JP2005224597A - Automatic reinfusion apparatus - Google Patents

Automatic reinfusion apparatus Download PDF

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JP2005224597A
JP2005224597A JP2004335373A JP2004335373A JP2005224597A JP 2005224597 A JP2005224597 A JP 2005224597A JP 2004335373 A JP2004335373 A JP 2004335373A JP 2004335373 A JP2004335373 A JP 2004335373A JP 2005224597 A JP2005224597 A JP 2005224597A
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blood
opening
line
filtration
fluid
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JP4655596B2 (en
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Kunihiko Yamanaka
邦彦 山中
Katsunori Masaoka
勝則 正岡
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JMS Co Ltd
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JMS Co Ltd
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Priority to KR1020077010071A priority patent/KR101058869B1/en
Priority to CN2005800395452A priority patent/CN101060869B/en
Priority to US11/667,529 priority patent/US20070262013A1/en
Priority to EP05719313A priority patent/EP1813296A1/en
Priority to CA002587059A priority patent/CA2587059A1/en
Priority to BRPI0518345-6A priority patent/BRPI0518345A2/en
Priority to PCT/JP2005/002644 priority patent/WO2006054367A1/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an automatic reinfusion apparatus, when reinfused to a patient after finishing a hemodialysis, eliminating contamination and a medical error and preventing it from getting a burden of a medical worker by facilitating an operation. <P>SOLUTION: This automatic reinfusion apparatus, in a hemodialysis circuit, is provided with a fluid replacement supply source and a means of opening/closing a fluid replacement supply source in the fluid replacement line; dialysis fluid supply/discharge lines for perfusing the fluid to a dialyzer; fluid feeding means in the dialysis supply/discharge lines respectively; and at least a single filtration/inverse filtration third fluid feeding means capable of performing normal/inverse rotation for performing the filtration and the inverse filtration and controlling a flow rate, and a removed water discharging means. The blood feeding means and the filtration/inverse filtration third fluid feeding means are connected by an co-operating control means co-operatingly controlling the blood feeding means, the fluid feeding means, the opening/closing means for opening/closing the fluid replacement line, and opening/closing means between an artery connecting end and a fluid replacement line branch part. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

本発明は、今まで人手で行ってきた血液透析やそれに関わる血液回収(返血)等の一連の操作をできるだけ自動化し、省力化や誤操作の防止が可能な血液透析装置、特に自動返血装置に関する。   The present invention is a hemodialysis apparatus, particularly an automatic blood return apparatus, which can automate as much as possible a series of operations such as hemodialysis and blood collection (returning blood) which have been performed manually until now, and can save labor and prevent erroneous operations. About.

血液透析装置は腎不全患者や薬物中毒患者の血液を浄化するための医療用機器である。血液透析療法の機構は、通常、血液透析器(ダイアライザー)、血液が循環する血液回路および透析液供給系の3つの要素より構成されている。血管内と2カ所の穿刺針(シングルニードルの場合は穿刺針が1本になる)で直接接続した血液回路により体外循環を維持しつつ、血液を血液回路の中途に連結した血液透析器の中空糸内腔側のコンパートメントに流入させる。   A hemodialysis apparatus is a medical device for purifying the blood of patients with renal failure and drug addicts. The mechanism of hemodialysis therapy is usually composed of three elements: a hemodialyzer (dialyzer), a blood circuit through which blood circulates, and a dialysate supply system. A hollow hemodialyzer with blood connected to the middle of the blood circuit while maintaining extracorporeal circulation by a blood circuit directly connected to the blood vessel and two puncture needles (in the case of a single needle, there is only one puncture needle) It flows into the compartment on the thread lumen side.

一方、血液透析器の中空糸外側のコンパートメントには、血液の流れと反対方向に透析液と称される電解質液を流入させる。血液透析器の両コンパートメントは透析膜と呼ばれる分離膜で隔てられ、血液と透析液が反対方向に流れる間に、分離膜の両側の濃度勾配に応じた物質の拡散移動が発生し、尿毒素や中毒物質の除去や不足物質の補充が行われる。一般に、上述の血液透析装置は体外循環の維持、透析液の安定供給、ならびに血液からの余剰な水分の除去を制御する装置等によって構成されている。   On the other hand, an electrolyte solution called dialysate flows into the compartment outside the hollow fiber of the hemodialyzer in the direction opposite to the blood flow. Both compartments of the hemodialyzer are separated by a separation membrane called a dialysis membrane, and while the blood and dialysate flow in opposite directions, diffusion movement of substances according to the concentration gradient on both sides of the separation membrane occurs, and uremic toxins and Addictive substances are removed and deficient substances are replenished. In general, the hemodialysis apparatus described above is constituted by a device that controls the maintenance of extracorporeal circulation, the stable supply of dialysate, and the removal of excess water from blood.

従来の血液透析監視装置は、透析治療中の補液操作、血液透析(血液循環)や透析終了後の返血操作が別々の行程としてなされており、特に返血操作は刺入された穿刺針を血管から抜去し、患者体内に空気が注入されないように留意しながら、且つ返血する順序を間違わないように行わなくてはならなかった。すなわち、従来は生理食塩水を回路に注入して返血を開始し、途中まで生理食塩水に置換された後、回路内に空気をいれながら返血を行う、いわゆる「エアー返血」が実施されていた。また、回路内の段差部分やチャンバー部に滞留する空気が遊離することによっても空気の混入の危険性が存在している。さらに、動脈側の穿刺針を抜針して動脈側回路端から生理食塩水を注入する手順において、静脈側を間違って先に抜針してしまうなどのミスがあった。
そのため、医療従事者にとっては、精神的に負担となり、少なからぬ時間を返血操作に取られていた。
In conventional hemodialysis monitoring devices, fluid replacement operations during dialysis treatment, hemodialysis (blood circulation), and blood return operations after dialysis are completed as separate steps. In particular, blood return operations are performed using a inserted puncture needle. The blood vessel was removed from the blood vessel, and care must be taken so that air is not injected into the patient's body. In other words, the so-called “air return” is performed, in which physiological saline is injected into the circuit to start blood return, and after being replaced with the saline solution halfway, the blood is returned while the air is in the circuit. It had been. There is also a risk of air contamination due to the release of air staying in the stepped part or the chamber part in the circuit. Furthermore, in the procedure of extracting the puncture needle on the arterial side and injecting physiological saline from the end of the artery side circuit, there was a mistake such as erroneously extracting the venous side first.
Therefore, it was a mental burden for the medical staff, and a considerable amount of time was taken for blood return operation.

