JPS63271164A - Automatic biochemical analysis system - Google Patents

Automatic biochemical analysis system

Info

Publication number
JPS63271164A
JPS63271164A JP10569887A JP10569887A JPS63271164A JP S63271164 A JPS63271164 A JP S63271164A JP 10569887 A JP10569887 A JP 10569887A JP 10569887 A JP10569887 A JP 10569887A JP S63271164 A JPS63271164 A JP S63271164A
Authority
JP
Japan
Prior art keywords
analysis
rack
belt conveyor
sample
yard
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP10569887A
Other languages
Japanese (ja)
Inventor
Yasuhiro Okuno
奥野 泰宏
Hiroshi Ishihara
石原 浩
Kazuhiro Suzuki
一弘 鈴木
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shimadzu Corp
Original Assignee
Shimadzu Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shimadzu Corp filed Critical Shimadzu Corp
Priority to JP10569887A priority Critical patent/JPS63271164A/en
Publication of JPS63271164A publication Critical patent/JPS63271164A/en
Pending legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N35/00Automatic analysis not limited to methods or materials provided for in any single one of groups G01N1/00 - G01N33/00; Handling materials therefor
    • G01N35/00584Control arrangements for automatic analysers
    • G01N35/00594Quality control, including calibration or testing of components of the analyser
    • G01N35/00603Reinspection of samples

Landscapes

  • Engineering & Computer Science (AREA)
  • Quality & Reliability (AREA)
  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Automatic Analysis And Handling Materials Therefor (AREA)

Abstract

PURPOSE:To progress automation of an inspection chamber by installing plural pieces of analysis instruments between a rack installation yard and stock yard connected by a belt conveyor forming a route and circulative path. CONSTITUTION:The rack installation yard 1 housing racks R inserted with specimen cups and the stock yard housing the racks R after the end of inspection are connected by the belt conveyor 2 for conveyance and the circulative path is constituted of reinspection belt conveyors 3A, 3B, 3C. The analysis instruments 5, 6 of different kinds are installed at the mid-point of the conveyor 2. Stoppers 7, 8 are provided before the analysis instruments 5, 6. The rack R contg. the specimen having the item of which the analysis value exceeds a measurable range in the analysis and inspection with the analysis instrument 5 or 6 is fed to the reinspection conveyor 4 via transfer rollers 4 by operating a direction change mechanism 9 by the signal from said analysis instrument.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 この発明は、生化学的分析を行う装置のオートメーショ
ン化に関する。
DETAILED DESCRIPTION OF THE INVENTION [Industrial Application Field] The present invention relates to automation of equipment for performing biochemical analysis.

〔従来の技術〕[Conventional technology]

血液、血漿、尿等の生化学分析を行う場合、例えば血液
の生化学的分析を行う場合は必要に応じて遠心分離機で
血液を血清(血漿)部分と血球部分とに分離するなどの
前処理を行ってから分析装置のサンプラ部のターンテー
ブルやラックに嵌挿した検体カップに移して分析・検査
するようになっている。このような分析作業では検査員
が逐次ピペット等でサンプラ部のランクに嵌挿した検体
カップから必要量の検体を取り出し複数台の分析装置に
わたって分析・検査するようになっている、しかし血液
等には種々の病原菌やウィルスが含まれていることがあ
り血液等の生化学的検査を行う場合検査員が血液等に直
接触れると病気に感染したり、発病の危険性があるので
血液等には極力直接触れないようにしなければならない
When performing biochemical analysis of blood, plasma, urine, etc., for example, when performing biochemical analysis of blood, separate the blood into serum (plasma) and blood cells using a centrifuge as necessary. After processing, the sample is transferred to a sample cup inserted into the turntable or rack of the analyzer's sampler section for analysis and testing. In this type of analysis work, an inspector sequentially uses a pipette or the like to take out the required amount of sample from a sample cup inserted into the rank of the sampler unit, and analyzes and tests it on multiple analyzers. may contain various pathogenic bacteria and viruses, and when performing biochemical tests on blood, etc., there is a risk of infection or onset of disease if the examiner comes into direct contact with blood, etc., so do not use blood, etc. Direct contact should be avoided as much as possible.

