JP7159208B2 - ドングルを使用することによって医療システムをネットワークコントローラとペアリングするためのシステム - Google Patents
ドングルを使用することによって医療システムをネットワークコントローラとペアリングするためのシステム Download PDFInfo
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Description
本出願は、次の米国特許出願に関係し、その開示は全体が参照により本明細書に組み込まれる。
出願番号
出願日
名称
整理番号
62/463,452
2017年2月24日
患者モニタ通信プラットフォーム
MAS.1126PR
62/463,297
2017年2月24日
モジュール式マルチパラメータ患者監視デバイス
MAS.1130PR
62/463,517
2017年2月24日
医療監視データを表示し制御するためのシステム
MAS.1132PR1
62/503,109
2017年5月8日
医療監視データを表示し制御するためのシステム
MAS.1170PR1
62/535,757
2017年7月21日
医療監視データを表示し制御するためのシステム
MAS.1170PR2
62/463,614
2017年2月25日
患者モニタ通信プラットフォーム
MAS.1133PR
少なくとも上記の内容に基づき、患者を治療するか、または監視する様々な医療用デバイスを協調させる解決手段が必要である。そのような解決手段の実施形態は、デバイス空間にわたって継ぎ目なく患者識別を提供するべきであり、そのような解決手段の実施形態は、繰り返されるソフトウェアアップグレードを必ずしも必要とすることなく将来の技術に合わせて拡張するものであるべきである。それに加えて、そのような解決手段の実施形態は、望ましい場合に患者の電気的隔離を含み得る。
図1Aは、本開示の一実施形態による例示的なドッキングされた携帯型患者モニタ(PPM)102を含む例示的な医療監視ハブ100の斜視図を含めて監視環境を例示している。ハブ100は、ディスプレイ104と、一実施形態は、携帯型患者モニタ102とともに機械的におよび電気的に嵌合するように構成されている、ドッキングステーション106とを備え、各々移動可能、装着可能、および携帯可能なハウジング108内に収納される。ハウジング108は、水平で平坦な表面上に静止するように構成されている一般的に直立した傾斜形状を含むが、ハウジング108は、多種多様な位置および台に貼り付けられ、多種多様の形状およびサイズのものを含み得る。
図24は、図1のハブ100を含む監視環境2000の別の実施形態を例示している。監視環境2000は、図2の監視環境200のすべての特徴、さらには上で説明されている他の特徴のいずれかを含み得る。それに加えて、監視環境2000は、複数患者監視システム204の別の実施形態、すなわち、複数患者監視システム(MMS)2004を示している。MMS2004は、シリアルデータを受信し、シリアルデータを監視ハブ100によって認識可能なフォーマットに翻訳し、シリアルデータを監視ハブ100に(場合によっては他のデバイス間に)提供することができる翻訳モジュール2005を備える。MMS2004、監視ハブ100、またはPPM102と有線方式でまたはワイヤレス方式で通信し得る補助デバイス2040も示されている。
図40Aから図45Dを参照しつつ説明されている次の特徴のうちのいずれかは、図24の翻訳モジュール2005によって、または図24を参照しつつ上で説明されているデバイスのうちのいずれかと一緒に実装され得る。
いくつかの実施形態において、医療用監視ハブ上に出力する医療データ翻訳結果を提供するためのシステムは、携帯型生理学的モニタを備えることができ、このモニタは生理学的センサから患者に関連付けられている生理学的信号を受信し、生理学的信号に基づき生理学的パラメータを計算し、生理学的パラメータの第1の値を表示するため監視ハブに供給することができるプロセッサを備える。監視ハブは、携帯型生理学的モニタを受け入れることができるドッキングステーションを備えることができる。監視ハブは、携帯型生理学的モニタから生理学的パラメータの第1の値を受信し、生理学的パラメータの第1の値を出力して表示し、携帯型生理学的モニタ以外の医療用デバイスから生理学的パラメータデータを受信し、生理学的パラメータデータは監視ハブによってネイティブに読み取り可能または表示可能であるプロトコル以外のプロトコルに従ってフォーマットされ、生理学的パラメータデータを翻訳モジュールに受け渡し、翻訳モジュールから翻訳されたパラメータデータを受信し、翻訳されたパラメータデータは監視ハブによって読み取り可能で表示可能であるものとしてよく、翻訳されたパラメータデータからの第2の値を出力し表示することができる。
