JP2014506806A - 統合システム構造および使用の方法 - Google Patents
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Abstract
Description
この出願は、2010年12月23日に出願された米国の本出願第12/978,344号の利益および優先権を主張する。上記出願の内容は、その全体として本明細書において参照することによって援用される。
本出願は、概して撮像システム、特に統合構造に関連する。
本明細書において、統合システムのためのシステム、方法および装置が提供される。統合システムは、概して、患者テーブルおよび患者区域から遠隔である制御室および/またはワークステーションを含み、統合システムのいくつかの部分は、ユーザーがいくつかのベッドサイドインターフェースを介して撮像デバイスを接続することを可能にする患者テーブルに近接して存在する。制御室および/またはワークステーションは、患者区域と動作可能に関連付けられ、制御室またはワークステーションは、患者区域から実質的な物理距離がある。
本発明の上記および他の特徴および利点は、添付の図面に関連して読まれる以下の例示的な実施形態の詳細な説明から明白になる。詳細な説明および図面は、添付された請求項およびその同等物によって規定される本発明の範囲を限定するものではなく、単に本発明の例示である。
Claims (34)
- リモートワークステーションと患者区域とを含む統合システムであって、それによって、該リモートワークステーションは、該患者区域と動作可能に関連付けられ、該リモートワークステーションは、該患者区域から実質的な物理距離があり、該実質的な物理距離は、少なくとも約5mである、統合システム。
- 前記リモートワークステーションは、光源、光検出器、デジタイザ、干渉計、およびCPUコンポーネントを含み、該光源は、該干渉計と動作可能に関連付けられ、該光検出器は、該干渉計と動作可能に関連付けられ、該デジタイザは、該光検出器と動作可能に関連付けられ、該CPUコンポーネントは、該デジタイザと動作可能に関連付けられ、
前記患者区域は、インターフェースモジュール、カテーテル、およびサンプルプローブを含み、該インターフェースモジュールは、該カテーテルと動作可能に関連付けられ、該サンプルプローブは、該カテーテルと動作可能に関連付けられている、請求項1に記載の統合システム。 - 前記干渉計は、前記サンプルプローブと動作可能に関連付けられている延長されたサンプル経路を含み、該サンプル経路は、前記リモートワークステーション、前記患者区域、および前記インターフェースモジュールと統合されている、請求項2に記載の統合システム。
- 前記リモートワークステーションは、光源、光検出器、デジタイザ、およびCPUコンポーネントを含み、該光検出器は、該デジタイザと動作可能に関連付けられ、該CPUコンポーネントは、該デジタイザと動作可能に関連付けられ、
前記患者区域は、インターフェースモジュールおよびサンプルプローブを含み、該インターフェースモジュールは、該サンプルプローブおよび該リモートワークステーションと動作可能に関連付けられた干渉計を含む、請求項1に記載の統合システム。 - 前記光源は、供給源経路によって前記実質的な物理距離において前記干渉計と動作可能に関連付けられ、該干渉計は、該実質的な物理距離において検出経路を用いて前記光検出器と動作可能に関連付けられる、請求項4に記載の統合システム。
- 前記リモートワークステーションは、CPUコンポーネントを含み、前記患者区域は、インターフェースモジュール、カテーテル、およびサンプルプローブを含み、
該インターフェースモジュールは、光源、干渉計、光検出器、およびデジタイザを含み、
該光源は、該インターフェースモジュール内で該干渉計と動作可能に関連付けられ、該干渉計は、サンプル経路によって該サンプルプローブと動作可能に関連付けられる、請求項1に記載の統合システム。 - 前記サンプル経路は、前記実質的な物理距離を横断せず、前記デジタイザは、CPU経路によって、前記リモートワークステーション内の前記CPUコンポーネントと動作可能に関連付けられる、請求項6に記載の統合システム。
