Brydon H L, Hayward R, Harkness W, Bayston R
Department of Neurosurgery, Hospital for Sick Children, Institute of Child Health, London, UK.
Br J Neurosurg. 1995;9(5):645-51. doi: 10.1080/02688699550040936.
CSF surface tension has received little study, and yet it will effect the pressure at which shunt valves operate, and by influencing the degree of hydrophobicity (contact angle) will alter the attraction between bacteria and neurosurgical prostheses. A study is therefore presented of the effect of protein content upon the surface tension of CSF and its contact angle to silicone rubber. Both of these quantities fell throughout the normal range of CSF protein, but above 1 g/l, additional protein had little effect, and the results obtained were similar to that reported for plasma. The effect of surface tension on the opening and closing pressures of hydrocephalus shunt valves and of contact angle in the adhesion of bacteria to neurosurgical implants is discussed.
脑脊液表面张力鲜少被研究,然而它会影响分流阀的工作压力,并且通过影响疏水性程度(接触角)会改变细菌与神经外科植入物之间的吸引力。因此,本文呈现了一项关于蛋白质含量对脑脊液表面张力及其与硅橡胶接触角影响的研究。在脑脊液蛋白质的正常范围内,这两个量均下降,但高于1 g/l时,额外的蛋白质影响不大,所得结果与血浆报道的结果相似。文中讨论了表面张力对脑积水分流阀开闭压力的影响以及接触角对细菌粘附于神经外科植入物的影响。