今日の患者監視環境は、患者に対する多種多様の監視、治療、または手技に関連付けられている1つまたは複数の電子医療用デバイスからデータを提示する臨床医向けの1つまたは複数の従来型のディスプレイもしくは画面を提供する。したがって、そのような患者監視、治療、または手技の際に、臨床医は、典型的には、患者に関する情報を収集するために1つまたは複数の従来型のディスプレイを検討する。しかしながら、臨床医が1つまたは複数の従来型のディスプレイを見ている間に、外科手術を行っているときに臨床医が患者から目を逸らして従来型のディスプレイを見るなど、患者から臨床医の注意が逸らされることがある。たとえば、内視鏡または硬膜外などの特定の外科手術の際に、手術を行っている臨床医は患者を見てプローブがどこに進むかを確認するのが普通であるが、臨床医は従来型のディスプレイを見るために患者から目を逸らさなければならず、不効率である。
第1の態様において、医療用監視システムからの拡張現実データを提示するための方法であって、ハードウェアプロセッサの制御の下で、監視ハブから患者に関連付けられている生理学的パラメータ値を含む生理学的監視データを受信することと、ユーザインターフェース構成データにアクセスすることと、ユーザインターフェース構成データに従って、生理学的監視データから、複数の拡張現実オブジェクトを生成することと、拡張現実ディスプレイ内に複数の拡張現実オブジェクトを提示させることとを含む、方法。
次に、認証特徴(図73を参照)、データを補助デバイス2040に送信するデバイスを制御するための特徴(図74および図76を参照)、ならびに補助デバイス2040への出力を制御するための特徴(図75を参照)を含む、補助デバイス2040に関連付けられているいくつかの追加の実施形態が説明される。
第1の態様において、補助デバイスを医療用監視ハブに対して認証するための方法であって、ハードウェアプロセッサを備える医療用監視ハブの制御の下で、補助デバイスを医療用監視ハブにワイヤレス方式で接続することを求める要求を受信することと、医療用監視ハブのディスプレイ上に、ユーザが補助デバイスに入力する認証コードを出力することと、認証コードが補助デバイスにすでに入力されていることを示す指示を補助デバイスから受信することと、患者に結合されている1つまたは複数の患者モニタからデータを補助デバイスに送信することとを含む、方法。
上で説明されているハブ100はスタンドアロンデバイス(ベッド、ポンプ、換気装置、および他のモニタなど)がハブ100に接続するための機能を備えていて有益であるが、この機能は、同じボックス内の他の重要な患者監視機能と一緒に含まれる。すなわち、いくつかの実施形態において、ハブ100は、センサ(202)から取得された生理学的パラメータを計算し、様々なセンサ(たとえば、図2、図24、および図74A)からチャネルデータを受信し、処理することができ、スタンドアロンデバイスからシリアルデータを受信することもできる。ハブの機能は、有利には、チャネルデバイス(たとえば、222、224、226)およびスタンドアロン(シリアル)デバイスが患者データをMMS2004に供給してEMRに記憶させ、さらには任意選択でチャネルまたはシリアルデバイスからのデータをハブ100のところに表示することを可能にし得る。しかしながら、スタンドアロン患者デバイスがEMRに記憶するためにデータを伝達することを可能にする機能は、ハブ100の販売者機能を含むことを必要とする。ハブ100の使用が望ましくないとき、またはハブ100が利用不可能であるか、または機能の低い監視機器が使用されている場合にはこの機能を別々に提供することが望ましい。
