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A portable extensional rheometer for measuring the viscoelasticity of pitcher plant and other sticky liquids in the field

机译:便携式拉伸流变仪,用于在现场测量水罐植物和其他粘性液体的粘弹性

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Background Biological fluids often have interesting and unusual physical properties to adapt them for their specific purpose. Laboratory-based rheometers can be used to characterise the viscoelastic properties of such fluids. This, however, can be challenging as samples often do not retain their natural properties in storage while conventional rheometers are fragile and expensive devices ill-suited for field measurements. We present a portable, low-cost extensional rheometer designed specifically to enable in situ studies of biological fluids in the field. The design of the device (named Seymour) is based on a conventional capillary break-up extensional rheometer (the Cambridge Trimaster). It works by rapidly stretching a small fluid sample between two metal pistons. A battery-operated solenoid switch triggers the pistons to move apart rapidly and a compact, robust and inexpensive, USB 3 high speed camera is used to record the thinning and break-up of the fluid filament that forms between the pistons. The complete setup runs independently of mains electricity supply and weighs approximately 1 kg. Post-processing and analysis of the recorded images to extract rheological parameters is performed using open source software. Results The device was tested both in the laboratory and in the field, in Brunei Darussalam, using calibration fluids (silicone oil and carboxymethyl cellulose solutions) as well as Nepenthes pitcher plant trapping fluids as an example of a viscoelastic biological fluid. The fluid relaxation times ranged from 1 ms to over 1 s. The device gave comparable performance to the Cambridge Trimaster. Differences in fluid viscoelasticity between three species were quantified, as well as the change in viscoelasticity with storage time. This, together with marked differences between N. rafflesiana fluids taken from greenhouse and wild plants, confirms the need for a portable device. Conclusions Proof of concept of the portable rheometer was demonstrated. Quantitative measurements of pitcher plant fluid viscoelasticity were made in the natural habitat for the first time. The device opens up opportunities for studying a wide range of plant fluids and secretions, under varying experimental conditions, or with changing temperatures and weather conditions.
机译:背景技术生物流体通常具有有趣和不寻常的物理性质,以使其适合其特定目的。基于实验室的流变仪可用于表征此类流体的粘弹性质。然而,这可能具有挑战性,因为样品通常无法在存储中保留其自然特性,而传统的流变仪则十分脆弱且昂贵的设备不适合现场测量。我们提出了一种便携式,低成本的拉伸流变仪,其专为在现场对生物流体进行原位研究而设计。该设备(命名为Seymour)的设计基于常规的毛细管破裂延伸流变仪(剑桥Trimaster)。它通过在两个金属活塞之间快速拉伸少量流体样品来工作。电池驱动的螺线管开关触发活塞快速分开,并且使用紧凑,坚固,便宜的USB 3高速相机记录在活塞之间形成的流体细丝的变细和破裂。完整的设置独立于市电供电,重量约为1千克。使用开源软件对记录的图像进行后处理和分析,以提取流变参数。结果该设备在文莱达鲁萨兰国的实验室和现场进行了测试,使用校准液(硅油和羧甲基纤维素溶液)以及猪笼草捕虫笼捕集液作为粘弹性生物液的示例。流体弛豫时间为1毫秒至1 s以上。该设备的性能可与Cambridge Trimaster媲美。量化了三种物质之间的流体粘弹性差异,以及粘弹性随储存时间的变化。这与从温室和野生植物中提取的莱佛士猪笼草(N. rafflesiana)液体之间的显着差异一起,证实了对便携式设备的需求。结论证明了便携式流变仪的概念证明。首次在自然栖息地中对捕虫草的植物液体的粘弹性进行了定量测量。该设备为研究各种植物液和分泌物(在变化的实验条件下或在变化的温度和天气条件下)提供了机会。

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