JP2011513003A - 被覆材および組織部位に減圧をかけ、組織部位から液体を捕集および収容するための方法 - Google Patents
被覆材および組織部位に減圧をかけ、組織部位から液体を捕集および収容するための方法 Download PDFInfo
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Abstract
【選択図】図20
Description
図1を参照すると、一例示的実施形態の減圧治療システム100は、患者の組織部位108に配置された減圧被覆材104を含む。減圧被覆材104は、導管112によって減圧源110に流体連通している。導管112は、チューブアダプタ116を介して減圧被覆材104と流体連通してもよい。図1に示す実施形態において、減圧源110は、圧縮式ベローズポンプなどの手動作動式ポンプである。別の実施において、減圧源110は、モータで駆動する減圧ポンプまたは真空ポンプであってもよい。別の実施形態において、減圧源110は、圧電ディスクポンプあるいは蠕動ポンプなどの動力マイクロポンプであってもよい。さらに別の実施形態において、減圧源110は、例えば病院およびその他の医療施設で活用可能な壁面吸気口であってもよい。
具体的には、導管112がチューブアダプタ116を介して減圧被覆材104および組織部位108に減圧を伝達するように、チューブアダプタ116が導管112と流体連通する。
図1から図17の減圧被覆材および構成部材は、被覆材の外部の減圧源と接続できるように適応させた形でこれまで説明してきた。しかし、本明細書に記載した減圧被覆材は、被覆材の層を介して組織部位に減圧を送出するために、一体型ポンプ、すなわち被覆材の層内または層の間に配置されたポンプを組み込むこともできる。
Claims (65)
- 減圧治療を組織部位に適用する減圧被覆材であって、
前記組織部位に配置できるように適応させた界面層と、
前記界面層および前記組織部位のうちの少なくとも1つから液体を吸収するために前記界面層と流体連通している吸収層と、
減圧を前記組織部位に送出するために前記吸収層と流体連通しているポンプと、
前記組織部位における減圧を維持するために前記ポンプ、前記吸収層および前記界面層の上に配置されるカバーと、
液体が前記ポンプに混入するのを抑制するために前記吸収層と前記ポンプとの間に配置される気液分離器と
を含むことを特徴とする減圧被覆材。 - 請求項1に記載の減圧被覆材において、前記界面層が疎水性であることを特徴とする減圧被覆材。
- 請求項1に記載の減圧被覆材において、前記吸収層が超吸収繊維を含むことを特徴とする減圧被覆材。
- 請求項1に記載の減圧被覆材がさらに、前記カバーと、前記組織部位内または前記組織部位周辺の組織との間に配置されるシール層とを含むことを特徴とする減圧被覆材。
- 請求項1に記載の減圧被覆材において、前記ポンプが圧電駆動マイクロポンプであることを特徴とする減圧被覆材。
- 請求項1に記載の減圧被覆材がさらに、前記被覆材内に配置され、かつ前記ポンプに作動可能に接続されたバッテリおよび制御電子回路部を含むことを特徴とする減圧被覆材。
- 請求項1に記載の減圧被覆材がさらに、前記ポンプからの気体の排出を可能にするために、前記カバー内に開口部を含むことを特徴とする減圧被覆材。
- 請求項1に記載の減圧被覆材がさらに、前記ポンプの排出口と流体連通している消臭フィルタを含むことを特徴とする減圧被覆材。
- 減圧治療を組織部位に適用する減圧被覆材であって、
前記組織部位に配置できるように適応させた界面層と、
前記界面層および前記組織部位のうちの少なくとも1つから液体を吸収するために前記界面層と流体連通している吸収層と、
減圧を前記組織部位に送出するために前記吸収層と流体連通しているポンプと、
前記吸収層と前記ポンプの間のダイバータ層であって、前記ポンプから前記吸収層へ減圧を伝達するための複数の開口部を含む、ダイバータ層と、
前記組織部位における減圧を維持するために前記ポンプ、前記ダイバータ層、前記吸収層および前記界面層の上に配置されるカバーと、
液体が前記ポンプに混入するのを抑制するために前記ダイバータ層と前記ポンプとの間に配置される気液分離器とを含むことを特徴とする減圧被覆材。 - 請求項9に記載の減圧被覆材において、前記界面層が疎水性であることを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材において、前記吸収層が超吸収繊維を含むことを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材において、前記ダイバータ層の表面積が前記カバーの表面積よりも大きいことを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材において、前記ダイバータ層の表面積が前記カバーの表面積よりも大きく、
前記カバーの少なくとも一部が、前記ダイバータ層と接着結合しており、前記ダイバータ層の少なくとも一部が、前記組織部位周辺の組織と結合していることを特徴とする減圧被覆材。 - 請求項13に記載の減圧被覆材がさらに、前記ダイバータ層と前記組織部位周辺の組織との間に配置されるシール層を含むことを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材において、前記ダイバータ層の前記開口部が、前記ダイバータ層の少なくとも1つの周辺縁部の付近に配置されることを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材において、前記開口部のうちの少なくとも1つが、前記開口部の別の開口部よりも大きいことを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材において、前記開口部のうちの少なくとも1つが、水分に接触すると縮小するように構成されていることを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材において、前記ダイバータ層が、前記ダイバータ層の表面に複数のリッジを含み、前記リッジの間に複数のチャネルを画成することを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