JP2004097757A - Transfusion apparatus with inter-apparatus cooperative long-term liquid medicine injection function - Google Patents
Transfusion apparatus with inter-apparatus cooperative long-term liquid medicine injection function Download PDFInfo
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- JP2004097757A JP2004097757A JP2002303612A JP2002303612A JP2004097757A JP 2004097757 A JP2004097757 A JP 2004097757A JP 2002303612 A JP2002303612 A JP 2002303612A JP 2002303612 A JP2002303612 A JP 2002303612A JP 2004097757 A JP2004097757 A JP 2004097757A
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- Prior art keywords
- infusion device
- infusion
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Abstract
Description
【0001】
【発明に属する技術分野】
本発明は、複数台の輸液装置A1、輸液装置B2、輸液装置C3を通信ライン4で結び、まず輸液装置A1で薬液の注入を開始し、注入が終わると自動的に次に控える輸液装置B2が動きだす長期の薬液注入を行う輸液装置に関するもので、一般に行われている1台の輸液装置で薬液を人が交換し、輸液を続ける方法よりも脈流が少なく、患者の負担を軽減できる安定した装置間連携長期薬液注入機能付き輸液装置に関するものである。
【0002】
【従来の技術】
現在の輸液装置における微量の薬液を長期に渡り注入する場合の注入方法は、輸液装置1台で薬液の入った容器の入れ替えにより薬液注入を行っているが、この方法であると容器の入れ替え時に、薬液の注入が一時中断し、患者が危険におかされる場合がある。しかも、新たな注入開始により脈流などが起こり、体内薬液濃度が急変する恐れがある。又故障が原因で停止した時等、生命に危険が及ぶ場合バックアップ用の機器を準備しているが、正常な場合使用されないので安定注入には寄与していない。
【0003】
【発明が解決しようとする課題】
本発明は、その欠点を除いて、微量の薬液を長期に渡り連続に注入する、安定した輸液装置である。
【0004】
【課題を解決するための手段】
いま、その手段を第1図の流れ図に基づいて説明すると、
(イ)まず、お互いの装置が通信ライン4でつながっているか確認する。
(ロ)輸液装置A1を動作開始すると輸液装置B2に動作開始信号を送る。
(ハ)輸液装置B2は動作開始信号を受け取り、薬液注入の連携を行う信号を輸液装置A1に送る。
(ニ)輸液装置A1は注入量、予定量、積算量、その他輸液に関するデータを輸液装置B2に送る。
(ホ)輸液装置Bは受け取ったデータを注入すべき設定値を計算し、保存する。
(ヘ)輸液装置Aが動作中は(ハ)、(ニ)を繰り返す。
(ト)輸液装置Aが終了すると、輸液装置Bが動作開始し、輸液装置A1に動作開始信号を送る。
(チ)輸液装置A1は動作開始信号を受け取り、薬液注入の連携を行う信号を輸液装置B2に送る。
(リ)輸液装置B2は注入量、予定量、積算量、その他輸液に関するデータを輸液装置A1に送る。
以上のように装置するプログラムICを輸液装置内部に装備する。
【0005】
【発明の実施の形態】
次に本発明の実施の形態を述べると、輸液装置A1、輸液装置B2、輸液装置C3を通信ライン4で結び、1台目の輸液装置A1の注入を開始し、そして注入が終了した時点、又は注入途中で、その時の設定値、計算結果等のデータを次の輸液装置に転送し、次の輸液装置でそのデータをもとに注入すべき設定値を計算し注入を開始する。これ以降の輸液装置C3は前述の形態の繰り返しである。
【0006】
なお、本発明の実施に当たって次の如き事ができる。
(a)通信ライン4をケーブルではなく、PHS端末にすることができる。
【0007】
【発明の効果】
したがって、患者にとって負担が少なく、又操作者にも負担が少ない安定した連携多量薬液注入機能付き輸液装置である。
【図面の簡単な説明】
【図1】本発明のプログラムIC流れ図
【図2】本発明の使用環境斜視図
【符号の説明】
1は輸液装置A
2は輸液装置B
3は輸液装置C
4は通信ライン
5は薬液容器A
6は薬液容器B
7は薬液容器C
8は輸液チューブ選択器
9は輸液チューブ
10は生体[0001]
TECHNICAL FIELD OF THE INVENTION
According to the present invention, a plurality of infusion devices A1, B2, and C3 are connected by a communication line 4, and the infusion device A1 starts injecting a drug solution, and after the infusion is completed, automatically stops the next infusion device B2. Is related to an infusion device that performs a long-term infusion of a medicinal solution, which has a smaller pulsating flow than a method in which a single infusion device is used by a person to exchange a medicinal solution and continue the infusion, thereby reducing the burden on the patient. The present invention relates to an infusion device having a long-term chemical solution injection function between devices.
