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다음과 같은 기능을 한번의 로그인으로 사용 할 수 있습니다.
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Kafe 바로가기국가/구분 | United States(US) Patent 등록 |
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국제특허분류(IPC7판) |
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출원번호 | US-0484548 (2000-01-18) |
발명자 / 주소 |
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출원인 / 주소 |
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대리인 / 주소 |
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인용정보 | 피인용 횟수 : 50 인용 특허 : 434 |
A flexible microwave antenna assembly for a surgical ablation instrument capable of conforming to a tissue surface for ablation thereof. The ablation instrument includes a transmission line having a proximal portion suitable for connection to an electromagnetic energy source. The antenna assembly in
A flexible microwave antenna assembly for a surgical ablation instrument capable of conforming to a tissue surface for ablation thereof. The ablation instrument includes a transmission line having a proximal portion suitable for connection to an electromagnetic energy source. The antenna assembly includes a flexible antenna coupled to the transmission line for radially generating an electric field sufficiently strong to cause tissue ablation. A flexible shield device is coupled to the antenna to substantially shield a surrounding area of the antenna from the electric field radially generated therefrom while permitting a majority of the field to be directed generally in a predetermined direction. A flexible insulator is disposed between the shield device and the antenna which defines a window portion enabling the transmission of the directed electric field in the predetermined direction. The antenna, the shield device and the insulator are formed for selective manipulative bending thereof, as a unit, to one of a plurality of contact positions to generally conform the window portion to the biological tissue surface to be ablated.
What is claimed is: 1. An energy delivery device for ablating biological tissue, comprising: a flexible body portion defining an outer surface that is substantially transparent to electromagnetic ablation energy and an ablation element operably disposed within the body portion to transmit electroma
What is claimed is: 1. An energy delivery device for ablating biological tissue, comprising: a flexible body portion defining an outer surface that is substantially transparent to electromagnetic ablation energy and an ablation element operably disposed within the body portion to transmit electromagnetic ablation energy therethrough; and a shield disposed in fixed position relative to the ablation element within a portion of the body portion for directionally reflecting electromagnetic ablation energy emitted through the outer surface. 2. The device of claim 1, wherein the ablation element is flexible. 3. The device of claim 1 in which the shield for directionally reflecting the ablation energy is flexible. 4. The device of claim 3 in which the shield is disposed at the fixed angular position to inhibit ablation of biological tissue adjacent to the outer surface of the flexible body portion not aligned with the direction of the reflected electromagnetic ablation energy. 5. The device of claim 4, wherein the shield at least partially reflects electromagnetic ablation energy emitted by the ablation element toward said direction. 6. The device of claim 1 in which the outer surface of the ablation assembly is adapted to be manipulated to one of a plurality of contact positions and to generally conform the portion of the outer surface oriented in said reflection direction to the biological tissue during tissue ablation. 7. The device of claim 1, wherein the ablation element with shield affixed thereto is slidably disposed within a receiving passage of the flexible body portion. 8. The device of claim 7 in which the body portion further comprises a flexible tubular device having a lumen passing therethrough and disposed to slidably receive therein the ablation element and shield within the lumen of the flexible tubular device. 9. A flexible ablation assembly, comprising: an elongate flexible body defining a contact surface along at least a portion of its length that is configurable to contact a surface of the heart; a flexible ablative element having a longitudinal axis and being capable of emitting electromagnetic ablative energy generally radially about said longitudinal axis, said flexible ablative element being operably disposed within said flexible body in spaced relation to said contact surface to prevent said ablative element from contacting the surface of the heart; and a shield attached to said ablative element and disposed within said flexible body configured to reflect electromagnetic ablative energy to the surface of the heart through said contact surface and substantially prevent electromagnetic ablative energy from transmitting radially from said flexible body at locations other than said contact surface. 10. The flexible ablation assembly as in claim 9 in which the elongate flexible body is substantially transparent to the electromagnetic energy emitted by the ablative element. 11. A flexible ablation assembly, comprising: an elongate flexible body having at least one lumen therein and defining a contact surface along at least a portion of its length that is configurable to contact a surface of the heart; and a flexible ablative element having a longitudinal axis and a shield affixed thereto aligned along the longitudinal axis to reflect electromagnetic energy for emitting electromagnetic ablative energy along said longitudinal axis predominantly in a direction through the contact surface, said flexible ablative element and shield being slidably disposed within said lumen of said flexible body out of contact with the surface of the heart. 12. The flexible ablation assembly as in claim 11 in which at least the contact surface of the elongate flexible body is substantially transparent to the electromagnetic energy emitted by the ablative element.
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