〔発明が解決しようとする問題点〕[Problem that the invention seeks to solve]

上記するように従来の分析・検査作業においては検体の
分類、いくつかの検体容器への分注、複数の分析装置へ
の検体の運搬等を行わなければならず作業量の増加、煩
雑などによって検体の入れ換えミスが生じやすいという
問題があった。また検体を移し替える際、検体が人体に
触れる危険性があった。
As mentioned above, in conventional analysis and testing work, it is necessary to classify samples, dispense them into several sample containers, and transport the samples to multiple analyzers, resulting in an increase in the amount of work and complexity. There was a problem in that sample replacement errors were likely to occur. Additionally, when transferring samples, there was a risk that the samples would come into contact with human bodies.

この発明はかかる問題点に鑑みてなされたものでありそ
の目的とするところは、検査室のオートメーション化を
進めて省力化、感染症の防止、検体の取り違えミスの発
生防止等を図ることにある。
This invention was made in view of these problems, and its purpose is to promote automation of testing rooms to save labor, prevent infectious diseases, and prevent sample mix-up errors. .

〔問題点を解決するための手段〕[Means for solving problems]

即ちこの発明は上記する問題点を解決するために、ラッ
ク設置ヤードとベルトコンベヤと分析装置及び検体カッ
プやラック等を収納するストックヤードを備えた生化学
自動分析システムにおいて、前記ラック設置ヤードとス
トックヤードとの間を前記ベルトコンベヤで一つ又は複
数の順路及び一つ又は複数の循環路として連結し、途中
に前記分析装置を複数個設置することを特徴とする。
That is, in order to solve the above-mentioned problems, the present invention provides a biochemical automatic analysis system equipped with a rack installation yard, a belt conveyor, an analyzer, a stockyard for storing sample cups, racks, etc. It is characterized in that it is connected to the yard by the belt conveyor as one or more regular routes and one or more circulation routes, and a plurality of the analysis devices are installed along the way.

〔作 用〕[For production]

上記手段による作用をラックの移動に添って述べる。先
ず一つの順路と一つの循環路のシステムの場合、ランク
設置ヤードからベルトコンベヤに載せられた検体カップ
を嵌挿したラックは、ベルトコンベヤ上を移動しつつ検
体量を測定されバーコードリーグ等で識別され一つの分
析装置の前で停止する。ここでピペッタ系によって分注
され分析・検査され、そのまま次の分析装置によって別
種の分析・検査がされストックヤードへ移動し回収され
る。再度分析・検査が必要とされた検体カップ嵌挿のラ
ックは循環路へ誘導され再処理され必要な分析装置の前
で停止され、再検査され最後にストックヤードに回収さ
れる。
The effect of the above means will be described along with the movement of the rack. First, in the case of a system with one regular route and one circulation route, the rack containing sample cups is placed on a belt conveyor from the rank installation yard, and the amount of sample is measured while moving on the belt conveyor. It is identified and stops in front of one analyzer. Here, it is dispensed, analyzed and inspected using a pipettor system, and then subjected to a different kind of analysis and inspection using the next analyzer, and then transported to the stockyard and collected. Racks containing sample cups that need to be analyzed and tested again are guided to the circulation path, reprocessed, stopped in front of the necessary analysis equipment, retested, and finally collected in the stockyard.

