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Chieh-En Jane Tseng

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Recent Articles
1.
Tsujimura K, Ortug A, Alatorre Warren J, Shiohama T, McDougle C, Marcus R, et al.
Cereb Cortex . 2025 Mar; 35(3). PMID: 40055911
Autism spectrum disorder is a neurodevelopmental condition characterized by reduced social communication and repetitive behaviors. Altered neurogenesis, including disturbed neuronal migration, has been implicated in autism spectrum disorder. Using diffusion...
2.
Tseng C, Guma E, McDougle C, Hooker J, Zurcher N
Brain Behav Immun . 2025 Feb; 126:70-79. PMID: 39904469
Immune processes have been implicated in the pathophysiology of autism spectrum disorder (ASD). Brain borders, such as the skull, have recently been highlighted as sites where neuro-immune interactions occur with...
3.
Zaninotto A, Makary M, Rowe H, Eshghi M, Tseng C, Chan J, et al.
Front Neurol . 2024 Oct; 15:1451177. PMID: 39410995
Introduction: Cortical thinning is well-documented in individuals with amyotrophic lateral sclerosis (ALS), yet its association with speech deterioration remains understudied. This study characterizes anatomical changes in the brain within the...
4.
Tseng C, Canales C, Marcus R, Parmar A, Hightower B, Mullett J, et al.
Neuropsychopharmacology . 2024 Apr; 49(7):1193-1201. PMID: 38615126
Sex-based differences in the prevalence of autism spectrum disorder (ASD) are well-documented, with a male-to-female ratio of approximately 4:1. The clinical presentation of the core symptoms of ASD can also...
5.
Tseng C, McDougle C, Hooker J, Zurcher N
Biol Psychiatry . 2022 Feb; 91(11):922-933. PMID: 35120709
The etiology of autism spectrum disorder (ASD) remains unknown, but gene-environment interactions, mediated through epigenetic mechanisms, are thought to be a key contributing factor. Prenatal environmental factors have been shown...
6.
Karolis V, Callaghan M, Tseng C, Hope T, Weiskopf N, Rees G, et al.
Neurobiol Aging . 2019 Apr; 79:83-92. PMID: 31029019
Protracted development of a brain network may entail greater susceptibility to aging decline, supported by evidence of an earlier onset of age-related changes in late-maturing anterior areas, that is, an...
7.
Tseng C, Froudist-Walsh S, Kroll J, Karolis V, Brittain P, Palamin N, et al.
eNeuro . 2019 Apr; 6(2). PMID: 31001576
Language difficulties have been reported in children and adolescents who were born very preterm (<32 weeks' gestation) and associated with an atypical lateralization of language processing, i.e., increased right-hemispheric engagement....
8.
Karolis V, Froudist-Walsh S, Kroll J, Brittain P, Tseng C, Nam K, et al.
Neuroimage . 2017 Sep; 163:379-389. PMID: 28942062
Previous research investigating structural neurodevelopmental alterations in individuals who were born very preterm demonstrated a complex pattern of grey matter changes that defy straightforward summary. Here we addressed this problem...
9.
Kroll J, Karolis V, Brittain P, Tseng C, Froudist-Walsh S, Murray R, et al.
J Int Neuropsychol Soc . 2017 Apr; 23(5):381-389. PMID: 28438232
Objectives: Children and adolescents who were born very preterm (≤32 weeks' gestation) are vulnerable to experiencing cognitive problems, including in executive function. However, it remains to be established whether cognitive...
10.
Tseng C, Froudist-Walsh S, Brittain P, Karolis V, Caldinelli C, Kroll J, et al.
Hum Brain Mapp . 2016 Sep; 38(2):644-655. PMID: 27647705
Very preterm (<32 weeks of gestation) birth is associated with structural brain alterations and memory impairments throughout childhood and adolescence. Here, we used functional MRI (fMRI) to study the neuroanatomy...