一方、透析及び返血操作を確実に行うために特許文献1には、血液取出口と戻り口を結ぶ主配管に、分岐管を介して接続した補液供給手段を設けると共に、前記分岐管の分岐点と血液取出口との間に前記主配管を開閉する第1クランプと、第2のチャンバーと血液戻り口間に設けられた主配管を開閉する第2のクランプと、前記分岐管に設けられ該分岐管を開閉する第3のクランプを設けると共に、血液取出口と戻り口近傍に気泡検知器を設けて血液透析及び返血を行う方法が開示され、返血操作の効率化を意図している。
特開平6−261938号公報
On the other hand, in order to reliably perform dialysis and blood return operation, Patent Document 1 provides a replacement fluid supply means connected via a branch pipe to the main pipe connecting the blood outlet and the return port, and branches the branch pipe. A first clamp that opens and closes the main pipe between the point and the blood outlet; a second clamp that opens and closes the main pipe provided between the second chamber and the blood return port; and the branch pipe. A method for performing hemodialysis and blood return by providing a third clamp for opening and closing the branch pipe and providing a bubble detector in the vicinity of the blood outlet and the return port is disclosed, with the intention of improving the efficiency of the blood return operation. Yes.
Japanese Patent Laid-Open No. 6-261938

上記のように、血液透析終了後に返血操作に移行する際に、細菌汚染や接続・操作順序における操作ミス等の危険性があり、改善が望まれていた。一方、前記先行例のような方法では、血液回路内へ注入する液体は生理食塩水(補液瓶空の薬液)だけを考慮しているため、動脈側への返血行程中の血液回路内圧は大きく変動することとなり、回路内に閉塞が生じた場合でも検出することが不可能であった。
従って、本発明は血液透析終了後、患者に返血を行う際に、汚染や医療ミスや、操業上の問題がなく、しかも医療従事者の負担とならないように、容易且つ簡便な操作のできる自動返血装置を提供することにある。
As described above, there is a risk of bacterial contamination, operation mistakes in connection / operation sequence, and the like when moving to a blood return operation after completion of hemodialysis, and improvement has been desired. On the other hand, in the method as in the previous example, since the liquid to be injected into the blood circuit only considers physiological saline (medical solution in the replacement fluid bottle), the pressure in the blood circuit during the return stroke to the artery side is It would vary greatly and it was impossible to detect even when a blockage occurred in the circuit.
Therefore, the present invention can be operated easily and simply so that there is no contamination, medical error or operational problem when returning blood to the patient after hemodialysis is completed, and it does not become a burden on the medical staff. It is to provide an automatic blood return device.

以下の説明で各部分に付けた符号(数字)は、添付した図の符号(数字)と一致させてあるが、これに限定するものではない。
本発明においては、血液透析器2の上流側の動脈側(血液)回路1と、同じく下流側の静脈側(血液)回路10と、動脈側回路1から分岐し、前記回路に補液を行うための補液ライン5と補液ラインを開閉する手段18を有し、
前記動脈側回路1は、穿刺手段(図示せず)を介して患者動脈と連絡される動脈側接続端Aと、動脈側接続端Aと補液ライン分岐部5aの間に開閉手段19とを有し、血液透析器2と接続するための透析器接続端A´と、前記の両端部A,A´の中間にそれぞれ設けられた動脈チャンバー4、血液ポンプ3、および前記補液ライン分岐部5a、気泡検出手段6と開閉手段19を有し、
前記静脈側回路10は、血液透析器2と接続するための透析器接続端B´と静脈側接続端Bと、前記両端部B´Bの中間部に設けられた静脈チャンバー11、気泡検出手段12、および開閉手段13とを有し、
前記補液ライン5は、補液供給源7と補液ラインを開閉する手段18を有し、
透析器2に潅流する透析液供給ライン20と透析液排液ライン21を有し前記透析供給ライン20及び透析液排液ライン21にそれぞれ送液手段P2,P3を有し、透析液供給ライン20又は透析液排液ライン21のいずれかに前記送液手段と並列に濾過及び逆濾過を行うための正逆回転可能で流量制御が可能な少なくとも一つ以上の濾過/逆濾過第3送液手段P1および徐水排液手段P4を有し、前記血液ポンプ3と前記濾過/逆濾過第3送液手段P1とは、これらの血液ポンプ3、濾過/逆濾過第3送液手段P1、静脈側回路の開閉手段13と補液開閉手段18と前記動脈回路1上の開閉手段19を連動して制御するための連動制御手段16によって、連絡されていることを特徴とする自動返血装置によって、上記課題を解決した。
In the following description, the reference numerals (numbers) attached to the respective parts are the same as the reference numerals (numbers) in the attached drawings, but are not limited thereto.
In the present invention, the artery side (blood) circuit 1 on the upstream side of the hemodialyzer 2, the vein side (blood) circuit 10 on the downstream side, and the artery side circuit 1 are branched to supply fluid to the circuit. The fluid replacement line 5 and means 18 for opening and closing the fluid replacement line,
The arterial circuit 1 has an arterial connection end A that communicates with a patient's artery via a puncturing means (not shown), and an opening / closing means 19 between the arterial connection end A and the replacement fluid branch 5a. A dialyzer connection end A ′ for connection to the hemodialyzer 2, an arterial chamber 4, a blood pump 3, and the replacement fluid line branching portion 5 a provided in the middle of the both end portions A and A ′, Having bubble detection means 6 and opening / closing means 19;
The venous side circuit 10 includes a dialysis machine connection end B ′ and a venous side connection end B for connection to the hemodialyzer 2, a venous chamber 11 provided in an intermediate part between the both end parts B′B, and bubble detection means. 12, and opening / closing means 13;
The replacement fluid line 5 has a replacement fluid supply source 7 and means 18 for opening and closing the replacement fluid line.
A dialysate supply line 20 for perfusing the dialyzer 2 and a dialysate drainage line 21 are provided, and the dialysate supply line 20 and the dialysate drainage line 21 are provided with liquid feeding means P2 and P3, respectively. Alternatively, at least one third filtration / reverse filtration third feed means capable of forward / reverse rotation and flow rate control for performing filtration and reverse filtration in parallel with the liquid feed means in any of the dialysate drainage lines 21 P1 and slow water draining means P4. The blood pump 3 and the filtration / back-filtration third liquid feeding means P1 are the blood pump 3, the filtration / back-filtration third liquid feeding means P1, the venous side By means of an automatic blood return device, the circuit opening and closing means 13, the fluid replacement opening and closing means 18 and the interlocking control means 16 for controlling the opening and closing means 19 on the arterial circuit 1 in conjunction with each other are connected. Solved the problem.

