JP2019048175A - 超音波組織処理ための方法およびシステム - Google Patents
超音波組織処理ための方法およびシステム Download PDFInfo
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Abstract
Description
例えば、本発明は以下の項目を提供する。
(項目1)
非侵襲性のフェイスリフトおよび深部組織を引き締めるように構成される超音波治療システムであって、
該超音波治療システムの制御を促進するための制御システムと、
関心領域におけるSMAS層の画像を表示するための表示システムであって、該制御システムと連結される表示システムと、
組織を破壊し、該SMAS層の収縮を誘導するために、超音波エネルギーの該SMAS層内への標的化導入を行なうよう構成されるプローブシステムと、
を備える超音波治療システム。
(項目2)
前記制御システムは、前記プローブシステムによる前記SMAS層へのエネルギーの標的化導入を制御し、また該SMAS層の監視をするために、エネルギー導入前に画像化によって該SMAS層を特定するよう構成される、項目1に記載の超音波治療システム。
(項目3)
前記制御システムは、前記SMAS層への超音波エネルギーの導入前、導入中、および導入後に、該SMAS層を監視するように構成される画像化システムを備える、項目2に記載の超音波治療システム。
(項目4)
前記画像化システムは、前記SMAS層近位の深部組織構造の損傷を解消するよう構成される、項目3に記載の超音波治療システム。
(項目5)
前記画像化システムは、三次元画像化情報を作成するよう構成される、項目3に記載の超音波治療システム。
(項目6)
前記表示システムは、前記SMAS層に対応する画像の表示を備える、項目1に記載の超音波治療システム。
(項目7)
前記プローブシステムは、前記SMAS層内へ除去超音波の標的化を導入するよう構成される画像化/治療トランスデューサを備える、項目1に記載の超音波治療システム。
(項目8)
前記画像化/治療トランスデューサは、一つの変換要素内に複合トランスデューサを備える、項目7に記載の超音波治療システム。
(項目9)
前記画像化/治療トランスデューサは、集束、分散、および平面のうち一つの超音波エネルギー分布を実現する電子相遅延のために構成される電子開口の配置を備える、項目7に記載の超音波治療システム。
(項目10)
前記治療システムは、補助画像化および処置監視装置ならびに二次的な治療システムと結合した画像化、治療、および処置監視システムを備える、項目8に記載の超音波治療システム。
(項目11)
前記補助画像化装置は、撮影装置および光学モダリティーのうち少なくとも一つを備える、項目10に記載の超音波治療システム。
(項目12)
前記プローブシステムは、組織を破壊し、前記SMAS層の収縮を誘導するために、該SMAS層に加え、皮膚、真皮、顔面筋肉、および脂肪のうち少なくとも一つへの超音波エネルギーの標的化導入を行うよう構成される、項目1に記載の超音波治療システム。
(項目13)
非侵襲性のフェイスリフトおよび深部組織引き締めを提供するための方法であって、
関心領域におけるSMAS様筋膜層を特定するステップと、
除去超音波エネルギーの該SMAS様筋膜層への導入の標的化を行うステップと、
処置を引き続き計画するため、該SMAS様筋膜層内における該標的化導入中および導入後の該標的化導入成果を監視するステップと、
を含む、方法。
(項目14)
前記特定するステップは、前記SMAS様筋膜層を描写するための関心領域の画像化を含む、項目13に記載の方法。
(項目15)
前記SMAS様筋膜層を特定する前記ステップは、そのようなSMAS様筋膜層下の顔面筋肉を動かすことを含む、項目14に記載の方法。
(項目16)
前記導入の標的化を行うステップは、前記SMAS様筋膜層位置の画像化に基づく空間および時間パラメータの調整を含む、項目13に記載の方法。
(項目17)
前記成果の監視を行うステップは、除去超音波の前記標的化導入中および後における、可視化された前記SMAS様筋膜層の収縮の検知を含む、項目13に記載の方法。
(項目18)
前記SMAS様筋膜層への除去超音波エネルギー導入を標的化するステップは、該SMAS様筋膜層に加え、皮膚、真皮、筋膜層、および脂肪のうち少なくとも一つへの除去超音波の導入の標的化をさらに含む、項目13に記載の方法。
(項目19)
前記SMAS様筋膜層への除去超音波エネルギー導入を標的化するステップは、広頸筋、側頭筋膜、および/または後頭筋膜のうち少なくとも一つへの除去超音波の導入の標的化を含む、項目13に記載の方法。
(項目20)
