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使用高分辨率光学显微镜和数字图像处理技术从分离的心肌细胞中测定单个肌节长度。

Individual sarcomere length determination from isolated cardiac cells using high-resolution optical microscopy and digital image processing.

作者信息

Roos K P, Brady A J

出版信息

Biophys J. 1982 Dec;40(3):233-44. doi: 10.1016/S0006-3495(82)84478-0.

Abstract

Discrete sarcomere lengths have been determined from dynamically contracting isolated cardiac cells with a high-speed, high-resolution direct optical imaging system. Calcium-tolerant cardiac cells from the rat are isolated by perfusion with collagenase and hyaluronidase. Individual sarcomere lengths can be determined by directly imaging the cell's striation pattern onto a solid-state charge-coupled device (CCD) detector interfaced with a digital computer. The precision of detection in a real light microscopic optical system is discussed in relation to the type of image detector, optical contract enhancement techniques, and digital image processing. The optical performance of the direct striation pattern image apparatus has been determined empirically with test grids under standard bright-field and Nomarski-differential interference contrast (DIC) conditions for application to real muscle imaging. Discrete striation positions of isolated cells have been detected and followed with high precision during phasic contraction-relaxation cycles down to average sarcomere lengths as short as 1.43 +/- 0.053 microns. The maximum rates of contraction and relaxation are rapid and synchronous in time course along the length of the cell. These results indicate that direct optical imaging can provide an accurate means to monitor discrete striations and sarcomere lengths along the length of Ca2+-tolerant heart cells.

摘要

利用高速、高分辨率直接光学成像系统,已从动态收缩的单个分离心肌细胞中确定了离散的肌节长度。通过用胶原酶和透明质酸酶灌注来分离大鼠的耐钙心肌细胞。通过将细胞的条纹图案直接成像到与数字计算机相连的固态电荷耦合器件(CCD)探测器上,可以确定单个肌节的长度。结合图像探测器类型、光学对比度增强技术和数字图像处理,讨论了实际光学显微镜光学系统中的检测精度。在标准明场和诺马斯基微分干涉对比(DIC)条件下,用测试网格对直接条纹图案成像装置的光学性能进行了经验性测定,以应用于实际肌肉成像。在相位收缩-舒张周期中,已高精度地检测并跟踪了分离细胞的离散条纹位置,直至平均肌节长度短至1.43±0.053微米。收缩和舒张的最大速率在细胞长度方向上的时间进程中快速且同步。这些结果表明,直接光学成像能够提供一种准确的方法来监测耐钙心脏细胞长度上的离散条纹和肌节长度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa6c/1328999/74d2c4a0460a/biophysj00224-0050-a.jpg

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