CN212854355U - Magnetic coil support of transcranial magnetic stimulation instrument - Google Patents

Magnetic coil support of transcranial magnetic stimulation instrument Download PDF

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Publication number
CN212854355U
CN212854355U CN202020648407.6U CN202020648407U CN212854355U CN 212854355 U CN212854355 U CN 212854355U CN 202020648407 U CN202020648407 U CN 202020648407U CN 212854355 U CN212854355 U CN 212854355U
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magnetic stimulation
transcranial magnetic
support
stimulation instrument
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CN202020648407.6U
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Chinese (zh)
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刘宇
王春忠
唐建朝
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Max Zhengzhou Medical Technology Co ltd
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Max Zhengzhou Medical Technology Co ltd
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Abstract

The utility model discloses a magnetic coil support of transcranial magnetic stimulation instrument, including transcranial magnetic stimulation instrument body, all be equipped with a plurality of thread grooves on the transcranial magnetic stimulation instrument body, thread groove female connection has the support, is equipped with the wire ring on transcranial magnetic stimulation instrument body, the support respectively. The utility model discloses in, because of being equipped with a plurality of thread grooves on the transcranial magnetic stimulation appearance body, and include on the support with thread groove threaded connection's screw rod, consequently, under the condition that transcranial magnetic stimulation appearance support can not remove, its self support can with the thread groove threaded connection of other positions after the dismantlement, broken the present extending direction's of support limitation to distance between electrode slice and the treatment person has been adjusted with this.