複数の順路と複数の循環路のシステムの場合、ラック設
置ヤードからベルトコンベヤに載せられた検体カップを
嵌挿したラックは、ベルトコンベヤ上を移動しつつ検体
量の測定とバーコードリーグによって識別され、必要な
分析装置のある別のベルトコンベヤ上に方向転換され一
つの分析装置の前で停止する。ここでピペッタ系によっ
て分注され分析・検査される。次にラックはベルトコン
ベヤ上を移動し別の分析装置の設置されている循環路へ
方向転換され、別種の分析・検査を受ける。
In the case of a system with multiple routes and multiple circulation routes, the racks containing sample cups placed on the belt conveyor from the rack installation yard are identified by measuring the sample amount and barcode league while moving on the belt conveyor. , it is redirected onto another belt conveyor containing the necessary analyzer and stops in front of one analyzer. Here, it is dispensed using a pipettor system and analyzed and inspected. The rack then moves on a conveyor belt and is redirected to a circulation path where another analytical device is installed, where it is subjected to different types of analysis and testing.

途中再度分析・検査が必要とされた検体力フプ嵌挿のラ
ックは別の循環路へ誘導され再処理され再び必要な分析
・検査がなされる。このようにラックは経路の異なる循
環路を移動しつつ幾つかの分析・検査がなされたり、再
検査がなされ最後にストックヤードへ回収される。
The racks into which the sample forceps are inserted require re-analysis/inspection during the process, and are guided to another circulation path, reprocessed, and subjected to the necessary analysis/inspection again. In this way, the racks are moved through different circulation paths, undergoing several analyzes and inspections, and are then re-inspected before being finally collected at the stockyard.

〔実施例〕〔Example〕

以下、この発明の具体的実施例について図面を参照して
説明する。
Hereinafter, specific embodiments of the present invention will be described with reference to the drawings.

第1図はこの発明にかかる自動分析システムの配置図で
ある。この図において、1は検体カップを嵌挿したラッ
クを収納したラック設置ヤード、2は搬送ベルトコンベ
ヤ、3Aと3Bと30は再検ベルトコンベヤであり、搬
送ベルトコンベヤ2及び再検ベルトコンベヤ3A、3B
、3Cは駆動装置によって駆動されるようになっている
。即ちこの実施例ではベルトコンベヤは一つの順路と一
つの循環路とで構成されている。4は前記するベルトコ
ンベヤ2とベルトコンベヤ3A等との間に置かれ、サン
プルカップを嵌挿したラフクRt−誘導するための渡す
ローラである。5と6は分析装置であり図示例の場合二
種類設置されている。これらの分析装置には必要な分析
を行うための反応管や計測機器が納められ、ピペッタ系
(図示せず)によりベルトライン上のサンプルカップか
ら吸引された検体が分注されそれぞれ異なる分析・検査
を行うようになっている。7及び8はそれぞれ分析装置
5及び6の前に設置されたストッパであり、必要な分析
・検査が終了するまでラックRを停止させる。9はラッ
クRの進行方向転換機構である。10は分析・検査終了
後の検体カップやラックを収納するストックヤードであ
る。分析装置5の進行方向手前部11にはバーコードリ
ーグや検体量検出機構(図示せず)を設置する。
FIG. 1 is a layout diagram of an automatic analysis system according to the present invention. In this figure, 1 is a rack installation yard in which racks with sample cups inserted are stored, 2 is a conveyor belt conveyor, 3A, 3B, and 30 are reexamination belt conveyors.
, 3C are adapted to be driven by a drive device. That is, in this embodiment, the belt conveyor consists of one forward path and one circulation path. Reference numeral 4 denotes a passing roller placed between the belt conveyor 2 and the belt conveyor 3A, etc., for guiding the sample cup Rt. Reference numerals 5 and 6 designate analyzers, and in the illustrated example, two types of analyzers are installed. These analyzers house reaction tubes and measuring instruments to carry out the necessary analyses, and a pipettor system (not shown) aspirates the specimen from a sample cup on the belt line and dispenses it for different analyzes and tests. It is designed to do this. Stoppers 7 and 8 are installed in front of the analyzers 5 and 6, respectively, and stop the rack R until the necessary analysis/inspection is completed. 9 is a mechanism for changing the direction of travel of the rack R. 10 is a stockyard for storing sample cups and racks after analysis and testing. A barcode league and a sample amount detection mechanism (not shown) are installed at the front part 11 of the analyzer 5 in the direction of movement.

