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          世聯(lián)博研(北京)科技有限公司>技術文章>cellscale biotester 平面雙軸拉伸試驗機文獻,

          技術文章

          cellscale biotester 平面雙軸拉伸試驗機文獻,

          閱讀:893          發(fā)布時間:2019-12-20
          所用科研工具發(fā)表年份論文標題作者
          BioTester2019An Investigation Of Regional Variations In The Biaxial Mechanical Properties And Stress Relaxation Behaviors Of Porcine Atrioventricular Heart Valve LeafletsD. Laurence, C. Ross, S. Jett, C. Johns, A. Echols, R. Baumwart, R. Towner, J. Liao, P. Bajona, Y. Wu, C. H. Lee
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          BioTester2019Rate-Dependency Of The Mechanical Behavior Of Semilunar Heart Valves Under Biaxial DeformationA. Anssari-Benam, Y-T. Tseng, A. Bucchi
          BioTester2019An Investigation Of Layer-Specific Tissue Biomechanics Of Porcine Atrioventricular Valve Anterior LeafletsK. Kramer, C. Ross, A. Babu, Y. Wu, R. Towner, A. Mir, H. M. Burkhart, G. A. Holzapfel, C. H. Lee
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          BioTester2019Image-Based Analysis Of Uniaxial Ring Test For Mechanical Characterization Of Soft Materials And Biological TissuesE. E. van Haaften, M. C. van Turnhout, N. A. Kurniawan
          BioTester2019Mechanical Properties of Autologous Pericardium Change with Fixation Time: Implications for Valve ReconstructionS. C. Hofferberth, C. W. Baird, D. M. Hoganson, L. G. Quinonez, S. M. Emani, P. J. Del Nido, P. E. Hammer
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          BioTester2014Vascular Elastography: A Validation StudyR.G.P. Lopata, M.F.J. Peters, J. Nijs, C.W. Oomens, M.C.M. Rutten, F.N. van de Vosse
          BioTester2013A Nanocomposite Contact Lens For The Delivery Of Hydrophilic Protein DrugsJ. Zhang, R. Bi, W. Hodge, P. Yin, W.H. Tse
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          BioTester2013Corneal Resistance To Shear Force After Uva-Riboflavin Cross-LinkingA.P. Sondergaard, A. Ivarsen, J. Hjortdal
          BioTester2013In Vitro Fabrication Of Autologous Living Tissue-Engineered Vascular Grafts Based On Prenatally Harvested Ovine Amniotic Fluid-Derived Stem CellsB. Weber, D. Kehl, U. Bleul, S. Sammut, L. Frese, A. Ksiazek, L Behr, J. Achermann, G. Stranzinger, J. Robert, B. Sanders, M. Sidler, C.E. Brokopp, S.T. Proulx, T. Frauenfelder, R. Schoenauer, M.Y.Emmert, V. Falk, S.P.Herstrup
          BioTester2013Mechanical Analysis Of Ovine And Pediatric Pulmonary Artery For Heart Valve Stent DesignM.S. Cabrera, C.W.J. Oomens, C.V.C. Bouten, A.J.J.C. Bogers, S.P. Hoerstrup, F.P.T. Baaijens
          BioTester2013Mechanics Of The Pulmonary Valve In The Aortic PositionA.L.F. Soares, D. van Geeman, A.J. van den Bogaerdt, C.W.J. Oomens, C.V.C. Bouten, F.P.T. Baaijens
