MAGNETICALLY DRIVEN ULTRASONIC SCANNING DEVICE
20190076116 ยท 2019-03-14
Inventors
Cpc classification
A61B8/4483
HUMAN NECESSITIES
A61N2007/0091
HUMAN NECESSITIES
G10K11/004
PHYSICS
G01S7/52085
PHYSICS
G01S15/8945
PHYSICS
International classification
A61B8/00
HUMAN NECESSITIES
Abstract
The present invention provides an ultrasonic probe scanning device comprising: a disposable part and a fixed part. In the disposable part, an ultrasonic probe with a magnetic end attaches to a slide rail encapsulated in a water-containing closed area. Otherwise, in the fixed part, a magnetic holder attached to a track, and a motor for driving the magnetic holder to move back and forth on the track. When the disposable part and the fixed part be combined, it can drive the motion of ultrasonic scanning device by magnetic attraction force.
Claims
1. An ultrasonic probe scanning device comprising: a disposable part having: a power input port; a slide rail: and an ultrasonic probe having a magnetic end with at least a pair of magnet N and S poles, wherein the ultrasonic probe is connected to the slide rail and electrically connected to the power input port, wherein the slide rail and the ultrasonic probe are encapsulated in a water-containing closed area; a fixed part having: a power output slot for electrically engaging the power input port when the disposable part is combined with the fixed part; a track; a magnetic holder coupled to the track for magnetically driving the ultrasonic probe when the disposable part is combined with the fixed part; and a motor which drives the magnetic holder to move on the track.
2. The ultrasonic probe scanning device of claim 1, wherein the ultrasonic probe further comprises a miniature brake, which is used for controlling the ultrasonic probe moving perpendicularly to the slide rail.
3. The ultrasonic probe scanning device of claim 1, wherein the ultrasonic probe comprises: a therapy probe; and an imaging probe, which is parallel to the irradiation direction of the therapy probe.
4. The ultrasonic probe scanning device of claim 3, wherein the imaging probe has the same focal plane as the therapy probe.
5. The ultrasonic probe scanning device of claim 3, wherein the operating frequency of the imaging probe is 5 to 20 MHz.
6. The ultrasonic probe scanning device of claim 3, wherein the operating frequency of the therapy probe is 2 to 10 MHz.
7. The ultrasonic probe scanning device of claim 1, wherein the suction force between the magnetic end and the magnetic base is greater than 0.2 kg and the pitch thereof is less than 1 cm.
8. The ultrasonic probe scanning device of claim 1, wherein the disposable part and the fixed part each have a mutual engagement groove.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012]
[0013]
[0014]
[0015]
DETAILED DESCRIPTION OF THE INVENTION
[0016] The design of this ultrasonic probe scanning device shows as
[0017] The
[0018] The
[0019] In one of the best embodiment,
[0020] The ultrasonic probe 14 further comprises a miniature brake, which is used for controlling the ultrasonic probe 14 moving perpendicularly to the slide rail 13, when the target position is different to the preset focal plane, the user can adjust the focal plane distance of miniature brake so as to obtain a clearer image.
[0021]
TABLE-US-00001 TABLE 1 The test result of magnetic attractive force (distance is 5 mm) magnetic attractive magnetic base magnetic end distance force (thickness mm) (thickness mm) (mm) (kg) 5 10 5 1.548 5 5 5 0.774 5 2 5 0.306 5 1 5 0.1548
TABLE-US-00002 TABLE 2 The test result of magnetic attractive force (distance is 2 mm) magnetic attractive magnetic base magnetic end distance force (thickness mm) (thickness mm) (mm) (kg) 5 10 2 4.158 5 5 2 2.079 5 2 2 0.828 5 1 2 0.4158
TABLE-US-00003 TABLE 3 The test result of magnetic attractive force (distance is 10 mm) magnetic attractive magnetic base magnetic end distance force (thickness mm) (thickness mm) (mm) (kg) 5 10 10 0.414 5 5 10 0.207 5 2 10 0.0828 5 1 10 0.0414
[0022] When the thickness of the magnet is greater than 2 mm, the diameter is greater than 10 mm, and the spacing is less than 6 mm, the magnetic attractive force will be greater than 1 kg. Otherwise, the magnetic attractive force will be greater than the load of the probe holder, which is in the range of magnetic attractive force. Thus, the ultrasonic probe is drove by the motor and the magnetic base described above, and the magnetic attractive force causes the probe to automatically collimate.
[0023] In one of the best embodiment, the magnetic attraction between the magnetic end 15 and the magnetic base 23 is greater than 0.2 kg and the distance is less than 1 cm.
[0024] In the case of using the ultrasonic probe scanning device, because of the disposable part 1 is detachable, it can combine a new disposable part 1 if the disposable part needs to be cleaned or is damaged, and the power input port 12 is electrically connected to the power output slot 21, therefore, the power output slot 21 supplies the power source of the ultrasonic probe 14 and controls the operation of the ultrasonic probe 14. Preferably, the disposable part 1 and the fixed part 2 have an engagement groove respectively 15, 25.
[0025] Although the present invention has been described in terms of specific exemplary embodiments and examples, it will be appreciated that the embodiments disclosed herein are for illustrative purposes only and various modifications and alterations might be made by those skilled in the art without departing from the spirit and scope of the invention as set forth in the following claims.
SYMBOLS
[0026] disposable part 1 [0027] closed area 11 [0028] power input port 12 [0029] slide rail 13 [0030] ultrasonic probe 14 [0031] engagement groove of disposable part 15 [0032] therapy probe 141 [0033] imaging probe 142 [0034] magnetic end 143 [0035] fixed part 2 [0036] power output slot 21 [0037] track 22 [0038] magnetic base 23 [0039] motor 24 [0040] engagement groove of fixed part 25