Lens: Anatomy and Physiology of lens

 

The Crystalline Lens: Anatomy & Physiology

Ophthalmology High-Yield Essentials

1. Anatomical Structure

The lens is a transparent, biconvex, avascular, and non-innervated structure located behind the iris. It is held in place by zonules of Zinn.

  • Lens Capsule: A transparent, elastic basement membrane (thickest at the equator).
  • Lens Epithelium: A single layer of cuboidal cells located only on the anterior surface.
  • Lens Fibers: Differentiated epithelial cells that lose their organelles to ensure transparency. They are arranged in layers (onion-like).
  • Zones (Inside out): Embryonic nucleus (oldest) → Fetal nucleus → Adult nucleus → Cortex (youngest).

2. Physiology: The Mechanism of Accommodation

Accommodation is the process by which the eye changes its refractive power to focus on near objects.

Action Effect on Lens
Ciliary Muscle Contraction Zonules relax → Lens becomes more spherical (thicker) → Refractive power increases.
Ciliary Muscle Relaxation Zonules tighten → Lens flattens → Refractive power decreases (for distance vision).

3. NEET PG High-Yield Pearls

  • Metabolism: Since the lens is avascular, it relies on anaerobic glycolysis (via the aqueous humor) for energy.
  • Transparency: Maintained by the precise arrangement of crystallin proteins and the lack of organelles in mature fiber cells.
  • Growth: The lens grows throughout life as new fibers are continuously added at the equatorial “bow” region.
  • Clinical Correlation: Loss of elasticity with age leads to Presbyopia (difficulty with near focus).