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How to enhance the echogenicity of microencapsulated gas and reduce attenuation

机译:如何增强微囊气体的回声性并减少衰减

摘要

It has been discovered microparticles formed from natural or synthetic polymer with thicker walls have significantly enhanced echogenicity as compared with microparticles having thinner walls. The effect of wall thickness has been determined experimentally as well as inserted into a formula for use in predicting the optimum conditions. In the preferred embodiment, the polymers are synthetic biodegradable polymers and the wall thickness is between about 100 and 660 nm, although wall thicknesses from about 20 nm to in excess of 500 nm can be used. The microparticles are manufactured with a diameter suitable for the targeted tissue to be imaged, for example, with a diameter of between 0.5 and 8 microns for intravascular administration, and a diameter of between 0.5 and 5 mm for oral administration for imaging of the gastrointestinal tract or other lumens. Preferred polymers are polyhydroxy acids such as polylactic acid-co-glycolic acid, polylactide or polyglycolide, most preferably conjugated to polyethylene glycol or other materials inhibiting uptake by the reticuloendothelial system (RES). The microspheres may be used in a variety of ultrasound imaging applications including cardiology applications, blood perfusion applications as well as for organ and peripheral vein imaging.
机译:已经发现,与具有较薄壁的微粒相比,由具有较厚壁的天然或合成聚合物形成的微粒具有显着增强的回声性。壁厚的影响已通过实验确定,并已插入公式中以预测最佳条件。在优选的实施方案中,聚合物是合成的可生物降解的聚合物,并且壁厚在约100至660nm之间,尽管可以使用约20nm至超过500nm的壁厚。所制造的微粒的直径适合于要成像的目标组织,例如,对于血管内给药,直径在0.5到8微米之间,对于胃肠道成像,口服时的直径在0.5到5 mm之间或其他流明。优选的聚合物是多羟基酸,例如聚乳酸-共-乙醇酸,聚丙交酯或聚乙交酯,最优选共轭至聚乙二醇或其他抑制网状内皮系统(RES)摄取的物质。所述微球可用于多种超声成像应用中,包括心脏病学应用,血液灌注应用以及器官和外周静脉成像。

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