さらに本発明は、前記連動制御手段によって、各行程や状況に応じて、血液ポンプ3と濾過/逆濾過第3送液手段P1の両者の流量(流速)が実質的に等しくし、或いは多くし、或いは少なくなるように連動制御することが可能となる。
また、前記静脈チャンバー11に、該チャンバー内の液をオーバーフローさせるためのオーバーフローライン14が設けられ、該オーバーフローラインに開閉手段15が装着されている。
Further, according to the present invention, the flow rate (flow velocity) of both the blood pump 3 and the filtration / back-filtration third liquid feeding means P1 is substantially equalized or increased by the interlock control means according to each stroke and situation. Alternatively, the interlocking control can be performed so as to reduce the number.
The venous chamber 11 is provided with an overflow line 14 for overflowing the liquid in the chamber, and an opening / closing means 15 is attached to the overflow line.

前記補液ライン5において、前記補液ライン分岐部5aと血液ポンプ3部位あるいは動脈側接続端Aと補液ライン分岐部5aの間の開閉手段18部位との連通回路上に圧力計測手段Pを設けている。
さらに本発明は、圧力計測手段Pによる血液回路内圧によって、血液ポンプ3と送液手段P2,P3と濾過/逆濾過第3送液手段P1と補液ラインを開閉するための開閉手段18と、動脈接続端と補液ライン分岐部の間の開閉手段とを連動して制御することができる。
In the replacement fluid line 5, pressure measuring means P is provided on a communication circuit between the replacement fluid line branch 5 a and the blood pump 3 site or the open / close means 18 between the arterial connection end A and the replacement fluid branch 5 a. .
Further, according to the present invention, the blood circuit 3, the liquid feeding means P2 and P3, the filtration / back-filtration third liquid feeding means P1, the opening / closing means 18 for opening and closing the replacement fluid line, and the arterial line are controlled by the blood circuit internal pressure by the pressure measuring means P. The opening / closing means between the connecting end and the replacement fluid line branching portion can be controlled in conjunction with each other.

なお、本発明において、(回路の)上流側、下流側とは、血液回路を患者の動脈・静脈と連絡して、通常に血液透析処置を行った場合の流路方向(動脈側→静脈側)を基準としている。   In the present invention, the upstream side (downstream side) means the direction of the flow path (arterial side → venous side) when the blood circuit is connected to the patient's artery / vein and normal hemodialysis is performed. ).

上記の構成において、本発明の自動返血装置は、血液透析処理の際に、補液ライン5の開閉手段18と前記動脈回路1上の開閉手段19を駆動、且つ血液ポンプ3を駆動させることで、血液透析中に急速補液を行うことが可能となり、また血液ポンプ3や補液ライン上の開閉手段18及び前記動脈回路上の開閉手段19を連動制御(調節)することで血液透析処理の行程から返血行程に自動的に移行させることができる。透析が完了して返血動作を開始すると、補液ライン上の開閉手段18を開くことに連動して動脈回路上の開閉手段(19)を閉じて、返血動作を開始する。
本発明の構成によれば、透析処理から返血行程に移行する場合に、血液透析→返血操作の際し、患者体内からの穿刺針の抜去操作や回路の脱着操作を行わなくて良いため、抜針順序や脱着部位におけるミスを防止できる。すなわち、従来の返血操作では静脈方向へだけ血液を送って返血をしていたのに対し、本発明では動脈及び静脈両方向に返血を行うため返血行程が完了するまで抜針する必要がないからである。
また、動脈側回路1および静脈側回路10の双方に気泡検出手段6,12を装着していることによって、患者の血管に気泡が流入するのを防止することができる。
In the above configuration, the automatic blood return device of the present invention drives the opening / closing means 18 of the replacement fluid line 5 and the opening / closing means 19 on the arterial circuit 1 and the blood pump 3 during hemodialysis. It is possible to perform rapid fluid replacement during hemodialysis, and by controlling and adjusting the opening / closing means 18 on the blood pump 3 and the fluid replacement line and the opening / closing means 19 on the arterial circuit, the hemodialysis process can be performed. It is possible to automatically shift to the blood return process. When the dialysis is completed and the blood returning operation is started, the opening / closing means (19) on the arterial circuit is closed in conjunction with opening of the opening / closing means 18 on the replacement fluid line, and the blood returning operation is started.
According to the configuration of the present invention, when moving from the dialysis process to the blood return process, it is not necessary to perform the operation of removing the puncture needle from the patient's body or the operation of detaching the circuit during the blood dialysis → blood return operation. , It is possible to prevent mistakes in the needle removal order and the desorption site. That is, in the conventional blood return operation, blood was returned only in the venous direction, whereas in the present invention, the blood is returned in both the arterial and venous directions. Because there is no.
Further, since the bubble detection means 6 and 12 are attached to both the artery side circuit 1 and the vein side circuit 10, it is possible to prevent bubbles from flowing into the blood vessels of the patient.

また、血液ポンプ3と補液ライン5の開閉手段18と濾過/逆濾過第3送液手段P1の各流量、および静脈側回路10の開閉手段12を連動制御することによって、回路内の血液や補液の流れ方向や流量をコントロールすることが可能となる。その結果、血液透析処理から返血操作への移行も容易で、且つ迅速・確実に行うことができる。   In addition, blood in the circuit and fluid replacement are controlled by interlockingly controlling the flow rates of the opening / closing means 18 of the blood pump 3 and the replacement fluid line 5 and the flow rate of the filtration / reverse filtration third fluid supply means P1 and the opening / closing means 12 of the venous circuit 10. It is possible to control the flow direction and flow rate. As a result, the transition from hemodialysis treatment to blood return operation is easy, and can be performed quickly and reliably.

本発明に係る自動返血装置によれば、血液透析中の補液操作や透析終了後の返血操作において、汚染や誤操作がなく安全であり、且つ人手のかかる操作が自動化でき、業務の効率化、省力化が可能となる。また、操作が自動化、簡便化されることから、従来のように従事者の経験や熟練も特に必要としない。   According to the automatic blood return apparatus of the present invention, in the replacement operation during hemodialysis and the blood return operation after the completion of dialysis, there is no contamination or erroneous operation, and the manual operation can be automated, thereby improving the efficiency of work. Labor saving is possible. Further, since the operation is automated and simplified, the experience and skill of the worker are not particularly required as in the past.