図78Aおよび図78Bは、上で説明されている医療用ネットワークインターフェース7710の例示的な一実施形態の概略を示している。図78Aは、概略正面斜視図7800aを示しているが、図78Bは、例示的な医療用ネットワークインターフェース7710の概略背面斜視図7800bを示している。
図79は、医療用ネットワークインターフェース7910と別のデバイスとをペアリングするために使用されるドングル7900の例示的な一実施形態を示している。ドングル7900は、Bluetooth(登録商標)、Wi-Fi、または他のタイプのワイヤレス通信に対するペアリングで使用されてよい。有利には、いくつかの実施形態において、医療用デバイスの間でワイヤレス通信を使用した結果、病院環境がより清潔になり、感染が少なくなり(たとえば、ケーブルの共有が減ることにより)、医療用デバイスとのユーザインタラクションがより容易になり得る。一例として、ワイヤレス通信を採用することによって、操作室はもはや様々な医療用デバイスを接続するために長いイーサネット(登録商標)ケーブルを使用する必要がなくなる。
図80は、医療用ネットワークインターフェースのコンポーネントの例示的な一実施形態を示している。これらのコンポーネントは、例示することのみを目的としており、医療用ネットワークインターフェース7710は、図80に示されているのよりも少ないまたは多いコンポーネントを備えることができる。
図81は、医療用ネットワークインターフェースと医療用デバイスとをペアリングすることに対する状態流れ図の例示的な一実施形態を示している。図81の例示的な環境8100は、図77に示されている環境7700の一部であってよい。例示的な環境8100は、医療用デバイス8110と、医療用ネットワークインターフェース7710と、ドングル7900とを伴うことができる。医療用デバイス8110は、図77に例示されている任意のデバイスまたは本明細書において説明されている他のデバイスとすることができる。
図83は、医療用ネットワークインターフェース7710によるデータ処理のためのプロセス8300の例示的な一実施形態を示している。
図77A~図78Bを参照しつつ説明されているように、医療用ネットワークインターフェース7710は、有線もしくはワイヤレス接続を介して患者モニタ7701またはハブ100に通信可能に結合され得る。医療用ネットワークインターフェース7710は、また、有線もしくはワイヤレス接続に加えて、または代替的に、患者モニタ7701またはハブ100に機械的に結合され得る。たとえば、医療用ネットワークインターフェース7710は、医療用ネットワークインターフェース7710の頂面または底面を患者モニタ7701またはハブ100の表面(たとえば、頂面、底面、または側面)に装着することによって患者モニタ7701に機械的に結合され得る。いくつかの実施形態において、医療用ネットワークインターフェース7710を患者モニタ7701またはハブ100に装着することは恒久的ではなく、したがって、患者モニタ7701またはハブ100は医療用ネットワークインターフェース7710から脱着できる。他の実施形態では、医療用ネットワークインターフェース7710は、ハブ100の一部としてハブ100と一体形成される。
本明細書において説明されているように、医療用ネットワークインターフェース8410は、有線またはワイヤレス接続を使用してハブ8401、MMS2004、患者デバイス7720、または別の医療用ネットワークインターフェース8410などの様々なデバイスおよびシステムに通信可能に結合され得る。医療用ネットワークインターフェース8410は、ワイヤレスコネクタ8480を受けるように構成されているインターフェースポート8412を備えることができる。ワイヤレスコネクタ8480は、医療用ネットワークインターフェース8410を別のデバイスとペアリングしてワイヤレス方式で通信を達成するために使用できる。インターフェースポート8412は、図84Aを参照しつつ説明されているような専用ポート、USBポート、または別のタイプのポートであってよい。