以上のように構成した自動分析システムにおいて、まず
検体入り検体力ツブを嵌挿したラックRをラック設置ヤ
ード1に複数個セットする。そしてロボットやマジック
ハンド(図示せず)等により自動的にベルトコンベヤ2
に載せると前記ラックRは分析装置5の手前部11に設
置したバーコードリーグや検体量検出機構によって検体
識別や検体量が確認され分析装置5の前のストッパ7に
よって停止される。ここでピペッタ系(図示せず)によ
って検体は吸引操作され、分析装置5によって分析・検
査が行われる。そしてス)7バ7による停止状態は解除
されラックRは次の分析装置6の前に来てストッパ8に
よって停止される。ここで再度ピペッタ系(図示せず)
によって検体は吸引操作され、分析装置6によって次の
分析・検査が行われる。分析装置5或いは6の分析・検
査で分析値が測定可能範囲をを超えた項目のある検体に
ついてはこれらの自動分析装置からの信号によって方向
転換機構9が作動し、第3図に示すようにそのラックR
を渡りローラ4を介して再検ベルトコンベヤ3Aへ送る
。この再検ベルトコンベヤ3A乃至3Cの循環ベルトラ
インあ途中には検体希釈装置(図示せず)が設置されて
おりここで希釈等の操作がなされ再度ベルトコンベヤ3
Cから渡りローラ4を介してベルトコンベヤ2へ希釈処
置した検体カップ嵌挿のラックRを送るようになってい
る。
In the automatic analysis system configured as described above, first, a plurality of racks R into which sample tubes containing samples are inserted are set in the rack installation yard 1. Then, the belt conveyor 2 is automatically moved by a robot, magic hand (not shown), etc.
When placed on the rack R, the sample identification and sample amount are confirmed by the barcode league and sample amount detection mechanism installed at the front part 11 of the analyzer 5, and the rack R is stopped by the stopper 7 in front of the analyzer 5. Here, the sample is aspirated by a pipettor system (not shown), and analyzed and tested by the analyzer 5. Then, the stopped state by the bar 7 is released, the rack R comes in front of the next analyzer 6, and is stopped by the stopper 8. Here again pipettor system (not shown)
The sample is aspirated by the analyzer 6, and the next analysis/examination is performed by the analyzer 6. For samples whose analysis value exceeds the measurable range in the analysis/inspection of the analyzer 5 or 6, the direction change mechanism 9 is activated by the signals from these automatic analyzers, as shown in Fig. 3. That rack R
is sent to the re-examination belt conveyor 3A via the crossing rollers 4. A sample diluter (not shown) is installed in the circulation belt line between the re-examination belt conveyors 3A to 3C, and operations such as dilution are performed here.
A rack R containing diluted sample cups is sent from C to a belt conveyor 2 via a transfer roller 4.

9通に分析・検査された検体はそのまま直進してストッ
クヤード10へ入り検体力ツブをラックRより外し事後
処置される。
The nine samples that have been analyzed and tested go straight to the stockyard 10, where the sample tube is removed from the rack R and post-processed.

第2図はこの発明にかかる自動分析システムの他の実施
例である。この図で13乃至20は搬送ベルトラインで
あり、幾つかの順路と幾つかの循環路とを構成するよう
になっている。21は用手法用ストップ部である。即ち
この実施例では2台の分析装置5及び6と用手法用ス)
7ブ部21とは並列に設置するものである。またこの図
で23と24と25は方向転換機構であり、方向転換機
構23の手前部22にはバーコードリーグや検体量検出
機構(図示せず)を設置する。バーコードリーグは前記
分析装置5或いは分析装置6等の手前においても良い、
26は分析装置6へ行(手前のコンベヤベルト14に置
いたバーコードリーグである。
FIG. 2 shows another embodiment of the automatic analysis system according to the present invention. In this figure, 13 to 20 are conveyor belt lines, which constitute several regular routes and several circulation routes. Reference numeral 21 denotes a manual stop section. That is, in this embodiment, there are two analyzers 5 and 6 and a manual
It is installed in parallel with the 7-piece section 21. Further, in this figure, reference numerals 23, 24, and 25 are direction change mechanisms, and a barcode league and a sample amount detection mechanism (not shown) are installed in the front part 22 of the direction change mechanism 23. The barcode league may be placed in front of the analyzer 5 or 6, etc.
26 is a barcode league placed on the conveyor belt 14 in front of the analyzer 6.