- モバイルコンソールおよび患者区域を含む統合システムであって、それによって、該モバイルコンソールは、実質的な物理距離において該患者区域と動作可能に関連付けられ、該実質的な物理距離は、少なくとも約5mである、統合システム。
- 前記モバイルコンソールは、該モバイルコンソールがCPUコンポーネントと共に移動することを可能にする少なくとも1つのモバイル輸送デバイスを含み、
該モバイルコンソールは、該CPUコンポーネントおよびディスプレイを含み、
前記患者区域は、インターフェースモジュール、カテーテル、およびサンプルプローブを含み、
該インターフェースモジュールは、光源、干渉計、光検出器、およびデジタイザを含み、該デジタイザは、PIMケーブルによって該CPUコンポーネントと動作可能に関連付けられる、請求項8に記載の統合システム。 - 前記モバイルコンソール輸送デバイスは、ラップトップを含む、請求項9に記載の統合システム。
- 制御室と患者区域とを含む統合システムであって、それによって、該制御室は、該患者区域と動作可能に関連付けられ、該患者区域は、該制御室から実質的な物理距離において配置され、該実質的な物理距離は、少なくとも約5mである、統合システム。
- 前記制御室は、光源とCPUコンポーネントを含み、
前記患者区域は、インターフェースモジュールおよびカテーテルを含み、該光源は、供給源経路によって該インターフェースモジュールと動作可能に関連付けられ、
該インターフェースモジュールは、干渉計、光検出器、およびデジタイザを含み、該干渉計は、前記実質的な物理距離で該供給源経路と動作可能に関連付けられ、
サンプル経路は、該カテーテルと動作可能に関連付けられ、該実質的な物理距離を横断せず、
該デジタイザは、該実質的な物理距離でPIMケーブルによって該CPUコンポーネントと動作可能に関連付けられる、請求項11に記載の統合システム。 - 前記制御室は、光源、CPUコンポーネント、およびデジタイザを含み、
前記患者区域は、インターフェースモジュールおよびカテーテルを含み、
該インターフェースモジュールは、干渉計および光検出器を含み、該光源は、該インターフェースモジュール内の該干渉計と動作可能に関連付けられ、該干渉計は、前記実質的な物理距離を横断しないサンプル経路によって該カテーテルと動作可能に関連付けられる、請求項11に記載の統合システム。 - 前記光検出器は、デジタイザ経路によって前記デジタイザと動作可能に関連付けられる、請求項13に記載の統合システム。
- 前記制御室は、CPUコンポーネントおよびデジタイザを含み、
前記患者区域は、インターフェースモジュールおよびカテーテルを含み、
該インターフェースモジュールは、光源、干渉計および光検出器を含み、それによって、該干渉計は、サンプル経路によって該カテーテルと動作可能に関連付けられ、該サンプル経路は、前記実質的な物理距離を横断せず、
該光検出器は、デジタイザ経路によって該デジタイザと動作可能に関連付けられる、請求項11に記載の統合システム。 - 前記制御室は、CPUコンポーネント、デジタイザ、および光検出器を含み、
前記患者区域は、インターフェースモジュール、サンプルプローブ、およびカテーテルを含み、
該インターフェースモジュールは、光源および干渉計を含み、それによって、該干渉計は、前記実質的な物理距離を横断する検出経路によって該光検出器と動作可能に関連付けられ、
該干渉計は、該実質的な物理距離を横断しないサンプル経路によって該サンプルプローブと動作可能に関連付けられる、請求項11に記載の統合システム。 - 制御室と少なくとも2つの患者区域とを含む統合システムであって、それによって、該制御室は、該少なくとも2つの患者区域と動作可能に関連付けられ、該少なくとも2つの患者区域から実質的な物理距離だけ離れて配置され、該実質的な物理距離は、少なくとも約5mである、統合システム。
- 前記制御室は、前記少なくとも2つの患者区域と動作可能に関連付けられたCPUコンポーネントを含み、
該患者区域は、インターフェースモジュールおよびカテーテルを含み、それによって、該インターフェースモジュールは、光源、干渉計、光検出器、およびデジタイザを含み、