第1の態様において、病院ネットワークとネイティブに通信していないスタンドアロン医療用デバイスに対するネットワーク接続性を提供することができる医療用ネットワークインターフェースであって、少なくとも1つのポートがワイヤレスドングルを受け入れるように構成されている複数のポートと、ワイヤレス通信スタックを実装するように構成されているネットワークインターフェースコントローラと、プロセッサ実行可能命令を記憶するように構成されているメモリと、プロセッサであって、ワイヤレスドングルに、ワイヤレスドングルがスタンドアロン医療用デバイスにワイヤレス接続性を提供することを可能にするのに十分な情報を供給し、ワイヤレスドングルがスタンドアロン医療用デバイスに挿入されたことに応答して行われる、ペアリング要求信号を医療用デバイスから受信したことに応答してスタンドアロン医療用デバイスとワイヤレス方式でペアリングし、ペアリングの後に、ワイヤレス方式でデータストリームをスタンドアロン医療用デバイスから受信し、データストリームは医療用デバイスの識別子と患者に関連付けられている患者データとを含み、データストリームに、患者の識別子および医療用ネットワークインターフェースの識別子を関連付けて、修正されたデータストリームを生成し、修正されたデータストリームを病院ネットワーク上で伝送し、修正されたデータストリームが臨床医によってアクセスされることを可能にする命令を実行するようにプログラムされるプロセッサとを備える、医療用ネットワークインターフェース。
本明細書で説明されているものと異なる多くの変更形態は、本開示から明らかになるであろう。たとえば、実施形態に応じて、本明細書で説明されているアルゴリズムのうちのいずれかの特定の活動、事象、または機能は、異なる順序で実行されてよく、追加されるか、マージされるか、または完全に省略され得る(たとえば、説明されているすべての活動または事象がアルゴリズムの実施に必要とは限らない)。さらに、いくつかの実施形態において、活動または事象は、たとえば、逐次的ではなくマルチスレッド処理、割り込み処理、またはマルチプロセッサもしくはプロセッサコアを通じて、または他の並列アーキテクチャ上で同時実行され得る。それに加えて、異なるタスクまたはプロセスは、一緒に機能することができる異なるマシンおよび/またはコンピューティングシステムによって実行され得る。
102 携帯型患者モニタ(PPM)
104 ディスプレイ
106 ドッキングステーション
108 移動可能、装着可能、および携帯可能なハウジング
110 表示のしるし
114 ディスプレイ
116 表示のしるし
118 機械式ラッチ
200 監視環境
202 患者センサ
204 複数患者監視サーバ
206 介護人バックエンドシステム
210 シリアルデータポート
211 NIBPセンサまたはシステム
212 チャネルデータポート
213 温度センサまたはセンサシステム
214 電子患者ベッドシステム
216 輸液ポンプシステム
218 換気装置システム
220 血圧もしくは他の生命兆候測定システム
222 意識深度モニタ
224 脳もしくは他の臓器オキシメータデバイス
226 非侵襲的血圧もしくは音響デバイス
302 計測器ボード
304 メモリ
305 イーサネット(登録商標)ポート
306 ナースコールポート
308 他の通信ポート
310 ドッキングステーションインターフェース
312 コアボード
314 携帯型モニタボード(「RIB」)
316 チャネルボード(「MID」)
318 電源
320 無線ボード
400 取り外し可能ドッキングステーション
402 空洞
404 電気コネクタ
406 空洞
408 電気コネクタ
502、504 携帯型患者モニタ
506 ドッキングステーション
602 ホストデバイス
604 患者デバイス
606 隔離デバイス
608 電源導体
610 通信導体
700 患者隔離システム
702 メモリ
708 患者デバイス
710 信号経路
800 万能医療用コネクタ構成プロセス
900 万能医療用コネクタ
904 経路
910 一方の側
920 他方の側
1000 計測器側部チャネル入力
2000 監視環境
2004 複数患者監視システム(MMS)
2005 翻訳モジュール
2040 補助デバイス
2042 IAP(計測器補助プロトコル)層
2100 翻訳メッセージ処理プロセス
2210 翻訳済みシリアルデータパラメータ
2215 現在の値
2220 ヒストグラム
2230 最近の動向
2240 波形
2242 波形
2405 第1の医療用デバイス
2410 第2の医療用デバイス
2415 翻訳モジュール
2420 翻訳規則
2421 通信バス
