WO2010073452A1 - 薬剤投与装置 - Google Patents
薬剤投与装置 Download PDFInfo
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- WO2010073452A1 WO2010073452A1 PCT/JP2009/005498 JP2009005498W WO2010073452A1 WO 2010073452 A1 WO2010073452 A1 WO 2010073452A1 JP 2009005498 W JP2009005498 W JP 2009005498W WO 2010073452 A1 WO2010073452 A1 WO 2010073452A1
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- preparation
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- administration device
- drug administration
- drug
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
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- A61M5/5086—Devices for bringing media into the body in a subcutaneous, intra-vascular or intramuscular way; Accessories therefor, e.g. filling or cleaning devices, arm-rests having means for preventing re-use, or for indicating if defective, used, tampered with or unsterile for indicating if defective, used, tampered with or unsterile
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Definitions
- the operator When administering a drug solution from a drug syringe to a subject, the operator should prepare a drug syringe with an appropriate drug solution.
- the drug administration device relatively moves the piston member and the cylinder member with an injection execution mechanism in response to a predetermined operation, and administers the drug solution from the drug solution syringe to the subject.
- the present invention has been made in view of such points, and it is possible to easily and reliably detect the time from the start of use of a preparation syringe, and to automatically and accurately manage the effective use period of the preparation on the drug administration device side.
- An object of the present invention is to provide a highly safe drug administration device capable of preventing a mistake in administration of an expired preparation into the body.
- FIG. 1 is an overall perspective view of a drug administration device according to Embodiment 1 of the present invention.
- LCD10 which is a display means visually displays various necessary information such as remaining charge and air bleeding operation.
- the piston 15 advances while abutting against a seal rubber 11a provided at the rear end of the preparation syringe 11, and pushes out the preparation 11c toward the administration side.
- the detection of the syringe detection switch 13 for detecting the preparation syringe 11 and the syringe cover detection switch 14c for detecting the syringe cover enable the pressing of the drug administration button 9 and the administration of the preparation in the preparation syringe 11 is performed. It becomes possible.
- the injection needle detection lever mechanism 18 mounted on the syringe cover 5 includes an injection needle detection lever 18a, a detection projection 18b, an injection needle detection lever spring 18c, and a spring fixing plug 18d.
- the injection needle detection lever 18a As shown in FIG. 5, in the injection needle detection lever mechanism 18, when the injection needle 17 is attached to the tip of the syringe 5, the injection needle detection lever 18a is pressed by one end of the injection needle holding portion 17a, and the injection needle detection lever 18a. Moves against the spring force of the injection needle detection lever spring 18c, and the detection projection 18b moves. Thereby, it is possible to detect that the injection needle detection switch 19 provided in the medicine administration device 1 is pressed by the detection projection 18b and the injection needle 17 is attached to the syringe cover 5.
- the medicine administration device 1 includes a power button 6, an air release button 7, a completion button 8, a medicine administration button 9, a syringe cover detection switch 14c, an injection needle detection switch 19, a calendar 20, a timer 21, and an apparatus.
- the power button 6 is used for switching on / off the power of the drug administration device 1. By turning this on, the drug administration device 1 is activated to operate.
- Air release button 7 is used to perform an air release operation that is generally performed as a preparation prior to drug administration.
- the storage unit 23A includes a ROM, a RAM, and a semiconductor memory such as an electrically rewritable nonvolatile memory such as an EEPROM (electrically erasable ⁇ programmable ROM) or a flash memory (Flash memory). Record.
- the ROM stores in advance software programs executed by the microprocessor 23 and fixed data.
- the RAM is used as a so-called working memory that temporarily stores data related to administration such as administration time and dose, usage time count data, data used for calculation, calculation results, and the like.
- the RAM stores the expiration date / time data of a predetermined preparation even after the power button 6 is turned off by being backed up by power or by storing part or all of the above data in the EEPROM.
- the microprocessor 23 controls the operation of drug administration. Specifically, when the medicine administration button 9 is pressed, the microprocessor 23 confirms the syringe cover detection switch 14c and the injection needle detection switch 19 to confirm whether the preparation syringe 11 is normally attached. After confirming that the preparation syringe 11 is normally attached, an electric signal is sent to the motor drive circuit 24 to operate the piston drive motor 16. When the piston drive motor 16 rotates, the piston 15 (see FIG. 2) mechanically connected to the piston drive motor 16 advances, and the preparation in the preparation syringe 11 is administered into the body. The dosage of the preparation is determined and managed by counting the output signal (pulse signal) from the encoder 26 connected to the piston driving motor 16.
- an optical notification method such as a display LED
- notification by lighting and blinking is possible.
- the importance and urgency of the notification contents can be visually confirmed by switching each RGB color or lighting or flashing any color according to the ratio of each color. Can be notified. Therefore, it is effective for a hearing-impaired person.
- step S4 this flow is finished and the process proceeds to a drug administration process.
- the drug solution 44c side bypasses the rubber A44d via the syringe convex portion 44b. And mixed with the powder preparation 44a.
