JP2010512823A5 - - Google Patents

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JP2010512823A5
JP2010512823A5 JP2009540903A JP2009540903A JP2010512823A5 JP 2010512823 A5 JP2010512823 A5 JP 2010512823A5 JP 2009540903 A JP2009540903 A JP 2009540903A JP 2009540903 A JP2009540903 A JP 2009540903A JP 2010512823 A5 JP2010512823 A5 JP 2010512823A5
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stimulation
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lead
sensing elements
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Claims (17)

  1. 標的領域内の組織に治療電気刺激を与える遠位端を持つ刺激リードにおいて、前記リードが、
    前記リードの前記遠位端に配置された1以上の感知素子を持つ1以上の刺激素子のアレイを有し、
    前記1以上の刺激素子の各々が、前記標的領域内の前記組織に電気刺激を与えることができ、
    前記1以上の感知素子の各々が、電気信号を検出することができ、
    非外科的処置により事前に決定された軌道に沿った前記リードの第1の移植後に、前記刺激素子及び前記感知素子のアレイが、前記リードの追加の移植を要求することなく、前記標的領域を位置特定し、前記刺激素子の各々に対して、治療組織刺激に必要とされる所要の刺激パラメータを決定することを容易化する、刺激リード。
  2. 前記感知素子の数が前記刺激素子の数より大きく、前記感知素子及び前記刺激素子は、複数の感知素子が1つの刺激素子を囲む重心アプローチにより関連付けられ、囲んでいる複数の感知素子が正しい信号を取り出すのに応答して、対応する刺激素子が、刺激に対する標的領域内にあると決定される、請求項1に記載の刺激リード。
  3. 前記刺激素子が金属電極である、請求項1に記載の刺激リード。
  4. 前記感知素子が金属マイクロ電極又は容量性感知素子である、請求項1に記載の刺激リード。
  5. 前記1以上の刺激素子及び前記1以上の感知素子が、前記リードの表面において周囲にアレイに分布される、請求項1に記載の刺激リード。
  6. 前記感知素子が、各々個別に電気信号、活動電位、電場電位、生化学信号及び神経伝達物質の1以上を検出することができる、請求項1に記載の刺激リード。
  7. 単一の前記感知素子の面積が、単一の前記刺激素子の面積より小さい、請求項1に記載の刺激リード。
  8. 複数の前記感知素子が、単一の電気信号を検出するように電気的に結合される、請求項1に記載の刺激リード。
  9. 前記刺激パラメータが、刺激振幅、極性、持続時間、反復周波数、波形、及び刺激デューティサイクル内の相対位相の1以上から選択される、請求項1に記載の刺激リード。
  10. 前記リードが、前記1以上の感知素子から信号を受信し、前記標的領域の位置を決定し、前記刺激素子のいずれが前記標的領域の少なくとも近くに配置され、前記治療刺激を与えるべきかを決定するコントローラを持つ、請求項1に記載の刺激リード。
  11. 前記コントローラが、選択された前記刺激素子の各々に対して、前記治療刺激に必要とされる前記所要の刺激パラメータを決定することができる、請求項10に記載の刺激リード。
  12. 前記コントローラが、1以上の特定の感知素子から受信された前記信号を使用して1以上の特定の刺激素子の相対的な刺激振幅及び/又はタイミングを制御することができる、請求項10に記載の刺激リード。
  13. 移植後に組織に治療電気刺激を与える刺激システムにおいて、前記システムが、
    前記刺激に対して要求される電気パルスを生成及び送信するパルス生成器と、
    遠位端に配置された1以上の刺激素子及び1以上の感知素子のアレイを持つ刺激リードであって、前記1以上の刺激素子の各々が標的領域内の組織に電気刺激を与えることができ、前記1以上の感知素子の各々が電気信号を検出することができる、当該刺激リードと、
    を有し、
    軌道に沿った前記リードの第1の移植後に、前記刺激素子及び前記感知素子のアレイが、前記第1の移植の後に前記リードの追加の移植を要求することなく、前記標的領域を位置特定し、前記標的領域に少なくとも近い刺激素子を関連付け及び/又は選択し、各選択された刺激素子に対して、治療組織刺激を与えるのに必要とされる所要の刺激パラメータを決定することを容易化する、刺激システム。
  14. 標的領域内の組織に治療電気刺激を与える方法において、
    非外科的撮像処置により、刺激に対する近似的標的領域及び前記近似的標的領域に対する刺激リードの移植に対する軌道を決定するステップと、
    前記軌道に沿って前記刺激リードを移植するステップであって、前記刺激リードが、遠位端に配置された1以上の刺激素子及び1以上の感知素子のアレイを持ち、前記1以上の刺激素子の各々が、組織に電気刺激を与えることができ、前記1以上の感知素子の各々が、電気信号を検出することができ、これにより、前記非外科的処置により事前に決定された軌道に沿った前記リードの第1の移植後に、前記刺激素子及び前記感知素子のアレイが、前記第1の移植後に前記リードの追加の移植を要求することなく、前記標的領域を位置特定し、前記標的領域の少なくとも近くの刺激素子を関連付け及び/又は選択し、各選択された刺激素子に対して、前記治療刺激に必要とされる所要の刺激パラメータを決定することを容易化する、当該移植するステップと、
    前記1以上の感知素子により前記脳内の神経細胞により生成された前記電気信号を検出するステップと、
    前記検出された電気信号から、前記近似的標的領域内の刺激標的領域に対する3次元空間的位置及び境界を決定するステップと、
    前記刺激標的領域に刺激を与える1以上の刺激素子及び刺激中に使用されるべき各刺激素子に対する前記刺激パラメータを決定するステップと、
    前記特定の刺激パラメータを使用して前記刺激標的領域内の組織を刺激するステップと、
    を有する方法。
  15. 前記1以上の感知素子により前記電気信号を検出するステップが、
    電気信号特徴を読み出すステップと、
    前記刺激標的領域に対応する前記電気信号特徴を検出する特定の感知素子を決定するステップと、
    を更に有する、請求項14に記載の方法。
  16. 前記組織を刺激するステップの前に、
    選択された1以上の刺激素子を介して試験電気刺激を供給することにより前記刺激標的領域を試験するステップと、機能的に効率的な刺激標的領域の確認が得られるまで必要に応じて前記方法のステップを反復するステップと、
    を更に有する、請求項14に記載の方法。
  17. 前記刺激パラメータが、刺激振幅、極性、持続時間、反復周波数、波形及び刺激デューティサイクル内の相対位相の1以上から選択される、請求項14に記載の方法。
JP2009540903A 2006-12-13 2007-11-16 Dbsリードの初回の正しい配置 Active JP5227331B2 (ja)

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US86978906P 2006-12-13 2006-12-13
US60/869,789 2006-12-13
PCT/IB2007/054684 WO2008072125A1 (en) 2006-12-13 2007-11-16 First time right placement of a dbs lead

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JP2010512823A5 true JP2010512823A5 (ja) 2011-02-03
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EP (1) EP2091606B1 (ja)
JP (1) JP5227331B2 (ja)
CN (1) CN101557856B (ja)
RU (1) RU2471517C2 (ja)
WO (1) WO2008072125A1 (ja)

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