This invention relates to a medical supporting fixing device including a supporting fixing means for supporting and fixing a predetermined part of a human body, for example, the head. More specifically, the invention relates to a medical supporting fixing device capable of finely adjusting the yaw angle and/or the tilt, angle of a supporting fixing means for supporting and fixing a predetermined part of a human body.
In performing radiotherapy involving irradiation of a predetermined part of a human body with radiation; or diagnostic imaging, such as CT or MRI, for acquiring an image of a predetermined part of a human body for the purpose of diagnosis, it is important to support and fix the predetermined part while positioning it at a required position with sufficient precision. Patent Document 1 indicated below discloses a medical supporting fixing device for use in radiotherapy, the device capable of adjusting the yaw angle and tilt angle of a head supporting fixing means for supporting and fixing the head of a human body.
Patent Document 1: JP-A-Hei-6-7663
As described above, Patent Document 1 discloses a medical supporting fixing device capable of adjusting the yaw angle and tilt angle of a supporting fixing means for supporting and fixing the head of a human body. Patent Document 1 describes that of a plurality of constituent members, a specific constituent member has a yaw angle adjustable, whereas another constituent member has a tilt angle adjustable. However, this document does not disclose at all the concrete features of a means or mechanism for adjusting the yaw angle, or the concrete features of a means or mechanism for adjusting the tilt angle. Thus, this document does not have a sufficient disclosure for embodying the medical supporting fixing device capable of adjusting the yaw angle and/or the tilt angle.
The present invention has been accomplished in the light of the above facts. Its main technical challenge is to provide a medical supporting fixing device which is provided with concrete features enabling a yaw angle and/or a tilt angle to be finely adjusted, and which can therefore be embodied as a medical supporting fixing device capable of finely adjusting the yaw angle and/or the tilt angle.
As a result of in-depth investigations, the present inventor has found that the above main technical challenge can be solved by interposing a yaw angle fine adjustment plate and/or a tilt angle fine adjustment plate between a stage and a supporting fixing means for supporting and fixing a predetermined part of a human body; mounting the yaw angle fine adjustment plate and/or the tilt angle fine adjustment plate so as to be rotatable over a predetermined angular range about required rotation center axes; and disposing a yaw angle fine adjustment plate drive mechanism and/or a tilt angle fine adjustment plate drive mechanism, including input members and transmission means, with respect to the yaw angle fine adjustment plate and/or the tilt angle fine adjustment plate.
That is, according to an aspect of the present invention, there is provided, as a medical supporting fixing device for solving the aforementioned main technical challenge, a medical supporting fixing device comprising:
a stage;
supporting fixing means for supporting and fixing a predetermined part of a human body;
a yaw angle fine adjustment plate interposed between the stage and the supporting fixing means and mounted so as to be pivotable over a predetermined angular range about a pivot center axis extending perpendicularly to the stage; and
a yaw angle fine adjustment plate drive mechanism including an input member for yaw angle fine adjustment disposed movably, and transmission means for yaw angle fine adjustment interposed between the input member for yaw angle fine adjustment and the yaw angle fine adjustment plate,
wherein when the input member for yaw angle fine adjustment is moved, the movement of the input member for yaw angle fine adjustment is transmitted to the yaw angle fine adjustment plate via the transmission means for yaw angle fine adjustment, whereby the yaw angle fine adjustment plate is pivoted about the pivot center axis.