- the distance by which the piston 15 is advanced can be obtained by counting the number of pulses generated from the encoder 26 connected to the piston drive motor 16. Further, the microprocessor 23 can determine whether or not the powder preparation 44a is dissolved by the drug solution 44c by counting a predetermined number of pulses.
- FIG. 11 it is determined by pressing the completion button 8 that the preparation syringe 44 has been replaced, instead of being detected by the syringe detection switch 13 of FIG. 10.
- the completion button 8 is pressed, dissolution of the powder preparation 44a and the drug solution 44c is started and the timer 21 is moved. This is effective for a disposable and autodissolvable drug administration device.
- FIG. 12 is a flowchart showing an operation at the time of detecting the use start time of the drug administration device that does not have the injection needle attachment detection function according to Embodiment 3 of the present invention.
- step S21 the microprocessor 23 determines whether or not the preparation syringe 11 has been replaced. For example, it is detected by the method shown in FIGS. It is assumed that the disposable drug administration device is not used. The microprocessor 23 determines that it is a new preparation syringe 11 when the preparation syringe 11 is replaced. In the case of the preparation syringe 11 in use, the process proceeds to the standby state in step S25.
- the drug administration method described above can also be realized by a program for causing this drug administration method to function.
- This program is stored in a computer-readable recording medium.
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- Health & Medical Sciences (AREA)
- Public Health (AREA)
- Veterinary Medicine (AREA)
- Life Sciences & Earth Sciences (AREA)
- Animal Behavior & Ethology (AREA)
- General Health & Medical Sciences (AREA)
- Engineering & Computer Science (AREA)
- Vascular Medicine (AREA)
- Medical Informatics (AREA)
- Anesthesiology (AREA)
- Biomedical Technology (AREA)
- Heart & Thoracic Surgery (AREA)
- Hematology (AREA)
- Infusion, Injection, And Reservoir Apparatuses (AREA)
- Medical Preparation Storing Or Oral Administration Devices (AREA)
Abstract
Description
図1は、本発明の実施の形態1に係る薬剤投与装置の全体斜視図である。
図10は、本発明の実施の形態2に係る製剤を自動溶解させる薬剤投与装置の内部断面図である。図6と同一構成部分には同一符号を付して重複箇所の説明については、ここでは省略する。
実施の形態3は、針取付け検知機能をなくし、製剤投与時に押下される薬剤投与ボタン9が押された時のタイマ21の運針ついて、詳細に説明する。
2 筐体
3 先端キャップ
4 確認窓
5 シリンジカバー
5b 検出用突起
6 電源ボタン
7 エア抜きボタン
8 完了ボタン
9 薬剤投与ボタン
10 LCD
11,44 製剤シリンジ
11a シールゴム
11b シリンジ端面
11c 製剤
12 ピストンケース
13 シリンジ検出スイッチ
14 シリンジカバー検出部
14a シリンジカバー検出レバー
14b シリンジカバー検出レバースプリング
14c シリンジカバー検出スイッチ
15 ピストン
16 ピストン駆動用モータ
17 注射針
18 注射針検出レバー機構
18a 注射針検出レバー
18b 検出用突起
18c 注射針検出レバースプリング
18d バネ固定栓
19 注射針検出スイッチ
20 カレンダ
21 タイマ
21A 内蔵タイマ
22 電源部
23 マイクロプロセッサ
23A 記憶部
24 モータドライブ回路
25 電流検知回路
26 エンコーダ
27 表示部
28 サウンダ
29 バイブレータ
30 通信部
44a 粉末製剤
44b シリンジ凸部
44c 薬液
44d ゴムA
44e ゴムB
Claims (15)
- 製剤が入った製剤シリンジが装着され、生体に対して前記製剤を投与する薬剤投与装置であって、
前記製剤シリンジの交換を検出する製剤交換検出手段と、
前記製剤シリンジの交換時を、前記製剤の使用開始時として検出する使用開始検出手段と、
前記製剤が使用開始されてからの経過時間をカウントする使用時間カウント手段と、
カウントされた前記経過時間情報を報知する報知手段と、
