Department of Biomechatronic Engineering, National Ilan University, Ilan, Taiwan.
Clin Exp Hypertens. 2012;34(3):182-90. doi: 10.3109/10641963.2011.577492. Epub 2011 Oct 3.
Mice have gained more and more attention in recent years and been widely used in transgenic experiments. Although the number of researches on the heart rate variability (HRV) of mice has been gradually increasing, a consensus on the frequency ranges of autonomic modulation has not been established. Therefore, the main purpose of this study was to find a HRV "prototype" for conscious mice in the state of being motionless and breathing regularly (called "genuinely resting"), and to determine the frequency ranges corresponding to the autonomic modulation. Further, whether these frequencies will change when the mice move freely was studied to evaluate the feasibility of the HRV spectrum as an index of the autonomic modulation of mice. The recording sites were specially arranged to simultaneously obtain the electrocardiography and electromyography data to be provided for the use of HRV analysis and motion monitoring, respectively. The states of being motionless and breathing regularly as judged from the electromyography results were selected as a genuine resting state of a conscious mouse. The frequencies related to autonomic modulation of HRV were determined by comparing the spectrum changes before and after blockades of the autonomic tone by different pharmaceutical agents in both the genuine resting state and freely moving states. Our results showed that the HRV of mice is not suitable for indexing sympathetic modulation; however, it is possible to use the spectral power in the frequency range between 0.1 and 1 Hz as an index of parasympathetic modulation.
近年来,小鼠越来越受到关注,并广泛应用于转基因实验中。虽然关于小鼠心率变异性(HRV)的研究数量逐渐增加,但对于自主调节的频率范围尚未达成共识。因此,本研究的主要目的是为了在静止和呼吸规律的(称为“真正休息”)意识状态下为小鼠找到一个 HRV“原型”,并确定与自主调节相对应的频率范围。进一步研究当小鼠自由移动时这些频率是否会发生变化,以评估 HRV 谱作为小鼠自主调节指标的可行性。记录部位被特别安排,以同时获得心电图和肌电图数据,分别用于 HRV 分析和运动监测。根据肌电图结果判断的静止和呼吸规律状态被选为意识小鼠的真正休息状态。通过比较不同药物在真正休息状态和自由移动状态下对自主神经张力的阻断前后 HRV 频谱变化,确定与自主调节相关的 HRV 频率。我们的结果表明,小鼠的 HRV 不适用于交感神经调节的指标;然而,在 0.1 到 1 Hz 之间的频率范围内,频谱功率可以作为副交感神经调节的指标。