JP2018008107A - 無菌手術トレイ - Google Patents
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Abstract
【解決手段】無菌手術トレイシステム1700は、手術野内に配置され、殺菌された複数の手術器具を有する無菌手術トレイ1402と、手術野の外側でトレイ1402から離れて配置され、トレイ1402と通信し、ポンプと加圧ガス源と真空源とを有するラックシステム1702と、ラックシステム1702と複数の手術器具との少なくとも一方と通信状態にある少なくとも1つのコントローラ1450と、ラックシステム1702と通信状態にあるディスプレイ1448と、ポンプと加圧ガス源と真空源とをそれぞれトレイ1402に接続する接続架台2002と、を有し、ラックシステム1702は、コントローラ1450を介してトレイ1402で受信したユーザ入力を処理するプロセッサを有している。
【選択図】図20
Description
ある一定の実施形態では、独立手術トレイ1402は、図14に示したように、ここに記載された無菌手術トレイを少なくとも含むことができる。独立手術センター1402は様々な手術/医療または他の装置1401、個人手術センター1410、病院/医療診療所システム1414の少なくともいずれかに接続されてよい。
図6と14を参照すると、ある一定の実施形態では、生物組織切断装置と吸引把手(たとえば、硝子体切除術把手または他の同様の把手)の少なくとも一方は携帯でき、軽量で、生物組織切断装置と吸引把手の少なくとも一方に動力を供給するためにバッテリによって電力を供給することができる。生物組織切断装置と吸引把手は、無菌野、診療所、手術センター、手術室で使用することができる。生物組織切断装置と吸引把手の少なくとも一方は独立した機器として、または上記した独立手術センターと共に使用してよい。把手は使い捨てであってよく、かつ生物組織切断装置に吸引圧力を供給する吸引/注入カセットに接続することができる。図6は、注入ライン114と、生物組織切断装置と吸引把手110を有する吸引/注入カセット100の一例を示している。カセットの左側は生物組織切断装置と吸引把手に吸引圧力を供給する働きをし、右側は注入を供給する。
図14Aを参照すると、個人手術センター用の、コンピュータシステムと装置の少なくとも一方が図示されている。図14Aは、1つまたは複数の独立手術センター910と1つまたは複数の手術装置915の少なくとも一方と1つまたは複数のネットワーク9010を介して通信しているコンピュータシステム(不動システムまたはモバイル装置であってよい)の一実施形態のブロック図を示している。コンピュータシステム900は、ここに記載された1つまたは複数のシステムおよび1つまたは複数の方法を実施するために用いられてよい。さらに、一実施形態では、コンピュータシステム900は、複数の手術装置からの状態データと状態情報の少なくとも一方を処理するように構成されてよい。図14Aは、コンピュータシステム900の一実施形態を示しているが、コンピュータシステム900の複数の構成要素または複数のモジュール内に備えられた複数の機能を、より少ない構成要素およびより少ないモジュールに組合せ、または追加の複数の構成要素または複数のモジュールにさらに分割してもよい。
一実施形態では、上記で示した複数のプロセス、複数のシステム、そして複数の方法は、コンピュータ装置上で実行されるソフトウェアで一部または全部が具体化されてよい。コンピュータ装置の複数の構成要素と複数のモジュール内に備えられた機能は1つまたは複数の構成要素と1つまたは複数のモジュールの少なくとも一方を含んでよい。たとえば、コンピュータ装置は、サーバのアレイにおいて実施できるような、多数の中央処理装置(CPU)と、大容量記憶装置を含んでよい。
コンピュータシステム900は、たとえば、サーバ、ウインドウズ(登録商標)サーバ、構造クエリー言語サーバ、ユニックスサーバ、パーソナルコンピュータ、メインフレームコンピュータ、ラップトップコンピュータ、携帯電話、パーソナルディジタルアシスタント、キオスク、オーディオプレーヤ、などのような種々のコンピュータ装置上で実行されてよい。コンピュータシステム900は一般に、z/OS(登録商標)、ウインドウズ(登録商標)95、ウインドウズ98、ウインドウズNT、ウインドウズ2000、ウインドウズXP、ウインドウズビィスタ、リナックス、BSD、SunOS、Solaris、または他の互換性のあるオペレーティングシステムのようなオペレーティングシステムソフトウェアによって制御、調整される。マッキントッシュシステムでは、オペレーティングシステムは、MAC OS Xのような、利用可能なオペレーティングシステムであってよい。他の実施形態では、コンピュータシステム900は、独自のオペレーティングシステムによって制御されてもよい。従来のオペレーティングシステムは、複数のコンピュータプロセスを実行のために制御、スケジューリングし、メモリ管理を行い、ファイルシステム、ネットワーク化、複数のI/Oサービスを提供し、特に、グラフィカルユーザインタフェース(「GUI」)のようなユーザインタフェースを提供する。
