Related Experiment Video
Updated: Jul 24, 2026

Assessment and Evaluation of the High Risk Neonate: The NICU Network Neurobehavioral Scale
Published on: August 25, 2014
Adverse effects of fetal cocaine exposure on neonatal auditory information processing
S M Potter1, P R Zelazo, D M Stack
1Department of Psychology and Research Institute, McGill University and Montreal Children's Hospital, Montreal, Canada. susan.potter@acadiau.ca
Insights
Fetal cocaine exposure in newborns is linked to impaired auditory information processing, affecting habituation and response to new sounds. This early deficit may indicate risks for later developmental delays.
Area of Science:
- Neuroscience
- Developmental Psychology
- Pediatrics
Background:
- Animal studies indicate prenatal cocaine exposure disrupts fetal brain development, leading to neurobehavioral deficits.
- Human studies show inconsistent findings on neurobehavioral abnormalities in cocaine-exposed infants, with varying affected behaviors.
- Challenges in human studies include polysubstance use, unreliable infant identification, and insensitive assessment methods for subtle neurological effects.
Purpose of the Study:
- To assess the impact of prenatal cocaine exposure on neonatal auditory information processing abilities.
- To address limitations of prior research by employing a valid auditory processing measure in a rigorous case-control design.
Main Methods:
- Auditory information processing was evaluated in neonates using a head-turning paradigm assessing habituation and recovery to auditory stimuli.
- The procedure involved familiarization, novelty, and dishabituation phases, with testing conducted within the first few days of birth.
- Twenty-five cocaine-exposed and 25 control neonates, identified via meconium/urine analysis and maternal report, were matched on key demographic and clinical variables.
Main Results:
- Prenatal cocaine exposure was significantly associated with impaired auditory information processing in neonates.
- Cocaine-exposed neonates showed deficits in habituation to repeated auditory stimuli.
- Exposed infants failed to demonstrate recovery to novel stimuli or dishabituation upon return of the familiar stimulus.
Conclusions:
- Neonatal auditory information processing is negatively affected by prenatal cocaine exposure.
- The observed auditory processing deficits in exposed neonates may serve as early indicators of potential developmental risks.
- This study highlights the utility of auditory information processing measures for detecting subtle neurodevelopmental effects of prenatal cocaine exposure.
Background:
Studies with animals have shown that in utero exposure to cocaine interferes with fetal brain development by disrupting the processes of neuronal proliferation, differentiation, and migration, often leading to subsequent neurobehavioral deficits. However, studies with humans have produced inconsistent findings. Although neurobehavioral abnormalities have been observed among cocaine-exposed infants in several studies and in some cases dose-response effects have been found, the specific neurobehaviors affected vary from one study to the next. Researchers studying the effects of fetal cocaine-exposure are faced with many difficult challenges. For example, women who use cocaine typically use other substances in addition to cocaine, many of the methods available for identifying cocaine-exposed neonates are not reliable, and the available methods for assessing cocaine-exposed newborns may not be sufficiently sensitive to detect the subtle effects of cocaine on the developing central nervous system. Despite these difficulties, there is a growing body of research that suggests that fetal cocaine exposure is associated with subsequent language deficits among children exposed in utero. However, it is virtually impossible to disentangle the effects of the impoverished environments in which these children are often raised from the effect, if any, of fetal cocaine exposure. To determine the effects of fetal cocaine exposure independent of postnatal environmental effects, cocaine-exposed neonates would ideally be tested within the first few weeks of birth, and to identify early risks for subsequent language delay, well-researched auditory information processing measures could be used.
Objective:
The purpose of the present study was to assess the effects of fetal cocaine exposure on neonatal auditory information processing ability. To overcome limitations of some previous studies on the neuroteratogenic effects of cocaine, such as unreliable subject identification techniques, inadequate control over confounding variables, and questionable measures of central nervous system integrity, a valid measure of auditory information processing was used in a rigorous, case-control design.
Method:
Newborn information processing was assessed using habituation and recovery of head-turning toward an auditory stimulus across the 3 phases of the procedure: familiarization, novelty, and dishabituation. During the familiarization phase, the infant orients and habituates to a repeated word; during the novelty phase, the infant recovers head-turning to a novel word and subsequently habituates to this word; and during the dishabituation phase the infant displays renewed head-turning to the return of the original stimulus. Testing takes approximately 20 minutes. This procedure has been shown previously to discriminate among infants at high-, moderate-, and low-risk for subsequent developmental delay. Twenty-five cocaine-exposed and 25 nonexposed control neonates, identified by meconium analysis, urine analysis, and/or maternal self-report, were tested on the auditory information processing procedure. The majority of infants were tested within the first few days of birth. Cocaine-exposed and control neonates were matched on birth weight, gestational age, Apgar scores, age at testing, and socioeconomic status as reflected by household income. Mothers were matched on age, weight gain, cigarette smoking, and alcohol consumption.
Results:
Fetal cocaine exposure was associated with impaired auditory information processing. Both cocaine-exposed and nonexposed control neonates oriented to the familiarization stimulus, but cocaine-exposed neonates displayed impaired habituation. Moreover, cocaine-exposed neonates did not recover or habituate to the novel stimulus or dishabituate to the return of the familiarization stimulus. (ABSTRACT TRUNCATED)
More Related Videos
15:27Construction of Vapor Chambers Used to Expose Mice to Alcohol During the Equivalent of all Three Trimesters of Human Development
Published on: July 13, 2014
19:57The Use of Trace Eyeblink Classical Conditioning to Assess Hippocampal Dysfunction in a Rat Model of Fetal Alcohol Spectrum Disorders
Published on: August 5, 2017