ULTRASOUND CATHETER AND MEDICAL SYSTEM USING THE SAME
20170333123 · 2017-11-23
Inventors
Cpc classification
A61B8/12
HUMAN NECESSITIES
A61B8/4477
HUMAN NECESSITIES
A61B8/4494
HUMAN NECESSITIES
A61M25/0105
HUMAN NECESSITIES
A61B18/1492
HUMAN NECESSITIES
International classification
Abstract
An ultrasound catheter includes a hollow body and a plurality of ultrasound sensing regions. The hollow body is made of a flexible circuit board. The ultrasound sensing regions are disposed on a periphery of the hollow body, wherein each of the ultrasound sensing regions has a plurality of channels, and the channels of each ultrasound sensing region are arranged along an axial direction of the hollow body. A medical system using the ultrasound catheter is also provided.
Claims
1. An ultrasound catheter, comprising: a hollow body constructed by a flexible circuit board; and a plurality of ultrasound sensing regions disposed on a periphery of the hollow body, wherein each of the ultrasound sensing regions comprises a plurality of channels, and the channels of the ultrasound sensing regions are arranged along an axial direction of the hollow body.
2. The ultrasound catheter according to claim 1, wherein each of the ultrasound sensing regions is made of a piezoelectric material.
3. The ultrasound catheter according to claim 1, further comprising an elastic film covering a front opening of the hollow body.
4. The ultrasound catheter according to claim 3, wherein the elastic film comprises a radial incision.
5. The ultrasound catheter according to claim 1, wherein the hollow body is triangular columnar, the ultrasound sensing regions comprise three of the ultrasound sensing regions, the three ultrasound sensing regions are disposed on three side surfaces of the hollow body, respectively.
6. The ultrasound catheter according to claim 1, wherein to form the hollow body, the flexible circuit board is bent according to a plurality of fold lines respectively disposed between the channels and circuit wires within each of the ultrasound sensing regions.
7. The ultrasound catheter according to claim 1, wherein each of the channels is connected through the flexible circuit board to a host independently, so that the channels are capable of independently perform transmission and reception sequences of different ultrasounds.
8. The ultrasound catheter according to claim 1, wherein any two of the channels that are adjacent to each other are spaced apart for a distance less than twice of a wavelength of an ultrasound transmitted by the channels.
9. A medical system, comprising: an ultrasound catheter, comprising a hollow body and a plurality of ultrasound sensing regions, wherein the hollow body is constructed by a flexible circuit board, the ultrasound sensing regions are disposed on a periphery of the hollow body, each of the ultrasound sensing regions comprises a plurality of channels, the plurality of channels of each of the ultrasound sensing regions are arranged along an axial direction of the hollow body, and the hollow body comprises a front opening and a hole; and a treatment equipment, wherein the treatment equipment enters the hollow body through the hole and protrudes from the hollow body through the front opening.
10. The medical system according to claim 9, wherein each of the ultrasound sensing regions is made of a piezoelectric material.
11. The medical system according to claim 9, wherein the ultrasound catheter further comprises an elastic film covering the front opening of the hollow body.
12. The medical system according to claim 11, wherein the elastic film comprises a radial incision, and the treatment equipment passes through the radial incision and extrudes from the hollow body through the front opening.
13. The medical system according to claim 9, wherein the hollow body is triangular columnar, the ultrasound sensing regions comprises three of the ultrasound sensing regions, and the three ultrasound sensing regions are disposed on three side surfaces of the hollow body, respectively.
14. The medical system according to claim 9, wherein the treatment equipment is an electric burner or a balloon stent.
15. The medical system according to claim 9, wherein to form the hollow body, the flexible circuit board is bent according to a plurality of fold lines respectively disposed between the channels and the circuit wires within each of the ultrasound sensing regions.
16. The medical system according to claim 9, wherein each of the channels is connected through the flexible circuit board to a host independently, so that the channels are capable of independently performing transmission and reception sequences of different ultrasounds.
17. The medical system according to claim 9, wherein any two of the channels that are adjacent to each other are spaced apart for a distance less than twice of a wavelength of an ultrasound transmitted by the channels.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0008] The invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed description and accompanying drawings, in which:
[0009]
[0010]
[0011]
[0012]
[0013]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0014] Please refer to
[0015] As shown in
[0016] As shown in
[0017] In this embodiment, the hollow body 100 is triangular columnar, and three ultrasound sensing regions 102 are disposed on three side surfaces of the hollow body 100, respectively. Three full ultrasound images generated by the three ultrasound sensing regions 102 may be combined into a circular stereoscopic image in the host 14. It is to be understood that the hollow body 100 may also be a cylinder or other polygonal columnar, and its shape is not limited to triangular columnar. Furthermore, the number of the ultrasound sensing regions 102 may be two or at least three, and is not limited to three.
[0018] Each of the ultrasound sensing regions 102 may be made of a piezoelectric material. The piezoelectric material may be lead zirconate titanate (PZT), polyvinylidene (PVDF), LiNbO.sub.3, PMNPT or other piezoelectric material. To manufacture the ultrasound catheter 10, a flexible circuit board 100′ as shown in
[0019] The doctor may firstly let the ultrasound catheter 10 enter the blood vessel subcutaneously to perform blood vessel scanning so as to diagnose diseases. Since the three ultrasound sensing regions 102 may scan different angles, the ultrasonic catheter 10 of the present invention may achieve simultaneous multi-directional scanning without the need of a rotation mechanism.
[0020] In this embodiment, the hollow body 100 includes a front opening 110 and a hole 112, as shown in
[0021] Please refer to
[0022] To sum up, according to the present invention, ultrasound sensing regions are disposed on the periphery of the hollow body of an ultrasound catheter, and a plurality of channels of each of the ultrasound sensing regions are arranged along an axial direction of a hollow body. Since a plurality of ultrasound sensing regions may scan at different angles, the ultrasonic device of the present invention may realize simultaneous multi-directional scanning without the need of a rotation mechanism. In addition, when a doctor uses an ultrasound catheter to scan for and locate lesions, the doctor may directly operate the treatment equipment to let it enter from the hole on the hollow body into the hollow body and protrude from the front opening of the hollow body. Accordingly, the doctor may use the ultrasound catheter with the treatment equipment for diagnosis and treatment of the lesions simultaneously.
[0023] The foregoing is only a preferred embodiment of the present invention, and all equivalents and modifications of the present invention are intended to be within the scope of the present invention.