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Quantitative measurements of apoptotic cell properties using acoustic microscopy

机译:使用声学显微镜对凋亡细胞特性的定量测量

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Time-resolved acoustic microscopy was used to measure properties of cells such as the thickness, sound velocity, acoustic impedance, density, bulk modulus, and attenuation, before and after apoptosis. A total of 12 cells were measured, 5 apoptotic and 7 non-apoptotic. Measurements made at 375 MHz showed a statistically significant increase in the cell thickness from 13.6 u000b1; 3.1 ;C;m to 17.3 u000b1; 1.6 ;C;m, and in the attenuation from 1.08 ± 0.21 dB/cm/MHz to 1.74 u000b1; 0.36 dB/cm/MHz. The other parameters, such as the sound velocity, density, acoustic impedance, and bulk modulus remained similar within experimental error. Acoustic images obtained at 1.0 GHz showed increased RF-signal backscatter and a clear delineation of the nucleus and cytoplasm from apoptotic cells compared with non-apoptotic cells. Extensive activity was observed optically and acoustically within apoptotic cells. Acoustic measurements made one minute apart showed variations in the ultrasonic backscatter but not attenuation in the cells, which indicated rapid structural changes were occurring but not changes in bulk composition. The normalized crosscorrelation coefficient was used to quantify the variations in the backscatter RF-signal during apoptosis by comparing the first RF signal measured to each successive RF signal every 10 s. A coefficient of 1 indicates strong correlation, whereas a coefficient of 0 indicates no correlation. An average correlation coefficient of 0.93 u000b1; 0.05 was measured for non-apoptotic cells, compared with 0.68 u000b1; 0.17 for apoptotic cells, indicating that the RF signal as a function of time varied rapidly during apoptosis.
机译:时间分辨声学显微镜用于测量细胞凋亡前后的细胞特性,例如厚度,声速,声阻抗,密度,体积模量和衰减。总共测量了12个细胞,其中5个细胞凋亡,7个非细胞凋亡。在375 MHz下进行的测量表明,单元厚度从13.6 u000b1开始有统计学意义的增加; 3.1; C; m为17.3 u000b1; 1.6; C; m,并且在从1.08±0.21 dB / cm / MHz到1.7​​4 u000b1的衰减中; 0.36 dB / cm / MHz。在实验误差范围内,其他参数,例如声速,密度,声阻抗和体积模量保持相似。与非凋亡细胞相比,在1.0 GHz处获得的声像显示RF信号反向散射增加,并且凋亡细胞的核和细胞质清晰地描绘出来。在凋亡细胞内光学和听觉上观察到广泛的活性。间隔一分钟进行一次声学测量,结果表明超声反向散射发生了变化,但细胞未发生衰减,这表明结构发生了快速变化,但整体组成没有变化。归一化互相关系数用于通过每10 s将测得的第一个RF信号与每个连续的RF信号进行比较来量化凋亡过程中反向散射RF信号的变化。系数1表示强相关,而系数0表示无相关。平均相关系数为0.93 u000b1;非凋亡细胞为0.05,而u8b1为0.68;凋亡细胞为0.17,表明RF信号随时间的变化在凋亡过程中迅速变化。

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