Marks N J
J R Soc Med. 1985 Apr;78(4):308-14. doi: 10.1177/014107688507800408.
Two experiments carried out on rat skin flaps are described, where microvascular flow has been measured noninvasively by a laser Doppler velocimeter. Using this technique it is possible to define the limits of an axial pattern flap in terms of microvascular flow; this was found to increase when the flap is elevated. 'Random-pattern' perfusion is defined by a fall in flow. This recovers sequentially along the flap, and at a constant rate at all sites. A differential in microvascular perfusion is thus maintained along a random-pattern flap for at least the first postoperative week. In a second experiment it is shown that there appears to be a linear relationship between the reduction in skin blood flow in a random-pattern flap and the distance from the base at which the measurements are made. It is suggested that these data support the view that the blood flow in a skin flap recovers primarily from its base rather than via peripheral neovascularization, and that this is due to vascular collaterals opening within the flap rather than to a relaxation of sympathetic tone.
本文描述了在大鼠皮瓣上进行的两项实验,其中通过激光多普勒血流仪对微血管血流进行了无创测量。利用该技术,可以根据微血管血流来界定轴型皮瓣的界限;结果发现,皮瓣掀起时该血流会增加。“随意型”灌注则由血流下降来定义。这种灌注会沿着皮瓣依次恢复,且在所有部位以恒定速率恢复。因此,至少在术后第一周,随意型皮瓣上会维持微血管灌注差异。在第二项实验中表明,随意型皮瓣中皮肤血流减少与测量部位距皮瓣基部的距离之间似乎存在线性关系。有人认为,这些数据支持以下观点:皮瓣中的血流主要从其基部恢复,而非通过外周新生血管形成,这是由于皮瓣内的血管侧支开放,而非交感神经张力的放松。