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Low-cost microcontroller platform for studying lymphatic biomechanicsin vitro

机译:用于研究淋巴生物力学的低成本微控制器平台体外

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摘要

The pumping innate to collecting lymphatic vessels routinely exposes the endothelium to oscillatory wall shear stress and other dynamic forces. However, studying the mechanical sensitivity of the lymphatic endothelium remains a difficult task due to limitations of commercial or custom systems to apply a variety of time-varying stresses in vitro. Current biomechanical in vitro testing devices are very expensive, limited in capability, or highly complex; rendering them largely inaccessible to the endothelial cell biology community. To address these short-comings, the authors propose a reliable, low-cost platform for augmenting the capabilities of commercially available pumps to produce a wide variety of flow rate waveforms. In particular, the Arduino Uno, a microcontroller development board, is used to provide open-loop control of a digital peristaltic pump using precisely-timed serial commands. In addition, the flexibility of this platform is further demonstrated through its support of a custom-built cell-straining device capable of producing oscillatory strains with varying amplitudes and frequencies. Hence, this microcontroller development board is shown to be an inexpensive, precise, and easy-to-use tool for supplementing in vitro assays toquantify the effects of biomechanical forces on lymphatic endothelial cells.
机译:先天性的收集淋巴管的抽动通常使内皮受到振荡的壁切应力和其他动力的作用。然而,由于商业或定制系统在体外施加多种随时间变化的应力的限制,研究淋巴内皮的机械敏感性仍然是一项艰巨的任务。当前的生物力学体外测试设备非常昂贵,功能有限或非常复杂。致使内皮细胞生物学界很难接近它们。为了解决这些缺点,作者提出了一种可靠的低成本平台,用于增强商用泵产生多种流速波形的能力。特别是,微控制器开发板Arduino Uno用于使用精确定时的串行命令提供对数字蠕动泵的开环控制。另外,该平台的灵活性通过其对定制的细胞应变设备的支持得以进一步证明,该设备能够产生具有变化幅度和频率的振荡应变。因此,该微控制器开发板被证明是一种廉价,精确且易于使用的工具,可用于补充体外检测,量化生物力学力对淋巴管内皮细胞的影响。

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