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Collaborative Research: Acoustic Tweezing Rheometry of Biological Fluids

Collaborative Research: Acoustic Tweezing Rheometry of Biological Fluids
合作研究:生物流体的声学镊流变测量
批准号:
1438569
负责人:
R Holt
金额:
$26.87万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-11-01 至 2018-10-31

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中文摘要
翻译
CBET 1438569/1438567该奖项由化学、生物工程、环境和运输系统司(CBET,工程局)的颗粒和多相过程(PMP)计划获得,由生物基础设施部(BIO局)的生物研究仪器开发计划共同资助。测量生物材料和其他复杂流体(如聚合物液体)的物理和机械性能给科学家和工程师带来了特殊的挑战。这些材料的性质可能会由于材料与实心壁之间的接触而改变,例如容纳材料的容器的壁。这个合作项目包括开发一种新的设备和新的方法来测量流体或固体的流变性,以避免样品与固体壁之间的接触。这种方法被称为声钳流变法,它使用声波悬浮来保持小样本自由悬浮在空气或水中,同时对材料施加使其变形的力。然后,该装置通过记录样品形状随时间的变化来读取材料的响应。通过将样品的形状与作为该项目一部分进行的计算机模拟进行比较,可以推断出材料的流变性。这一新仪器将在各种科学和工程学科中得到应用。声波钳形流变仪将用于测量活性聚合物、生物流体和软组织的性质,而不会出现污染、生物激活或因与固体壁接触而形成凝胶等伪影。通过分析研究和计算模拟,建立了一种非接触测量材料常数的模型。声钳技术将被开发和验证,用于测量粘弹性流体的材料特性。该方法将应用于生物液和软组织,包括凝血过程中的全血和胶原凝胶。结果将广泛传播,包括推广到可能受益于新方法的生物界。
英文摘要
CBET 1438569/1438567This award by the Particulate and Multiphase Processes (PMP) program in the Division of Chemical, Bioengineering, Environmental, and Transport Systems (CBET, Engineering Directorate), is co-funded by the Instrument Development for Biological Research (IDBR) program in the Division of Biological Infrastructure (BIO Directorate).Measuring the physical and mechanical properties of biological materials and other complex fluids such as polymeric liquids poses special challenges for scientists and engineers. The properties of these materials can change owing to the contact between the material and solid walls, such as the walls of a container holding the material. This collaborative project involves the development of a new device and new method to measure the rheological properties of fluids or solids that avoid contact between the sample and solid walls. The method is called acoustic tweezing rheometry, and it uses acoustic levitation to hold a small sample freely suspended in air or water while applying a force on the material that causes it to deform. The device then reads the response of the material by recording changes in the shape of the sample as a function of time. By comparing the shape of the sample with computer simulations carried out as part of the project, the rheological properties of the material can be deduced. This new instrument will find applications in a diverse array of science and engineering disciplines.Acoustic tweezing rheometry will be used to measure properties of active polymeric and biological fluids and soft tissue without artifacts such as contamination, biological activation or gelation due to contact with solid walls. A model will be developed for noncontact measurement of material constants through analytical studies and computational simulation. The acoustic tweezing technique will be developed and validated for measurement of material properties of viscoelastic fluids. The method will be applied to biological fluids and soft tissue, including whole blood during coagulation and collagen gel. Results will be disseminated broadly, including outreach to the biological communities that could benefit from the new method.
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  • 项目类别:
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  • 资助金额:
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  • 财政年份:
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  • 负责人:
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