2505 ADT入力メッセージ
2506 メッセージヘッダセグメント
2510 出力メッセージ
2512 メッセージ確認応答セグメント
2600 翻訳プロセス
2700A、2700B 翻訳プロセス
2800 メッセージング実装ソフトウェアツール
2900A 自動規則構成プロセス
2900B 自動規則構成プロセス
2900C 自動規則構成プロセス
2900D 自動規則構成プロセス
7200 拡張現実デバイス
7202 監視環境
7204 拡張現実ユーザインターフェース
7206 拡張現実ユーザインターフェース
7208 拡張現実オブジェクト
7210 拡張現実表示領域
7212 デバイス
7214 デバイス
7216A、7216B 拡張現実ユーザインターフェース
7218A、7218B ユーザインターフェース表示領域
7220A、7220B ユーザインターフェースオブジェクト
7222 拡張現実表示生成プロセス
7234 拡張現実位置決定プロセス
7300 補助デバイス認証プロセス
7400 補助デバイス制御プロセス
7500 補助デバイスデータフロープロセス
7600 ユーザインターフェース
7610 設定
7700 監視環境
7701 患者モニタ
7704 MMS
7710 医療用ネットワークインターフェース
7712 ディスプレイ
7720 スタンドアロン患者デバイス、センサ、スタンドロケーションデバイス
7722 スタンドアロン患者デバイス
7750 病院ネットワーク
7760 病院デバイス
7770 外部ネットワーク
7780 患者デバイス
7790 EMR
7800a 正面斜視図
7800b 背面斜視図
7801 ハブ
7810 イーサネット(登録商標)ポート
7822 チャネルポート
7824 USBポート
7832 USBポート
7834 イーサネット(登録商標)ポート
7840 ラベル
7850 表示画面
7850 ディスプレイ
7860 電源ポート
7900 ドングル
7910 医療用ネットワークインターフェース
7912 プロセッサ
7914 メモリ
7916 ネットワークインターフェース
7920 アンテナ
7930 ロケーションタグ
7940 バッテリ
7952 ディスプレイ
7954 ライトコンポーネント
8012 メモリ
8014 プロセッサ
8016 ネットワークインターフェース
8016 ネットワークインターフェースコントローラ
8020 バックアップバッテリ
8030 ネットワークデータ処理システム
8040 デバイスペアリングシステム
8050 表示システム
8100 環境
8110 医療用デバイス
8400a 斜視図
8400b 後面図
8400c 前面斜視図
8400d 後面図
8401 ハブ
8403 USBポート
8405 イーサネット(登録商標)ポート
8407 チャネルポート
8410 医療用ネットワークインターフェース
8412 インターフェースポート
8422 チャネルポート
8432 USBポート
8434 イーサネット(登録商標)ポート
8460 バッテリポート
8462 バッテリポート
8480 ワイヤレスコネクタ
8482 ディスプレイ
8510 頂部ハウジング
8512 穴
8520 底面図
8522 スロット
8524 接続プレート
8530 底面
8540 底面
8542 穴
8602 背面
8604 前面
8610 データ記憶および処理コンポーネント
8620 処理コンポーネント
8640 バッテリ
8654 ライト
8670 ハウジング
8702 前面
8704 背面
8710 ドングル
8712 ソケットハウジング
8714 医療用デバイスコネクタ
8722a 前端
8722b 後端
8724 ワイヤ
8726 電源ケーブル
8734、8736、8738 ソケット
8738 ソケット
8810 ドングル
Claims (20)
- 患者の血液パラメータを測定し、前記血液パラメータをサードパーティ医療用デバイスパラメータと一緒にリモートデバイスに伝送するように動作可能であるパルス酸素測定システムであって、
前記患者に結合されている光学センサから信号を取得することによって前記患者の前記血液パラメータを測定するように構成されている患者モニタであって、前記信号は前記患者の生体組織によって減衰される光に対応する、患者モニタを備え、