さらに本発明において、以下に記載するような種々の実施形態によって、特有の効果を得ることができる。即ち、前記静脈側回路10に、静脈側回路を開閉するための開閉手段13を有しており、前記連動制御手段16が前記開閉手段13と連絡され、前記開閉手段13をも連動制御できる前記の自動返血装置である。
本発明の自動返血装置では、補液ライン5の開閉手段18と濾過/逆濾過第3送液手段P1の流量と血液ポンプ3の送血流量の比率あるいは送液方向を調整することによって、流路の規制や選択がより確実、安全なものとなる。
Furthermore, in the present invention, unique effects can be obtained by various embodiments as described below. That is, the venous circuit 10 has an opening / closing means 13 for opening and closing the venous circuit, and the interlocking control means 16 is connected to the opening / closing means 13 so that the opening / closing means 13 can also be interlocked. Is an automatic blood return device.
In the automatic blood return device of the present invention, the flow rate is adjusted by adjusting the ratio or flow direction of the flow rate of the open / close means 18 of the replacement fluid line 5 and the third liquid supply means P1 of the filtration / reverse filtration and the blood pump 3 and the blood flow rate. Road regulation and selection will be more reliable and safe.

本発明は前記連動制御手段16によって、各行程や状況に応じて、血液ポンプ3と濾過/逆濾過第3送液手段P1の両者の流量(流速)が実質的に等しくし、或いは多くし、或いは少なくなるように連動制御することが可能な前記の自動返血装置である。上記の構成によって、返血の方向や順序、返血形態(動・静脈同時、または一方ずつ順番に返血する)を自由に変更することができ、貴重な血液を無駄にしないで回収できる。   In the present invention, the interlock control means 16 makes the flow rates (flow velocity) of both the blood pump 3 and the filtration / back-filtration third liquid feeding means P1 substantially equal to or larger according to each stroke and situation, Or it is the said automatic blood return apparatus which can carry out interlocking control so that it may decrease. With the above configuration, the direction and sequence of blood return, and the blood return form (returning blood and veins simultaneously or one after the other in order) can be freely changed, and valuable blood can be collected without wasting it.

或いは、前記静脈チャンバー11に、該チャンバー内の液をオーバーフローさせるためのオーバーフローライン14が設けられ、該オーバーフローラインに開閉手段15が装着されている前記のいずれかに記載された自動返血装置である。
上記の構成によって、プライミング時に補液を注入しつつ、その液の一部をオーバーフローライン14から流出させることができ、効率的な洗浄、気泡除去が可能となる。
Alternatively, the automatic blood return apparatus according to any one of the above, wherein the venous chamber 11 is provided with an overflow line 14 for overflowing the liquid in the chamber, and the opening / closing means 15 is attached to the overflow line. is there.
With the above-described configuration, a part of the liquid can be allowed to flow out from the overflow line 14 while injecting the replacement liquid during priming, and efficient cleaning and air bubble removal are possible.

前記補液ライン5において、前記補液ライン分岐部5aと血液ポンプ3部位あるいは動脈側接続端Aと補液ライン分岐部5aの間の開閉手段19部位との連通回路上に圧力計測手段23を設けた前記のいずれかに記載された自動返血装置である。補液ライン5の上記部位に圧力計測手段23を設けることによって、異常な圧力上昇又は減圧や現在の送液状態を防止、または推測することができ、有効である。   In the fluid replacement line 5, the pressure measuring means 23 is provided on a communication circuit between the fluid replacement line branch 5a and the blood pump 3 site or the opening / closing means 19 site between the arterial connection end A and the fluid replacement line branch 5a. The automatic blood return device described in any of the above. Providing the pressure measuring means 23 at the site of the replacement fluid line 5 is effective because it can prevent or estimate an abnormal pressure rise or pressure reduction and the current liquid supply state.

以下、図面によって、本発明の1つの実施形態をより詳細に説明する。
図1〜5に、自動返血装置の大まかな構成・配置と、各行程や各状態での血液や補液の流路や方向を示す。図1は補液を行わないで、血液透析を行っている状態を示す概略図である。図1において、動脈側(血液)回路1は、動脈側接続端Aから始り、血液透析器2に接続されている透析器接続端A´で終わっている。動脈側回路1には、上流側から順に血液ポンプ3、動脈チャンバー4が設けられ、血液ポンプ3と動脈側接続端Aとの間に、補液ライン5に連なる補液ライン分岐部5aが存在する。この分岐部5aと動脈側接続端Aとの間に、気泡センサ6が装着されている。補液ライン分岐部5aと動脈接続端Aの間に開閉手段19が設けられている。
In the following, an embodiment of the present invention will be described in more detail with reference to the drawings.
1 to 5 show the general configuration and arrangement of an automatic blood return device, and the flow paths and directions of blood and replacement fluid in each stroke and each state. FIG. 1 is a schematic view showing a state in which hemodialysis is performed without performing a replacement fluid. In FIG. 1, the artery side (blood) circuit 1 starts from the artery side connection end A and ends at the dialyzer connection end A ′ connected to the hemodialyzer 2. The arterial circuit 1 is provided with a blood pump 3 and an arterial chamber 4 in this order from the upstream side, and a replacement fluid line branching portion 5a connected to the replacement fluid line 5 exists between the blood pump 3 and the artery side connection end A. A bubble sensor 6 is mounted between the branch portion 5a and the arterial connection end A. An opening / closing means 19 is provided between the replacement fluid branch 5a and the arterial connection end A.

補液ライン5は、補液供給源となる補液容器7から始まり、補液ライン5上には開閉手段18が設けられており補液ライン分岐部5aで終わる範囲のものである。補液ライン上の開閉手段18と分岐部5aとの間の圧力を計測する圧力センサ23が設けられている。   The replacement fluid line 5 starts from the replacement fluid container 7 serving as a replacement fluid supply source, and is provided in the range where an opening / closing means 18 is provided on the replacement fluid line 5 and ends at the replacement fluid line branch portion 5a. A pressure sensor 23 for measuring the pressure between the opening / closing means 18 on the replacement fluid line and the branch portion 5a is provided.

