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通过微量移液器进行纳升范围内的流体压力注射。

Pressure injections of fluid in the nanoliter range via micropipettes.

作者信息

van Dongen P A

出版信息

J Neurosci Methods. 1984 Apr;10(4):281-91. doi: 10.1016/0165-0270(84)90021-9.

Abstract

The relationship between pressure, ejection duration and volume ejected was experimentally determined in vitro for micropipettes with different external tip diameters. The relationship between ejection duration and ejected volume is linear in the steady state (i.e. with ejection durations of 1 s or longer) and at sufficiently high pressures (above about 100 kPa) and for pipettes with a sufficiently high hydrodynamic conductance (larger than 1 pl s-1 kPa-1 at 230 kPa). In this range, flows were found with low Reynolds numbers (smaller than 10), which is consistent with laminar flows. For all but the largest micropipettes, the relationship between pressure and ejected volume is alinear: the pipettes' apparent hydrodynamic conductances increase with increasing pressure. Micropipettes with apparent hydrodynamic conductances between 0.04 and 1400 pl s-1 kPa-1 (at 230 kPa) were tested. Duration-pressure combinations could be defined where the duration-volume relationship was either linear or monotonic. such duration-pressure combinations were different for pipettes with different apparent hydrodynamic conductances. A quick method is described to measure the pipette's apparent hydrodynamic conductance at the pressure used, corrected for the fluid's viscosity. Measurement of this conductance permits predictable injections of known volumes of fluid in the range of 100 pl to 1 microliter with a precision of 10-20%.

摘要

针对不同外部尖端直径的微量移液器,在体外通过实验确定了压力、喷射持续时间与喷射体积之间的关系。在稳态下(即喷射持续时间为1秒或更长)、足够高的压力(高于约100 kPa)以及具有足够高的流体动力传导率(在230 kPa时大于1 pl s⁻¹ kPa⁻¹)的移液器中,喷射持续时间与喷射体积之间的关系呈线性。在此范围内,发现流动的雷诺数较低(小于10),这与层流一致。对于除最大的微量移液器之外的所有移液器,压力与喷射体积之间的关系是非线性的:移液器的表观流体动力传导率随压力增加而增加。测试了表观流体动力传导率在0.04至1400 pl s⁻¹ kPa⁻¹(在230 kPa时)之间的微量移液器。可以定义持续时间 - 压力组合,其中持续时间 - 体积关系要么是线性的,要么是单调的。对于具有不同表观流体动力传导率的移液器,这种持续时间 - 压力组合是不同的。描述了一种快速方法,用于测量在所用压力下移液器的表观流体动力传导率,并针对流体粘度进行校正。测量这种传导率可以在100 pl至1微升的范围内以10 - 20%的精度可预测地注射已知体积的流体。

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