          BioTester2013Reduction Of Stromal Swelling Pressure After Uva-Riboflavin Cross-LinkingA.P. Sondergaard, A. Ivarsen, J. Hjortdal
          BioTester2012A Murine Experimental Model For The Mechanical Behavior Of Viable Right-Ventricular MyocardiumD. Valdez-Jasso, M.A. Simon, H.C. Champion, M.S. Sacks
          BioTester2012An Examination Of The Mechanical Properties Of The Annulus Fibrosus: The Effect Of Vibration On The Intra-Lamellar Matrix StrengthDiane Gregory, J. Callaghan
          BioTester2012Application Of Simple Biomechanical And Biochemical Tests To Heart Valve Leaflets: Implications For Heart Valve Characterization And Tissue EngineeringH-Y. Huang, B.N. Balhouse, S. Huang
          BioTester2012Biomechanical Properties Of The Transverse Carpal Ligament Under Biaxial StrainMichael Holmes, S. Howarth, J. Callaghan, P. Keir
          BioTester2012Multi-Scale Mechanical Characterization Of Scaffolds For Heart Valve Tissue EngineeringG. Argento, M. Simonet, C.W.J. Oomens, F.P.T. Baaijens
          BioTester2011A Comparison Of Uniaxial And Biaxial Mechanical Properties Of The Annulus Fibrosus: A Porcine ModelDiane Gregory, J. Callaghan
          BioTester2011Does Vibration Influence The Initiation Of Intervertebral Disc HerniationDiane Gregory, J. Callaghan
          BioTester2011Novel Lap Test Determines The Mechanics Of Delamination Between Annular Lamellae Of The Intervertebral DiscD. Gregory, J. Veldhuis, C. Horst, W. Brodland, J. Callaghan
          BioTester2011Surfactant Assisted Incorporation Of Single-Walled Carbon Nanotubes Into A Chitosan-Polyvinylpyrrolidone PolymerT. Davis, J. Zhang, J.E. Herrera
          BioTester2010An Examination Of The Influence Of Strain Rate On Subfailure Mechanical Properties Of The Annulus FibrosusD. Gregory, J. Callaghan
          BioTester2010Biaxial Mechanical Testing Of Human ScleraA. Eilaghi, J. Flanagan, I. Tertinegg, C. Simmons, W. Brodland, R. Ethier
          BioTester2010Effects Of Sclera Stiffness On Biomechanics Of The Optic Nerve Head In GlaucomaA. Eilaghi
          BioTester2010Effects Of Sclera Stiffness Properties On Optic Nerve Head BiomechanicsA. Eilaghi, J. Flanagan, C. Simmons, R. Ethier
          BioTester2009Fabrication Of Nanofiber Reinforced Protein Structures For Tissue EngineeringV. Beachley, X. Wen
          BioTester2009Strain Uniformity In Biaxial Specimens Is Highly Sensitive To Attachment DetailsA. Eilaghi, J. Flanagan, G.W. Brodland, R. Ethier
          BioTester2009The Influence Of The Tensile Material Properties Of Single Annulus Fibrosus Lamellae And The Interlamellar Matrix Strength On Disc Herniation And ProgressionD. Gregory