Preferably, at least two arcuate slots are formed in the stage; the arcuate center line of each of the arcuate slots is located on a single circle; at least two pins are disposed on the rear surface of the yaw angle fine adjustment plate in correspondence with the at least two arcuate slots; and the pins are inserted into the corresponding arcuate slots, whereby the yaw angle fine adjustment pate is mounted on the stage. It is preferred that four of the arcuate slots be formed in the stage at intervals in the circumferential direction of the single circle; and four of the pins are disposed on the rear surface of the yaw angle fine adjustment plate in correspondence with the four arcuate slots. Desirably, the input member for yaw angle fine adjustment is mounted rotatably on the stage; and the transmission means for yaw angle fine adjustment includes a reduction gear train. It is advantageous for the yaw angle fine adjustment plate drive mechanism to include an indicator for indicating the rotation amount of the input means for yaw angle fine adjustment. Preferably, the medical supporting fixing device further comprises: a tilt angle fine adjustment plate interposed between the stage and the supporting fixing means and mounted so as to be pivotable over a predetermined angular range about a pivot center axis extending above the stage in the width direction of the stage; and a tilt angle fine adjustment plate drive mechanism including an input member for tilt angle fine adjustment mounted movably, and transmission means for tilt angle fine adjustment interposed between the input member for tilt angle fine adjustment and the tilt angle fine adjustment plate,
wherein when the input member for tilt angle fine adjustment is moved, the movement of the input member for tilt angle fine adjustment is transmitted to the tilt angle fine adjustment plate via the transmission means for tilt angle fine adjustment, whereby the tilt angle fine adjustment plate is pivoted about the pivot center axis. Preferably, at least two guide members are fixed onto the upper surface of the yaw angle fine adjustment plate; two guided members are fixed onto the rear surface of the tilt angle fine adjustment plate in correspondence with the two guide members; the upper surface of the guide member is a concave arcuate surface, while the lower surface of the guided member is a convex arcuate surface, and the concave arcuate surface and the convex arcuate surface are located on a single cylindrical surface; the convex arcuate surface of the guided member is brought into engagement with the concave arcuate surface of the guide member, whereby the tilt angle fine adjustment plate is mounted on the yaw angle fine adjustment plate; and the supporting fixing means is mounted on the tilt angle fine adjustment plate. Desirably, the input means for tilt angle fine adjustment is mounted rotatably on the yaw angle fine adjustment plate; and the transmission means for tilt angle fine adjustment includes a plurality of reduction gears. It is advantageous for the tilt angle fine adjustment plate drive mechanism to include an indicator for indicating the rotation amount of the input means for tilt angle fine adjustment.
According to another aspect of the present invention, there is provided, as a medical supporting fixing device for solving the aforementioned main technical challenge, a medical supporting fixing device comprising:
a stage;
supporting fixing means for supporting and fixing a predetermined part of a human body;
a tilt angle fine adjustment plate interposed between the stage and the supporting fixing means and mounted so as to be rotatable over a predetermined angular range about a rotation center axis extending above the stage in the width direction of the stage; and
a tilt angle fine adjustment plate drive mechanism including an input member for tilt angle fine adjustment mounted movably, and transmission means for tilt angle fine adjustment interposed between the input member for tilt angle fine adjustment and the tilt angle fine adjustment plate,
wherein when the input member for tilt angle fine adjustment is moved, the movement of the input member for tilt angle fine adjustment is transmitted to the tilt angle fine adjustment plate via the transmission means for tilt angle fine adjustment, whereby the tilt angle fine adjustment plate is rotated about the rotation center axis.
