JP2016538090A5 - - Google Patents

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JP2016538090A5
JP2016538090A5 JP2016542874A JP2016542874A JP2016538090A5 JP 2016538090 A5 JP2016538090 A5 JP 2016538090A5 JP 2016542874 A JP2016542874 A JP 2016542874A JP 2016542874 A JP2016542874 A JP 2016542874A JP 2016538090 A5 JP2016538090 A5 JP 2016538090A5
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tissue
wireless power
sensor
field
module
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JP6553623B2 (ja
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  1. 無線電力システムであって、
    患者の組織の外側のエバネッセント場を操作することによって無線電力を送信して、組織の内側に伝搬場を生成し、それによって組織内に空間的に集束した場を生成するように構成される、1つまたは複数のサブ波長構造体を有する外部モジュールと、
    前記外部モジュールから前記無線電力を受け取るように構成される移植可能モジュールであって、前記移植可能モジュールが、前記組織のパラメータを感知するように、または前記組織に刺激を与えるように構成される、少なくとも1つのセンサーまたは刺激装置を含む、移植可能モジュールと、
    を含む、無線電力システム。
  2. 請求項1に記載のシステムであって、前記少なくとも1つのセンサーが、熱センサー、化学センサー、圧力センサー、酸素センサー、PHセンサー、流量センサー、電気センサー、歪みセンサー、磁気センサー、および画像センサーからなる群から選ばれる、システム。
  3. 請求項1に記載のシステムであって、前記少なくとも1つの刺激装置が、電気刺激装置、光学刺激装置、化学刺激装置、および機械刺激装置からなる群から選ばれる、システム。
  4. 請求項1に記載のシステムであって、前記移植可能な機器が、交換可能なセンサーおよび/または刺激装置を可能にするモジュラー設計を含む、システム。
  5. 請求項1に記載のシステムであって、前記1つまたは複数のサブ波長構造体が、パッチ、PIFA、接地面内のスロット、接地面内のクロススロット、接地面内の開口部結合円形スロット、および接地面内のハーフスロットからなる群から選ばれる、システム。
  6. 請求項1に記載のシステムであって、前記外部モジュールがさらに、
    前記1つまたは複数のサブ波長構造体に結合された1つまたは複数の励起ポートと、
    前記1つまたは複数の励起ポートに結合された少なくとも1つの電圧源と、
    前記1つまたは複数のサブ波長構造体に伝送された位相および/または振幅を調節して、前記組織内の前記空間的に集束した場の焦点の位置を調節するように構成された制御装置と、
    を含む、システム。
  7. 請求項6に記載のシステムであって、前記制御装置が、移植されたモジュールから受け取られた無線エネルギーの電力レベルを検出するように構成され、かつ、フィードバックを提供して前記焦点の前記位置を自動的に調節し無線電力送信を最適化するように構成される、システム。
  8. 請求項1に記載のシステムであって、前記移植可能モジュールが、心臓の上、中、または近傍に移植されて前記心臓にリードレスペーシングを適用するように構成される、システム。
  9. 請求項1に記載のシステムであって、前記移植可能モジュールが、脳の上、中、または近傍に移植されて前記脳に脳深部刺激を与えるように構成される、システム。
  10. 請求項1に記載のシステムであって、前記移植可能モジュールが、脊髄の上、中、または近傍に移植されて前記脊髄に刺激を与えるように構成される、システム。
  11. 請求項1に記載のシステムであって、前記移植可能モジュールが舌の筋肉組織の上、中、または近傍に移植されて前記舌に刺激を与え、閉塞性睡眠時無呼吸を治療するように構成される、システム。
  12. 組織を刺激するための無線電力システムの作動方法であって、
    組織の中に移植された無線電力受信モジュールに給電するために、前記無線電力受信モジュールへ中間場伝搬波を送信することと、
    記組織のパラメータを感知するとともに前記組織から感知された前記パラメータに基づいて前記組織に刺激を提供する前記無線電力受信モジュールを作動させることと、
    を含む方法。
  13. 請求項12に記載の作動方法であって、前記送信するステップが、前記組織の外側のエバネッセント場を操作して前記組織の内側に伝搬場を生成し、それによって前記組織内に空間的に集束した場を生成することをさらに含む、作動方法。
  14. 請求項12に記載の作動方法であって、前記伝搬波の焦点を調節して前記モジュールへの無線電力送信を最適化することをさらに含む、作動方法。
  15. 請求項12に記載の作動方法であって、前記送信するステップが、前記波に垂直で組織境界面に平行な電磁場を生成するサブ波長構造体を用いて、前記波を送信することを含む、作動方法。
  16. 組織を通して無線電力を伝送するように構成された装置であって、
    基板と、
    前記基板上に配置された少なくとも1つのサブ波長構造体と、
    前記少なくとも1つのサブ波長構造体に結合された少なくとも1つの無線周波数ポートと、
    前記少なくとも1つの無線周波数ポートに結合された電圧または電流源と、
    前記電圧または電流源を用いて前記少なくとも1つの無線周波数ポートおよびサブ波長構造体の励起を管理して、組織の外側のエバネッセント場を操作し、前記組織の内側に伝搬場を生成し、それによって前記組織内に空間的に集束した場を生成するように構成された制御装置と、
    を含む装置。
  17. 請求項16に記載の装置であって、前記少なくとも1つのサブ波長構造体の各々が、それぞれの独立した無線周波数ポートに結合されている、装置。
  18. 組織を通して無線電力を伝送するように構成された装置であって、
    組織の内側に伝搬場を生成し、それによって前記組織内に空間的に適応可能な電磁場を生成するように構成され配置された、複数のサブ波長構造体と、
    前記複数のサブ波長構造体のそれぞれ1つを個別に励起し、それによって前記空間的に適応可能な電磁場を生成するように構成され配置された、複数の独立した供給ポートと、
    ピーク表面電磁場を再分配して、許容可能な無線周波数出力電力を増加させるように構成された制御装置と、
    を含む装置。
  19. 請求項18に記載の装置であって、前記複数のサブ波長構造体が、組織内に適応ステアリング磁場を生成するようにさらに構成され配置された、装置。
  20. 請求項18に記載の装置であって、前記空間的に集束し且つ適応可能なステアリング磁場/信号が、300MHzと3000MHzの間の周波数を有する、装置。
JP2016542874A 2013-09-16 2014-09-16 電磁エネルギー生成のための多素子カプラ Active JP6553623B2 (ja)

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