Description

Magnetic coil support of transcranial magnetic stimulation instrument
Technical Field
The utility model belongs to transcranial magnetic stimulation appearance field, concretely relates to magnetic coil support of transcranial magnetic stimulation appearance.
Background
At present, there are many domestic devices for treating brain dysfunction, and the most commonly used therapeutic devices are mainly used for treating according to the following two treatment principles: firstly, through a therapeutic cap worn on the head, transcranial magnetic stimulation is used for generating induction current to stimulate brain tissues so as to achieve the therapeutic effect; secondly, stimulating cerebellar parietal nucleus by using simulated bioelectric current through an electrode slice adhered to the mastoid acupoint behind the ear to achieve a treatment effect; therapeutic devices developed using these principles have been widely used in clinics.
The existing bracket on the transcranial magnetic stimulation instrument for treatment through the electrode slice is usually fixed on the transcranial magnetic stimulation instrument, and the electrode slice is fixed on the bracket, so that the bracket on the bracket can not be adjusted according to the distance between the transcranial magnetic stimulation instrument and a patient under the condition that the transcranial magnetic stimulation instrument can not move, the extending direction of the bracket is limited, and the treatment direction of the electrode slice is also limited; the transcranial magnetic stimulation instrument can not move under the conditions of: damage to the corners of buildings, damage to the rollers of transcranial magnetic stimulators, etc.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a: under the condition that the bracket of the transcranial magnetic stimulation instrument cannot move, the bracket of the transcranial magnetic stimulation instrument can be detached and installed again, the limitation of the existing extending direction of the bracket is broken, and the distance between the electrode plate and a curer is adjusted.
The utility model adopts the technical scheme as follows:
a magnetic coil support of a transcranial magnetic stimulation instrument comprises a transcranial magnetic stimulation instrument body, wherein a plurality of thread grooves are formed in the transcranial magnetic stimulation instrument body, a support is connected with the thread grooves in an internal thread mode, and lead rings are arranged on the transcranial magnetic stimulation instrument body and the support respectively.
Preferably, the support includes the toper piece, and the lower surface of toper piece is equipped with the screw rod with thread groove threaded connection, and the one end that the toper piece upwards extended is equipped with the pillar, is equipped with the fixed ball on the pillar, and the rotation is equipped with branch one on the fixed ball, is equipped with the swivelling chute that is used for controlling direction of rotation on the branch one, and the fixed ball holding is in the swivelling chute, and the one end that branch one upwards extended is connected with branch two through rotary device, and threaded connection has the end control frame on the branch two.
Preferably, the rotating device comprises two fixing blocks symmetrically arranged along the vertical center line of the first supporting rod, a fixing rod is arranged between the two fixing blocks, an annular shell is sleeved on the fixing rod, and a second supporting rod is fixedly connected to the annular shell.
Preferably, one end of the second support rod extending upwards is provided with a threaded cavity, the threaded cavity is connected with a fixing knob in a threaded mode, and an internal thread is arranged at the position, close to the bottom of the cavity, of the threaded cavity.
Preferably, the end control frame comprises a fixing ring, the fixing ring is provided with a bent plate for adjusting the treatment direction, and the extending end of the bent plate is provided with a lantern ring for guiding the electrode plate spool.
Preferably, the first support rod and the second support rod are respectively sleeved with a ring, and a wire guide ring is fixedly arranged on the first support rod and the second support rod through the rings.
Preferably, the shape of the rotation groove is identical to that of the fixing ball.
To sum up, owing to adopted above-mentioned technical scheme, the beneficial effects of the utility model are that:
1. the utility model discloses in, because of being equipped with a plurality of thread grooves on the transcranial magnetic stimulation appearance body, and include on the support with thread groove threaded connection's screw rod, consequently, under the condition that transcranial magnetic stimulation appearance support can not remove, its self support can with the thread groove threaded connection of other positions after the dismantlement, broken the present extending direction's of support limitation to distance between electrode slice and the treatment person has been adjusted with this.
2. The utility model discloses well toper piece can the person of facilitating the use unscrew the screw rod fast for the toper, makes the screw rod keep away from the thread groove.
3. In the utility model, the fixing ball is arranged in the rotating groove, so that a user can adjust the rotating direction of the bracket by rotating the first support rod.
4. The utility model discloses in, the shape of swivelling chute is unanimous can the person of facilitating the use adjust the rotation direction of branch one with the shape of fixed ball.
5. The utility model discloses in, two accessible rotary device of branch control its self direction of rotation to further control the direction of rotation of tip control price.
6. The utility model discloses in, establish on fixed knob because of solid fixed ring cover, so the user's accessible adjusts the direction of rotation that fixed knob adjusted the bent plate.
7. The utility model discloses in, the lantern ring and conduit all lead to the electrode slice spool.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic structural view of a stent;
FIG. 3 is an enlarged view of a portion of FIG. 2;
FIG. 4 is a partial enlarged view of B in FIG. 2;
FIG. 5 is a schematic structural view of the toroidal shell;
fig. 6 is a schematic view of the structure of the thread groove.
FIG. 7 is a schematic view of the connection of a ring to a wire ring;
fig. 8 is a schematic view of the structure of the collar.
