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Behavior of Monosodium Urate Crystals in a Highly Viscous Model of Synovial Fluid

机译:滑液高粘度模型中尿酸单钠晶体的行为

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摘要

To develop gout diagnosis using magnetic fields and near-infrared light, the orientation behavior of monosodium urate crystals in a highly viscous suspension was characterized. The transmitted light intensity was used to monitor orientation time and behavior within an electromagnet. In glycerol with a viscosity of 1250 mPa center dot s, the crystals were oriented in 4500 s at 100 mT. This was shortened to 360 s when the magnetic field was 500 mT. Similar behavior was observed in a hyaluronic acid solution, which is one component of synovial fluid and which had a viscosity of 960 mPa center dot s. The crystal orientation times followed theoretical values when the viscosity was 10 mPa center dot s or less but were shorter than expected at higher viscosities. In general, the viscosity decreases to about 300 mPa center dot s when inflammation occurs in a joint. In this case, the orientation time is expected to be about 1 min. Device applications are possible given the orientation times.
机译:为了发展利用磁场和近红外光对痛风的诊断,对高粘性悬浮液中尿酸单钠晶体的取向行为进行了表征。透射的光强度用于监测电磁体内的定向时间和行为。在粘度为1250 mPa中心点s的甘油中,晶体在100 mT下于4500 s内取向。当磁场为500 mT时,该时间缩短为360 s。在透明质酸溶液中观察到了类似的行为,透明质酸溶液是滑液的一种成分,其粘度为960 mPa中心点s。当粘度为10mPa中心点s或更小时,晶体取向时间遵循理论值,但是比在更高粘度下的预期时间短。通常,当关节发炎时,粘度降低至约300mPa中心点s。在这种情况下,定向时间预计约为1分钟。给定定向时间,可以进行设备应用。

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