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JP7337640B2 - Centrifuge and white blood cell counter - Google Patents

Centrifuge and white blood cell counter Download PDF

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JP7337640B2
JP7337640B2 JP2019185119A JP2019185119A JP7337640B2 JP 7337640 B2 JP7337640 B2 JP 7337640B2 JP 2019185119 A JP2019185119 A JP 2019185119A JP 2019185119 A JP2019185119 A JP 2019185119A JP 7337640 B2 JP7337640 B2 JP 7337640B2
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JP2021060301A (en
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眞 山▲崎▼
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Advantest Corp
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Description

本発明は、生乳中の白血球の遠心分離に関する。 The present invention relates to centrifugation of leukocytes in raw milk.

従来より、生乳の遠心分離が知られている(例えば、特許文献1、2および3を参照)。生乳を遠心分離した場合、生乳中の白血球と脂肪分とが分離され、やがて白血球は下に沈殿する。この沈殿した白血球の個数を測定し、乳房炎の検出に役立てる。 Conventionally, centrifugation of raw milk is known (see, for example, Patent Documents 1, 2 and 3). When the raw milk is centrifuged, the leukocytes and fat in the raw milk are separated, and the leukocytes eventually settle to the bottom. The number of precipitated leukocytes is measured and used to detect mastitis.

特開2011-033599号公報JP 2011-033599 A 特表2012-521219号公報Japanese Patent Publication No. 2012-521219 特表平6-500462号公報Japanese Patent Publication No. 6-500462

しかしながら、上記のような従来技術における遠心分離によれば、白血球の沈殿に時間がかかる。 However, according to the centrifugation in the prior art as described above, sedimentation of leukocytes takes a long time.

そこで、本発明は、遠心分離された生乳中の成分(例えば、白血球)を短時間で検出可能とすることを課題とする。 Accordingly, an object of the present invention is to enable detection of components (for example, white blood cells) in centrifuged raw milk in a short period of time.

本発明にかかる遠心分離器は、生乳を収容する容器と、前記容器の内部に配置され、前記容器の中心軸を回転軸として回転する回転体と、前記容器の側面から突出し、前記生乳の成分を収容する成分収容部とを備え、前記側面は、前記容器の底面と交差し、前記底面は、前記中心軸と交差するように構成される。 The centrifugal separator according to the present invention includes a container for containing raw milk, a rotating body arranged inside the container and rotating about the central axis of the container, and a component of the raw milk protruding from the side surface of the container. The side surface intersects the bottom surface of the container, and the bottom surface is configured to intersect the central axis.

上記のように構成された遠心分離器によれば、容器が、生乳を収容する。回転体が、前記容器の内部に配置され、前記容器の中心軸を回転軸として回転する。成分収容部が、前記容器の側面から突出し、前記生乳の成分を収容する。前記側面は、前記容器の底面と交差する。前記底面は、前記中心軸と交差する。 According to the centrifuge configured as described above, the container contains the raw milk. A rotating body is disposed inside the container and rotates around the central axis of the container. An ingredient storage part protrudes from the side surface of the container and stores the ingredients of the raw milk. The side surface intersects the bottom surface of the container. The bottom surface intersects the central axis.

なお、本発明にかかる遠心分離器は、前記成分収容部が、前記側面から一定の深さを有するようにしてもよい。 In addition, in the centrifugal separator according to the present invention, the component storage section may have a constant depth from the side surface.

なお、本発明にかかる遠心分離器は、前記成分収容部の上下方向の間隔が、前記中心軸から離れるにしたがって狭くなっていくようにしてもよい。 In addition, in the centrifugal separator according to the present invention, the vertical interval between the component storage portions may be narrowed as the distance from the central axis increases.

なお、本発明にかかる遠心分離器は、前記回転体がスクリューであるようにしてもよい。 In addition, in the centrifugal separator according to the present invention, the rotor may be a screw.

なお、本発明にかかる遠心分離器は、前記成分収容部に、前記生乳における白血球を吸着する吸着材を配置するようにしてもよい。 In addition, in the centrifugal separator according to the present invention, an adsorbent for adsorbing white blood cells in the raw milk may be arranged in the component storage section.

なお、本発明にかかる遠心分離器は、前記吸着材がP-セレクチンであるようにしてもよい。 In addition, in the centrifugal separator according to the present invention, the adsorbent may be P-selectin.