[0002]
[Prior art]
In the current infusion device, when injecting a small amount of drug solution over a long period of time, the infusion method is to inject the drug solution by replacing the container containing the drug solution with one infusion device. In some cases, the infusion of the drug solution may be interrupted and the patient may be put at risk. In addition, there is a possibility that a pulse flow or the like is generated by the start of a new injection, and the concentration of the drug solution in the body is suddenly changed. In the event of a danger to life, such as when the machine is stopped due to a failure, a backup device is prepared. However, since it is not used in a normal condition, it does not contribute to stable injection.
[0003]
[Problems to be solved by the invention]
The present invention is a stable infusion apparatus that injects a trace amount of a drug solution continuously over a long period of time, excluding its disadvantages.
[0004]
[Means for Solving the Problems]
Now, the means will be described with reference to the flowchart of FIG.
(A) First, it is checked whether the devices are connected by the communication line 4.
(B) When the operation of the infusion device A1 is started, an operation start signal is sent to the infusion device B2.
(C) The infusion device B2 receives the operation start signal and sends a signal for coordinating the infusion of the drug solution to the infusion device A1.
(D) The infusion device A1 sends the infusion amount, the scheduled amount, the integrated amount, and other data relating to the infusion to the infusion device B2.
(E) The infusion device B calculates and stores a set value at which the received data is to be injected.
(F) While the infusion device A is operating, (c) and (d) are repeated.
(G) When the infusion device A ends, the infusion device B starts operating and sends an operation start signal to the infusion device A1.
(H) The infusion device A1 receives the operation start signal and sends a signal for coordinating the infusion of the drug solution to the infusion device B2.
(I) The infusion device B2 sends the infusion amount, the scheduled amount, the integrated amount, and other data relating to the infusion to the infusion device A1.
The program IC to be installed as described above is provided inside the infusion device.
[0005]
BEST MODE FOR CARRYING OUT THE INVENTION
Next, according to an embodiment of the present invention, the infusion device A1, the infusion device B2, and the infusion device C3 are connected by the communication line 4, the injection of the first infusion device A1 is started, and the injection is completed. Alternatively, during the injection, the data such as the set value and the calculation result at that time is transferred to the next infusion device, and the next infusion device calculates the set value to be injected based on the data and starts the injection. The subsequent infusion device C3 is a repetition of the above-described embodiment.
[0006]
In implementing the present invention, the following can be performed.
(A) The communication line 4 can be a PHS terminal instead of a cable.
[0007]
【The invention's effect】
Therefore, it is a stable infusion device with a cooperative large-volume medicinal solution injecting function that has a small burden on the patient and a small burden on the operator.
[Brief description of the drawings]
FIG. 1 is a flowchart of a program IC of the present invention. FIG. 2 is a perspective view of a use environment of the present invention.