而して、以上のように構成した自動分析システムにおい
て、まず検体カップを嵌挿したラックR(実施例の場合
このラックには検体入りカップPは一個嵌挿しである)
をラック設置ヤード1に複数個セントする。そしてロボ
ットやマジックハンド(図示せず)等により自動的にベ
ルトコンベヤ13に載せると前記ラックRは渡りローラ
4を介してベルトコンベヤ14に載せられ方向転換機構
の手前22に設置したバーコードリーグや検体量検出機
構によって検体識別や検体量が確認される。
In the automatic analysis system configured as described above, first, a rack R in which sample cups are inserted (in the example, one cup P containing a sample is inserted into this rack)
Add multiple cents to rack installation yard 1. Then, when the rack R is automatically placed on the belt conveyor 13 by a robot, magic hand (not shown), etc., the rack R is placed on the belt conveyor 14 via the transition roller 4, and the rack R is placed on the belt conveyor 14 via the transfer roller 4. Specimen identification and sample amount are confirmed by the sample amount detection mechanism.

いずれか一種類の分析・検査でよいものは方向転換機構
23又は24を作動させて第3図(1)、(2)に示す
ように分析装置5の設置されているベルトコンベヤ16
又は分析装置6の設置されているベルトコンベヤ17ヘ
ラツクRを搬送させる。そして前記したように分析・検
査が終わるとストッパ7又はストッパ8は解除されベル
トコンベヤ19及び方向転換機構25によりラックRは
ストックヤード10へ回収される。
If only one type of analysis/inspection is required, the direction change mechanism 23 or 24 is operated to move the belt conveyor 16 where the analyzer 5 is installed, as shown in FIGS. 3(1) and (2).
Alternatively, the belt conveyor 17 on which the analyzer 6 is installed is conveyed. As described above, when the analysis and inspection are completed, the stopper 7 or 8 is released and the rack R is recovered to the stockyard 10 by the belt conveyor 19 and direction changing mechanism 25.

また、二種類の分析・検査の必要なものはベルトコンベ
ヤ14→〃〃16→〃〃19→〃〃15→〃〃14→〃
〃17→〃〃19→〃〃20→ストツクヤードのコース
をとるようにセットすれば良い。更に、三種類の分析・
検査の必要なものはベルトコンベヤ14→〃〃16→〃
〃19→〃〃15→〃〃 14→〃〃 17→〃〃 1
9→〃〃 15→〃〃14→〃〃18→〃〃19→〃〃
20→ストツクのコースを採るようにセントすれば良い
In addition, the two types of items that require analysis and inspection are belt conveyor 14→〃〃16→〃〃19→〃〃15→〃〃14→〃
Just set it so that the course is 〃17→〃〃19→〃〃20→stock yard. Furthermore, three types of analysis
Items that need to be inspected are belt conveyor 14→〃〃16→〃
〃19→〃〃15→〃〃 14→〃〃 17→〃〃 1
9→〃〃 15→〃〃14→〃〃18→〃〃19→〃〃
All you have to do is take the 20->Stock course.