なお、本発明にかかる遠心分離器は、前記成分収容部が前記中心軸から最も離れた部分に、前記成分を溜める貯溜部が配置されているようにしてもよい。 In addition, in the centrifugal separator according to the present invention, a storage portion for storing the component may be arranged at a portion where the component storage portion is most distant from the central axis.

なお、本発明にかかる遠心分離器は、前記貯溜部に接続された配管と、前記配管を開閉する弁とを備えるようにしてもよい。 In addition, the centrifugal separator according to the present invention may include a pipe connected to the reservoir and a valve for opening and closing the pipe.

本発明にかかる白血球量計測装置は、本発明にかかる遠心分離器と、前記遠心分離器により得られた白血球を検知するセンサと、前記センサの検知結果に基づき、白血球量を表示する表示部とを備えるように構成される。 A white blood cell amount measuring apparatus according to the present invention comprises a centrifuge according to the present invention, a sensor for detecting white blood cells obtained by the centrifuge, and a display unit for displaying the white blood cell amount based on the detection result of the sensor. is configured to include

本発明にかかる白血球量計測装置は、本発明にかかる遠心分離器と、前記配管に接続され、前記貯溜部により溜められた白血球を検知するセンサと、前記センサの検知結果に基づき、白血球量を表示する表示部とを備えるように構成される。 A white blood cell amount measuring apparatus according to the present invention comprises a centrifuge according to the present invention, a sensor connected to the piping for detecting white blood cells stored in the reservoir, and measuring the white blood cell amount based on the detection result of the sensor. and a display for displaying.

本発明の第一の実施形態にかかる白血球量計測装置1の構成を示す図であり、スクリュー(回転体)14を、容器12内の下側に配置した状態(図1(a))、容器12内の上側に配置した状態(図1(b))を示す。BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a diagram showing the configuration of a white blood cell amount measuring device 1 according to a first embodiment of the present invention, in which a screw (rotating body) 14 is arranged on the lower side inside a container 12 (FIG. 1(a)); 12 (FIG. 1(b)). 第一の実施形態における遠心分離前の容器12および成分収容部13の内部の状態(図2(a))および遠心分離後の容器12および成分収容部13の内部状態(図2(b))を示す図である。The internal state of the container 12 and the component storage unit 13 before centrifugation in the first embodiment (Fig. 2(a)) and the internal state of the container 12 and the component storage unit 13 after centrifugation (Fig. 2(b)) It is a figure which shows. 本発明の第二の実施形態にかかる白血球量計測装置1の構成を示す図であり、平面図(図3(a))、正面図(図3(b))、側面図(図3(c))である。FIG. 3A is a plan view (FIG. 3A), a front view (FIG. 3B), and a side view (FIG. 3C) showing the configuration of a white blood cell amount measuring device 1 according to a second embodiment of the present invention; )). 第二の実施形態における遠心分離前の容器12、成分収容部18および貯溜部19の内部の状態(図4(a))および遠心分離後の容器12、成分収容部18および貯溜部19の内部の状態(図4(b))を示す図である。The state of the inside of the container 12, the component storage part 18, and the storage part 19 before centrifugation in the second embodiment (FIG. 4A) and the inside of the container 12, the component storage part 18, and the storage part 19 after centrifugation It is a figure which shows the state (FIG.4(b)).

以下、本発明の実施形態を図面を参照しながら説明する。 Hereinafter, embodiments of the present invention will be described with reference to the drawings.

第一の実施形態
図1は、本発明の第一の実施形態にかかる白血球量計測装置1の構成を示す図であり、スクリュー(回転体)14を、容器12内の下側に配置した状態(図1(a))、容器12内の上側に配置した状態(図1(b))を示す。
First Embodiment FIG. 1 is a diagram showing the configuration of a white blood cell amount measuring device 1 according to a first embodiment of the present invention, in which a screw (rotating body) 14 is arranged on the lower side inside a container 12. (FIG. 1(a)) and the state arranged on the upper side in the container 12 (FIG. 1(b)).

第一の実施形態にかかる白血球量計測装置1は、遠心分離器10、センサ22、表示部24を備える。 A white blood cell amount measuring device 1 according to the first embodiment includes a centrifuge 10 , a sensor 22 and a display section 24 .

遠心分離器10は、配管11、容器12、成分収容部13、スクリュー(回転体)14、軸15、モータ16、弁17を備える。 The centrifugal separator 10 includes a pipe 11 , a container 12 , a component container 13 , a screw (rotating body) 14 , a shaft 15 , a motor 16 and a valve 17 .