前記導入を標的化するステップは、処置を促進するための皮膚および前記SMAS様筋膜層を含み両者間に位置する任意の組織領域の冷却も含む、項目13に記載の方法。
(項目21)
組織における光老化の影響を処置するよう構成される超音波治療システムであって、
該超音波治療システムの制御を促進するための制御システムと、
関心領域における表皮、真皮上層、真皮中層、および真皮深層組織のうちの少なくとも一つの画像を表示するための表示システムであって、該制御システムと連結される表示システムと、
該表皮、真皮上層、真皮中層、および真皮深層組織のうち該少なくとも一つを処置し、組織における光老化の影響を軽減させるために、サブミリメートル以上の熱剥離域の配置を実現する超音波エネルギーの標的化導入を行うよう構成されるプローブシステムと、
を備える、超音波治療システム。
(項目22)
前記制御システムが、前記プローブシステムにより表皮、真皮上層、真皮中層、および真皮深層組織のうち少なくとも一つへのエネルギーの標的化導入を制御し、また該標的化導入後に該表皮、真皮上層、真皮中層、および真皮深層組織のうち前記少なくとも一つの監視を行うために、該表皮、真皮上層、真皮中層、および真皮深層組織のうち該少なくとも一つを、エネルギー導入前に画像化によって特定するよう構成される、項目21に記載の超音波治療システム。
(項目23)
前記制御システムは、前記表皮、真皮上層、真皮中層、および真皮深層組織のうち前記少なくとも一つへの超音波エネルギーの導入前、導入中、および導入後に、該表皮、真皮上層、真皮中層、および真皮深層組織のうちの前記少なくとも一つを監視するよう構成される画像化システムを備える、項目22に記載の超音波治療システム。
(項目24)
前記画像化システムは、前記標的化導入を促進するフィードバックを提供するよう構成される、項目23に記載の超音波治療システム。
(項目25)
前記表示システムは、前記表皮、真皮上層、真皮中層、および真皮深層組織のうち前記少なくとも一つに対応する画像の表示を含む、項目21に記載の超音波治療システム。
(項目26)
前記プローブシステムは、前記表皮、真皮上層、真皮中層、および真皮深層組織のうち前記少なくとも一つにおいて、除去超音波の標的化導入を行うよう構成される画像化/治療トランスデューサを備える、項目21に記載の超音波治療システム。
(項目27)
前記画像化/治療トランスデューサは、一つの変換要素内に複合トランスデューサを備える、項目26に記載の超音波治療システム。
(項目28)
前記画像化/治療トランスデューサは、複数の除去域を生成するよう構成される一つの変換要素と複数のマスクを含む一つの要素配置を備え、該複数の除去域のそれぞれは、集束、分散、および平面のうち少なくとも一つの超音波エネルギー分布を備える、項目26に記載の超音波治療システム。
(項目29)
前記処置システムは、補助画像化および処置監視装置ならびに二次的な治療システムのうち少なくとも一つと結合した画像化、治療、および処置監視システムを備える、項目21に記載の超音波治療システム。
(項目30)
前記補助画像化は、撮影装置および光学モダリティーのうちの少なくとも一つを備える、項目21に記載の超音波治療システム。
(項目31)
光老化組織の処置を提供する方法であって、
関心領域における表皮、真皮上層、真皮中層、および真皮深層組織のうち少なくとも一つを特定するステップと、
トランスデューサプローブから該表皮、真皮上層、真皮中層、および真皮深層組織のうち該少なくとも一つへの除去超音波エネルギー導入の標的化を行なうステップと、
処置を引き続き計画するため、該表皮、真皮上層、真皮中層、および真皮深層組織のうちの該少なくとも一つにおける、該標的化導入中および導入後の該標的化導入成果を監視するステップと、
を含む方法。
(項目32)
前記特定するステップは、前記表皮、真皮上層、真皮中層、および真皮深層組織のうちの前記少なくとも一つを識別するための関心領域の画像化を含む、項目31に記載の方法。(項目33)
除去超音波エネルギー導入を標的化する前記ステップは、前記表皮、真皮上層、真皮中層、および真皮深層組織のうちの前記少なくとも一つにおいて、サブミリメートル以上の熱剥離域の配置形成を含む、項目31に記載の方法。
(項目34)
前記標的化を導入するステップは、前記表皮、真皮上層、真皮中層、および真皮深層組織位置のうちの前記少なくとも一つの画像化に基づく空間および時間パラメータの調整を含む、項目31に記載の方法。
(項目35)
前記成果の監視を行うステップは、除去超音波の前記標的化導入中および導入後における、可視化された前記表皮、真皮上層、真皮中層、および真皮深層組織のうちの前記少なくとも一つの処置の成果測定を含む、項目31に記載の方法。
(項目36)