前記患者モニタは病院ネットワーク上で前記測定された血液パラメータおよびサードパーティ医療用デバイスパラメータをサードパーティ医療用デバイスから伝送する医療用ネットワークインターフェースと通信するように構成され、前記医療用ネットワークインターフェースは
少なくとも1つのポートがワイヤレスドングルを受け入れるように構成されている複数のポートと、
ワイヤレス通信スタックを実装するように構成されているネットワークインターフェースコントローラと、
プロセッサ実行可能命令を記憶するように構成されているメモリと、
プロセッサであって、
前記ワイヤレスドングルに、前記ワイヤレスドングルが前記サードパーティ医療用デバイスにワイヤレス接続性を提供することを可能にするのに十分な情報を供給し、
前記ワイヤレスドングルが前記サードパーティ医療用デバイスに挿入されたことに応答して行われる、ペアリング要求信号を前記サードパーティ医療用デバイスから受信したことに応答して前記ワイヤレスドングルとワイヤレス方式でペアリングし、
ペアリングの後に、ワイヤレス方式でデータストリームを前記ワイヤレスドングルから受信し、前記データストリームは前記サードパーティ医療用デバイスの識別子と前記患者に関連付けられている前記サードパーティ医療用デバイスパラメータとを含み、
前記データストリームに、前記患者の識別子、前記医療用ネットワークインターフェースの識別子、および前記患者モニタの識別子を関連付けて、修正されたデータストリームを生成し、
前記修正されたデータストリーム、前記測定された血液パラメータ、および前記サードパーティ医療用デバイスパラメータを病院ネットワーク上で伝送し、前記修正されたデータストリームおよび前記測定された血液パラメータが臨床医によってアクセスされることを可能にする命令を実行するようにプログラムされるプロセッサとを備える、患者モニタを具備するパルス酸素測定システム。 - 前記複数のポートは、ユニバーサルシリアルバスポート、イーサネット(登録商標)ポート、および患者隔離ハードウェアを備えるシリアルポートのうちの2つまたはそれ以上を含む請求項1に記載のパルス酸素測定システム。
- 前記プロセッサは、患者リストバントの光学的スキャンを受け取り、それによって前記患者識別子を取得するようにさらにプログラムされる請求項1に記載のパルス酸素測定システム。
- 前記プロセッサは、
前記サードパーティ医療用デバイスを前記医療用ネットワークインターフェースとペアリングするためのパーミッションキーを生成し、
前記パーミッションキーを前記サードパーティ医療用デバイスに伝達し、
前記パーミッションキーを有する前記サードパーティ医療用デバイスから通信を受信し、
前記パーミッションキーが認証されたと決定したことに応答して前記サードパーティ医療用デバイスとの通信を確立するようにさらにプログラムされる請求項1に記載のパルス酸素測定システム。 - 前記パーミッションキーが認証されたと決定したことに応答して、前記プロセッサは、前記患者識別子および前記医療用ネットワークインターフェース識別子を前記サードパーティ医療用デバイスの識別子にリンクするようにさらにプログラムされる請求項4に記載のパルス酸素測定システム。
- 前記ワイヤレスドングルまたは前記医療用ネットワークインターフェースは、前記医療用ネットワークインターフェースの状況、第1の医療用デバイスの状況、第2の医療用デバイスの状況、または前記第1の医療用デバイスと前記第2の医療用デバイスとの間のペアリングの状況のうちの少なくとも1つを指示するように構成されるディスプレイをさらに備える請求項1に記載のパルス酸素測定システム。
- 前記ワイヤレスドングルまたは前記医療用ネットワークインターフェースは、前記医療用ネットワークインターフェースの状況、前記第1の医療用デバイスの状況、前記第2の医療用デバイスの状況、前記第1の医療用デバイスと前記第2の医療用デバイスとの間のペアリングの状況、または前記ワイヤレスドングルに関連付けられている電力状況のうちの少なくとも1つを指示するように構成されるライトをさらに備える請求項6に記載のパルス酸素測定システム。
- 前記複数のポートは、第1の色の第1のポートと、第2の色の第2のポートとを備える請求項1に記載のパルス酸素測定システム。