材において、前記ダイバータ層が、前記吸収層の吸収能力をより有効に活用することを可能にすることを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材において、前記ダイバータ層が、前記吸収層が減圧を分配することができる時間を増大させることを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材びおいて、前記ダイバータ層が気体透過性であることを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材において、前記ポンプが圧電駆動マイクロポンプであることを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材において、前記被覆材内に配置され、かつ前記ポンプに作動可能に接続されたバッテリおよび制御電子回路部をさらに含むことを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材がさらに、前記ポンプからの気体の排出を可能にするために、前記カバー内に開口部を含むことを特徴とする減圧被覆材。
- 請求項9に記載の減圧被覆材がさらに、前記ポンプの排出口と流体連通している消臭フィルタを含むことを特徴とする減圧被覆材。
- 減圧治療を組織部位に適用する減圧被覆材であって、
前記組織部位に配置できるように適応させた界面層と、
前記界面層および前記組織部位のうちの少なくとも1つから液体を吸収するために前記界面層と流体連通している吸収層と、
前記吸収層に隣接するダイバータ層であって、実質的に気体不透過性の材料から形成され、前記吸収層が減圧を分配することができる時間を増大させるために前記吸収層と流体連通している複数の開口部を含む、ダイバータ層と、
減圧を前記組織部位に送出するために前記ダイバータ層の複数の開口部と流体連通しているポンプと、
前記組織部位における減圧を維持するために前記ポンプ、前記ダイバータ層、前記吸収層および前記界面層の上に配置されるカバーと、
液体が前記ポンプに混入するのを抑制するために前記ダイバータ層と前記ポンプとの間に配置される気液分離器と
を含むことを特徴とする減圧被覆材。 - 請求項26に記載の減圧被覆材において、前記界面層が疎水性であることを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材において、前記吸収層が超吸収繊維を含むことを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材がさらに、前記カバーと前記組織部位周辺の組織との間に配置されるシール層を含むことを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材において、前記ダイバータ層の表面積が前記カバーの表面積よりも大きいことを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材において、前記ダイバータ層の表面積が前記カバーの表面積よりも大きく、
前記カバーの少なくとも一部が、前記ダイバータ層と接着結合しており、前記ダイバータ層の少なくとも一部が、前記組織部位周辺の組織と結合していることを特徴とする減圧被覆材。 - 請求項31に記載の減圧被覆材がさらに、前記ダイバータ層と前記組織部位周辺の組織との間に配置されるシール層を含むことを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材において、前記ダイバータ層の前記開口部が、前記ダイバータ層の少なくとも1つの周辺縁部の周辺に配置されることを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材において、前記開口部のうちの少なくとも1つが、前記開口部の別の開口部よりも大きいことを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材において、前記開口部のうちの少なくとも1つが、水分に接触すると縮小するように構成されていることを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材において、前記ダイバータ層が、前記ダイバータ層の表面に複数のリッジを含み、前記リッジの間に複数のチャネルを画成することを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材において、前記ダイバータ層が、前記吸収層の吸収能力をより有効に活用することを可能にすることを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材において、前記ダイバータ層が前記吸収層の吸収効率を増加させることを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材において、前記ポンプが圧電駆動マイクロポンプであることを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材がさらに、前記被覆材内配置され、かつ前記ポンプに作動可能に接続されたバッテリおよび制御電子回路部を含むことを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材がさらに、前記ポンプからの気体の排出を可能にするために、前記カバー内に開口部を含むことを特徴とする減圧被覆材。
- 請求項26に記載の減圧被覆材がさらに、前記ポンプの排出口と流体連通している消臭フィルタを含むことを特徴とする減圧被覆材。
- 減圧治療を組織部位に適用する減圧被覆材であって、
前記組織部位に配置できるように適応させた界面層と、
前記界面層と流体連通している第1のマニホルド層と、
前記第1のマニホルド層、前記界面層および前記組織部位のうちの少なくとも1つから液体を吸収するために前記第1のマニホルド層と流体連通している吸収層と、
実質的に気体不透過性の材料から形成されたダイバータ層であって、前記吸収層と流体連通している間隔を空けた複数の開口部を含む、ダイバータ層と、
前記ダイバータ層と流体連通している第2のマニホルド層と、