容器12は、生乳2を収容する容器である。容器12の側面12Sは、容器12の底面12Bと交差する。図1の例では、容器12は円筒形の容器であり、側面12Sは、容器12の底面12Bおよび頂面12Tと直交する。底面12Bは、容器12の中心軸Aと交差する。図1の例では、底面12Bおよび頂面12Tは、中心軸Aと直交する。 The container 12 is a container that contains the raw milk 2 . Side 12S of container 12 intersects bottom 12B of container 12 . In the example of FIG. 1, container 12 is a cylindrical container, and side surface 12S is perpendicular to bottom surface 12B and top surface 12T of container 12. In the example of FIG. Bottom surface 12B intersects central axis A of container 12 . In the example of FIG. 1, the bottom surface 12B and the top surface 12T are orthogonal to the central axis A. In FIG.

スクリュー(回転体)14は、容器12の内部に配置され、中心軸Aを回転軸として回転する。なお、スクリュー14は、容器12内の下側に配置してもよいし(図1(a)参照)、容器12内の上側に配置してもよい(図1(b)参照)。 A screw (rotating body) 14 is arranged inside the container 12 and rotates about the central axis A as a rotation axis. The screw 14 may be arranged on the lower side of the container 12 (see FIG. 1(a)) or may be arranged on the upper side of the container 12 (see FIG. 1(b)).

軸15は、スクリュー14の回転軸であり、中心軸A上に配置されている。モータ16は、軸15を介して、スクリュー14に連結されており、スクリュー14を回転させる。 The shaft 15 is the rotating shaft of the screw 14 and is arranged on the central axis A. As shown in FIG. A motor 16 is connected to the screw 14 via a shaft 15 and rotates the screw 14 .

成分収容部13は、容器2の側面12Sから突出し、生乳2の成分(例えば、白血球)を収容する。成分収容部13は、側面12Sから一定の深さtを有する溝状のものである。成分収容部13には、生乳2における白血球を吸着する吸着材(例えば、P-セレクチン)を配置する。 The component storage part 13 protrudes from the side surface 12S of the container 2 and stores components of the raw milk 2 (for example, white blood cells). The component containing portion 13 is in the shape of a groove having a constant depth t from the side surface 12S. An adsorbent (for example, P-selectin) that adsorbs leukocytes in the raw milk 2 is placed in the ingredient storage section 13 .

配管11は、成分収容部13に接続されている。弁17は、配管11を開閉する弁である。 The pipe 11 is connected to the component storage section 13 . The valve 17 is a valve that opens and closes the pipe 11 .

センサ22は、遠心分離器10により得られた白血球(例えば好中球)を検知する。より詳細には、センサ22は、成分収容部13に収容された白血球を、配管11を介して受け、白血球を検知する。センサ22は、例えば、スーパーオキシドディスムターゼ(SOD)を塗布したバイオセンサであり、電気化学的に活性酸素を測定することにより白血球の個数および濃度(個/ミリリットル)が得られる。なお、生乳2における好中球の濃度が高いと、乳房炎がおきている可能性がある。 Sensor 22 detects white blood cells (eg, neutrophils) obtained by centrifuge 10 . More specifically, the sensor 22 receives the leukocytes contained in the component container 13 via the pipe 11 and detects the leukocytes. The sensor 22 is, for example, a biosensor coated with superoxide dismutase (SOD), and electrochemically measures active oxygen to obtain the number and concentration (cells/milliliter) of white blood cells. If the concentration of neutrophils in raw milk 2 is high, there is a possibility that mastitis has occurred.

表示部24は、センサ22の検知結果に基づき、白血球量(白血球の個数または濃度)を表示する。 The display unit 24 displays the amount of white blood cells (the number or concentration of white blood cells) based on the detection result of the sensor 22 .

次に、第一の実施形態の動作を説明する。 Next, operation of the first embodiment will be described.

図2は、第一の実施形態における遠心分離前の容器12および成分収容部13の内部の状態(図2(a))および遠心分離後の容器12および成分収容部13の内部状態(図2(b))を示す図である。ただし、スクリュー14および軸15は図示省略する。 FIG. 2 shows the internal state of the container 12 and the component storage unit 13 before centrifugation in the first embodiment (FIG. 2(a)) and the internal state of the container 12 and the component storage unit 13 after centrifugation (FIG. 2 It is a figure which shows (b)). However, the screw 14 and shaft 15 are not shown.

