基底膜牽拉動(dòng)態(tài)應(yīng)力細(xì)胞加載系統(tǒng)-細(xì)胞培養(yǎng)儀器-儀器設(shè)備-生物在線

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米力光國(guó)際貿(mào)易有限公司上海
基底膜牽拉動(dòng)態(tài)應(yīng)力細(xì)胞加載系統(tǒng)

基底膜牽拉動(dòng)態(tài)應(yīng)力細(xì)胞加載系統(tǒng)

商家詢價(jià)

產(chǎn)品名稱: 基底膜牽拉動(dòng)態(tài)應(yīng)力細(xì)胞加載系統(tǒng)

英文名稱:

產(chǎn)品編號(hào): MechanoCulture

產(chǎn)品價(jià)格: 0

產(chǎn)品產(chǎn)地: 美國(guó)

品牌商標(biāo): cellscale

更新時(shí)間: null

使用范圍: null

米力光國(guó)際貿(mào)易有限公司上海
  • 聯(lián)系人 :
  • 地址 : 中國(guó)上海上海上海市
  • 郵編 : 201112
  • 所在區(qū)域 : 上海
  • 電話 : 180****9478 點(diǎn)擊查看
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  • 郵箱 : brightzhou@micoforce.com

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細(xì)胞應(yīng)力加載系統(tǒng)周期性基底膜牽拉動(dòng)態(tài)張應(yīng)力軟骨韌帶肌腱骨組織工程細(xì)胞體外培養(yǎng)

A diverse group of products for culturing cells in a mechanically active environment

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The MechanoCulture product group is used for culturing cells in a mechanically active environment. This product group contains configurations to support single or multiple parallel tests using a variety of flexible membranes and scaffolds. The on-board controllers enable PC-independent execution of user-defined motion protocols.

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MechanoCulture MP

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The MechanoCulture MP is a high throughput system that uses vertically translating posts to biaxially stretch an array of 35 circular membranes. Each 7mm diameter membrane is isolated in its own well holding 0.6mL of media. The membrane array can be removed from the actuation assembly for inverted microscope imaging.

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MechanoCulture B1

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The MechanoCulture B1 imposes a biaxial stretch protocol on a 35mm circular sample that can be punched out of any user-supplied extensible sheet. The system supports both 3D scaffolds with embedded cells and 2D membranes with adhered cells. The chamber can be configured for 0.5-100mL of media.

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MechanoCulture T6

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The MechanoCulture T6 leverages a powerful 250N actuator for cartilage, ligament, and bone tissue engineering work. The T6 can uniaxially stretch up to 6 clamp-mounted specimens.

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MechanoCulture W6

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The MechanoCulture W6 employs profiled clamp plates to form a large sheet membrane into 12 test chambers. All 12 chambers can then be uniaxially stretched according to a user-specified protocol. Since the sheet membrane forms the bottom of the test chamber, the entire device can be positioned on an inverted microscope for in-process imaging.

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