図14Aの実施形態では、コンピュータシステム900は、LAN、WAN、またはインターネットのようなネットワーク910と、たとえば、有線の、無線の、または有線と無線の組み合わせの通信リンク915によって連結されている。ネットワーク910は、様々な計算装置と他の複数の電子装置の少なくとも一方と、有線または無線の通信リンクによって通信する。図14Aの代表的な実施形態では、ネットワーク910は、1つまたは複数の独立手術センター910と1つまたは複数の手術装置915の少なくとも一方と通信している。
図14Aに示されたシステムに加えて、ネットワーク910は、他のデータ源または他のコンピュータ装置、たとえば請求システムまたは病院情報システムと通信してよい。コンピュータシステム900は、1つまたは複数の内部データ源と1つまたは複数の外部データ源の少なくとも一方をも有してよい。いくつかの実施形態では、1つまたは複数のデータ保存場所と1つまたは複数のデータ源は、DB2(登録商標)、Sybase(登録商標)、オラクル、CodeBase、マイクロソフト(登録商標)のSQLサーバのようなリレーショナルデータベースと、たとえば、フラットファイルデータベース、エンティティ‐リレーションシップデータベース、オブジェクト指向のデータベース、レコードベースのデータベースの少なくともいずれかのような他の種類のデータベースを用いて実現されてよい。
図15は、本発明の実施形態にしたがって、独立手術センターの処理装置1446によって実行される処理の流れ図である。
図16に示されているように、ある一定の実施形態では、ここに記載された独立手術センター1402、処理装置1446、個人手術センター1410の少なくともいずれかを、状態データと調整データの少なくとも一方を、様々な手術装置と装置1401の少なくとも一方から受信し、または様々な手術装置と装置1401の少なくとも一方の状態を決定するように構成することができる。様々な手術装置と装置1401の少なくとも一方の状態の解析と監視の少なくとも一方を行うにあたって、独立手術センター1402、処理装置1446、個人手術センター1410の少なくともいずれかを、様々な安全機構手順、たとえば、ただし限定されない切断装置安全機構手順と低流体安全機構手順を呼び出すように構成することができる。
Claims (20)
- 手術野内に配置された無菌手術トレイであって、前記無菌手術トレイと共に殺菌された複数の手術器具を有する無菌手術トレイと、
前記手術野の外側で前記無菌手術トレイから離れて配置され、前記無菌手術トレイと通信するように構成されたラックシステムであって、前記無菌手術トレイに流体を送り込むように構成されたポンプと、加圧ガス源と、真空源と、を有するラックシステムと、
前記ラックシステムと前記複数の手術器具との少なくとも一方と通信状態にある入力機構として構成された、前記無菌手術トレイ内の少なくとも1つのコントローラと、
前記ラックシステムと通信状態にある、前記無菌手術トレイ内のディスプレイと、
前記ポンプ、前記加圧ガス源、および前記真空源をそれぞれ前記無菌手術トレイに接続するように構成された接続架台と、を有し、
前記ラックシステムが、前記少なくとも1つのコントローラを介して前記無菌手術トレイで受信したユーザ入力を処理するように構成されたプロセッサを有する、
無菌手術トレイシステム。 - 前記無菌手術トレイが、前記少なくとも1つのコントローラを介して前記無菌手術トレイで受信したユーザ入力を処理するように構成された別のプロセッサを有する、請求項1に記載の無菌手術トレイシステム。
- 前記無菌手術トレイと通信するように連結されたハンドピース上に配置された別のコントローラをさらに有する、請求項1に記載の無菌手術トレイシステム。
- 前記ハンドピースが、前記無菌手術トレイを介して前記ラックシステムと通信状態にある、請求項3に記載の無菌手術トレイシステム。
- 前記少なくとも1つのコントローラが、前記無菌手術トレイに流体を送り込むように構成された前記ポンプを制御するように構成されている、請求項1に記載の無菌手術トレイシステム。
- 前記複数の手術器具の少なくとも1つが、前記流体を受け取るように構成されている、請求項5に記載の無菌手術トレイシステム。
- 前記ラックシステムが、前記無菌手術トレイの前記少なくとも1つのコントローラによって制御されるように構成された光源をさらに有する、請求項1に記載の無菌手術トレイシステム。
