Zhu Mingxia, Collins Michael J, Robert Iskander D
School of Optometry, Queensland University of Technology, Victoria Park Road, Kelvin Grove, Queensland 4059, Australia.
Ophthalmic Physiol Opt. 2004 Nov;24(6):562-71. doi: 10.1111/j.1475-1313.2004.00237.x.
To investigate fluctuations in the wavefront aberrations of the eye and their relation to pulse and respiration frequencies we used a wavefront sensor to measure the dynamics of the Zernike aberrations up to the polynomial fourth radial order. Simultaneously, the subject's pulse rate was measured, from which the instantaneous heart rate was derived. We used an auto-regressive process to derive the power spectra of the Zernike aberration signals, as well as pulse and instantaneous heart rate signals. Linear regression analysis was performed between the frequency components of Zernike aberrations and the pulse and instantaneous heart rate frequencies. Cross-spectrum density and coherence analyses were also applied to investigate the relation between fluctuations of wavefront aberrations, and pulse and instantaneous heart rate. The correlations between fluctuations of individual Zernike aberrations were also determined. A frequency component of all Zernike aberrations up to the fourth radial order was found to be significantly correlated with the pulse frequency (all R(2) >/= 0.51, p < 0.02), and a frequency component of nine out of 12 Zernike aberrations was also significantly correlated with instantaneous heart rate frequency (all R(2) >/= 0.46, p < 0.05). The major correlations among Zernike aberrations occurred between second-order and fourth-order aberrations with the same angular frequencies. Higher order aberrations appear to be related to the cardiopulmonary system in a similar way to that reported for the accommodation signal and pupil fluctuations.
为了研究眼睛波前像差的波动及其与脉搏和呼吸频率的关系,我们使用波前传感器测量了直至多项式第四径向阶数的泽尼克像差的动态变化。同时,测量了受试者的脉搏率,并从中得出瞬时心率。我们使用自回归过程来推导泽尼克像差信号以及脉搏和瞬时心率信号的功率谱。对泽尼克像差的频率成分与脉搏和瞬时心率频率进行了线性回归分析。还应用了互谱密度和相干分析来研究波前像差波动与脉搏和瞬时心率之间的关系。还确定了各个泽尼克像差波动之间的相关性。发现直至第四径向阶数的所有泽尼克像差的一个频率成分与脉搏频率显著相关(所有R(2)≥0.51,p<0.02),并且12个泽尼克像差中有9个的频率成分也与瞬时心率频率显著相关(所有R(2)≥0.46,p<0.05)。泽尼克像差之间的主要相关性出现在具有相同角频率的二阶和四阶像差之间。高阶像差似乎以与调节信号和瞳孔波动报道的类似方式与心肺系统相关。