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MaxTwo 高通量高分辨率細(xì)胞電刺激培養(yǎng)成像儀

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世聯(lián)博研(北京)科技有限公司(Bio Excellence International Tech Co.,Ltd)簡(jiǎn)稱為世聯(lián)博研。世聯(lián)博研是一家集進(jìn)口科研儀器代理銷售以及實(shí)驗(yàn)技術(shù)服務(wù)于一體的技術(shù)公司。世聯(lián)博研專注生物力學(xué)和3D生物打印前沿科研設(shè)備代理銷售及科研實(shí)驗(yàn)項(xiàng)目合作服務(wù),內(nèi)容涵蓋了血管力學(xué)生物學(xué)、生物力學(xué)建模仿真與應(yīng)用、細(xì)胞分子生物力學(xué)、組織修復(fù)生物力學(xué)、骨與關(guān)節(jié)生物力學(xué)、口腔力學(xué)生物學(xué)、眼耳鼻咽喉生物力學(xué)、康復(fù)工程生物力學(xué)、生物材料力學(xué)與仿生學(xué)、人體運(yùn)動(dòng)生物力學(xué)等生物力學(xué)研究以及生物材料打印、打印樣品生物力學(xué)性能測(cè)試分析的前沿領(lǐng)域科研利器和科研服務(wù)。

世聯(lián)博研的客戶范圍:
科研院所單位、生物醫(yī)學(xué)科研高校、醫(yī)院基礎(chǔ)科研單位等。

世聯(lián)博研公司代理的品牌具有:
1)近10年長(zhǎng)期穩(wěn)定的貨源
2)以生物力學(xué)、細(xì)胞力學(xué)、細(xì)胞生物分子學(xué)、生物醫(yī)學(xué)組織工程、生物材料學(xué)為主,兼顧其他相關(guān)產(chǎn)品線
3)提供專業(yè)產(chǎn)品培訓(xùn)和銷售培訓(xùn)
4)良好的技術(shù)支持
5)已成交老客戶考證
6)每年新增的貨源。

細(xì)胞應(yīng)力加載儀,3細(xì)胞打印機(jī),NanoTweezer新型激光光鑷系統(tǒng),PicoTwist磁鑷,美國(guó)NeuroIndx品牌Kuiqpick單細(xì)胞捕獲切割系統(tǒng)

MaxTwo高通量高分辨率細(xì)胞電刺激培養(yǎng)成像儀

 

MaxTwo, a high-throughput, high-resolution electrophysiology platform for recording and stimulating electrogenic cells in vitro. MaxTwo combines 6 or 24 MaxOne high-density microelectrode arrays in a multiwell format.

Product Overview

MaxWell Biosystems’ MaxTwo is a CMOS-based multiwell HD-MEA platform. It has all the capabilities of MaxOne–it captures high-quality signals at sub cellular resolution from long-term culture experiments. Electrical stimulation protocols can also be performed.

MaxTwo multiwell HD-MEA system allows for easy and vibration-free insertion of the MEA device. It can operate inside cell-culture incubators and is designed for integration with automation systems. Microscopy of samples in MaxTwo wells can be performed using upright objectives. Overall, MaxTwo is a powerful electrical imaging system for drug discovery, safety pharmacology, and iPSC phenotyping applications.

Key Features per Well

  • 26,400 electrodes (9.3×5.45 sq-μm, 17.5 μm pitch)
  • 1024 low-noise readout channels
  • 32 stimulation channels
  • Large sensor area (3.85×2.10 sq-mm)
  • Switch-matrix technology for flexible array reconfiguration
  • Non-invasive, label-free
  • High-resolution activity map
  • Axonal action potential propagation tracking
  •  

 

 

 

MaxOne細(xì)胞電刺激培養(yǎng)成像記錄電生理系統(tǒng)()MaxOne Single-Well MEA)基于CMOS的高密度微電極陣列技術(shù)

MaxOne是記錄和刺激體外細(xì)胞的zui強(qiáng)大的電生理平臺(tái)。 MaxOne是單孔格式的高密度微電極陣列(HD-MEA)系統(tǒng)。
MaxOne是一款基于CMOS的高密度微電極陣列(HD-MEA)系統(tǒng)。
這使得緊湊而又功能強(qiáng)大的放大器,濾波器和數(shù)字化儀能夠集成到MEA中,并且與待研究的細(xì)胞緊密相連。

?高分辨率,無(wú)標(biāo)記細(xì)胞活動(dòng)成像
?亞細(xì)胞和網(wǎng)絡(luò)活動(dòng)的無(wú)標(biāo)記檢測(cè)
?多種選擇性電刺激
?全面的數(shù)據(jù)分析工具

 

mxwbio MaxOne Single-Well MEA

從原發(fā)組織中收集細(xì)胞,如大腦,視網(wǎng)膜或心臟。

準(zhǔn)備實(shí)驗(yàn)時(shí),開(kāi)始在MaxWell BiosystemsMEA芯片上培養(yǎng)細(xì)胞。

開(kāi)始您的實(shí)驗(yàn):在MaxLab Live軟件的幫助下,跟蹤結(jié)果并在計(jì)算機(jī)上分析數(shù)據(jù)。

使用結(jié)果來(lái)指導(dǎo)進(jìn)一步的實(shí)驗(yàn),獲得科學(xué)見(jiàn)解并發(fā)布數(shù)據(jù)。

Multiscale recording and analysis —

1. High-resolution, label-free cell activity imaging

Analyze subcellular features, such as full axonal arbors in single neurons.

Electrical signals tracked along neurites enable to investigate novel parameters. High-resolution tracking of axonal action potential propagation allows for investigating changes in axonal conduction velocity.

 

2. Whole sample activity map

Localize active cells on the MEA during experiments.

The morphological structure of a primary cortical cell culture was imaged using an upright microscope with 10x objective. MAP2 staining was used to visualize the neurons. The optical image closely matches the electrical image obtained using MaxOne. The electrical image provides the location of the cells, as well as information on the activity of the cells, such as spike rate and amplitude.

 

 

3. Smart population recording

Identify defined cells for long term recording and further analyses.

Different combinations of parameters can be used to automatically select a defined set of cells to be recorded, such as spike rate, amplitude, etc. The raster plot shows the dynamics of the network activity using 1,024 active electrode sites. Burst features can be investigated in detail (one burst zoomed in).

 



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