静脈側(血液)回路10は、透析器2接続端B´から始り、静脈側接続端Bで終わっている。静脈側回路10には、上流側から順に静脈チャンバ11、気泡センサ12、開閉手段であるクランプ13が設けられている。
静脈チャンバ11の上部にはオーバーフローライン14が接続され、血液回路の液プライミングの際の洗浄液や気泡をオーバーフローしたり、除去することができる。オーバーフローライン14には、ライン14を開閉することのできるクランプ15が装着されている。
The venous side (blood) circuit 10 starts at the dialyzer 2 connection end B ′ and ends at the venous side connection end B. The venous circuit 10 is provided with a venous chamber 11, a bubble sensor 12, and a clamp 13 as an opening / closing means in order from the upstream side.
An overflow line 14 is connected to the upper portion of the venous chamber 11 to overflow or remove the cleaning liquid and bubbles at the time of liquid priming of the blood circuit. The overflow line 14 is provided with a clamp 15 that can open and close the line 14.

そして、血液ポンプ3と、補液ライン5上の開閉手段18と、動脈回路1上の開閉手段19と、透析液潅流ラインに並列に設けられて濾過/逆濾過第3送液手段P1とは、連絡路17によって制御装置16と連絡され、制御装置16によって、血液ポンプ3,濾過/逆濾過第3送液手段P1は駆動、停止だけではなく、それぞれの送液方向、送液量(流速)が所定の値、または血液ポンプ3,濾過/逆濾過第3送液手段P1の送液量の比率が所定の値になるように連動制御される。さらに、制御装置16は静脈側回路10に装着したクランプ13の開閉と、上記血液ポンプ3,濾過/逆濾過第3送液手段P1の駆動・停止、流量調整が連動制御できるように、連絡路17によって、連絡されている。   The blood pump 3, the opening / closing means 18 on the replacement fluid line 5, the opening / closing means 19 on the arterial circuit 1, and the filtration / back-filtration third liquid feeding means P 1 provided in parallel with the dialysate perfusion line are: The communication path 17 communicates with the control device 16, and the control device 16 not only drives and stops the blood pump 3 and the filtration / back-filtration third liquid feeding means P <b> 1, but also the respective liquid feeding directions and liquid feeding amounts (flow velocity). Is controlled to be a predetermined value, or the ratio of the liquid supply amount of the blood pump 3, the filtration / back-filtration third liquid supply means P1 is a predetermined value. Further, the control device 16 connects the passage 13 so that the opening and closing of the clamp 13 attached to the venous circuit 10, the driving / stopping of the blood pump 3, the filtration / reverse filtration third liquid feeding means P1, and the flow rate adjustment can be controlled in conjunction. 17 is in contact.

以下、各行程やその行程における血液回路の送血、送液の状態について、簡単に説明する。
図1は補液操作なしで血液透析を行っている状態を示す。補液ライン5上の開閉手段18は閉止の状態で、動脈回路1上の開閉手段19は開放の状態で、血液ポンプ3のみが回転している。クランプ13は開放しており、クランプ15は閉止している。補液ライン5上の開閉手段18は閉止の状態で補液ライン5には血液が流れず、動脈接続端Aから動脈側回路1に流入した血液は、図1の矢印で示すように、血液透析器2を通過して、静脈側回路10を通り、静脈側接続端Bから患者に返戻される。
Hereinafter, the state of each stroke and the blood feeding and feeding of the blood circuit in the stroke will be briefly described.
FIG. 1 shows a state where hemodialysis is performed without a replacement fluid operation. The open / close means 18 on the replacement fluid line 5 is closed, the open / close means 19 on the arterial circuit 1 is open, and only the blood pump 3 is rotating. The clamp 13 is open and the clamp 15 is closed. As the open / close means 18 on the replacement fluid line 5 is closed and blood does not flow through the replacement fluid line 5, the blood flowing into the artery side circuit 1 from the arterial connection end A is shown in FIG. 2 is passed through the venous circuit 10 and returned from the venous connection end B to the patient.

ここで、クランプ15は閉止しており、オーバーフローライン14において、液の流通は無い。また、本実施例で述べる血液透析行程、補液行程、返血行程の各行程においては全て、オーバーフローライン14は閉塞したままで行う。なお、各行程において構成は同じである。   Here, the clamp 15 is closed, and there is no fluid flow in the overflow line 14. Further, in each of the hemodialysis process, the replacement liquid process, and the blood return process described in this embodiment, the overflow line 14 is kept closed. The configuration is the same in each process.

次に、補液行程について説明する。血液透析中に患者の血圧低下などの理由によって、急速に補液を行う必要になった場合、図2に示すように補液ライン5上の開閉手段18は開放状態となり前記動脈回路1上の開閉手段19は閉止の状態となる。補液は、血液ポンプ3の流速により制御する。例えば、血液ポンプ3の流速が100ml/minであれば、補液の流速が100ml/minとなる。血液ポンプ3の流速が100ml/minであり、前記動脈回路1上の開閉手段19が閉止されていれば、動脈側接続端Aから流入する血液は0ml/minとなり、補液ライン5から流出する補液が血液回路を流れる。さらに補液時間を設定する事で補液量を決定する事ができる。   Next, the replacement fluid process will be described. When it is necessary to rapidly replace the fluid during hemodialysis due to reasons such as a decrease in blood pressure of the patient, the opening / closing means 18 on the replacement fluid line 5 is opened as shown in FIG. 19 is in a closed state. The replacement fluid is controlled by the flow rate of the blood pump 3. For example, if the flow rate of the blood pump 3 is 100 ml / min, the flow rate of the replacement fluid is 100 ml / min. If the flow rate of the blood pump 3 is 100 ml / min and the opening / closing means 19 on the arterial circuit 1 is closed, the blood flowing in from the arterial connection end A becomes 0 ml / min, and the replacement fluid flowing out from the replacement fluid line 5 Flows through the blood circuit. Furthermore, the amount of fluid replacement can be determined by setting the fluid replacement time.

次に、返血行程について説明する。返血行程は、その方法によっても、制御が異なってくるが、ここでは代表的なもののみ説明する。その一例としては、先ず補液ライン分岐部5aから下流側の血液回路1に充填している血液を先に返血し(図3)、次に補液ライン分岐部5aから上流側の血液回路に充填している血液を戻す(図4)態様のものがある。   Next, the blood return process will be described. The control of the blood return process varies depending on the method, but only a representative one will be described here. As an example, the blood filled in the blood circuit 1 downstream from the replacement fluid branch 5a is first returned (FIG. 3), and then the blood circuit upstream from the replacement fluid branch 5a is filled. There is a mode of returning the blood (FIG. 4).

