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首页> 外文期刊>Biomedical Optics Express >Performance comparison between 8- and 14-bit-depth imaging in polarization-sensitive swept-source optical coherence tomography
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Performance comparison between 8- and 14-bit-depth imaging in polarization-sensitive swept-source optical coherence tomography

机译:偏振敏感扫描源光学相干层析成像中8位和14位深度成像的性能比较

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Recently the effects of reduced bit-depth acquisition on swept-source optical coherence tomography (SS-OCT) image quality have been evaluated by using simulations and empirical studies, showing that image acquisition at 8-bit depth allows high system sensitivity with only a minimal drop in the signal-to-noise ratio compared to higher bit-depth systems. However, in these studies the 8-bit data is actually 12- or 14-bit ADC data numerically truncated to 8 bits. In practice, a native 8-bit ADC could actually possess a true bit resolution lower than this due to the electronic jitter in the converter etc. We compare true 8- and 14-bit-depth imaging of SS-OCT and polarization-sensitive SS-OCT (PS-SS-OCT) by using two hardware-synchronized high-speed data acquisition (DAQ) boards. The two DAQ boards read exactly the same imaging data for comparison. The measured system sensitivity at 8-bit depth is comparable to that for 14-bit acquisition when using the more sensitive of the available full analog input voltage ranges of the ADC. Ex-vivo structural and birefringence images of equine tendon indicate no significant differences between images acquired by the two DAQ boards suggesting that 8-bit DAQ boards can be employed to increase imaging speeds and reduce storage in clinical SS-OCT/PS-SS-OCT systems. One possible disadvantage is a reduced imaging dynamic range which can manifest itself as an increase in image artifacts due to strong Fresnel reflection.
机译:最近,通过使用模拟和经验研究评估了减少位深度采集对扫频源光学相干断层扫描(SS-OCT)图像质量的影响,结果表明,以8位深度进行图像采集可以实现很高的系统灵敏度,而误差很小与更高位深度的系统相比,信噪比下降。但是,在这些研究中,8位数据实际上是12位或14位ADC数据,其数值被截断为8位。实际上,由于转换器中的电子抖动等原因,本地的8位ADC实际上可能具有低于此分辨率的真实位分辨率。我们比较了SS-OCT和偏振敏感SS的真实8位和14位深度成像-OCT(PS-SS-OCT)通过使用两个硬件同步的高速数据采集(DAQ)板。两个DAQ板读取完全相同的成像数据以进行比较。当使用ADC的全部可用模拟输入电压范围中的更高灵敏度时,在8位深度处测得的系统灵敏度可与14位采集相比。马腱的离体结构和双折射图像表明两个DAQ板采集的图像之间没有显着差异,表明可以使用8位DAQ板提高成像速度并减少临床SS-OCT / PS-SS-OCT的存储量系统。一个可能的缺点是减小的成像动态范围,由于强烈的菲涅耳反射,这可能表现为图像伪像的增加。

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