Novo-Diez Andrea, Blanco-Vázquez Marta, Arlanzón-Lope Pablo, Valencia-Sandonís Cristina, Calonge Margarita, González-García María J, Fernández Itziar
IOBA (Institute of Applied Ophthalmobiology), University of Valladolid, Valladolid, Spain.
IOBA (Institute of Applied Ophthalmobiology), University of Valladolid, Valladolid, Spain; Biomedical Research Networking Center in Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Valladolid, Spain.
Cont Lens Anterior Eye. 2025 Oct;48(5):102447. doi: 10.1016/j.clae.2025.102447. Epub 2025 May 27.
To establish reference intervals of Meibomian gland (MG) characteristics in healthy participants, and to classify meibography images of evaporative type dry eye disease (DED) subjects according to the determined reference intervals.
Prospective study including healthy and evaporative type DED subjects. Upper eyelid meibography images were analyzed to evaluate: MG length, minimal distance between endpoints, tortuosity, width, MG shortening area, deviation from a vertical orientation, number of linear segments, MG global area, and number of MGs. Reference intervals for MG characteristics were determined using generalized additive models for location, scale, and shape (GAMLSS). Participants with evaporative type DED were classified as normal or non-normal based on the reference intervals. Clinical features were compared between groups using Student's t test or Mann-Whitney U test.
Participants were 156 healthy individuals (50.6 % males; mean age 44 years) and 39 individuals with evaporative type DED (74.4 % women; mean age 62 years). MG length, minimal distance between endpoints, tortuosity, and width, depended on age but not on sex. MG shortening area depended on age and sex. Neither age nor sex affected the deviation from a vertical orientation, number of linear segments, MG global area, and number of MGs. Furthermore, 66.7 % of the participants in the evaporative type DED group were classified as normal (all the MG characteristics fell within the corresponding reference intervals). A significantly higher value was observed in the non-normal group in OSDI (P = 0.034) and meibum expressibility (P = 0.041, indicative of poor expressibility).
Reference intervals values may be useful in classifying meibography images as normal or non-normal, thus aiding in the objective diagnosis of morphological alterations of MGs.
建立健康参与者睑板腺(MG)特征的参考区间,并根据确定的参考区间对蒸发型干眼(DED)患者的睑板腺造影图像进行分类。
对健康和蒸发型DED受试者进行前瞻性研究。分析上睑睑板腺造影图像以评估:MG长度、端点间最小距离、弯曲度、宽度、MG缩短面积、与垂直方向的偏差、线性段数量、MG总面积和MG数量。使用位置、尺度和形状的广义相加模型(GAMLSS)确定MG特征的参考区间。根据参考区间将蒸发型DED参与者分为正常或异常。使用学生t检验或曼-惠特尼U检验比较组间临床特征。
参与者包括156名健康个体(男性占50.6%;平均年龄44岁)和39名蒸发型DED患者(女性占74.4%;平均年龄62岁)。MG长度、端点间最小距离、弯曲度和宽度取决于年龄而非性别。MG缩短面积取决于年龄和性别。年龄和性别均不影响与垂直方向的偏差、线性段数量、MG总面积和MG数量。此外,蒸发型DED组中6格。
参考区间值可能有助于将睑板腺造影图像分类为正常或异常,从而有助于客观诊断MG的形态改变。