図3では、補液ライン上の開閉手段18は開放状態とし、前記動脈回路1上の開閉手段19は閉止の状態となるよう制御し血液ポンプ3の流速で、補液ライン分岐点5aから下流の血液回路に充填した血液を、図3の矢印の方向に従って、患者に戻している。そして、血液が補液ライン分岐部5aから下流側の血液回路1から流出しきった時点で、補液ライン5上の開閉手段18は閉止状態とし、前記動脈回路上の開閉手段19は開放の状態となるよう制御し、その切替えに連動して(開閉手段18が閉止状態となり、開閉手段19が開放状態に切り替わることに連動して:この切り替りが完了しなければ(正常に切り替らなければ)血液ポンプ3の逆回転、濾過/逆濾過第3送液手段P1の逆濾過方向作動は行わない。)血液ポンプ3を逆回転させ、同時に透析液ラインの濾過/逆濾過第3送液手段(濾過/逆濾過ポンプ)P1を逆濾過方向に作動させる。すると、図4に示すように、透析器2から逆濾過してくる逆濾過液によって、分岐ライン5から上流側に残っていた血液が動脈側接続端Aから患者に戻される。   In FIG. 3, the opening / closing means 18 on the replacement fluid line is opened, and the opening / closing means 19 on the arterial circuit 1 is controlled to be closed, and the blood downstream from the replacement fluid branch point 5a at the flow rate of the blood pump 3. The blood filled in the circuit is returned to the patient according to the direction of the arrow in FIG. When the blood completely flows out of the blood circuit 1 downstream from the replacement fluid branch 5a, the opening / closing means 18 on the replacement fluid line 5 is closed, and the opening / closing means 19 on the arterial circuit is opened. In conjunction with the switching (in conjunction with the opening and closing means 18 being closed and the opening and closing means 19 being switched to the open state): If this switching is not completed (unless switched normally) The reverse rotation of the pump 3 and the reverse filtration direction operation of the filtration / reverse filtration third liquid feeding means P1 are not performed.) The blood pump 3 is reversely rotated, and at the same time, the filtration / reverse filtration third liquid feeding means (filtration of the dialysate line) / Back filtration pump) P1 is operated in the back filtration direction. Then, as shown in FIG. 4, the blood remaining on the upstream side from the branch line 5 is returned to the patient from the artery side connection end A by the reverse filtrate that is reversely filtered from the dialyzer 2.

このとき、図4では制御装置16によって、クランプ13を制御装置で連動制御し、閉止しても良い。
また、この返血行程において圧力計測手段(圧力センサ9又は圧力センサ23)によって計測した圧力によって血液ポンプ3、濾過/逆濾過第3送液手段を制御し、血液回路内内圧が異常に上昇することを防いだり、もしくは圧力が異常に高くなった場合に警報を発すると共に開閉手段にて閉止するなどによって安全性を確保することが可能である。
At this time, in FIG. 4, the clamp 13 may be interlocked and controlled by the control device 16 using the control device.
Further, in this blood return process, the blood pump 3 and the third filtration / back-filtration third liquid feeding means are controlled by the pressure measured by the pressure measuring means (the pressure sensor 9 or the pressure sensor 23), and the internal pressure in the blood circuit rises abnormally. It is possible to ensure safety by preventing this, or by issuing an alarm when the pressure becomes abnormally high and closing with an opening / closing means.

また、別の例として図5に示すような態様のものもある。即ち、前記透析液潅流ラインの濾過/逆濾過第3送液手段P1の流速を逆回転している血液ポンプ3の流速よりも大きくすることによって、補液ライン分岐部5aの上流側、下流側に残っている血液を同時に患者に戻すこともできる。即ち、濾過/逆濾過第3送液手段P1により透析器2から逆濾過してくる逆濾過液のうち、血液ポンプ3と等しいだけの液量が動脈側の血液回路1に流れ、残り(余剰)の液量が静脈側の血液回路10を流れ、患者に返血される。この方法であれば、動脈側接続端Aと静脈側接続端Bを同時に介して返血できるため、操作を短時間で済ませることができる。   Another example is as shown in FIG. That is, by making the flow rate of the filtration / reverse filtration third liquid feeding means P1 in the dialysate perfusion line larger than the flow rate of the blood pump 3 that is rotating in the reverse direction, the fluid replacement line branching section 5a is moved upstream and downstream. The remaining blood can be returned to the patient at the same time. That is, of the back filtrate that is back-filtered from the dialyzer 2 by the filtration / back-filtration third liquid feeding means P1, an amount equal to that of the blood pump 3 flows to the blood circuit 1 on the artery side, and the remaining (surplus) ) Flows through the blood circuit 10 on the venous side and is returned to the patient. With this method, blood can be returned via the artery side connection end A and the vein side connection end B at the same time, so that the operation can be completed in a short time.

本発明の自動返血装置は、血液透析中の補液操作や透析終了後の返血操作において、汚染や医療ミスがなく、しかも医療従事者の負担とならない確実性に富んだ返血操作が可能となる自動返血装置に適している。   The automatic blood return device of the present invention can perform a blood return operation with high certainty that there is no contamination or medical error and no burden on the medical staff in the replacement operation during hemodialysis or the blood return operation after dialysis. Suitable for automatic blood return devices.

本発明の自動返血装置の一例を示す概略図であって、行程が血液透析処理中であるもの。It is the schematic which shows an example of the automatic blood return apparatus of this invention, Comprising: The process is in process of hemodialysis. 図1において、血液透析中に補液を行っている状態を示す概略図。In FIG. 1, the schematic which shows the state which is performing the replacement fluid during hemodialysis. 本発明の自動返血装置の一例であって、自動返血行程の1つの実施形態を示す概略図。BRIEF DESCRIPTION OF THE DRAWINGS It is an example of the automatic blood return apparatus of this invention, Comprising: The schematic which shows one Embodiment of an automatic blood return process. 本発明の自動返血装置の一例であって、自動返血行程の別の実施形態を示す概略図。It is an example of the automatic blood return apparatus of this invention, Comprising: The schematic which shows another embodiment of an automatic blood return process. 本発明の自動返血装置の一例であって、動脈側回路と静脈側回路とを同時に返血する実施形態を示す概略図。1 is a schematic diagram illustrating an embodiment of the automatic blood return device of the present invention, which simultaneously returns blood from an arterial circuit and a venous circuit. FIG.