サブミリメートル以上の熱剥離域の配置形成を行う前記ステップは、間隔のあいた処置地点のマトリックスを形成するために、前記光老化組織上の線上での前記トランスデューサプローブの走査を含む、項目31に記載の方法。
(項目37)
間隔のあいた処置地点のマトリックスを形成する前記ステップは、前記関心領域における処置深度の調整を含む、項目36に記載の方法。
(項目38)
前記特定するステップは、三次元画像化情報を生成する、項目31に記載の方法。
(項目39)
前記標的化するステップは、三次元処置領域の処置を含む、項目31に記載の方法。
(項目40)
前記導入の標的化を行うステップは、処置を促進するため、前記表皮、真皮上層、真皮中層、および真皮深層組織のうちの前記少なくとも一つを含む組織領域の冷却をさらに含む、項目31に記載の方法。
(項目41)
にきびおよび脂腺を処置するよう構成される超音波治療システムであって、
該超音波治療システムの制御を促進するための制御システムと、
超音波エネルギーを標的化導入し、脂腺の機能を破壊する処置領域を形成するよう構成されるプローブシステムと、
を備える、超音波治療システム。
(項目42)
前記プローブシステムは、前記脂腺の特定によって識別される特定の処置深度において、前記脂腺の機能破壊を行うよう構成される、項目41に記載の超音波治療システム。
(項目43)
前記プローブは、空間的に定められたパターンで前記処置領域を形成し、組織の治癒を促進するよう構成される、項目41に記載の超音波治療システム。
(項目44)
前記空間的に定められたパターンは、十字型、葉巻型、楕円形、キノコ型、およびくさび型病変のうちの少なくとも一つを含む、間隔のあいた病変の離散位置を含む、項目43に記載の超音波治療システム。
(項目45)
前記制御システムは、前記脂腺への超音波エネルギー導入前、導入中、導入後に前記処置領域を監視するよう構成される画像化システムを備える、項目41に記載の超音波治療システム。
(項目46)
前記画像化システムは、フィードバックを提供し、前記標的化導入を促進するよう構成される、項目45に記載の超音波治療システム。
(項目47)
前記表示システムは、前記処置領域の温度プロフィールに対応する画像の表示を備える、項目41に記載の超音波治療システム。
(項目48)
前記プローブシステムは、前記処置領域において除去超音波の標的化導入を行うよう構成される画像化/治療トランスデューサを備える、項目41に記載の超音波治療システム。(項目49)
前記画像化/治療トランスデューサは、変換要素の電子配置において、複合トランスデューサを備える、項目48に記載の超音波治療システム。
(項目50)
前記画像化/治療トランスデューサは、複数の除去域を生成するよう構成される一つの変換要素と複数のマスクを含む一つの要素配置を備え、前記複数の除去域のそれぞれは、集束、分散、および平面のうちの少なくとも一つの超音波エネルギー分布を備える、項目48に記載の超音波治療システム。
(項目51)
前記プローブは、該プローブの空間パラメータおよび時間パラメータが調整可能な制御によって超音波エネルギーの標的化導入を行い、具体的に標的化された形状、大きさ、および方向性の共形病変を生成するよう構成される、項目41に記載の超音波治療システム。(項目52)
前記処置システムは、補助画像化および処置監視装置ならびに二次的な治療システムと結合した画像化、治療、および処置監視システムを備える、項目41に記載の超音波治療システム。
(項目53)
前記補助画像化装置は、撮影装置および光学モダリティーのうち少なくとも一つを備える、項目52に記載の超音波治療システム。
(項目54)
にきびおよび脂腺の処置を提供する方法であって、
関心領域における少なくとも一つの標的化領域を特定するステップであって、少なくとも一つの脂腺を識別するよう構成されるステップと、
トランスデューサプローブから該少なくとも一つの脂腺への除去超音波エネルギー導入の標的化を行うステップと、
処置を引き続き計画するため、該少なくとも一つの脂腺における該標的化導入中および導入後の該標的化導入成果を監視するステップと、
を備える方法。
(項目55)
前記特定するステップは、前記少なくとも一つの脂腺を識別するための関心領域の画像化を含む、項目54に記載の方法。
(項目56)
超音波エネルギーの導入を標的化する前記ステップは、前記脂腺の特定によって識別される特定の深度における前記脂腺の機能破壊を含む、項目54に記載の方法。
(項目57)
前記導入を標的化するステップは、具体的に標的化された形状、大きさ、および方向性の共形病変を生成するための前記トランスデューサプローブの空間パラメータおよび時間パラメータの調節可能な制御を含む、項目54に記載の方法。