まず、容器12に生乳2を注ぐ。生乳2は、容器12および成分収容部13の内部に満たされる(図2(a)参照)。ここで、モータ16を起動し、スクリュー14を回転させ、生乳2を遠心分離すると、中心軸A近傍に乳脂肪分2aが、容器12内の外側に乳清2bが、さらに外側の成分収容部13内に白血球2cが分離される(図2(b)参照)。 First, the raw milk 2 is poured into the container 12 . Raw milk 2 fills the interior of container 12 and ingredient storage section 13 (see FIG. 2(a)). Here, when the motor 16 is started, the screw 14 is rotated, and the raw milk 2 is centrifuged, the milk fat content 2a is in the vicinity of the central axis A, the whey 2b is outside the container 12, and the component storage part further outside White blood cells 2c are separated within 13 (see FIG. 2(b)).

弁17を開くと、成分収容部13内の白血球2cは、配管11内を落下して、センサ22に与えられる。センサ22は、白血球を検知し、白血球の個数および濃度を取得し、表示部24に表示させる。 When the valve 17 is opened, the leukocytes 2c in the component containing portion 13 drop down in the pipe 11 and are given to the sensor 22. FIG. The sensor 22 detects white blood cells, acquires the number and concentration of white blood cells, and displays them on the display unit 24 .

第一の実施形態によれば、遠心分離された生乳2中の白血球2cの沈殿を待たずに白血球を検出できるため、白血球を短時間で検出できる。 According to the first embodiment, leukocytes can be detected without waiting for precipitation of leukocytes 2c in the centrifuged raw milk 2, so leukocytes can be detected in a short time.

第二の実施形態
第二の実施形態は、一定の深さtを有する成分収容部13(図1および図2を参照)にかえて、上下方向の間隔dが中心軸Aから離れるに従って狭くなっていく成分収容部18(図3および図4を参照)を備え、さらに、貯溜部19を備えた点が、第一の実施形態と異なる。
Second Embodiment In the second embodiment, instead of the component storage portion 13 (see FIGS. 1 and 2) having a constant depth t, the vertical interval d becomes narrower as the distance from the central axis A increases. It differs from the first embodiment in that it includes a component storage section 18 (see FIGS. 3 and 4) and further includes a storage section 19 .

図3は、本発明の第二の実施形態にかかる白血球量計測装置1の構成を示す図であり、平面図(図3(a))、正面図(図3(b))、側面図(図3(c))である。ただし、図3において、スクリュー14、軸15およびモータ16は、第一の実施形態と同様であり(図1参照)、図示省略する。 3A and 3B are diagrams showing the configuration of the white blood cell amount measuring device 1 according to the second embodiment of the present invention, including a plan view (FIG. 3A), a front view (FIG. 3B), and a side view ( FIG. 3(c)). However, in FIG. 3, the screw 14, the shaft 15 and the motor 16 are the same as those in the first embodiment (see FIG. 1) and are omitted from illustration.

第二の実施形態にかかる白血球量計測装置1は、遠心分離器10、センサ22、表示部24を備える。以下、第一の実施形態と同様な部分は、同一の符号を付して説明を省略する。表示部24は、第一の実施形態と同様であり、説明を省略する。 A white blood cell amount measuring device 1 according to the second embodiment includes a centrifuge 10 , a sensor 22 and a display section 24 . Hereinafter, parts similar to those of the first embodiment are denoted by the same reference numerals, and descriptions thereof are omitted. The display unit 24 is the same as that of the first embodiment, and the explanation is omitted.

遠心分離器10は、配管11、容器12、スクリュー(回転体)14、軸15、モータ16、弁17、成分収容部18、貯溜部19を備える。容器12、スクリュー14、軸15、モータ16および弁17は、第一の実施形態と同様であり、説明を省略する。 The centrifugal separator 10 includes a pipe 11 , a container 12 , a screw (rotating body) 14 , a shaft 15 , a motor 16 , a valve 17 , a component container 18 and a reservoir 19 . The container 12, the screw 14, the shaft 15, the motor 16 and the valve 17 are the same as those in the first embodiment, and their description is omitted.

成分収容部18は、容器12の側面12Sから突出し、生乳2の成分(例えば、白血球)を収容する。ただし、成分収容部18の上下方向の間隔dが、中心軸Aから離れるにしたがって狭くなっていく(図3(b)参照)。 The ingredient storage part 18 protrudes from the side surface 12S of the container 12 and accommodates the ingredients of the raw milk 2 (for example, white blood cells). However, the distance d in the vertical direction between the component storage portions 18 becomes narrower as the distance from the central axis A increases (see FIG. 3(b)).

