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METHOD FOR INVESTIGATION OF BIOLOGICAL COMPATIBILITY OF SYNTHETIC MATERIAL OF MEDICAL-BIOLOGICAL PURPOSE WITH BIOLOGICAL TISSUES

机译:医用生物组织合成材料生物相容性研究方法

摘要

FIELD: testing equipment.;SUBSTANCE: invention is related to methods for investigation of synthetic materials for biological compatibility with tissues of live organism. Method for investigation of biological compatibility of synthetic material of medical-biological purpose with biological tissues, in which implant is analysed by method of microscopy with production of surface image with nanometre resolution. At the same time implant cut is investigated by methods of atomic-force microscopy, besides investigation of implant cut by method of atomic-force microscopy is carried out in two contact modes: constant force and lateral forces. Contact modes are carried out in air at room temperature with application of contact cantilevers with radius of probe tip curvature of less than 10 nm. Then using images registered in mode of constant force, parametres of roughness and height difference are calculated, mode of lateral forces registration makes it possible to differ areas of scanning with various friction coefficients, and also peculiarities of implant cut surface relief. And method of atomic-force spectroscopy is used to register forces of adhesion between probe of cantilever and surface of implant cut by results of processing of cantilever advance-retract power curves from cut of implant, besides measurement of adhesion force are carried out in several sections of investigated implant cut.;EFFECT: assessment of extent of connective tissue components penetration inside implant and extent of implant fixation in organism.;3 dwg
机译:技术领域本发明涉及用于研究合成材料与活生物体组织的生物相容性的方法。用于研究医学生物学目的的合成材料与生物组织的生物相容性的方法,其中通过显微镜法分析植入物并产生具有纳米分辨率的表面图像。同时用原子力显微镜方法研究植入物切割,除了用原子力显微镜方法研究植入物切割外,还以两种接触方式进行:恒力和侧向力。接触模式是在室​​温下在空气中通过施加接触悬臂而实现的,其中探针的曲率半径小于10 nm。然后,使用以恒定力模式记录的图像,计算粗糙度和高度差的参数,通过横向力记录模式可以以不同的摩擦系数来区分扫描区域,并且还可以实现植入物切割表面起伏的特殊性。并利用原子力光谱法记录了悬臂探针与植入物表面之间的粘附力,该力是通过对植入物切口的悬臂进退功率曲线进行处理的结果进行记录的,此外还对粘附力进行了多次测量效果:评估结缔组织成分渗透到植入物内部的程度以及植入物在生物体内的固定程度。3dwg

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