更に循環路を辿る順序を変更して例えば二種類の分析・
検査を行°う場合、ベルトコンベヤ14→〃〃 17→
〃〃 19→〃〃 15→〃〃 14→〃//16→〃
〃19→〃〃20→ストツクヤード10のコースを採る
ことも可能である。また、再度分析・検査が必要なもの
はこれらのいずれかの循環路を利用し、ベルトラインの
途中に処理装置(図示せず)を設置して再処理し再び同
一の分析・検査が受けられるようにすることも可能であ
る。
Furthermore, by changing the order of tracing the circulation path, for example, two types of analysis can be performed.
When performing inspection, belt conveyor 14→〃〃17→
〃〃 19→〃〃 15→〃〃 14→〃//16→〃
It is also possible to take a course of 〃19→〃〃20→stockyards 10. In addition, for items that need to be analyzed and inspected again, they can be reprocessed using one of these circulation paths, and a processing device (not shown) is installed in the middle of the belt line, allowing them to undergo the same analysis and inspection again. It is also possible to do so.

この発明の詳細は以上のようであるが、技術的範囲は図
示例の場合に限定されない0例えば第1図においては循
環路を二重、三重にしても良いし、第2図においてもベ
ルトラインの並列数を増やし、他の分析装置を設置する
ようにして更に多くの分析・検査が出来るシステムを構
築しても良い。
Although the details of this invention are as described above, the technical scope is not limited to the illustrated example. For example, in FIG. 1, the circulation path may be double or triple, and in FIG. It is also possible to build a system that can perform even more analyzes and tests by increasing the number of parallel analyzers and installing other analyzers.

〔発明の効果〕〔Effect of the invention〕

以上詳述したようにこの発明は、生化学自動分析システ
ムにおいて、ラック設置ヤードとストックヤードとの間
をベルトコンベヤによって一つ又は複数の順路及び一つ
又は複数の循環路とで連結し途中に複、数個の分析装置
を設置することを特徴としたので、検査員が検体に直接
触れることなく分析・検査を行うシステムを構築するこ
とが可能となり、省力化、感染症の予防を図ることが出
来る。またこのようなシステムとすることにより検体の
取り違いを防止することも出来るし、検体カップごとの
ランクを使用することによって検査室のデッドボリュー
ムを減少させることも出来る。
As detailed above, the present invention provides a biochemical automatic analysis system in which a rack installation yard and a stockyard are connected by one or more forward paths and one or more circulation paths by a belt conveyor. Because it is characterized by the installation of multiple analyzers, it is possible to construct a system that allows inspectors to analyze and test samples without directly touching them, thereby saving labor and preventing infectious diseases. I can do it. Furthermore, by adopting such a system, it is possible to prevent sample mix-ups, and by using ranks for each sample cup, it is also possible to reduce the dead volume in the examination room.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図はこの発明にかかる自動分析システムの配置例で
一つの順路と一つの循環路とで構成する場合の実施例図
、第2図はこの発明にかかる自動分析システムの他の配
置例であって複数の順路と複数の循環路とで構成する場
合の実施例図である。第3図(1)、(2)はラックを
別のベルトコンベヤへ誘導する場合の進行方向転換機構
の作動別図である。 1−ラック設置ヤード  2−ベルトコンベヤ3A、3
B、3C・・・・循環路用ベルトコンベヤ4−・渡りロ
ーラ  5.6・・−分析装置?、L−・ストッパ  
10・・−ストックヤード12・・−・ラック  13
乃至20・−・ベルトコンベヤ21−・用手法用ストッ
プ部 9.23.24.25・・−・・方向転換機構第2図
FIG. 1 shows an example of the arrangement of the automatic analysis system according to the present invention, in which it is configured with one regular path and one circulation path, and FIG. 2 shows another example of the arrangement of the automatic analysis system according to the invention. FIG. 2 is an example diagram of a case where the vehicle is configured with a plurality of regular routes and a plurality of circulation routes. FIGS. 3(1) and 3(2) are separate views of the operation of the direction changing mechanism when guiding the rack to another belt conveyor. 1- Rack installation yard 2- Belt conveyor 3A, 3
B, 3C... Circulation path belt conveyor 4- Transition roller 5.6...-Analysis device? , L-stopper
10...-Stockyard 12...Rack 13
20...Belt conveyor 21--Method stop section 9.23.24.25...Direction change mechanism Fig. 2

