JP2015186594A - 天然または人工管腔のための可撓性マイクロ波カテーテル - Google Patents
天然または人工管腔のための可撓性マイクロ波カテーテル Download PDFInfo
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Abstract
【解決手段】内部導体120、内部導体の周りに同軸上に配設された内部誘電絶縁体、および内部誘電体の周りに同軸上に配設された外部導体124、を有する同軸給電路32と、先端に動作可能に連結された放射部分と、を含むマイクロ波送達デバイスであって、放射部分は、同軸給電路の内部導体の先端に動作可能に連結され、そこから伸長する放射部分の内部導体と、放射部分の内部導体の周りを螺旋状に包囲し、同軸給電路の外部導体に動作可能に連結された遮蔽外部導体124aと、放射部分の内部導体と遮蔽外部導体の間に配置されており、遮蔽外部導体の幅が同軸給電路の内部導体に沿って長手方向位置により変動する、遮蔽誘電体と、放射部分の内部導体および遮蔽外部導体の先端に動作可能に連結されており、それらの間に電気的結合を提供するキャップ133と、を含む。
【選択図】図44
Description
ZL=RR−iRi+Rj (1)
Claims (14)
- カテーテルハブと、
前記カテーテルハブから伸長した外側シースであって、前記カテーテルハブからのマイクロ波エネルギーの放出を防止するように構成された外側シースと、
内部導体、前記内部導体の周りに同軸上に配設された内部誘電体、および前記内部誘電体の周りに同軸上に配設された外部導体、を有する同軸給電路と
を有する可撓性マイクロ波カテーテルであって、
前記同軸給電路は、前記同軸給電路の先端部分において放射部分を画定し、
前記放射部分は、マイクロ波エネルギーを放出するように構成され、
前記放射部分が前記外側シースに関連した前記同軸給電路の遠位の移動に際し、前記外側シースから選択的に展開可能であるように、前記外側シース内で、前記外側シースの長手方向軸に沿って、滑動可能である、可撓性マイクロ波カテーテル。 - 前記放射部分の前記外部導体の幅が、前記放射部分の前記内部導体に沿った前記外部導体の長手方向位置により変動する、請求項1に記載の可撓性マイクロ波カテーテル。
- 前記内部導体および前記外部導体の先端に動作可能に連結されており、前記内部導体および前記外部導体の間に電気的結合を提供するキャップを更に含む、請求項2に記載の可撓性マイクロ波カテーテル。
- 前記放射部分の先端部分に配設された温度センサーを更に含む、請求項1に記載の可撓性マイクロ波カテーテル。
- 前記放射部分により発生された放射パターンが、前記放射部分中の前記外部導体の可変性の幅、または前記外部導体の可変性の螺旋角度のうちの少なくとも一方に関係する、請求項1に記載の可撓性マイクロ波カテーテル。
- 前記放射部分の外部導体は、前記放射部分の内部導体の周りを螺旋状に包囲し、前記放射部分は、前記外部導体の隣接するラップの間に形成された空隙により画定される給電間隙を更に含む、請求項1に記載の可撓性マイクロ波カテーテル。
- 断面に沿った給電間隙の円周と外部導体の円周との比により画定される給電間隙比が、前記放射部分中の前記外部導体の基端から前記放射部分中の前記外部導体の先端まで直線的に変化する、請求項6に記載の可撓性マイクロ波カテーテル。
- 前記給電間隙比が、前記放射部分の基端における0%から前記放射部分の先端における約50%まで変動する、請求項7に記載の可撓性マイクロ波カテーテル。
- 可撓性同軸ケーブルに連結されたアクチュエータを更に含み、前記アクチュエータは、前記カテーテルハブに関して、前記可撓性同軸ケーブルを移動させるように構成されている、請求項1に記載の可撓性マイクロ波カテーテル。
- 前記アクチュエータは、前記外側シースに関して、前記可撓性同軸ケーブルを移動させるように構成されている、請求項9に記載の可撓性マイクロ波カテーテル。
- 前記外側シースは、前記長手方向軸の少なくとも一部に沿って、第1の内径を有し、前記外側シースの遠位部分は、前記第1の内径よりも大きい第2の内径を有する滑動ハブを画定する、請求項1に記載の可撓性マイクロ波カテーテル。
- 前記放射部分は、前記放射部分中の前記外側導体の周りに配設された外部誘導絶縁層を更に含み、前記外部誘導絶縁層は、前記滑動ハブの長手に沿って滑動し、前記滑動ハブから展開するように構成される、請求項11に記載の可撓性マイクロ波カテーテル。
- 前記外部誘導絶縁層の外表面は、前記滑動ハブの内表面に沿って移動可能である、請求項12に記載の可撓性マイクロ波カテーテル。
- 前記外部誘導絶縁層の外径は、前記第1の内径よりも大きい、請求項12に記載の可撓性マイクロ波カテーテル。
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US201161473564P | 2011-04-08 | 2011-04-08 | |
| US61/473,564 | 2011-04-08 |
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| JP2014504083A Division JP5763263B2 (ja) | 2011-04-08 | 2012-04-09 | 天然または人工管腔のための可撓性マイクロ波カテーテル |
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| JP2017002436A Division JP6389535B2 (ja) | 2011-04-08 | 2017-01-11 | 天然または人工管腔のための可撓性マイクロ波カテーテル |
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| Publication Number | Publication Date |
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| JP2015186594A true JP2015186594A (ja) | 2015-10-29 |
| JP6080181B2 JP6080181B2 (ja) | 2017-02-15 |
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| JP2014504082A Pending JP2014516614A (ja) | 2011-04-08 | 2012-04-09 | 自然管腔又は人口管腔のための可撓性マイクロ波カテーテル |
| JP2014504084A Active JP5593467B2 (ja) | 2011-04-08 | 2012-04-09 | 生得または人口管腔用の可撓性マイクロ波カテーテル |
| JP2014504085A Pending JP2014516616A (ja) | 2011-04-08 | 2012-04-09 | 生得または人口管腔用の可撓性マイクロ波カテーテル |
| JP2014504083A Active JP5763263B2 (ja) | 2011-04-08 | 2012-04-09 | 天然または人工管腔のための可撓性マイクロ波カテーテル |
| JP2015117544A Active JP6080181B2 (ja) | 2011-04-08 | 2015-06-10 | 天然または人工管腔のための可撓性マイクロ波カテーテル |
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