符号の説明Explanation of symbols

1.動脈側血液回路
2.血液透析器
3.血液ポンプ
4.動脈チャンバー
5.補液ライン 5a:分岐点
6.気泡センサ
7.補液容器
8.補液ポンプ
9.圧力センサ
10.静脈側血液回路
11.静脈チャンバ
12.気泡センサ
13.クランプ
14.オーバーフローライン
15.クランプ
16.制御装置
17.連絡路
18.補液ラインクランプ
19.動脈ラインクランプ
20.透析液供給ライン
21.透析液排液ライン
22.透析液・濾過/逆濾過ライン
23.圧力センサ
P1.濾過/逆濾過ポンプ
P2.透析液供給ポンプ
P3.透析液排液ポンプ
P4.徐水ポンプ
A.動脈側接続端 A´:透析器動脈側接続端
B.静脈側接続端 B´:透析器静脈側接続端
1. 1. Arterial blood circuit 2. hemodialyzer Blood pump 4. 4. Arterial chamber Fluid replacement line 5a: branch point 6. Bubble sensor 7. Replenisher container 8. 8. Fluid replacement pump Pressure sensor 10. 10. Venous blood circuit Venous chamber 12. Bubble sensor 13. Clamp 14. Overflow line 15. Clamp 16. Control device 17. Connecting way 18. Fluid replacement line clamp 19. Arterial line clamp 20. Dialysate supply line 21. Dialysate drainage line 22. Dialysate / filtration / back filtration line 23. Pressure sensor P1. Filtration / back filtration pump P2. Dialysate supply pump P3. Dialysate drainage pump P4. Slow water pump A. Arterial connection end A ′: dialyzer arterial connection end B. Venous side connection end B ': Dialyzer vein side connection end

Claims (6)

血液透析器の上流側の動脈側(血液)回路と、同じく下流側の静脈側(血液)回路と、動脈側回路から分岐し、前記回路に補液を行うための補液ラインとを有し、補液ラインに補液ラインを開閉する開閉手段を設けており、
前記動脈側回路は、穿刺手段を介して患者動脈と連絡される動脈側接続端と、血液透析器と接続するための透析器接続端と、前記の両端部の中間にそれぞれ設けられた動脈チャンバー、送血手段、および前記補液ライン分岐部、気泡検出手段と動脈側接続端と補液ライン分岐部の間に開閉手段とを有し、
前記静脈側回路は、血液透析器と接続するための透析器接続端と静脈側接続端と、前記両端部の中間部に設けられた静脈チャンバー、気泡検出手段、および開閉手段とを有し、
前記補液ラインは、補液供給源を有し、
かかる血液循環系の動脈回路側に設けられ送血手段(血液ポンプ)は流量制御が可能な正逆回転可能な血液ポンプを有し、さらに透析器に潅流する透析液供給ラインと透析液排液ラインを有し、前記透析供給ライン及び透析液排液ラインにそれぞれ送液手段を有し、透析液供給ライン又は透析液排液ラインのいずれかに前記送液手段と並列に濾過及び逆濾過を行うための正逆回転可能で流量制御が可能な少なくとも一つ以上の濾過/逆濾過第3送液手段および徐水排液手段を有し、前記送血手段と前記濾過/逆濾過第3送液手段とは、これらの送血手段と送液手段と補液ラインを開閉する開閉手段と動脈接続端と補液ライン分岐部のあいだの開閉手段とを連動して制御するための連動制御手段によって、連絡されていることを特徴とする自動返血装置。
An arterial side (blood) circuit on the upstream side of the hemodialyzer, a venous side (blood) circuit on the downstream side, and a replacement fluid line for branching from the arterial side circuit and for supplying replacement fluid to the circuit. The line is provided with opening and closing means for opening and closing the replacement fluid line.
The arterial circuit includes an arterial connection end connected to a patient artery via a puncture means, a dialyzer connection end for connection to a hemodialyzer, and an arterial chamber provided between the both ends. , Blood supply means, and the fluid replacement line branch, the bubble detection means, the arterial side connection end and the fluid replacement line branch between the opening and closing means,
The venous side circuit has a dialyzer connection end and a venous side connection end for connection to a hemodialyzer, a venous chamber provided at an intermediate portion between the both ends, a bubble detection means, and an opening / closing means.
The replacement fluid line has a replacement fluid supply source,
The blood supply means (blood pump) provided on the arterial circuit side of the blood circulation system has a blood pump capable of forward / reverse rotation capable of flow rate control, and a dialysate supply line for perfusing the dialyzer and dialysate drainage A dialysis supply line and a dialysate drainage line, respectively, and the dialysate supply line or dialysate drainage line is subjected to filtration and reverse filtration in parallel with the liquid feed means. At least one filtration / reverse filtration third liquid feeding means and slow water draining means capable of forward / reverse rotation and flow rate control, and the blood feeding means and the third filtration / back filtration third feed The fluid means is a blood supply means, an opening / closing means for opening / closing the fluid supply means and the replacement fluid line, and an interlocking control means for controlling the opening / closing means between the arterial connection end and the replacement fluid line branching portion in conjunction with each other. Automatic characterized by being contacted Blood system.
前記静脈側回路に、静脈側回路を開閉するための開閉手段を有しており、前記連動制御手段が前記開閉手段と連絡され、前記開閉手段をも連動制御できる請求項1記載の自動返血装置。 2. The automatic blood return according to claim 1, wherein the venous circuit has an opening / closing means for opening and closing the venous circuit, the interlock control means being in communication with the opening / closing means, and the opening / closing means can also be interlocked. apparatus. 前記連動制御手段によって、各行程や状況に応じて、送血手段と濾過/逆濾過第3送液手段の両者の流量(流速)が実質的に等しくし、或いは多くし、或いは少なくなるように連動制御することが可能な請求項1または2に記載の自動返血装置。 By the interlock control means, the flow rate (flow velocity) of both the blood feeding means and the filtration / back-filtration third liquid feeding means is substantially equal, increased, or decreased depending on each process and situation. The automatic blood return apparatus according to claim 1, wherein the automatic blood return apparatus is capable of interlocking control. 前記静脈チャンバーに、該チャンバー内の液をオーバーフローさせるためのオーバーフローラインが設けられ、該オーバーフローラインに開閉手段が装着されている請求項1〜3のいずれかに記載の自動返血装置。 The automatic blood return apparatus according to any one of claims 1 to 3, wherein the venous chamber is provided with an overflow line for overflowing the liquid in the chamber, and an opening / closing means is attached to the overflow line. 前記補液ラインにおいて、前記補液ライン分岐部と送血手段部位あるいは動脈側接続端と補液ライン分岐部の間の開閉手段部位との連通回路上に圧力計測手段を設けた請求項1〜4のいずれかに記載の自動返血装置。 5. The pressure measuring means is provided in the fluid replacement line on a communication circuit between the fluid replacement line branch portion and the blood feeding means portion or an opening / closing means portion between the arterial side connection end and the fluid replacement line branch portion. An automatic blood return device according to any one of the above. 圧力計測手段による血液回路内圧によって、送血手段と送液手段と濾過/逆濾過第3送液手段と補液ラインを開閉するための開閉手段と動脈接続端と補液ライン分岐部の間の開閉手段とを連動して制御することができる請求項1〜5のいずれかに記載の自動返血装置。
Blood supply means, liquid supply means, filtration / reverse filtration third liquid supply means, opening / closing means for opening / closing the replacement fluid line, and opening / closing means between the arterial connection end and the replacement fluid line branching portion by the blood circuit internal pressure by the pressure measuring means The automatic blood return device according to any one of claims 1 to 5, which can be controlled in conjunction with each other.
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US11/667,529 US20070262013A1 (en) 2004-11-19 2005-02-18 Automatic Reinfusing System
EP05719313A EP1813296A1 (en) 2004-11-19 2005-02-18 Automatic reinfusing system
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CA002587059A CA2587059A1 (en) 2004-11-19 2005-02-18 Automatic reinfusing system
BRPI0518345-6A BRPI0518345A2 (en) 2004-11-19 2005-02-18 automatic reinfusion system
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Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007190235A (en) * 2006-01-20 2007-08-02 Jms Co Ltd Hemodialyzer
JP2009131412A (en) * 2007-11-29 2009-06-18 Nikkiso Co Ltd Blood purifying apparatus
JP2010269050A (en) * 2009-05-25 2010-12-02 Nikkiso Co Ltd Blood purifying device
JP2011030881A (en) * 2009-08-04 2011-02-17 Nikkiso Co Ltd Blood circuit and blood purifying apparatus equipped therewith
JP2011206197A (en) * 2010-03-29 2011-10-20 Asahi Kasei Kuraray Medical Co Ltd Blood purifier
JP2011239860A (en) * 2010-05-17 2011-12-01 Nipro Corp Intermittent infusion method for preventing lowering of blood, and blood purifying apparatus
JP2013188382A (en) * 2012-03-14 2013-09-26 Asahi Kasei Medical Co Ltd Central venous pressure measurement method, central venous pressure measurement system, dialysis system, and program
JP2014147793A (en) * 2014-03-17 2014-08-21 Nipro Corp Intermittent infusion method for prevention of lowering of blood, and blood purifying apparatus
JP2014188219A (en) * 2013-03-27 2014-10-06 Jms Co Ltd Hemodialysis device
WO2018180043A1 (en) 2017-03-31 2018-10-04 旭化成メディカル株式会社 Blood purification device and method for controlling same
WO2018180032A1 (en) 2017-03-31 2018-10-04 旭化成メディカル株式会社 Blood purification device, control method thereof, and blood removal defect elimination method
JP2018171340A (en) * 2017-03-31 2018-11-08 旭化成メディカル株式会社 Blood purification device, control method thereof and blood removal failure solution method

