Effect of Prenatal Drug Exposure on White Matter Development in Adolescents

2021 ◽  
Vol 89 (9) ◽  
pp. S235
Author(s):  
Suheyla Cetin-Karayumak ◽  
Marek Kubicki ◽  
Yogesh Rathi
Trials ◽  
2021 ◽  
Vol 22 (1) ◽  
Author(s):  
Edith Brignoni-Pérez ◽  
Maya Chan Morales ◽  
Virginia A. Marchman ◽  
Melissa Scala ◽  
Heidi M. Feldman ◽  
...  

Abstract Background Infants born very preterm (< 32 weeks gestational age (GA)) are at risk for developmental language delays. Poor language outcomes in children born preterm have been linked to neurobiological factors, including impaired development of the brain’s structural connectivity (white matter), and environmental factors, including decreased exposure to maternal speech in the neonatal intensive care unit (NICU). Interventions that enhance preterm infants’ exposure to maternal speech show promise as potential strategies for improving short-term health outcomes. Intervention studies have yet to establish whether increased exposure to maternal speech in the NICU offers benefits beyond the newborn period for brain and language outcomes. Methods This randomized controlled trial assesses the long-term effects of increased maternal speech exposure on structural connectivity at 12 months of age (age adjusted for prematurity (AA)) and language outcomes between 12 and 18 months of age AA. Study participants (N = 42) will include infants born very preterm (24–31 weeks 6/7 days GA). Newborns are randomly assigned to the treatment (n = 21) or standard medical care (n = 21) group. Treatment consists of increased maternal speech exposure, accomplished by playing audio recordings of each baby’s own mother reading a children’s book via an iPod placed in their crib/incubator. Infants in the control group have the identical iPod setup but are not played recordings. The primary outcome will be measures of expressive and receptive language skills, obtained from a parent questionnaire collected at 12–18 months AA. The secondary outcome will be measures of white matter development, including the mean diffusivity and fractional anisotropy derived from diffusion magnetic resonance imaging scans performed at around 36 weeks postmenstrual age during the infants’ routine brain imaging session before hospital discharge and 12 months AA. Discussion The proposed study is expected to establish the potential impact of increased maternal speech exposure on long-term language outcomes and white matter development in infants born very preterm. If successful, the findings of this study may help to guide NICU clinical practice for promoting language and brain development. This clinical trial has the potential to advance theoretical understanding of how early language exposure directly changes brain structure for later language learning. Trial registration NIH Clinical Trials (ClinicalTrials.gov) NCT04193579. Retrospectively registered on 10 December 2019.


1998 ◽  
Vol 43 (6) ◽  
pp. 582-584 ◽  
Author(s):  
Benedetto Vitiello

With increasing frequency, psychotropic medications are being prescribed to young children, often for long periods of time. The interaction between psychotropics and the developing brain has not been systematically investigated in humans. Data collected from animals suggest that developing neurotransmitter systems can be exquisitely sensitive to early inhibition or stimulation by pharmacological agents, which can lead to permanent changes in adult life. Most of these data are collected from rodents, and their extrapolation to humans is difficult. More relevant models could be developed, for instance using primates. In humans, the focus of research has traditionally been on the possible teratogenic effects of prenatal drug exposure. Recently introduced quantitative imaging techniques can offer new approaches to studying the effects of psychotropics on the developing brain. This research has clear implications for the safety and efficacy of psychopharmacologic drug use in children.


2004 ◽  
Vol 10 (2) ◽  
pp. 89-101 ◽  
Author(s):  
Margaret B. Pulsifer ◽  
Krestin Radonovich ◽  
Harolyn M.E. Belcher ◽  
Arlene M. Butz

Author(s):  
Bryce L. Geeraert ◽  
Jess E. Reynolds ◽  
Catherine Lebel

Diffusion magnetic resonance imaging (dMRI) is a versatile tool which can be applied to investigate brain microstructure. This chapter outlines brain development trajectories from infancy to adulthood as described by dMRI. The chapter focuses on white matter development, as dMRI is particularly well suited to describing white matter tissue properties. The chapter also discusses sources of individual variation which are simultaneously fascinating and confounding to research efforts. Next, the chapter discusses links between white matter development and cognition, with specific examples drawn from reading research. Additional techniques which may complement future diffusion-based research are introduced in the chapter’s final section.


1998 ◽  
Vol 5 (4) ◽  
pp. 190-191 ◽  
Author(s):  
Robbin R. Eldridge ◽  
Sara A. Ephross ◽  
Cindy R. Heffner ◽  
Patricia S. Tennis ◽  
Dr.Monika Stender ◽  
...  

2017 ◽  
Vol 8 (1) ◽  
Author(s):  
Michelle L. Krishnan ◽  
Juliette Van Steenwinckel ◽  
Anne-Laure Schang ◽  
Jun Yan ◽  
Johanna Arnadottir ◽  
...  

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