Claims (1)

【特許請求の範囲】[Claims] (1)ラック設置ヤードとベルトコンベヤと分析装置及
びラック等を収納するストックヤードを備えた生化学自
動分析システムにおいて、前記ラック設置ヤードとスト
ックヤードとの間を前記ベルトコンベヤで一つ又は複数
の順路及び一つ又は複数の循環路として連結し、途中に
前記分析装置を複数個設置することを特徴とする生化学
自動分析システム。
(1) In a biochemical automatic analysis system equipped with a rack installation yard, a belt conveyor, and a stockyard for storing analytical devices, racks, etc., one or more belt conveyors are used to connect the rack installation yard and the stockyard. 1. A biochemical automatic analysis system, characterized in that a regular path and one or more circulation paths are connected, and a plurality of the analysis devices are installed along the way.
JP10569887A 1987-04-28 1987-04-28 Automatic biochemical analysis system Pending JPS63271164A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP10569887A JPS63271164A (en) 1987-04-28 1987-04-28 Automatic biochemical analysis system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP10569887A JPS63271164A (en) 1987-04-28 1987-04-28 Automatic biochemical analysis system

Publications (1)

Publication Number Publication Date
JPS63271164A true JPS63271164A (en) 1988-11-09

Family

ID=14414593

Family Applications (1)

Application Number Title Priority Date Filing Date
JP10569887A Pending JPS63271164A (en) 1987-04-28 1987-04-28 Automatic biochemical analysis system

Country Status (1)

Country Link
JP (1) JPS63271164A (en)

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01134263A (en) * 1987-11-20 1989-05-26 Nittec Co Ltd Method and device for conveying container
DE3934890A1 (en) * 1988-10-20 1990-04-26 Olympus Optical Co AUTOMATIC ANALYZER
JPH0271262U (en) * 1988-11-17 1990-05-30
JPH02163660A (en) * 1988-12-19 1990-06-22 Olympus Optical Co Ltd Automatic analyzer
JPH0348769A (en) * 1989-07-17 1991-03-01 Hitachi Ltd Method and device for sample motion
EP0795754A2 (en) * 1996-03-11 1997-09-17 Hitachi, Ltd. Analyzer system having sample rack transfer line
US5876670A (en) * 1996-05-20 1999-03-02 Hitachi, Ltd. Multi-item analyzer having plurality of analyzing modules
US5985670A (en) * 1992-12-23 1999-11-16 Board Of Regents Of The University Of Nebraska Method for automatic testing of laboratory specimens
US6117683A (en) * 1996-04-10 2000-09-12 Hitachi, Ltd. Method of conveying sample rack and automated analyzer in which sample rack is conveyed
WO2001035069A1 (en) * 1999-11-09 2001-05-17 Biopsytec Gmbh Method and device for preparing biological samples for dna analysis
US6290907B1 (en) * 1997-09-11 2001-09-18 Hitachi, Ltd. Sample handling system
US6520313B1 (en) 1999-11-15 2003-02-18 Thermo Clinical Labsystems Oy Arrangement and method for handling test tubes in a laboratory
US6733728B1 (en) 1996-03-11 2004-05-11 Hitachi, Ltd. Analyzer system having sample rack transfer line
EP1887356A2 (en) 2006-08-04 2008-02-13 Hitachi High-Technologies Corporation Automatic analyzer
JP2010091313A (en) * 2008-10-06 2010-04-22 Sysmex Corp Specimen treatment system and specimen feeding system
JP2012112912A (en) * 2010-11-29 2012-06-14 Hitachi High-Technologies Corp Automatic analyzer
WO2013051495A1 (en) * 2011-10-07 2013-04-11 株式会社日立ハイテクノロジーズ Specimen processing system
JP2013068453A (en) * 2011-09-21 2013-04-18 Tosoh Corp Automatic analyzer