を備える薬剤投与装置。 - 製剤が入った製剤シリンジが装着され、生体に対して前記製剤を投与する薬剤投与装置であって、
前記製剤シリンジ内の製剤を溶解する製剤溶解手段と、
前記製剤の溶解開始時からの計時により前記製剤が溶解されたことを検出する製剤溶解検出手段と、
前記製剤の溶解開始時を、前記製剤の使用開始時として検出する使用開始検出手段と、
前記製剤が使用開始されてからの経過時間をカウントする使用時間カウント手段と、
カウントされた前記経過時間情報を報知する報知手段と、
を備える薬剤投与装置。 - 製剤投与のための注射針の取付けを検出する注射針検出手段を備え、
前記使用時間カウント手段は、前記注射針の取付け検出後、前記製剤が使用開始されてからの経過時間をカウントする請求項1に記載の薬剤投与装置。 - 予め定められた前記製剤の使用期限データを記憶する記憶手段と、
前記製剤の使用期限と、前記使用時間カウント手段によりカウントされた前記経過時間とに基づいて前記製剤の使用期限までの残り時間を算出する残り時間算出手段とを備え、
前記報知手段は、前記残り時間算出手段により算出された前記製剤の使用期限までの残り時間を報知する請求項1に記載の薬剤投与装置。 - 前記報知手段は、前記使用時間カウント手段によりカウントされた経過時間、又は前記製剤の使用期限までの残り時間を、音又は音声で報知する請求項4記載の薬剤投与装置。
- 前記報知手段は、前記使用時間カウント手段によりカウントされた経過時間が所定の値を超えた場合、又は前記製剤の使用期限までの残り時間が所定の値以下の場合に、アラームで報知する請求項4記載の薬剤投与装置。
- 製剤投与を実行する製剤投与手段と、
前記使用時間カウント手段によりカウントされた経過時間が、前記製剤シリンジの有効使用期限を過ぎた場合、前記製剤投与手段の動作を停止する製剤投与防止手段と、
を備える請求項1記載の薬剤投与装置。 - 前記製剤溶解手段は、前記製剤シリンジを薬剤投与装置本体に装着した場合に、前記薬剤投与装置本体側において前記製剤シリンジが装着されたことを検知して、モータでピストンを押し出し、製剤を自動溶解する請求項2記載の薬剤投与装置。
- 前記製剤溶解手段は、前記薬剤投与装置本体の操作ボタンを押すことで、モータでピストンを押し出し、製剤を半自動溶解する請求項8記載の薬剤投与装置。
- 前記使用時間カウント手段は、前記製剤シリンジの交換検出後の最初のエア抜き、もしくは投与動作開始後の時点から前記経過時間の計測を開始する請求項7記載の薬剤投与装置。
- 前記報知手段は、製剤シリンジを装着する装着部に設けられている請求項1記載の薬剤投与装置。
- 前記製剤交換検出手段は、製剤シリンジの薬剤投与装置への装着時に、前記製剤シリンジの一端に接触することによりスイッチ機能を有する製剤シリンジ検出部を備える請求項1記載の薬剤投与装置。
- 前記製剤交換検出手段は、製剤シリンジの薬剤投与装置への装着時に、前記製剤シリンジカバーの一端に接触することにより前記製剤シリンジカバーを検出するシリンジカバー検出部を備える請求項1記載の薬剤投与装置。
- 前記注射針検出手段は、シリンジカバーへの注射針の取付け時に、注射針保持部の一端に接触する注射針検出レバーと、前記注射針検出レバーに連動するスイッチ機能を有する注射針検出部とを備える請求項3記載の薬剤投与装置。
- 前記製剤の使用期限を含む期限関連情報を入力する入力手段を備え、
前記使用時間カウント手段は、前記期限関連情報に基づいて前記経過時間をカウントする請求項1記載の薬剤投与装置。
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CN200980151091.6A CN102256644B (zh) | 2008-12-22 | 2009-10-20 | 药剂投予装置 |
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EP18157163.9A EP3348295B1 (en) | 2008-12-22 | 2009-10-20 | Medicament dispensing device |
US13/141,154 US9155835B2 (en) | 2008-12-22 | 2009-10-20 | Medicament dispensing device |
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EP19159153.6A EP3524298B1 (en) | 2008-12-22 | 2009-10-20 | Medicament dispensing device |
US14/835,040 US10052442B2 (en) | 2008-12-22 | 2015-08-25 | Medicine injection device |
US16/036,143 US10953163B2 (en) | 2008-12-22 | 2018-07-16 | Medicine injection device |
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Also Published As
Publication number | Publication date |
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EP3524298B1 (en) | 2021-04-21 |
JP2015163208A (ja) | 2015-09-10 |
US9155835B2 (en) | 2015-10-13 |
EP3348295A1 (en) | 2018-07-18 |
US20180318527A1 (en) | 2018-11-08 |
CN102256644A (zh) | 2011-11-23 |
CN102256644B (zh) | 2015-04-29 |
EP3524298A1 (en) | 2019-08-14 |
EP2361647B8 (en) | 2018-06-27 |
JP5760039B2 (ja) | 2015-08-05 |
US10953163B2 (en) | 2021-03-23 |
US20150359977A1 (en) | 2015-12-17 |
EP2361647B1 (en) | 2018-05-09 |
JPWO2010073452A1 (ja) | 2012-05-31 |
JP5827803B2 (ja) | 2015-12-02 |
EP3348295B1 (en) | 2019-04-03 |
JP6038220B2 (ja) | 2016-12-07 |
US20110257602A1 (en) | 2011-10-20 |
EP2361647A1 (en) | 2011-08-31 |
US10052442B2 (en) | 2018-08-21 |
JP2013188519A (ja) | 2013-09-26 |
EP2361647A4 (en) | 2015-08-19 |
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