該干渉計は、サンプル経路によって該カテーテルと動作可能に関連付けられ、
該デジタイザは、前記実質的な物理距離を横断するCPU経路によって該CPUコンポーネントと動作可能に関連付けられる、請求項17に記載の統合システム。 - 前記制御室は、CPUコンポーネントおよび少なくとも2つのデジタイザを含み、該少なくとも2つのデジタイザは、前記少なくとも2つの患者区域と動作可能に関連付けられ、
前記少なくとも2つの患者区域は、インターフェースモジュールおよびカテーテルを含み、それによって、該インターフェースモジュールは、光源、干渉計、および光検出器を含み、
該干渉計は、サンプル経路によって該カテーテルと動作可能に関連付けられ、
該光検出器は、前記実質的な物理距離を横断するデジタイザ経路によって該少なくとも2つのデジタイザと動作可能に関連付けられ、
該CPUコンポーネントは、該少なくとも2つのデジタイザと関連付けられている、請求項17に記載の統合システム。 - 前記制御室は、CPUコンポーネントおよび動作可能なデジタイザを含み、該デジタイザは、前記少なくとも2つの患者区域と動作可能に関連付けられ、
該少なくとも2つの患者区域は、インターフェースモジュールおよびカテーテルを含み、それによって、該インターフェースモジュールは、光源、干渉計、および光検出器を含み、
該干渉計は、サンプル経路によって該カテーテルと動作可能に関連付けられ、
該少なくとも2つの患者区域の該光検出器は、前記実質的な物理距離を横断する少なくとも2つのデジタイザ経路によって該制御室内の該デジタイザと動作可能に関連付けられる、請求項17に記載の統合システム。 - 前記制御室は、光源、デジタイザ、およびCPUコンポーネントを含み、該光源は、前記少なくとも2つの患者区域と動作可能に関連付けられ、
該少なくとも2つの患者区域は、インターフェースモジュールおよびカテーテルを含み、それによって、該インターフェースモジュールは、干渉計および光検出器を含み、
該光源は、前記実質的な物理距離を横断する少なくとも1つの光経路によって該インターフェースモジュール内の該干渉計と動作可能に関連付けられ、
該干渉計は、サンプル経路によって該カテーテルと動作可能に関連付けられ、
該光検出器は、該実質的な物理距離を横断する少なくとも1つのデジタイザ経路によって該デジタイザと動作可能に関連付けられ、
該デジタイザは、該CPUコンポーネントと動作可能に関連付けられる、請求項17に記載の統合システム。 - 前記制御室は、光源およびCPUコンポーネントを含み、それによって、該光源は、前記少なくとも2つの患者区域と動作可能に関連付けられ、
前記少なくとも2つの患者区域は、インターフェースモジュールおよびカテーテルを含み、それによって、該インターフェースモジュールは、干渉計、光検出器、および少なくとも2つのデジタイザを含み、
該光源は、前記実質的な物理距離を横断する少なくとも1つの光経路によって該干渉計と動作可能に関連付けられ、
該干渉計は、サンプル経路によって該カテーテルと動作可能に関連付けられ、
該デジタイザは、少なくとも1つのCPU経路によって該CPUコンポーネントと動作可能に関連付けられる、請求項17に記載の統合システム。 - 前記制御室は、光源、少なくとも2つのデジタイザ、およびCPUコンポーネントを含み、それによって、該光源は、前記少なくとも2つの患者区域と動作可能に関連付けられ、
該少なくとも2つの患者区域は、インターフェースモジュールおよびカテーテルを含み、それによって、該インターフェースモジュールは、干渉計および少なくとも2つの光検出器を含み、
該光源は、前記実質的な物理距離を横断する少なくとも1つの光経路によって該干渉計と動作可能に関連付けられ、
該干渉計は、サンプル経路によって該カテーテルと動作可能に関連付けられ、
該光検出器は、少なくとも1つのデジタイザ(20)経路によって該デジタイザと動作可能に関連付けられ、
