Related Experiment Video
Updated: Oct 9, 2026

Establishment of a Severe Dry Eye Model Using Complete Dacryoadenectomy in Rabbits
Published on: January 8, 2020
Anatomy and histology of the lacrimal fluid drainage system
R Kominami1, S Yasutaka, Y Taniguchi
1Department of Anatomy II, Kanazawa Medical University, Uchinada, Ishikawa 920-0265, Japan.
Abstract:
Five human specimens of the lacrimal canaliculus and sac were examined by light and scanning electron microscopy. The superior and inferior lacrimal canaliculi are lined with stratified squamous epithelium that is non-keratinized and non-mucin-producing. The common canaliculus is also lined with stratified squamous epithelium, but its lumen is much narrower than the lumen of the superior and inferior canaliculi. The common canaliculus opens into an ample space called the vestibule, where the epithelium changes to high pseudostratified columnar and then low pseudostratified columnar. The vestibule continues to the infundibulum of the lacrimal sac. The infundibulum is formed by several epithelial folds that radiate from the vestibular opening to the lacrimal sac. The vestibule and infundibulum are consistent transitional structures from the common canaliculus to the lacrimal sac. The connective tissue of the lamina propria from the common canaliculus to the lacrimal sac has two histological characteristics: numerous free cell aggregates (= lymphoid structure) and numerous venules and capillaries (= cavernous structure).
Related Concept Videos
Accessory Structures of the Eye
Glaucoma: Overview
Detailed Structure and Function of Lymph Nodes
From a histological perspective, lymph nodes can be split into two main areas: the superficial cortex and the deep medulla. The outer cortex is populated by dendritic cells, macrophages, and B lymphocytes, which are densely packed into follicles. When these B-lymphocytes are presented...
Microbiome of the Eye
Anatomy of the Eyeball
Lymphatic Vessels and Lymph Transport
This one-way system allows fluids, solutes, and even pathogens to enter but prevents their return to the intercellular spaces.