Preferably, at least two guide members are fixed onto the upper surface of the stage; two guided members are fixed onto the rear surface of the tilt angle fine adjustment plate in correspondence with the two guide members; the upper surface of the guide member is a concave arcuate surface, while the lower surface of the guided member is a convex arcuate surface, and the concave arcuate surface and the convex arcuate surface are located on a single cylindrical surface; and the convex arcuate surface of the guided member is brought into engagement with the concave arcuate surface of the guide member, whereby the tilt angle fine adjustment plate is mounted on the stage. Desirably, the input means for tilt angle fine adjustment is mounted rotatably on the stage, and the transmission means for tilt angle fine adjustment includes a reduction gear train. It is advantageous for the tilt angle fine adjustment plate drive mechanism to include an indicator for indicating the rotation amount of the input means for tilt angle fine adjustment. Preferably, the medical supporting fixing device further comprises a yaw angle fine adjustment plate mounted so as to be pivotable over a predetermined angular range about a pivot center axis extending perpendicularly to the tilt angle fine adjustment plate; and a yaw angle fine adjustment plate drive mechanism including an input member for yaw angle fine adjustment disposed movably, and transmission means for yaw angle fine adjustment interposed between the input member for yaw angle fine adjustment and the yaw angle fine adjustment plate; at least two arcuate slots are formed in the tilt angle fine adjustment plate; the arcuate center line of each of the arcuate slots is located on a single circle; at least two pins are disposed on the rear surface of the yaw angle fine adjustment plate in correspondence with the at least two arcuate slots; and the pins are inserted into the corresponding arcuate slots, whereby the yaw angle fine adjustment plate is mounted on the stage; the supporting fixing means is mounted on the yaw angle fine adjustment plate; and when the input member for yaw angle fine adjustment is moved, the movement of the input member for yaw angle fine adjustment is transmitted to the yaw angle fine adjustment plate via the transmission means for yaw angle fine adjustment, whereby the yaw angle fine adjustment plate is pivoted about the pivot center axis. It is preferred that four of the arcuate slots be formed in the tilt angle fine adjustment plate at intervals in the circumferential direction of the single circle; and four of the pins be disposed on the rear surface of the yaw angle fine adjustment plate in correspondence with the four arcuate slots. Desirably, the input member for yaw angle fine adjustment is mounted rotatably on the tilt angle fine adjustment plate; and the transmission means for yaw angle fine adjustment includes a reduction gear train. It is advantageous for the yaw angle fine adjustment plate drive mechanism to include an indicator for indicating the rotation amount of the input means for yaw angle fine adjustment.
According to the medical supporting fixing device of the present invention, when the input member is moved manually or by a suitable electrically operated means, this movement is transmitted via the transmission means to finely rotate the yaw angle fine adjustment plate or the tilt angle fine adjustment plate, whereby the yaw angle or the tilt angle of the supporting fixing means is finely adjusted.
The present invention will now be described in further detail by reference to the accompanying drawings illustrating the preferred embodiment of the medical supporting fixing device configured in accordance with the present invention.
With reference to
Further referring to
Referring to
The yaw angle fine adjustment plate drive mechanism 16 disposed on the stage 2 is designed to pivot the yaw angle fine adjustment plate 6 about the pivot center axis 22 with respect to the stage 2 in order to adjust the yaw angle finely. With further reference to
In the illustrated embodiment, the input member 28 is pivoted manually, but if desired, the input member 28 can be pivoted by a suitable drive source such as an electric motor. Instead of the mechanical indicator 34, moreover, an indicator in another suitable form, such as a liquid crystal indicator, can be used.
Referring again to
Referring to
The tilt angle fine adjustment plate drive mechanism 54 disposed on the yaw angle fine adjustment plate 6 is designed to pivot the tilt angle fine adjustment plate 8 about the pivot center axis 48 with respect to the yaw angle fine adjustment plate 6 in order to adjust the tilt angle finely. With further reference to
In the tilt angle fine adjustment plate drive mechanism 54 as well, as in the case of the yaw angle fine adjustment plate drive mechanism 16, the input member 72 is pivoted manually, but if desired, the input member 72 can be pivoted by a suitable drive source such as an electric motor. Instead of the mechanical indicator 78, moreover, an indicator in another suitable form, such as a liquid crystal indicator, can be used.