該デジタイザは、該CPUコンポーネントと動作可能に関連付けられる、請求項17に記載の統合システム。 - 前記リモートワークステーションは、CPUコンポーネントと動作可能に関連付けられた撮像システムを含み、該撮像システムは、OCT撮像システム、分光デバイス、血管内超音波(IVUS)デバイス、前向きIVUSデバイス、高密度焦点式超音波(HIFU)デバイス、無線周波数デバイス、熱撮像またはサーモグラフィデバイス、光学光ベースの撮像デバイス、磁気共鳴デバイス、無線グラフィデバイス、放射線撮像デバイス、光音響撮像デバイス、電気インピーダンストモグラフィデバイス、弾性グラフィデバイス、圧力感知有線デバイス、心内心エコーグラフィ(ICE)デバイス、前向きICEおよび整形外科デバイス、脊椎撮像および神経学的撮像デバイス、画像誘導治療デバイス、治療送達デバイス、および診断送達デバイスからなる群から選択される、請求項1に記載の統合システム。
- 前記リモートワークステーションは、少なくとも1つのケーブルによって前記患者区域と動作可能に関連付けられている、請求項1に記載の統合システム。
- 前記少なくとも1つのケーブルは、フロアトレンチまたは天井導管を通して設置されている、請求項25に記載の統合システム。
- 前記リモートワークステーションは、無線伝送によって前記患者区域と動作可能に関連付けられている、請求項1に記載の統合システム。
- 前記リモートワークステーションは、光通信ラインによって前記患者区域と動作可能に関連付けられている、請求項1に記載の統合システム。
- 前記リモートワークステーションは、電気通信ラインによって前記患者区域と動作可能に関連付けられている、請求項1に記載の統合システム。
- システムを統合させる方法であって、該方法は、
実質的な物理距離でサンプルからコンピュータ処理ユニットを分離することであって、該実質的な物理距離は、少なくとも約5mである、ことと、
撮像システムを、該サンプルおよび該コンピュータ処理ユニットと動作可能に関連付けることと、
該サンプルから該コンピュータ処理ユニットに画像データを送信することと
を含む、方法。 - 前記コンピュータ処理ユニットにおいて、またはその付近に前記画像データをデジタル形式に変換することをさらに含む、請求項30に記載の方法。
- 前記画像データが前記サンプルから送信される前に、該画像データをデジタル形式に変換することをさらに含む、請求項30に記載の方法。
- 前記サンプルから前記画像データを送信する(20)前に、該画像データを圧縮することをさらに含む、請求項30に記載の方法。
- 前記撮像システムは、光コヒーレンストモグラフィ(OCT)システム、分光デバイスであって、蛍光、吸収、散乱およびラマン分光を含む分光デバイス、血管内超音波(IVUS)デバイス、前向きIVUS(FLIVUS)デバイス、高密度焦点式超音波(HIFU)デバイス、無線周波数デバイス、熱撮像デバイス、光学光ベースの撮像デバイス、磁気共鳴デバイス、無線グラフィデバイス、放射線撮像デバイス、光音響撮像デバイス、電気インピーダンストモグラフィデバイス、弾性グラフィデバイス、圧力感知有線デバイス、心内心エコーグラフィ(ICE)デバイス、前向きICEデバイス、整形外科デバイス、脊椎撮像デバイス、神経学的撮像デバイス、画像誘導治療デバイス、治療送達デバイス、並びに診断送達デバイスからなる群から選択される、請求項30に記載の方法。
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Also Published As
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CN103429137A (zh) | 2013-12-04 |
WO2012087818A1 (en) | 2012-06-28 |
US11141063B2 (en) | 2021-10-12 |
US20120165661A1 (en) | 2012-06-28 |
EP2654549A1 (en) | 2013-10-30 |
US20220022730A1 (en) | 2022-01-27 |
JP2016129712A (ja) | 2016-07-21 |
EP2654549A4 (en) | 2016-05-11 |
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