Institute of Modern Optics, Nankai University, Tianjin Key Laboratory of Optoelectronic Sensor and Sensing Network Technology, Tianjin, China.
Key Laboratory for Chemistry and Molecular Engineering of Medicinal Resources, Guangxi Normal University, Guangxi, China.
J Biophotonics. 2019 Oct;12(10):e201800472. doi: 10.1002/jbio.201800472. Epub 2019 Jul 1.
Corneal water content and hydrodynamics are critical indicators of eye health. In this work, a convenient method based on near-infrared absorption spectroscopy (NIRA) was presented to measure the relative water content of the corneal stroma ex vivo, which paves the way to measure corneal water content in vivo. The relative water content of fresh corneal stroma during dehydration under natural conditions (temperature, 25.8 ± 0.3°C; humidity, 7.2% ± 0.9%) was monitored in real time, and the characteristic time τ when the relative water content dropped to 90% of the fresh corneal stroma was 140.1 ± 30.6 s. Furthermore, the change in the relative water content over time was found to be linear with a dehydration rate of 0.071% per second, consistent with indirect optical coherence pachymetry but with superior reproducibility and precision. Provided that the NIRA spectrometer is changed to a reflection structure from the current transmission configuration, the NIRA method proposed in this work has great potential for in vivo measurement with the advantages of non-contact, high precision and low cost.
角膜含水量和水动力是眼部健康的关键指标。本工作提出了一种基于近红外吸收光谱(NIRA)的简便方法,可用于离体测量角膜基质的相对含水量,为活体测量角膜含水量奠定了基础。本工作实时监测了在自然条件下(温度为 25.8±0.3°C,湿度为 7.2%±0.9%)角膜基质脱水过程中的相对含水量,相对含水量降至新鲜角膜基质的 90%时的特征时间τ为 140.1±30.6s。此外,发现相对含水量随时间的变化呈线性关系,脱水速率为每秒 0.071%,与间接光学相干断层测量法一致,但具有更好的可重复性和精度。若将当前的透射式 NIRA 光谱仪改为反射式结构,本工作提出的 NIRA 方法具有非接触、高精度和低成本的优势,有望用于活体测量。