple easy dismounting, and fixed back stability is strong, and performance is good, and material cost is low.
Example 4
As shown in fig. 1, the present embodiment is further optimized on the basis of embodiments 1 to 3, specifically:
still be equipped with printer 2, printer 2 sets up on base 1 between both sides support frame 18, printer 2 and computer integrated machine electric connection further improve the function integration nature and the use convenience of whole transcranial magnetic stimulation appearance.
Four angles in bottom of base 1 respectively are equipped with an universal wheel 19, and the frame of being convenient for drives amazing appearance overall structure and removes, and desktop 6 is equipped with the promotion handle 14 towards operator's lateral wall, and the setting that promotes handle 14 carries out helping hand when being convenient for amazing appearance and removes and promotes and the control of displacement, sets up the position and accords with human factors engineering principle, and convenient operation is laborsaving, and the overall structure of being convenient for removes and pinpoints.
Claims (7)
1. A transcranial magnetic stimulation apparatus, comprising:
the table comprises a rack, wherein the rack comprises a base (1), two sides of the upper surface of the base (1) are provided with supporting frames (18), a plurality of trays (17) are arranged between the two supporting frames (18) along the vertical direction, the plurality of trays (17) are detachably fixed with the supporting frames (18) at the two sides through a height adjusting mechanism, and the top of each supporting frame (18) is provided with a horizontal table top (6);
the device comprises at least one host, wherein the host is respectively placed on one tray (17) of a rack, a transcranial stimulator lead (22) is led out of the host, and a host button is arranged on the host;
the myoelectricity box (16) is fixed on the side wall of the support frame (18);
the all-in-one computer (8) is arranged on the desktop (6) and is electrically connected with the host and the myoelectricity box;
the liquid cooling machine (3) is arranged on a tray (17) below the main machine on the rack, a circulating water pipe is led out of the liquid cooling machine (3), and a control button is arranged on the liquid cooling machine (3);
the handle bracket (9) is arranged on the desktop (6);
the magnetic coil handle (21) is detachably fixed at the tail end of the handle support (9), the magnetic coil handle (21) is electrically connected with a transcranial stimulator lead (22), and the tail end of the circulating water pipe is communicated with the magnetic coil handle (21).
2. The transcranial magnetic stimulation instrument according to claim 1, wherein a three-way box (23) for pipeline collection is further provided, the three-way box (23) is provided with two inlet ends for respectively introducing a transcranial stimulation instrument lead (22) and a circulating water pipe, the three-way box (23) is provided with an outlet end communicated with an external pipeline (20), and the transcranial stimulation instrument lead (22) and the circulating water pipe are arranged in the external pipeline (20) and finally reach the magnetic coil handle (21).
3. The transcranial magnetic stimulation instrument according to claim 1, wherein the upper surface of the desktop (6) is provided with a placement platform (7) protruding upwards, the all-in-one computer (8) is arranged on the placement platform (7), the side, facing an operator, of the placement platform (7) is provided with a keyboard box (11) capable of being extracted, and an operation keyboard of the all-in-one computer (8) is arranged in the keyboard box (11); the side wall of the table top (6) is provided with a plurality of magnetic coil hanging openings (13) which are recessed towards the inside of the table top (6).
4. The transcranial magnetic stimulation instrument according to claim 1, wherein the height adjusting mechanism comprises a plurality of fixing bolts (25) in threaded connection with two side walls of the tray (17) close to the inner wall of the support frame (18), the top ends of the fixing bolts (25) penetrate through the side walls of the tray (17) and face the inner wall of the support frame (18), and a plurality of fixing grooves (24) with different heights and capable of accommodating the fixing bolts (25) are formed in the inner wall of the support frame (18).
5. The transcranial magnetic stimulation instrument according to claim 1, wherein a printer (2) is further arranged, the printer (2) is arranged on the base (1), and the printer (2) is electrically connected with the all-in-one computer (8).
6. A transcranial magnetic stimulation apparatus according to claim 1, wherein the bottom of the base (1) is provided with universal wheels (19).
7. A transcranial magnetic stimulation apparatus according to claim 1, characterized in that the tabletop (6) is provided with a pushing handle (14), and the pushing handle (14) is arranged on the side wall of the tabletop (6) facing the operator.
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CN202020797391.5U CN213554916U (en) | 2020-05-14 | 2020-05-14 | Transcranial magnetic stimulation instrument |
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CN202020797391.5U CN213554916U (en) | 2020-05-14 | 2020-05-14 | Transcranial magnetic stimulation instrument |
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