- 前記光源が、前記無菌手術トレイに光を送るように構成されている、請求項7に記載の無菌手術トレイシステム。
- 前記複数の手術器具の少なくとも1つが、前記光を受信するように構成されている、請求項8に記載の無菌手術トレイシステム。
- 前記光源が、前記複数の手術器具の少なくとも1つに光を送るように構成されている、請求項7に記載の無菌手術トレイシステム。
- 前記加圧ガス源が、前記無菌手術トレイの前記少なくとも1つのコントローラによって制御されるように構成されている、請求項1に記載の無菌手術トレイシステム。
- 前記加圧ガス源が、前記無菌手術トレイに加圧ガスを送るように構成されている、請求項11に記載の無菌手術トレイシステム。
- 前記複数の手術器具の少なくとも1つが、前記加圧ガスを受け取って該手術器具内の空気圧駆動装置を駆動するように構成されている、請求項11に記載の無菌手術トレイシステム。
- 前記加圧ガス源が、前記複数の手術器具の少なくとも1つに加圧ガスを送って該少なくとも1つの手術器具内の空気圧駆動装置を駆動するように構成されている、請求項11に記載の無菌手術トレイシステム。
- 前記ラックシステムが、前記無菌手術トレイ内の前記少なくとも1つのコントローラによって制御されるように構成された電気エネルギー源をさらに有する、請求項1に記載の無菌手術トレイシステム。
- 前記電気エネルギー源が、前記無菌手術トレイに電気エネルギーを送るように構成されている、請求項15に記載の無菌手術トレイシステム。
- 前記複数の手術器具の少なくとも1つが、前記電気エネルギーを受け取るように構成されている、請求項16に記載の無菌手術トレイシステム。
- 前記電気エネルギー源が、前記複数の手術器具の少なくとも1つに電気エネルギーを送るように構成されている、請求項15に記載の無菌手術トレイシステム。
- 前記真空源が、前記無菌手術トレイ内の前記少なくとも1つのコントローラによって制御されるように構成されている、請求項1に記載の無菌手術トレイシステム。
- 前記複数の手術器具の少なくとも1つが、前記真空源と通信するように構成されている、請求項1に記載の無菌手術トレイシステム。
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EP2521509B1 (en) | 2016-11-09 |
CA2786024C (en) | 2018-03-27 |
RU2012127708A (ru) | 2014-02-20 |
AU2017216458B2 (en) | 2018-07-19 |
US20140378952A1 (en) | 2014-12-25 |
US20100174415A1 (en) | 2010-07-08 |
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CN102781361B (zh) | 2016-11-09 |
KR101792836B1 (ko) | 2017-11-02 |
EP2521509A1 (en) | 2012-11-14 |
JP2015171566A (ja) | 2015-10-01 |
CA2786024A1 (en) | 2011-07-14 |
IN2012DN05906A (ja) | 2015-09-18 |
AU2017216458A1 (en) | 2017-08-31 |
AU2015210377A1 (en) | 2015-09-03 |
US9526580B2 (en) | 2016-12-27 |
AU2011204369A1 (en) | 2012-07-26 |
ES2613244T3 (es) | 2017-05-23 |
KR101831339B1 (ko) | 2018-04-04 |
AU2015210377B2 (en) | 2017-06-01 |
KR20130008009A (ko) | 2013-01-21 |
EP2521509A4 (en) | 2014-03-05 |
WO2011085127A1 (en) | 2011-07-14 |
JP2013516287A (ja) | 2013-05-13 |
MX2012007900A (es) | 2012-09-07 |
BR112012016788A2 (pt) | 2016-04-19 |
CN102781361A (zh) | 2012-11-14 |
JP5756127B2 (ja) | 2015-07-29 |
JP6542317B2 (ja) | 2019-07-10 |
US20170095309A1 (en) | 2017-04-06 |
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