The labels in the figure are: 1 transcranial magnetic stimulation instrument body, 11 thread grooves, 2 supports, 21 conical blocks, 22 screws, 23 pillars, 231 fixing balls, 24 support rod I, 241 rotating grooves, 25 support rod II, 251 thread cavities, 252 fixing knobs, 3 rotating devices, 31 fixing blocks, 311 fixing rods, 312 ring shells, 4 end part control frames, 41 fixing rings, 42 bent plates, 43 lantern rings, 5 circular rings and 51 wire rings.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the invention.
A magnetic coil support of a transcranial magnetic stimulation instrument comprises a transcranial magnetic stimulation instrument body 1, wherein a plurality of thread grooves 11 are formed in the transcranial magnetic stimulation instrument body 1, a support 2 is connected to the thread grooves 11 in an internal thread mode, and lead rings 51 are arranged on the transcranial magnetic stimulation instrument body 1 and the support 2 respectively.
Preferably, the support 2 includes a conical block 21, a screw 22 screwed with the thread groove 11 is provided on the lower surface of the conical block 21, a pillar 23 is provided at one end of the conical block 21 extending upward, a fixing ball 231 is provided on the pillar 23, a first support rod 24 is rotatably provided on the fixing ball 231, a rotating groove 241 for controlling the rotating direction is provided on the first support rod 24, the fixing ball 231 is accommodated in the rotating groove 241, a second support rod 25 is connected to one end of the first support rod 24 extending upward through the rotating device 3, and an end control frame 4 is screwed on the second support rod 25.
Preferably, the rotating device 3 includes two fixing blocks 31 symmetrically disposed along a vertical center line of the first support rod 24, a fixing rod 311 is disposed between the two fixing blocks 31, an annular shell 312 is sleeved on the fixing rod 311, and a second support rod 25 is fixedly connected to the annular shell 312.
Preferably, one end of the second support rod 25 extending upwards is provided with a threaded cavity 251, the threaded cavity 251 is internally threaded with a fixing knob 252, and the part of the threaded cavity 251 close to the cavity bottom is provided with internal threads.
Preferably, the end control frame 4 comprises a fixing ring 41, the fixing ring 41 is sleeved on the fixing knob 252, the fixing ring 41 is provided with a bending plate 42 for adjusting the treatment direction, and the extending end of the bending plate 42 is provided with a lantern ring 43 for guiding the electrode plate conduit.
Preferably, the first support rod 24 and the second support rod 25 are respectively sleeved with a ring 5, and a wire guiding ring 51 is fixedly arranged on the ring 5.
Preferably, the shape of the rotation groove 241 is identical to that of the fixing ball 231.
Example 1
A magnetic coil support of a transcranial magnetic stimulation instrument comprises a transcranial magnetic stimulation instrument body 1, wherein a plurality of thread grooves 11 are formed in the transcranial magnetic stimulation instrument body 1, a support 2 is connected to the thread grooves 11 in an internal thread mode, and lead rings 51 are arranged on the transcranial magnetic stimulation instrument body 1 and the support 2 respectively.
Preferably, the support 2 includes a conical block 21, a screw 22 screwed with the thread groove 11 is provided on the lower surface of the conical block 21, a pillar 23 is provided at one end of the conical block 21 extending upward, a fixing ball 231 is provided on the pillar 23, a first support rod 24 is rotatably provided on the fixing ball 231, a rotating groove 241 for controlling the rotating direction is provided on the first support rod 24, the fixing ball 231 is accommodated in the rotating groove 241, a second support rod 25 is connected to one end of the first support rod 24 extending upward through the rotating device 3, and an end control frame 4 is screwed on the second support rod 25.
Preferably, the rotating device 3 includes two fixing blocks 31 symmetrically disposed along a vertical center line of the first support rod 24, a fixing rod 311 is disposed between the two fixing blocks 31, an annular shell 312 is sleeved on the fixing rod 311, and a second support rod 25 is fixedly connected to the annular shell 312.
Preferably, one end of the second support rod 25 extending upwards is provided with a threaded cavity 251, the threaded cavity 251 is internally threaded with a fixing knob 252, and the part of the threaded cavity 251 close to the cavity bottom is provided with internal threads.
Preferably, the end control frame 4 comprises a fixing ring 41, the fixing ring 41 is sleeved on the fixing knob 252, the fixing ring 41 is provided with a bending plate 42 for adjusting the treatment direction, and the extending end of the bending plate 42 is provided with a lantern ring 43 for guiding the electrode plate conduit.
Preferably, the first support rod 24 and the second support rod 25 are respectively sleeved with a ring 5, and a wire guiding ring 51 is fixedly arranged on the ring 5.
Preferably, the shape of the rotation groove 241 is identical to that of the fixing ball 231.
In this embodiment, the user can first screw the screw rod 22 with the thread groove 11, and then pass the line pipe of the motor piece through the sleeve and the line pipe in sequence, because the fixing ball 231 is identical to the shape of the rotating groove 241, therefore, the user can rotate the first support rod 24 according to the actual situation, because the second support rod 25 is sleeved on the fixing rod 311 through the annular shell 312, so that the user can rotate forwards or rightwards according to the actual situation, after the directions of the first support rod 24 and the second support rod 25 are adjusted, the user unscrews the fixing knob 252, then the direction of the bending plate 42 is adjusted by adjusting the fixing ring 41, if the transcranial magnetic stimulation instrument bracket 2 is unable to move, the user only needs to connect the self bracket 2 with the thread groove 11 at other positions after detaching, thereby not only breaking the limitation of the existing extending direction of the bracket 2, but also adjusting the distance between the electrode plate and the therapist; since the threaded cavity 251 is provided with internal threads at a position close to the bottom of the cavity, the user can adjust the direction of the fixing ring 41 without completely withdrawing the fixing knob 252 after unscrewing, thereby adjusting the direction of the bending plate 42.
In the present embodiment, the screw 22 and the fixing knob 252 are conventional technologies, and therefore, the description thereof is omitted.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (7)

