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Construction of Vapor Chambers Used to Expose Mice to Alcohol During the Equivalent of all Three Trimesters of Human Development
Published on: July 13, 2014
Early alcohol exposure induces persistent alteration of cortical columnar organization and reduced orientation
Alexandre E Medina1, Thomas E Krahe, Ary S Ramoa
1Deptartment of Anatomy and Neurobiology, Virginia Commonwealth University Medical Center, Box 0709, 1101 East Marshall St., Rm. 12-042, Richmond, VA 23298-0709, USA.
Insights
Early alcohol exposure in ferrets disrupts the development of visual cortex orientation selectivity, potentially explaining sensory deficits in fetal alcohol syndrome (FAS). This research highlights long-term impacts on neuronal function.
Area of Science:
- Neuroscience
- Developmental Biology
- Ophthalmology
Background:
- Fetal alcohol syndrome (FAS) is a leading cause of childhood learning and sensory deficits, particularly affecting the visual system.
- Neocortical developmental abnormalities are implicated in FAS-related visual impairments.
- Neuronal orientation selectivity, critical for vision, develops early and may be vulnerable to alcohol exposure.
Purpose of the Study:
- To investigate the long-term effects of early-life alcohol exposure on the development of cortical neuron orientation selectivity and orientation columns.
- To determine if alcohol exposure during a critical developmental window impacts mature visual processing.
Main Methods:
- Ferrets received ethanol exposure from postnatal day 10 to 30.
- Optical imaging of intrinsic signals and single-unit recordings were used to assess cortical function.
- Visual cortex development and function were examined post-alcohol exposure, after eye opening.
Main Results:
- Alcohol-exposed ferrets showed decreased contrast in orientation maps compared to controls.
- Single-unit recordings revealed weakened neuronal orientation selectivity in alcohol-exposed animals.
- Visual responses remained robust, but selectivity to stimulus orientation was impaired.
Conclusions:
- Early alcohol exposure during a critical developmental period causes lasting disruptions in visual cortical processing.
- Impaired neuronal orientation selectivity may underlie sensory deficits observed in fetal alcohol syndrome.
- This study provides a neurobiological basis for understanding visual system abnormalities in FAS.
Abstract:
Fetal alcohol syndrome (FAS) is a major cause of learning and sensory deficits in children. The visual system in particular is markedly affected, with an elevated prevalence of poor visual perceptual skills. Developmental problems involving the neocortex are likely to make a major contribution to some of these abnormalities. Neuronal selectivity to stimulus orientation, a functional property thought to be crucial for normal vision, may be especially vulnerable to alcohol exposure because it starts developing even before eye opening. To address this issue, we examined the effects of early alcohol exposure on development of cortical neuron orientation selectivity and organization of cortical orientation columns. Ferrets were exposed to ethanol starting at postnatal day (P) 10, when the functional properties and connectivity of neocortical neurons start to develop. Alcohol exposure ended at P30, just before eye opening at P32. Following a prolonged alcohol-free period (15-35 days), long-term effects of early alcohol exposure on cortical orientation selectivity were examined at P48-P65, when orientation selectivity in normal ferret cortex has reached a mature state. Optical imaging of intrinsic signals revealed decreased contrast of orientation maps in alcohol- but not saline-treated animals. Moreover, single-unit recordings revealed that early alcohol treatment weakened neuronal orientation selectivity while preserving robust visual responses. These findings indicate that alcohol exposure during a brief period of development disrupts cortical processing of sensory information at a later age and suggest a neurobiological substrate for some types of sensory deficits in FAS.
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