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          世聯(lián)博研(北京)科技有限公司>>自動膜片鉗和雙電極電壓鉗系統(tǒng),Automated patch clamp and two-electrode voltage clamp system>>膜片鉗、顯微操縱儀>>ChannelMAX 100AChannelMAX 100A自動膜片鉗和雙電極電壓鉗系統(tǒng)

          ChannelMAX 100A自動膜片鉗和雙電極電壓鉗系統(tǒng)

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          • ChannelMAX 100A自動膜片鉗和雙電極電壓鉗系統(tǒng)

          • ChannelMAX 100A自動膜片鉗和雙電極電壓鉗系統(tǒng)

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          具體成交價(jià)以合同協(xié)議為準(zhǔn)
          • 型號 ChannelMAX 100A
          • 品牌
          • 廠商性質(zhì) 代理商
          • 所在地 北京市

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          更新時(shí)間:2017-06-16 13:38:41瀏覽次數(shù):1140

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          產(chǎn)品簡介

          ChannelMAX 包括四個(gè)自動操縱器,兩次灌注一個(gè)數(shù)據(jù)采集控制系統(tǒng),和軟件。 您可以使用系統(tǒng)兩個(gè)雙電極電壓鉗實(shí)驗(yàn),或Z多四個(gè)膜片鉗實(shí)驗(yàn)。 這個(gè)系統(tǒng)為高通量實(shí)驗(yàn)提供了Z佳的價(jià)值。
          優(yōu)點(diǎn)
          ?Z多可運(yùn)行四次膜片鉗實(shí)驗(yàn)或兩次
          雙電極電壓鉗實(shí)驗(yàn)同時(shí)進(jìn)行
          - 用這個(gè)新的設(shè)計(jì),系統(tǒng)提高效率,降低設(shè)備成本
          并節(jié)省空間。 實(shí)驗(yàn)變少了勞動密集型。
          ?高質(zhì)量的數(shù)據(jù)記錄 - 系統(tǒng)擁有同樣高品質(zhì),低噪音

          詳細(xì)介紹

          ChannelMAX 100A自動膜片鉗和雙電極電壓鉗系統(tǒng)

          包括四個(gè)自動操縱器兩次灌注一個(gè)數(shù)據(jù)采集控制系統(tǒng),和軟件。 您可以使用系統(tǒng)兩個(gè)雙電極電壓鉗實(shí)驗(yàn),或zui多
          四個(gè)膜片鉗實(shí)驗(yàn)。 這個(gè)系統(tǒng)為高通量實(shí)驗(yàn)提供了*的價(jià)值。
          優(yōu)點(diǎn)
          •zui多可運(yùn)行四次膜片鉗實(shí)驗(yàn)或兩次
          雙電極電壓鉗實(shí)驗(yàn)同時(shí)進(jìn)行
          - 用這個(gè)新的設(shè)計(jì),系統(tǒng)提高效率,降低設(shè)備成本
          并節(jié)省空間。 實(shí)驗(yàn)變少了勞動密集型。
          •高質(zhì)量的數(shù)據(jù)記錄 - 系統(tǒng)擁有同樣高品質(zhì),低噪音,低音漂移數(shù)據(jù)采集為PatchMAX 100A系統(tǒng)。
          •*價(jià)值 - 與傳統(tǒng)電生理學(xué)相比該系統(tǒng)更具成本效益

          Save space

          As the system can be used for both two-electrode voltage clamp and patch clamp, less lab space is required.  You do not need two data acquisition systems.  All the data is on one computer, so it is easy for you to compare.

          AdaptorSwitching between patch clamp and two-electrode voltage clamp is easy

          The system is designed so that it can switch from patch clamp to a two-electrode voltage clamp easily.  With all of the adjustable parts, the system can easily be adapted to different glass electrode lengths and sizes, and different amplifiers. 

          Use with traditional two-electrode voltage clamp experiments

          It is possible to use the ChannelMAX 100A Mini with a traditional two electrode voltage clamp to run two two-electrode voltage clamp experiments simultaneously.

          High efficiency, less labor-intensive

          As the system is automated, it is easy to run experiments in parallel to increase efficiency.  Patch clamp and two-electrode voltage clamp should not be as labor-intensive as before.  Let the equipment do the hard work for you!



          System Specifications

          Major Components
          • Two micro-manipulators, each one includes a motorized linear stage and a manual XY stage
          • One perfusion chamber I and platform
          • One PCI data acquisition board with BNC interface
          • Mechanical error: < ± 0.05 mm
          • Dimension: 8 in x 12 in x 9.5 in
          • Weight: 10 lb
          • Line voltage: 100 VAC to 120 VAC, or 220 VAC to 240 VAC

          Motorized Stage

          • Travel: 28 mm
          • Resolution: 0.05 µm
          • Maximum speed: 4 mm/s
          • Lowest speed: 0.5 µm/s
          • Serial/USB interface

          Manual XY Stage

          • Modular Dovetail Linear Stages
          • Set, lock, and forget; less susceptible to shock and vibration
          • 0.5 in travel

          Data Acquisition Board

          • Sixteen analog inputs, 16-bit, 250 kS/s, Input Impedance: > 10 GΩ in parallel with 100pF
          • Two 16-bit analog outputs, 740 kS/s per channel.  Output impedance: 0.2 Ω
          • 24 digital I/O lines, 32-bit counters; digital triggering
          • Analog input range: ± 10 V
          • Analog output range: ± 10 V

          Perfusion Chamber

          Accepts 1/16" tubin

          ChannelMAX 100A Mini 
          Patch Clamp and Two Electrode Voltage Clamp System



          ChannelMAX 100A MiniKey Features


          A system for both oocyte and cell patch clamp and two-electrode voltage champ

          This patent-pending design is based on the PatchMAX 100A, but it comes with two computer controlled manipulators.  With the additional micromanipulator, the system can do two patch clamp experiments simultaneously, or one two-electrode voltage clamp experiment.  With this new design, the system increases efficiency, decreases equipment cost, and saves space.  As the system is controlled by the computer, the experiment becomes less labor intensive.

          Run two patch clamp experiments simultaneously

          The ChannelMAX 100A Mini comes with two computer controlled manipulators, as a result users can run two patch clamp experiments simultaneously.  Doing two experiments at the same time allows for better decision making while doing experiments.  Single channel activities are random events.  It is difficult to understand what is going on by looking at the channel open and close, especially when you are working on a new channel.  For example, it is hard to distinguish a channel with two open stages from two channels in the same patch.  With two patches that are treated with the same conditions you have more information that could be critical in making the right decisions while working on the precious seals.


          High quality patch clamp

          ChannelMAX 100A Mini with 2 chambersAs in the PatchMAX 100A, the ChannelMAX 100A the patch clamp is noise free and low drift.  The computer controlled system eliminates human errors so the success rate of making gigaohm seals using the ChannelMAX 100A is over 90%.


          Run two independent patch clamp experiments
           
          It is very easy to change the configuration to run two independent experiments.  As shown in the figure on the right, you can easily have two perfusion chambers on the same setup.

          Automated two-electrode voltage clamp

          For the two-electrode voltage, impalement is controlled by computer so no microscope is needed.  When the electrode enters the oocyte, the membrane potential changes and the movement is stopped.  The user can define the membrane potential threshold and delay for the stop after the electrode enters the oocyte.

          Save on equipment cost

          This system is more cost effective than a traditional electrophysiology setup.  In order to reach the same functionality and productivity using a traditional setup, the equipment cost would be much higher, as compared in the table below.  Plus labor cost is additional.  Coming with the lower cost is also better quality. 

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