Is Ganglion Cell Thickness the Main Problem in Enuresis Nocturna?
Trial Snapshot
- Phase
- Not Applicable
- Sponsor
- Enrollment
- 50
- Locations
- 1
- Primary Endpoint
- Difference in ganglion cell thickness in enuretic children
Study Overview
Brief Summary
The precise role of the intrinsic circadian regulatory mechanism behind the pathogenesis of enuresis is not fully understood, but in theory, circadian rhythm irregularity may be the primary pathogenic mechanism not only for urinary outflow mechanisms but also for nocturnal bladder function. The proximity between SCN centers that control AVP release, sleep/arousal, voiding, and baroreregulation may provide the basis for circadian rhythm disturbance in one or more of these biological functions. Ganglion cells containing melanopsin pigment in the retina transmit the information they receive from the outside world about the light-dark state to the SCN via the retinohypothalamic pathway. Peripapillary retinal nerve fiber layer (RNFL) thickness, optic nerve head and macula are examined most frequently for the diagnosis of glaucoma and the detection of progression with optical coherence tomography (OCT). If differences in ganglion cell thickness can be detected using OCT in these children, a new avenue in Enuresis Nocturna may be opened.
Study Design
- Study Type
- Observational
- Observational Model
- Cohort
- Time Perspective
- Prospective
Eligibility Criteria
- Ages
- 5 Years to 18 Years (Child, Adult)
- Sex
- All
- Accepts Healthy Volunteers
- No
Inclusion Criteria
- •be between the ages of 5-18
- •have enuresis
Exclusion Criteria
- •have any eye conditions
Outcomes
Primary Outcomes
Difference in ganglion cell thickness in enuretic children
Time Frame: Baseline
Normal values in RNFL measurements on OCT 75 (lowest)-107.2 (highest)
Secondary Outcomes
No secondary outcomes reported
Investigators
Yasar Issi
Asistant Professor
Izmir Bakircay University