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06114102A (en) * 1992-09-30 1994-04-26 Nippon Medical Supply Corp Blood dialysis and filtration device
JPH06261938A (en) * 1992-07-07 1994-09-20 Senko Ika Kogyo Kk Dialytic device and blood returning method
JP2000325470A (en) * 1999-05-19 2000-11-28 Nefuronetto:Kk Automatic hemodialyzator
JP2002325837A (en) * 2000-06-15 2002-11-12 Nefuronetto:Kk Automatic blood dialyzer system

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06261938A (en) * 1992-07-07 1994-09-20 Senko Ika Kogyo Kk Dialytic device and blood returning method
JPH06114102A (en) * 1992-09-30 1994-04-26 Nippon Medical Supply Corp Blood dialysis and filtration device
JP2000325470A (en) * 1999-05-19 2000-11-28 Nefuronetto:Kk Automatic hemodialyzator
JP2002325837A (en) * 2000-06-15 2002-11-12 Nefuronetto:Kk Automatic blood dialyzer system

Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007190235A (en) * 2006-01-20 2007-08-02 Jms Co Ltd Hemodialyzer
JP4548349B2 (en) * 2006-01-20 2010-09-22 株式会社ジェイ・エム・エス Hemodialysis machine
JP2009131412A (en) * 2007-11-29 2009-06-18 Nikkiso Co Ltd Blood purifying apparatus
JP2010269050A (en) * 2009-05-25 2010-12-02 Nikkiso Co Ltd Blood purifying device
JP2011030881A (en) * 2009-08-04 2011-02-17 Nikkiso Co Ltd Blood circuit and blood purifying apparatus equipped therewith
JP2011206197A (en) * 2010-03-29 2011-10-20 Asahi Kasei Kuraray Medical Co Ltd Blood purifier
JP2011239860A (en) * 2010-05-17 2011-12-01 Nipro Corp Intermittent infusion method for preventing lowering of blood, and blood purifying apparatus
JP2013188382A (en) * 2012-03-14 2013-09-26 Asahi Kasei Medical Co Ltd Central venous pressure measurement method, central venous pressure measurement system, dialysis system, and program
JP2014188219A (en) * 2013-03-27 2014-10-06 Jms Co Ltd Hemodialysis device
JP2014147793A (en) * 2014-03-17 2014-08-21 Nipro Corp Intermittent infusion method for prevention of lowering of blood, and blood purifying apparatus
WO2018180043A1 (en) 2017-03-31 2018-10-04 旭化成メディカル株式会社 Blood purification device and method for controlling same
WO2018180032A1 (en) 2017-03-31 2018-10-04 旭化成メディカル株式会社 Blood purification device, control method thereof, and blood removal defect elimination method
JP2018171340A (en) * 2017-03-31 2018-11-08 旭化成メディカル株式会社 Blood purification device, control method thereof and blood removal failure solution method

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