減圧を前記組織部位に送出するために前記第2のマニホルド層と流体連通しているポンプと、
前記組織部位における減圧を維持するために前記ポンプ、前記第2のマニホルド層、前記ダイバータ層、前記吸収層、前記第1のマニホルド層および前記界面層の上に配置されるカバーと、
液体が前記ポンプに混入するのを抑制するために前記第2のマニホルド層と前記ポンプとの間に配置される気液分離器と
を含むことを特徴とする減圧被覆材。 - 請求項43に記載の減圧被覆材において、前記界面層が疎水性であることを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材において、前記吸収層が超吸収繊維を含むことを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材がさらに、前記被覆材内における減圧を維持する補助となるように、前記組織部位周辺の組織と前記被覆材の少なくとも1つの他の層との間に配置されるシール層を含むことを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材において、前記ダイバータ層の表面積が前記カバーの表面積よりも大きいことを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材において、前記ダイバータ層の表面積が前記カバーの表面積よりも大きく、
前記カバーの少なくとも一部が、前記ダイバータ層と接着結合しており、前記ダイバータ層の少なくとも一部が、前記組織部位周辺の組織と結合していることを特徴とする減圧被覆材。 - 請求項48に記載の減圧被覆材がさらに、前記ダイバータ層と前記組織部位周辺の組織との間に配置されるシール層を含むことを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材において、前記ダイバータ層の前記開口部が、前記ダイバータ層の少なくとも1つの周辺縁部の付近に配置されることを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材において、前記開口部が穴部であることを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材において、前記開口部のうちの少なくとも1つが、前記開口部の別の開口部よりも大きいことを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材において、前記開口部のうちの少なくとも1つが、水分に接触すると縮小するように構成されていることを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材において、前記ダイバータ層が、前記ダイバータ層の表面に複数のリッジを含み、前記リッジの間に複数のチャネルを画成することを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材において、前記ダイバータ層が、前記吸収層の吸収能力をより有効に活用することを可能にすることを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材において、前記ダイバータ層が、前記吸収層が減圧を分配することができる時間を増大させることを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材において、前記ポンプが圧電駆動マイクロポンプであることを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材がさらに、前記被覆材内に配置され、かつ前記ポンプに作動可能に接続されたバッテリおよび制御電子回路部を含むことを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材がさらに、前記ポンプからの気体の排出を可能にするために、前記カバー内に開口部を含むことを特徴とする減圧被覆材。
- 請求項43に記載の減圧被覆材がさらに、前記ポンプの排出口と流体連通している消臭フィルタを含むことを特徴とする減圧被覆材。
- 組織部位に配置される被覆材で液体を捕集する方法であって、
前記被覆材内に配置されるポンプを使用して減圧を生成するステップと、
前記組織部位から液体を吸収して、前記被覆材で前記液体を収容するステップと、
前記液体が前記ポンプに混入するのを抑制するステップと
を含むことを特徴とする方法。 - 請求項61に記載の方法がさらに、前記被覆材内における減圧を維持するステップを含むことを特徴とする方法。
- 請求項61に記載の方法がさらに、前記ポンプからの気体を前記被覆材の外に排出させるステップを含むことを特徴とする方法。
- 減圧を組織部位に分配できるように適応させた減圧被覆材であって、
前記組織部位に配置できるように適応させた界面層と、
前記界面層および前記組織部位のうちの少なくとも1つから液体を吸収するために前記界面層と流体連通している吸収層と、
減圧を前記組織部位に送出するために前記吸収層と流体連通しているポンプと、
前記吸収層と前記ポンプとの間に配置されるタイバータ層であって、実質的に気体不透過性の材料から形成され、前記ダイバータ層の少なくとも1つの周辺縁部の周辺に流れが向けられるように前記吸収層の表面積よりも小さい表面積を有するダイバータ層と、
前記組織部位における減圧を維持するために前記ダイバータ層の上に配置されるカバーとを含むことを特徴とする減圧被覆材。 - 減圧を組織部位に分配できるように適応させた減圧被覆材であって、
前記組織部位に配置できるように適応させた界面層と、
前記界面層および前記組織部位のうちの少なくとも1つから液体を吸収するために前記界面層と流体連通している吸収層と、
減圧を前記組織部位に送出するために前記吸収層と流体連通しているポンプと、
前記吸収層と前記ポンプの間のタイバータ層であって、実質的に気体透過性、液体不透過性の材料から形成されたダイバータ層と、
前記組織部位における減圧を維持するために前記ダイバータ層の上に配置されるカバーとを含むことを特徴とする減圧被覆材。
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