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Cellscale公司Biotester平面双轴测试系统

报价 ¥50万 - 100万

品牌

暂无

型号

Biotester

产地

美洲加拿大

应用领域

暂无

平面双轴测试系统是一款双轴拉伸测试系统。可对软组织和生物材料进行定性研究测试,能实时捕捉材料的动态图像并同步显示,分析力与位移以及同步视频图像用于分析结果和验证,所得数据可输出为标准的电子表格,或者导入到分析软件中进行分析。
X、Y轴处于同一个平面上,能对平面组织进行单轴或双轴拉力测量,位移和力控制、循环测试、蠕变、预加载和非等轴双向加载都很容易规定。
夹具具有挂载梳或直接夹住的固定系统,多种测试模式可选。
应用领域:
 
可用于生物组织、医疗器械、纺织品、橡胶材料、塑料薄膜、金属、复合材料的研究。
在生物医学研究领域,主要用于人工皮肤、人造血管、人心脏瓣膜、人工角膜、人工巩膜、人工肌腱、人工韧带、人工软组织、人工椎间盘、人工纤维环等生物材料的测试。
可用于橡胶、塑料、纺织品、布匹、纸张、薄膜等高分子材料的各向同性或者各向异性研究和测试,用于测量膜材强度、弹性模量等多种力学性质。
 
样品要求:
测试样本不小于3×3毫米,不大于15×15毫米,可以进行多模块周期的、拉伸和松弛测试。
 产品提供控温浴槽,配备培养基加热腔和温度传感器,以保持标本处于合适的生理条件。

最近发表的论文:

2019 An Investigation Of Regional Variations In The Biaxial Mechanical Properties And Stress Relaxation Behaviors Of Porcine Atrioventricular Heart Valve Leaflets D. Laurence, C. Ross, S. Jett, C. Johns, A. Echols, R. Baumwart, R. Towner, J. Liao, P. Bajona, Y. Wu, C. H. Lee
2019 Strain Effects On Collagen Proteolysis In Heart Valve Tissues K. Barbour, H. Y. S. Huang
2019 Comparison Of Biomechanical Properties And Microstructure Of Trabeculae Carneae, Papillary Muscles, And Myocardium In The Human Heart F. Fatemifar, M. D. Feldman, M. Oglesby, H. C. Han
2019 Rate-Dependency Of The Mechanical Behavior Of Semilunar Heart Valves Under Biaxial Deformation A. Anssari-Benam, Y-T. Tseng, A. Bucchi
2019 An Investigation Of Layer-Specific Tissue Biomechanics Of Porcine Atrioventricular Valve Anterior Leaflets K. Kramer, C. Ross, A. Babu, Y. Wu, R. Towner, A. Mir, H. M. Burkhart, G. A. Holzapfel, C. H. Lee
2019 The Degradation And Performance Of Electrospun Supramolecular Vascular Scaffolds Examined Upon In Vitro Enzymatic Exposure E. E. van Haaften, R. Duijvelshoff, B. D. Ippela, S. H. M. Sontjens, M. H. C. J. van Houtem, H. M. Janssen, A. I. P. M. Smits, N. A. Kurniawan, P. Y. W. Dankers, C. V. C. Bouten
2019 Mechanical Damage Characterization In Human Femoropopliteal Arteries Of Different Ages E. Anttila, D. Balzani, A. Desyatova, P. Deegan, J. MacTaggart, A. Kamenskiy
2019 Cyclic Strain Affects Macrophage Cytokine Secretion And Extracellular Matrix Turnover In Electrospun Scaffolds V. Bonito, B. J. deKort, C. V. C. Bouten, A. I. P. M. Smits
2019 Image-Based Analysis Of Uniaxial Ring Test For Mechanical Characterization Of Soft Materials And Biological Tissues E. E. van Haaften, M. C. van Turnhout, N. A. Kurniawan
2019 Mechanical Properties of Autologous Pericardium Change with Fixation Time: Implications for Valve Reconstruction S. C. Hofferberth, C. W. Baird, D. M. Hoganson, L. G. Quinonez, S. M. Emani, P. J. Del Nido, P. E. Hammer
2019 Tissue Level Mechanical Properties and Extracellular Matrix Investigation of the Bovine Jugular Venous Valve Tissue A. A. Benson, H-Y. S. Huang
2019 Regional Biaxial Mechanical Data of the Mitral and Tricuspid Valve Anterior Leaflets D. Laurence, C. Ross, S. Jett, C. Johns, A. Echols, R. Baumwart, R. Towner, J. Liao, P. Bajona, Y. Wu, C. H. Lee
2019 Mechanics of the Tricuspid Valve-From Clinical Diagnosis/Treatment, In-Vivo and In-Vitro Investigations, to Patient-Specific Biomechanical Modeling. C. H. Lee, D. Laurence, C. Ross, K. Kramer, A. Babu, E. Johnson, M. C. Hsu, A. Aggarwal, A. Mir, H. Burkhart, R. Towner, B. Baumwart, Y. Wu
2019 An Investigation of the Glycosaminoglycan Contribution to Biaxial Mechanical Behaviours of Porcine Atrioventricular Heart Valve Leaflets C. Ross, D. Laurence, Y. Wu, J. Richardson, A. Babu, L. Evans, E. Beyer, R. Childers, Y. Wu, R. Towner, K. M. Fung, A. Mir, H. Burkhart, G. A. Holzapfel, C. H. Lee


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