1 is an infusion device A
2 is an infusion device B
3 is an infusion device C
4 is communication line 5 is chemical solution container A
6 is a chemical container B
7 is a chemical solution container C
8 is an infusion tube selector 9 is an
Claims (2)
(ロ)輸液装置A1を動作開始すると輸液装置B2に動作開始信号を送る。
(ハ)輸液装置B2は動作開始信号を受け取り、薬液注入の連携を行う信号を輸液装置A1に送る。
(ニ)輸液装置A1は注入量、予定量、積算量、その他輸液に関するデータを輸液装置B2に送る。
(ホ)輸液装置Bは受け取ったデータを注入すべき設定値を計算し、保存する。
(ヘ)輸液装置Aが動作中は(ハ)、(ニ)を繰り返す。
(ト)輸液装置Aが終了すると、輸液装置Bが動作開始し、輸液装置A1に動作開始信号を送る。
(チ)輸液装置A1は動作開始信号を受け取り、薬液注入の連携を行う信号を輸液装置B2に送る。
(リ)輸液装置B2は注入量、予定量、積算量、その他輸液に関するデータを輸液装置A1に送る。
以上のように装置するプログラムICを輸液装置内部に装備することを特徴とする装置間連携長期薬液注入機能付き輸液装置。(A) Check whether the devices are connected by the communication line 4.
(B) When the operation of the infusion device A1 is started, an operation start signal is sent to the infusion device B2.
(C) The infusion device B2 receives the operation start signal and sends a signal for coordinating the infusion of the drug solution to the infusion device A1.
(D) The infusion device A1 sends the infusion amount, the planned amount, the integrated amount, and other data relating to the infusion to the infusion device B2.
(E) The infusion device B calculates and stores a set value at which the received data is to be injected.
(F) While the infusion device A is operating, (c) and (d) are repeated.
(G) When the infusion device A ends, the infusion device B starts operating and sends an operation start signal to the infusion device A1.
(H) The infusion device A1 receives the operation start signal and sends a signal for coordinating the infusion of the drug solution to the infusion device B2.
(I) The infusion device B2 sends the infusion amount, the scheduled amount, the integrated amount, and other data relating to the infusion to the infusion device A1.
An infusion device with a long-term cooperative drug solution injecting function, wherein the program IC to be implemented as described above is provided inside the infusion device.
付き輸液装置。2. The infusion device according to claim 1, wherein the communication line 4 is a PHS communication.
Priority Applications (1)
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JP2002303612A JP2004097757A (en) | 2002-09-10 | 2002-09-10 | Transfusion apparatus with inter-apparatus cooperative long-term liquid medicine injection function |
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JP2002303612A JP2004097757A (en) | 2002-09-10 | 2002-09-10 | Transfusion apparatus with inter-apparatus cooperative long-term liquid medicine injection function |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2011206571A (en) * | 2005-05-14 | 2011-10-20 | B Braun Melsungen Ag | Method and device for controlling a plurality of infusion pumps |
JP2012090965A (en) * | 2010-09-29 | 2012-05-17 | Terumo Corp | Medical pump housing rack and control method thereof |
-
2002
- 2002-09-10 JP JP2002303612A patent/JP2004097757A/en active Pending
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2011206571A (en) * | 2005-05-14 | 2011-10-20 | B Braun Melsungen Ag | Method and device for controlling a plurality of infusion pumps |
US8388598B2 (en) | 2005-05-14 | 2013-03-05 | B. Bruan Medizinelektronik GmbH & Co. KG | Method and device for controlling several infusion pumps |
JP2014217784A (en) * | 2005-05-14 | 2014-11-20 | ベー・ブラウン・メルズンゲン・アクチエンゲゼルシャフトB.Braun Melsungen Aktiengesellschaft | Method and device for controlling several infusion pumps |
JP2016187587A (en) * | 2005-05-14 | 2016-11-04 | ベー・ブラウン・メルズンゲン・アクチエンゲゼルシャフトB.Braun Melsungen Aktiengesellschaft | Method and device for controlling multiple infusion pumps |
EP1881858B1 (en) | 2005-05-14 | 2020-09-23 | B. Braun Melsungen AG | Device for controlling several infusion pumps |
JP2012090965A (en) * | 2010-09-29 | 2012-05-17 | Terumo Corp | Medical pump housing rack and control method thereof |
EP2623141A4 (en) * | 2010-09-29 | 2017-06-07 | Terumo Kabushiki Kaisha | Medical pump housing rack and control method thereof |
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