Cited By (30)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01134263A (en) * 1987-11-20 1989-05-26 Nittec Co Ltd Method and device for conveying container
DE3934890A1 (en) * 1988-10-20 1990-04-26 Olympus Optical Co AUTOMATIC ANALYZER
DE3934890C2 (en) * 1988-10-20 1992-10-01 Olympus Optical Co., Ltd., Tokio/Tokyo, Jp
JPH0271262U (en) * 1988-11-17 1990-05-30
JPH02163660A (en) * 1988-12-19 1990-06-22 Olympus Optical Co Ltd Automatic analyzer
JPH0348769A (en) * 1989-07-17 1991-03-01 Hitachi Ltd Method and device for sample motion
US5985670A (en) * 1992-12-23 1999-11-16 Board Of Regents Of The University Of Nebraska Method for automatic testing of laboratory specimens
US6733728B1 (en) 1996-03-11 2004-05-11 Hitachi, Ltd. Analyzer system having sample rack transfer line
US5902549A (en) * 1996-03-11 1999-05-11 Hitachi, Ltd. Analyzer system having sample rack transfer line
US7361305B2 (en) 1996-03-11 2008-04-22 Hitachi, Ltd. Analyzer system having sample rack transfer line
EP0795754A2 (en) * 1996-03-11 1997-09-17 Hitachi, Ltd. Analyzer system having sample rack transfer line
EP0795754A3 (en) * 1996-03-11 1998-07-15 Hitachi, Ltd. Analyzer system having sample rack transfer line
US7011792B2 (en) 1996-03-11 2006-03-14 Hitachi, Ltd. Analyzer system having sample rack transfer line
EP1505396A3 (en) * 1996-03-11 2007-01-10 Hitachi, Ltd. Analyzer system having sample rack transfer line
US7700043B2 (en) 1996-03-11 2010-04-20 Hitachi, Ltd. Analyzer system having sample rack transfer line
US6117683A (en) * 1996-04-10 2000-09-12 Hitachi, Ltd. Method of conveying sample rack and automated analyzer in which sample rack is conveyed
US6599749B1 (en) 1996-04-10 2003-07-29 Hitachi, Ltd. Method of conveying sample rack and automated analyzer in which sample rack is conveyed
US5876670A (en) * 1996-05-20 1999-03-02 Hitachi, Ltd. Multi-item analyzer having plurality of analyzing modules
US6290907B1 (en) * 1997-09-11 2001-09-18 Hitachi, Ltd. Sample handling system
WO2001035069A1 (en) * 1999-11-09 2001-05-17 Biopsytec Gmbh Method and device for preparing biological samples for dna analysis
US6520313B1 (en) 1999-11-15 2003-02-18 Thermo Clinical Labsystems Oy Arrangement and method for handling test tubes in a laboratory
EP1887356A3 (en) * 2006-08-04 2010-02-24 Hitachi High-Technologies Corporation Automatic analyzer
EP1887356A2 (en) 2006-08-04 2008-02-13 Hitachi High-Technologies Corporation Automatic analyzer
US8758684B2 (en) 2006-08-04 2014-06-24 Hitachi High-Technologies Corporation Automatic analyzer
JP2010091313A (en) * 2008-10-06 2010-04-22 Sysmex Corp Specimen treatment system and specimen feeding system
JP2012112912A (en) * 2010-11-29 2012-06-14 Hitachi High-Technologies Corp Automatic analyzer
JP2013068453A (en) * 2011-09-21 2013-04-18 Tosoh Corp Automatic analyzer
WO2013051495A1 (en) * 2011-10-07 2013-04-11 株式会社日立ハイテクノロジーズ Specimen processing system
JP2013083538A (en) * 2011-10-07 2013-05-09 Hitachi High-Technologies Corp Specimen processing system
US9476806B2 (en) 2011-10-07 2016-10-25 Hitachi High-Technologies Corporation Sample processing system

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