1. A magnetic coil support of a transcranial magnetic stimulation instrument comprises a transcranial magnetic stimulation instrument body (1), and is characterized in that: the transcranial magnetic stimulation instrument is characterized in that a plurality of thread grooves (11) are formed in the transcranial magnetic stimulation instrument body (1), a support (2) is connected to the thread grooves (11) in an internal thread mode, and lead rings (51) are arranged on the transcranial magnetic stimulation instrument body (1) and the support (2) respectively.
2. The magnetic coil support of a transcranial magnetic stimulation instrument according to claim 1, wherein: support (2) are including toper piece (21), the lower surface of toper piece (21) is equipped with screw rod (22) with thread groove (11) threaded connection, the one end that toper piece (21) upwards extended is equipped with pillar (23), be equipped with solid fixed ball (231) on pillar (23), the rotation is equipped with branch (24) on solid fixed ball (231), be equipped with on branch (24) and be used for controlling rotation direction's swivelling chute (241), gu fixed ball (231) holding is in swivelling chute (241), the one end that branch (24) upwards extended is connected with branch two (25) through rotary device (3), threaded connection has tip control frame (4) on branch two (25).
3. A magnetic coil support for a transcranial magnetic stimulation apparatus according to claim 2, wherein: rotating device (3) include two fixed blocks (31) that set up along the vertical central line symmetry of branch (24), and are equipped with dead lever (311) between two fixed blocks (31), the cover is equipped with encircleing (312) on dead lever (311), fixedly connected with branch two (25) on encircleing (312).
4. A magnetic coil support for a transcranial magnetic stimulation apparatus according to claim 2, wherein: one end of the second support rod (25) extending upwards is provided with a threaded cavity (251), the threaded cavity (251) is connected with a fixing knob (252) in an internal thread mode, and an internal thread is arranged at the position, close to the cavity bottom, of the threaded cavity (251).
5. The magnetic coil support of a transcranial magnetic stimulation instrument according to claim 4, wherein: end control frame (4) are including solid fixed ring (41), gu fixed ring (41) cover is established on fixed knob (252), gu be equipped with on fixed ring (41) and be used for adjusting bent plate (42) of treatment direction, the extension end of bent plate (42) is equipped with lantern ring (43) that are used for leading to the electrode slice spool.
6. The magnetic coil support of a transcranial magnetic stimulation instrument according to claim 5, wherein: the first support rod (24) and the second support rod (25) are respectively sleeved with a circular ring (5), and a wire guide ring (51) is fixedly arranged through the circular ring (5).
7. The magnetic coil support of a transcranial magnetic stimulation instrument according to claim 6, wherein: the shape of the rotating groove (241) is identical to that of the fixing ball (231).
CN202020648407.6U 2020-04-26 2020-04-26 Magnetic coil support of transcranial magnetic stimulation instrument Active CN212854355U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020648407.6U CN212854355U (en) 2020-04-26 2020-04-26 Magnetic coil support of transcranial magnetic stimulation instrument

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020648407.6U CN212854355U (en) 2020-04-26 2020-04-26 Magnetic coil support of transcranial magnetic stimulation instrument

Publications (1)

Publication Number Publication Date
CN212854355U true CN212854355U (en) 2021-04-02

Family

ID=75186705

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020648407.6U Active CN212854355U (en) 2020-04-26 2020-04-26 Magnetic coil support of transcranial magnetic stimulation instrument

Country Status (1)

Country Link
CN (1) CN212854355U (en)

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