貯溜部19は、成分収容部18が中心軸Aから最も離れた部分(上下方向の間隔dが最小となる部分でもある)に設けられており、生乳2の成分(例えば、白血球)を溜める。 The storage part 19 is provided in the part where the ingredient storage part 18 is farthest from the central axis A (also the part where the vertical distance d is the smallest), and stores the ingredients of the raw milk 2 (for example, white blood cells).

配管11は、貯溜部19に接続されている。 The pipe 11 is connected to the reservoir 19 .

センサ22は、配管11に接続され、貯溜部19に溜められた白血球(例えば好中球)を検知する。より詳細には、センサ22は、貯溜部19に溜められた白血球を、配管11を介して受け、白血球を検知する。センサ22は、例えば、スーパーオキシドディスムターゼ(SOD)を塗布したバイオセンサであり、電気化学的に活性酸素を測定することにより白血球の個数および濃度(個/ミリリットル)が得られる。なお、生乳2における好中球の濃度が高いと、乳房炎がおきている可能性がある。 The sensor 22 is connected to the pipe 11 and detects white blood cells (for example, neutrophils) stored in the reservoir 19 . More specifically, the sensor 22 receives the leukocytes stored in the reservoir 19 via the pipe 11 and detects the leukocytes. The sensor 22 is, for example, a biosensor coated with superoxide dismutase (SOD), and electrochemically measures active oxygen to obtain the number and concentration (cells/milliliter) of white blood cells. If the concentration of neutrophils in raw milk 2 is high, there is a possibility that mastitis has occurred.

次に、第二の実施形態の動作を説明する。 Next, the operation of the second embodiment will be explained.

図4は、第二の実施形態における遠心分離前の容器12、成分収容部18および貯溜部19の内部の状態(図4(a))および遠心分離後の容器12、成分収容部18および貯溜部19の内部の状態(図4(b))を示す図である。ただし、スクリュー14および軸15は図示省略する。 FIG. 4 shows the state of the inside of the container 12, the component storage portion 18 and the storage portion 19 before centrifugation (FIG. 4(a)) and the state of the container 12, the component storage portion 18 and the storage after centrifugation in the second embodiment. It is a figure which shows the state (FIG.4(b)) inside the part 19. FIG. However, the screw 14 and shaft 15 are not shown.

まず、容器12に生乳2を注ぐ。生乳2は、容器12、成分収容部18および貯溜部19の内部に満たされる(図4(a)参照)。ここで、モータ16を起動し、スクリュー14を回転させ、生乳2を遠心分離すると、中心軸A近傍に乳脂肪分2aが、容器12内の外側に乳清2bが、さらに外側の成分収容部18内に白血球2cが分離される(図4(b)参照)。成分収容部18は、外側(中心軸Aから離れる側)の方が、上下方向の間隔dが狭くなっていくため、外側の方が白血球2cの濃度が高くなり、最も外側の貯溜部19には高濃度の白血球2cが貯溜される。 First, the raw milk 2 is poured into the container 12 . Raw milk 2 fills the inside of container 12, ingredient storage section 18 and storage section 19 (see FIG. 4(a)). Here, when the motor 16 is started, the screw 14 is rotated, and the raw milk 2 is centrifuged, the milk fat content 2a is in the vicinity of the central axis A, the whey 2b is outside the container 12, and the component storage part further outside White blood cells 2c are separated within 18 (see FIG. 4(b)). Since the vertical interval d is narrower on the outer side (the side away from the central axis A) of the ingredient storage section 18 , the concentration of the white blood cells 2 c is higher on the outer side, and the outermost storage section 19 is filled with white blood cells. , a high concentration of leukocytes 2c is stored.

弁17を開くと、貯溜部19内の白血球2cは、配管11内を落下して、センサ22に与えられる。センサ22は、白血球を検知し、白血球の個数および濃度を取得し、表示部24に表示させる。 When the valve 17 is opened, the leukocytes 2c in the reservoir 19 fall through the pipe 11 and are given to the sensor 22. FIG. The sensor 22 detects white blood cells, acquires the number and concentration of white blood cells, and displays them on the display unit 24 .

