Haurie C, Person R, Dale D C, Mackey M C
Department of Physiology, Centre for Nonlinear Dynamics, McGill University, Montreal, Canada.
Exp Hematol. 1999 Jul;27(7):1139-48. doi: 10.1016/s0301-472x(99)00051-x.
Using Lomb periodogram analysis we have quantified variations in the peripheral neutrophil and platelet counts of the cyclical neutropenia animal model-the grey collie. We found that the amplitudes of the oscillations in these two cell lineages vary concomitantly. Further, the power spectrum and the shape of the oscillations in the absolute neutrophil counts vary together with the amplitude of the oscillations. As the amplitude of the oscillations increases, the height of the second subharmonic increases, giving rise to a distorted oscillation with two peaks per cycle. The particular dynamics of the absolute neutrophil counts can be reproduced by a combination of a delayed peripheral feedback, representing the peripheral control of granulopoiesis through granulocyte colony stimulating factor, together with a sinusoidal input representing an oscillatory input from the pluripotential stem cells to the granulocytic lineage. The same pluripotential stem cell input is probably responsible for the sinusoidal oscillations observed in the other cell lineages.
使用 Lomb 周期图分析,我们对周期性中性粒细胞减少症动物模型——灰柯利牧羊犬的外周中性粒细胞和血小板计数变化进行了量化。我们发现这两个细胞谱系振荡的幅度同时变化。此外,绝对中性粒细胞计数振荡的功率谱和形状随振荡幅度一起变化。随着振荡幅度增加,二次谐波的高度增加,导致每个周期出现两个峰值的扭曲振荡。绝对中性粒细胞计数的特定动态可以通过延迟外周反馈(代表通过粒细胞集落刺激因子对粒细胞生成的外周控制)与代表多能干细胞向粒细胞谱系的振荡输入的正弦输入相结合来重现。相同的多能干细胞输入可能是其他细胞谱系中观察到的正弦振荡的原因。