(項目58)
前記導入を標的化するステップは、組織の治癒を促進するための、空間的に定められたパターンでの前記処置領域形成を含む、項目54に記載の方法。
(項目59)
前記空間的に定められたパターンを形成するステップは、十字型、葉巻型、およびくさび型病変のうちの少なくとも一つを含む間隔のあいた病変の離散位置の形成を含む、項目58に記載の方法。
(項目60)
前記成果の監視を行うステップは、除去超音波の前記標的化導入中および後における、可視化された前記少なくとも一つの脂腺の処置成果測定を含む、項目54に記載の方法。
(項目61)
前記監視を行うステップは、前記標的化領域の温度プロフィールの監視を含む、項目54に記載の方法。
(項目62)
前記標的化導入は、前記トランスデューサプローブの走査により作成された走査パターンにそって、病変の二次元および三次元マトリックスのうちの少なくとも一つを有する間隔のあいた処置地点のマトリックスの形成を含む、項目54に記載の方法。
(項目63)
前記空間的に定められたパターンの形成は、空間および時間パラメータの制御に基づく間隔のあいた共形病変の離散位置形成を含む、項目58に記載の方法。
(項目64)
前記特定するステップは、三次元画像化情報の生成を含み、前記標的化を行うステップは、三次元処置領域の処置を含む、項目54に記載の方法。
(項目65)
前記導入を標的化するステップは、処置を促進するための皮膚および前記少なくとも一つの脂腺を含み両者間に位置する任意の組織領域の冷却をさらに含む、項目53に記載の方法。
(項目66)
汗腺を処置するよう構成される超音波治療システムであって、
該超音波治療システムの制御を促進するための制御システムと、
超音波エネルギーを標的化導入し、該汗腺を破壊するための処置領域を形成するよう構成されるプローブシステムと、
を備える、超音波治療システム。
(項目67)
前記プローブシステムは、前記汗腺の特定により識別される特定の処置深度で前記汗腺を破壊するよう構成される、項目66に記載の超音波治療システム。
(項目68)
前記空間的に定められたパターンは、十字型、葉巻型、楕円形、キノコ型、およびくさび型病変のうちの少なくとも一つを有する間隔のあいた病変の離散位置を含む、項目66に記載の超音波治療システム。
(項目69)
前記制御システムは、前記汗腺への超音波エネルギーの導入前、導入中、および導入後に、前記処置領域を監視するよう構成される画像化システムを備える、項目66に記載の超音波治療システム。
(項目70)
前記画像化システムは、前記標的化導入を促進するために、フィードバックを提供するよう構成される、項目69に記載の超音波治療システム。
(項目71)
前記表示システムは、前記処置領域の温度プロフィールに対応する画像の表示を備える、項目66に記載の超音波治療システム。
(項目72)
前記プローブシステムは、前記汗腺内に除去超音波を標的化導入するよう構成される画像化/治療トランスデューサを備える、項目66に記載の超音波治療システム。
(項目73)
前記画像化/治療トランスデューサは、変換要素の電子配置内に結合したトランスデューサ備える、項目72に記載の超音波治療システム。
(項目74)
前記画像化/治療トランスデューサは、複数の除去域を生成するよう構成される一つの変換要素と複数のマスクを有する一つの要素配置を備え、該複数の除去域のそれぞれが集束、分散、および平面のうちの少なくとも一つの超音波エネルギー分布を備える、項目72に記載の超音波治療システム。
(項目75)
前記プローブは、具体的に標的化された形状、大きさ、および方向性の共形病変を生成するために、該プローブの空間パラメータおよび時間パラメータの調整可能な制御によって超音波エネルギーを標的化導入するよう構成される、項目66に記載の超音波治療システム。
(項目76)
前記処置システムは、補助画像化および処置監視装置ならびに二次的な治療システムと結合した画像化、治療および処置監視システムを備え、また該補助画像化装置は、撮影装置および光学モダリティーのうちの少なくとも一つを備える、項目66に記載の超音波治療システム。
(項目77)
前記制御システムは、一次元、二次元、および三次元のうちの少なくとも一つの画像化あるいは治療を促進するよう構成される画像化システムを備える、項目66に記載の超音波治療システム。
(項目78)
にきびおよび汗腺の処置を提供する方法であって、
関心領域において少なくとも一つの標的化領域を特定するステップであって、少なくとも一つの汗腺を識別するよう構成されたステップと、
トランスデューサプローブから該少なくとも一つの汗腺に除去超音波エネルギー導入の標的化を行うステップと、