第二の実施形態によれば、第一の実施形態と同様な効果を奏する。しかも、第二の実施形態によれば、成分収容部18の形状により貯溜部19に白血球が高い濃度で貯溜されるため、センサ22による白血球の検知が容易となる。 According to the second embodiment, the same effects as those of the first embodiment are obtained. Moreover, according to the second embodiment, the white blood cells are stored in the reservoir 19 at a high concentration due to the shape of the component storage part 18, so that the sensor 22 can easily detect the white blood cells.

1 白血球量計測装置
10 遠心分離器
11 配管
12 容器
12S 側面
12T 頂面
12B 底面
A 中心軸
13 成分収容部
t 深さ
14 スクリュー(回転体)
15 軸
16 モータ
17 弁
18 成分収容部
d 上下方向の間隔
19 貯溜部
22 センサ
24 表示部
2 生乳
2a 乳脂肪分
2b 乳清
2c 白血球
1 white blood cell amount measuring device 10 centrifuge 11 pipe 12 container 12S side surface 12T top surface 12B bottom surface A central axis 13 component container t depth 14 screw (rotating body)
15 Shaft 16 Motor 17 Valve 18 Ingredient storage section d Vertical interval 19 Storage section 22 Sensor 24 Display section 2 Raw milk 2a Milk fat content 2b Whey 2c White blood cells

Claims (7)

生乳を収容する容器と、
前記容器の内部に配置され、前記容器の中心軸を回転軸として回転する回転体と、
前記容器の側面から突出し、前記生乳の成分を収容する成分収容部と、
を備え、
前記側面は、前記容器の底面と交差し、
前記底面は、前記中心軸と交差
前記成分収容部の上下方向の間隔が、前記中心軸から離れるにしたがって狭くなっていき、
前記成分収容部が前記中心軸から最も離れた部分に、前記成分を溜める貯溜部が配置されている遠心分離器。
a container containing raw milk;
a rotating body that is disposed inside the container and rotates about the central axis of the container;
an ingredient storage part that protrudes from the side surface of the container and stores ingredients of the raw milk;
with
the side surface intersects the bottom surface of the container;
the bottom surface intersects the central axis,
The vertical interval between the component storage portions becomes narrower as it moves away from the central axis,
A centrifugal separator in which a storage part for storing the component is arranged at a portion where the component storage part is most distant from the central axis .
請求項1に記載の遠心分離器であって、
前記回転体がスクリューである遠心分離器。
The centrifuge of claim 1 , wherein
A centrifugal separator, wherein the rotating body is a screw.
請求項1に記載の遠心分離器であって、
前記成分収容部に、前記生乳における白血球を吸着する吸着材を配置した、
遠心分離器。
The centrifuge of claim 1 , wherein
An adsorbent that adsorbs leukocytes in the raw milk is arranged in the component storage unit,
centrifuge.
請求項3に記載の遠心分離器であって、
前記吸着材がP-セレクチンである遠心分離器。
A centrifuge according to claim 3 , wherein
A centrifuge, wherein the adsorbent is P-selectin.
請求項1に記載の遠心分離器であって、
前記貯溜部に接続された配管と、
前記配管を開閉する弁と、
を備えた遠心分離器。
The centrifuge of claim 1 , wherein
a pipe connected to the reservoir;
a valve that opens and closes the pipe;
Centrifuge with.
請求項1ないし5のいずれか一項に記載に記載の遠心分離器と、
前記遠心分離器により得られた白血球を検知するセンサと、
前記センサの検知結果に基づき、白血球量を表示する表示部と、
を備えた白血球量計測装置。
a centrifuge according to any one of claims 1 to 5 ;
a sensor for detecting white blood cells obtained by the centrifuge;
a display unit that displays the amount of white blood cells based on the detection result of the sensor;
White blood cell amount measuring device with.
請求項5に記載に記載の遠心分離器と、
前記配管に接続され、前記貯溜部により溜められた白血球を検知するセンサと、
前記センサの検知結果に基づき、白血球量を表示する表示部と、
を備えた白血球量計測装置。
a centrifuge according to claim 5 ;
a sensor that is connected to the pipe and detects white blood cells stored in the storage unit;
a display unit that displays the amount of white blood cells based on the detection result of the sensor;
White blood cell amount measuring device with.
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JP2011164081A (en) 2010-01-15 2011-08-25 Sysmex Corp Sample preparation device

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JP2005523710A (en) 2002-04-24 2005-08-11 サーフェイス ロジックス,インコーポレイティド Leukocyte migration monitoring device and method
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