As shown in
For radiotherapy or diagnostic imaging, the medical supporting fixing device constituted in accordance with the present invention is disposed on a suitable bed on which a human body is lying. (If desired, a part of the bed can be utilized as the stage of the medical supporting fixing, device constituted in accordance with the present invention.) The head of the human body lying on the bed is positioned on the tilt angle fine adjustment plate 8 through the opening formed in the base plate 90 of the supporting fixing means 4. Then, the human head is covered with the cover member 92 for fixing. To adjust the position of the human head precisely, the input member 28 of the yaw angle fine adjustment plate drive mechanism 16 is rotated to pivot the yaw angle fine adjustment plate 6 finely about the pivot center axis 22. By so doing, the tilt angle fine adjustment plate 8 and the supporting fixing means 4 are also finely pivoted in accordance with the pivoting of the yaw angle fine adjustment plate 6, whereby the yaw angle of the human head is finely adjusted. Also, the input member 72 of the tilt angle fine adjustment plate drive mechanism 54 is rotated to pivot the tilt angle fine adjustment plate 8 finely about the pivot center axis 48. By so doing, the supporting fixing means 4 is also finely pivoted in accordance with the pivoting of the tilt angle fine adjustment plate 8, whereby the tilt angle of the human head is finely adjusted.
The preferred embodiment of the medical supporting fixing device constituted in accordance with the present invention has been described in detail above by reference to the accompanying drawings. However, the invention is in no way limited to this embodiment, and there is no need to dwell on the fact that various changes and modifications can be made without departing from the range of the invention.
In the illustrated embodiment, for example, the yaw angle fine adjustment plate 6 is mounted on the stage 2, the tilt angle fine adjustment late 8 is mounted on the yaw angle fine adjustment plate 6, and the supporting fixing means 4 is mounted on the tilt angle fine adjustment plate 8. However, the tilt angle fine adjustment plate 8 can be mounted on the stage 2, the yaw angle fine adjustment plate 6 can be mounted on the tilt angle fine adjustment plate 8, and the supporting fixing means 4 can be mounted on the yaw angle fine adjustment plate 6. In this case, the manner of mounting the tilt angle fine adjustment plate 8 on the yaw angle fine adjustment plate 6 in the illustrated embodiment can be adopted for mounting the tilt angle fine adjustment plate 8 on the stage 2; the manner of mounting the yaw angle fine adjustment plate 6 on the state 2 in the illustrated embodiment, can be adopted for mounting the yaw angle fine adjustment plate 6 on the tilt angle fine adjustment plate 8; and the manner of mounting the supporting fixing means 4 on the tilt angle fine adjustment plate 8 in the illustrated embodiment can be adopted for mounting the supporting fixing means 4 on the yaw angle fine adjustment plate 6. In the illustrated embodiment, moreover, the tilt angle fine adjustment plate 8 as well as the yaw angle fine adjustment plate 6 is interposed between the stage 2 and the supporting fixing means 4. If desired, however, only one of the yaw angle fine adjustment plate 6 and the tilt angle fine adjustment plate 8 can be interposed between the stage 2 and the supporting fixing means 4.
2: Stage
4: Supporting fixing means
6: Yaw angle fine adjustment plate
8: Tilt angle fine adjustment plate
12: Arcuate slot
16: Yaw angle fine adjustment plate drive mechanism
20: Pin
22: Pivot center axis
28: Input member (input member for yaw angle fine adjustment)
30: Worm gear (transmission means for yaw angle fine adjustment)
34: Indicator
36: Worm wheel (transmission means for yaw angle fine adjustment)
38: Spur gear (transmission means for yaw angle fine adjustment)
42: Spur gear (transmission means for yaw angle fine adjustment)
44: Guide member
46: Concave arcuate surface
48: Pivot center axis
54: Tilt angle fine adjustment plate drive mechanism
56; Guided member
58: Convex arcuate surface
72: Input member (input member for tilt angle fine adjustment)
74: Worm gear (transmission means for tilt angle fine adjustment)
78: Indicator
80: Worm wheel (transmission means for tilt angle fine adjustment)
82: Spur gear (transmission means for tilt angle fine adjustment)
84: Spur gear (transmission means for tilt angle fine adjustment)
86: Spur gear (transmission means for tilt angle fine adjustment)
Number | Date | Country | Kind |
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2017-164424 | Aug 2017 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2018/030898 | 8/22/2018 | WO | 00 |