          BioTester高分辨率雙軸薄膜拉伸測試分析系統(tǒng)介紹

          系統(tǒng)概況: 
          cellscale品牌BIOTESTER膜狀生物材料雙軸拉伸測試分析系統(tǒng),平面材料雙軸測試系統(tǒng) 
          BioteSter膜狀生物材料雙軸拉伸測試分析系統(tǒng)(平面材料雙軸測試系統(tǒng))是一套簡單易用的對軟組織和生物材料進行定性研究的測試系統(tǒng),它可實時捕捉材料的動態(tài)圖像并同步顯示,分析力與位移以及同步視頻圖像用于分析結果和驗證,所得數(shù)據(jù)可輕松輸出為標準的電子表格,讓您的實驗結果一目了然!
          BioteSter膜狀生物材料雙軸拉伸測試分析系統(tǒng)(平面材料雙軸測試系統(tǒng))是用于測試小的生物材料樣本的材料力學特性,并對測試的圖像和數(shù)據(jù)進行分析的完整系統(tǒng)。
          BioteSter膜狀生物材料雙軸拉伸測試分析系統(tǒng)(平面材料雙軸測試系統(tǒng))能測試的生物材料包括:皮膚、韌帶、血管、心臟瓣膜、鞏膜、細胞膜、支架等及其替代組織。儀器緊湊、使用便捷,內置強大的圖像跟蹤和分析軟件可以對數(shù)據(jù)、圖像和視頻進行同步處理。數(shù)據(jù)可以以電子表格的形式導出,或者導入到分析軟件中進行分析。
          儀器特征: 
          1. 快速、準確及可重復的樣本裝載;可以對平面組織進行單軸或雙軸拉力測量;
          2. 測試樣本可以小到3X3毫米,大的可到15X15毫米;可以進行多模塊周期的、簡單的和松弛測試;
          3. 實時的數(shù)據(jù)制圖、綜合圖像跟蹤包、測試期間的實時反饋及圖像分析軟件;用USB 接口快速地連接到帶有圖像和標記跟蹤軟件的控制計算機;
          4. 直覺測試設計、集成的高分辨率CCD 相機可以為動態(tài)成像提供同步視頻跟蹤(高達15 幀/秒);
          5. 緊湊型機械形狀系數(shù);

          • 4 個高精度力學加載裝置
          • 基于高精度CCD成像的應變測量方式
          • 多種附件可供選擇,包括具有專li 技術的BioRakes——用于快速可靠的樣品安裝
          • 集成化的溫度控制池
          • 全功能用戶界面軟件,操作簡單,實時反饋循環(huán)、松弛以及多模態(tài)測試


          儀器參數(shù):

          cellscale品牌BIOTESTER膜狀生物材料雙軸拉伸測試分析系統(tǒng),平面材料雙軸測試系統(tǒng)

          該系統(tǒng)小測試樣本為 3×3mm,移動分辨率達到微米級,專li的夾持系統(tǒng)有助于快速和精準的樣本固定,讓您的實驗更精準、更高效!您也可選擇針腳鉤子或直接夾住的固定系統(tǒng),多種測試模式可選,并提供控溫浴槽,滿足您不同的實驗需求。 
          cellscale品牌BIOTESTER膜狀生物材料雙軸拉伸測試分析系統(tǒng),平面材料雙軸測試系統(tǒng) 
          BioteSter膜狀生物材料雙軸拉伸測試分析系統(tǒng)(平面材料雙軸測試系統(tǒng))應用領域非常廣泛,可用于生物組織、醫(yī)療器械、紡織品、橡膠材料、塑料薄膜、金屬、復合材料的研究,在生物醫(yī)學研究領域,主要用于人工皮膚、人造血管、人心臟瓣膜、人工角膜、人工鞏膜、人工肌腱、人工韌帶、人工軟組織、人工椎間盤、人工纖維環(huán)等,這些膜狀結構中的膜材料在體內均為雙向拉伸狀態(tài),因此傳統(tǒng)的單軸拉伸檢測試驗方法并不能如實反映材料在實際工程中的受力情況。
          隨著新材料以及工業(yè)的發(fā)展,對于橡膠、塑料、紡織品、布匹、紙張、薄膜等高分子材料的各向同性或者各向異性需要深入研究和測試,因此平面材料雙軸拉伸測試系統(tǒng)也可以用于測量膜材強度、彈性模量等多種力學性質。
          cellscale品牌BIOTESTER膜狀生物材料雙軸拉伸測試分析系統(tǒng),平面材料雙軸測試系統(tǒng)
          cellscale品牌BIOTESTER膜狀生物材料雙軸拉伸測試分析系統(tǒng),平面材料雙軸測試系統(tǒng)
          cellscale品牌BIOTESTER膜狀生物材料雙軸拉伸測試分析系統(tǒng),平面材料雙軸測試系統(tǒng)
          cellscale品牌BIOTESTER膜狀生物材料雙軸拉伸測試分析系統(tǒng),平面材料雙軸測試系統(tǒng)

           

           

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