- 前記第1のポートから受信されるデータは前記患者識別子に自動的に関連付けられ、前記第2のポートから受信されるデータは第2の患者の第2の患者識別子に自動的に関連付けられる請求項8に記載のパルス酸素測定システム。
- 前記ワイヤレスドングルは2つのピースを備え、第1のピースは前記医療用ネットワークインターフェースに接続されたままであり、第2のピースは前記第1のピースから切断する請求項1に記載のパルス酸素測定システム。
- 前記第2のピースは、前記サードパーティ医療用デバイス内の第2のドングルの対応する第1のピースにおいて接続する請求項10に記載のパルス酸素測定システム。
- 前記プロセッサは、
前記サードパーティ医療用デバイスを前記医療用ネットワークインターフェースとペアリングするために第1の識別子にアクセスし、
前記第1の識別子を前記サードパーティ医療用デバイスに伝達し、
前記第1の識別子を有する前記サードパーティ医療用デバイスから通信を受信し、
前記第1の識別子が認証されたと決定したことに応答して前記サードパーティ医療用デバイスとの通信を確立するようにさらにプログラムされる請求項1に記載のパルス酸素測定システム。 - 前記医療用ネットワークインターフェースは前面と背面とを備え、前記前面は前記ワイヤレスドングルを受け入れるように構成されているインターフェースポートを備える請求項1に記載のパルス酸素測定システム。
- 前記ワイヤレスドングルはソケットハウジングと医療用デバイスコネクタとの間に延在する電源ケーブルに関連付けられ、前記電源ケーブルは前記ワイヤレスドングルに電力供給を行うように構成されている請求項13に記載のパルス酸素測定システム。
- 医療用ネットワークインターフェースの作動方法であって、
前記医療用ネットワークインターフェースのポート内へのワイヤレスドングルの挿入を検出するステップと、
前記挿入に応答して、
前記ワイヤレスドングルに識別子を供給して、前記ワイヤレスドングルがスタンドアロン医療用デバイスに挿入した後に前記識別子を前記スタンドアロン医療用デバイスに伝達するステップと、
前記医療用ネットワークインターフェースの前記ポートから前記ワイヤレスドングルを取り外した後に、
ハードウェアプロセッサにより、前記スタンドアロン医療用デバイスからペアリング要求信号を受信し、前記ペアリング要求信号は前記ワイヤレスドングルに以前に供給された前記識別子を含む、ステップと、
前記ペアリングの後に、
前記ペアリングが成功したことを示す視覚的または聴覚的指示の一方または両方を供給し、
前記スタンドアロン医療用デバイスからデータストリームをワイヤレス方式で受信し、前記データストリームは患者に関連付けられている患者データを含み、
前記データストリームに、前記患者の識別子および前記医療用ネットワークインターフェースの識別子を関連付けて、修正されたデータストリームを生成するステップと、
前記修正されたデータストリームを病院ネットワーク上でサーバに伝送し、前記修正されたデータストリームを前記サーバから複数のデバイスに配布することを可能にするステップとを含む医療用ネットワークインターフェースの作動方法。 - 前記供給するステップはライトを作動させるステップを含む請求項15に記載の医療用ネットワークインターフェースの作動方法。
- 前記供給するステップは情報をディスプレイ上に出力するステップを含み、任意選択で、前記情報は前記スタンドアロン医療用デバイスの前記識別子を含む請求項15に記載の医療用ネットワークインターフェースの作動方法。
- 前記ペアリング要求は、医療用ネットワークデバイスまたは前記スタンドアロン医療用デバイスのいずれかにPINまたは他の番号またはパスワードを入力することを必要としない修正されたBluetooth(登録商標)ペアリング要求である請求項15に記載の医療用ネットワークインターフェースの作動方法。
- 前記データストリームに前記スタンドアロン医療用デバイスの識別子を関連付けるステップをさらに含む請求項15に記載の医療用ネットワークインターフェースの作動方法。
- 前記患者が身に着けているリストブレスレットの光学的スキャンから前記患者識別子を取得するステップをさらに含む請求項15に記載の医療用ネットワークインターフェースの作動方法。
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