処置を引き続き計画するため、該標的化導入中および導入後に、該少なくとも一つの汗腺において該標的化導入の成果を監視するステップと、
を含む方法。
(項目79)
前記特定するステップは、前記少なくとも一つの汗腺を識別するための関心領域の画像化を含む、項目78に記載の方法。
(項目80)
超音波エネルギー導入の標的化を行う前記ステップは、前記汗腺の特定によって識別される特定の処置深度における該汗腺の破壊を含む、項目78に記載の方法。
(項目81)
前記導入の標的化は、具体的に標的化された形状、大きさ、および方向性の共形病変を生成するため、前記トランスデューサプローブの空間パラメータと時間パラメータの調整可能な制御を含む、項目78に記載の方法。
(項目82)
前記成果を監視するステップは、除去超音波の前記標的化導入中および導入後における、可視化された前記少なくとも一つの汗腺処置の成果測定を備える、項目78に記載の方法。
(項目83)
前記監視するステップは、前記標的化領域の前記温度プロフィールの監視を備える、項目78に記載の方法。
(項目84)
前記標的化導入は、前記トランスデューサプローブの走査により作成された走査パターンにそって、病変の二次元および三次元マトリックスのうち少なくとも一つを有する間隔のあいた処置地点のマトリックスの形成を含む、項目78に記載の方法。
(項目85)
前記空間的に定められたパターンの形成は、空間および時間パラメータの制御に基づく間隔のあいた共形病変の離散位置の形成を含む、項目84に記載の方法。
(項目86)
前記特定するステップは三次元画像化情報の生成を含み、また前記標的化を行うステップは三次元処置領域の処置を含む、項目78に記載の方法。
(項目87)
前記導入の標的化を行うステップは、処置を促進するための、皮膚および前記少なくとも一つの汗腺を含み両者間に位置する任意の組織領域の冷却をさらに含む、項目78に記載の方法。
とができる。例えば、一つ以上の処置された区域242は、組織の対象層の全体を加熱し破壊するのではなく、間隔のあいた処置地点の離散した位置、あるいは例えば十字型、楕円/葉巻型、くさび型、およびキノコ型、またはその他の共形病変のマトリックスなどの損傷または破壊組織の二次元または三次元マトリックスなど、空間的に定められるパターンで除去損傷の領域を形成するよう構成することができる。周囲領域が損傷を受けない処置では、周囲の損傷を行けていない組織が迅速な治癒と回復を助長する。
MULTI−DIRECTIONAL TRANSDUCER)、および米国特許出願番号10/944,500(2004年9月16日出願)、「深度可変超音波治療のシステムと方法」(SYSTEM AND METHOD FOR VARIABLE DEPTH ULTRASOUND TREATMENT,)に開示されるトランスデューサによって実現することもできる。これらは、参照することによりここに組み込まれる。
Method for Variable Depth Ultrasound」)に開示される可変深度装置を備えて構成することができる。この出願は、少なくとも一人の発明者と一人の譲受人を本発明と共有し、参照することにより、本文書に組み込まれる。さらに、トランスデューサ500は、2004年9月16日出願の米国特許出願10/944,499「多方向性トランスデューサによる超音波治療の方法とシステム」(「Method and System for Ultrasound Treatment
with a Multi−directional Transducer」)に開示されるように、低調波あるいはパルス反射の画像化を可能にすることによって、一つ以上の追加のROI510を治療するよう構成することができる。この出願は、少なくとも一人の発明者と一人の譲受人を本発明と共有し、参照することにより、本文書に組み込まれる。
Claims (1)
- 装置または方法またはシステム。
Applications Claiming Priority (8)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US61675504P | 2004-10-06 | 2004-10-06 | |
| US61675204P | 2004-10-06 | 2004-10-06 | |
| US60/616,752 | 2004-10-06 | ||
| US60/616,755 | 2004-10-06 | ||
| US61729504P | 2004-10-07 | 2004-10-07 | |
| US61720304P | 2004-10-07 | 2004-10-07 | |
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