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Michael Olivier

Explore the profile of Michael Olivier including associated specialties, affiliations and a list of published articles. Areas
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Articles 93
Citations 1777
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Recent Articles
1.
Cox L, Puppala S, Chan J, Riojas A, Lange K, Birnbaum S, et al.
J Dev Orig Health Dis . 2024 Nov; 15:e27. PMID: 39506415
Previous studies in rodents suggest that mismatch between fetal and postnatal nutrition predisposes individuals to metabolic diseases. We hypothesized that in nonhuman primates (NHP), fetal programming of maternal undernutrition (MUN)...
2.
Grilo L, Zimmerman K, Puppala S, Chan J, Huber H, Li G, et al.
Adv Sci (Weinh) . 2024 Aug; 11(38):e2309211. PMID: 39119859
Age is a prominent risk factor for cardiometabolic disease, often leading to heart structural and functional changes. However, precise molecular mechanisms underlying cardiac remodeling and dysfunction exclusively resulting from physiological...
3.
North L, Olivier M, Runge C
Otol Neurotol . 2024 May; 45(6):e478-e482. PMID: 38769084
Objective: To investigate the outcomes of cochlear implantation in patients with TMTC2 -associated sensorineural hearing loss and auditory neuropathy/auditory dys-synchrony. Patients: Adult and pediatric cochlear implant (CI) patients followed in...
4.
Adekunbi D, Yang B, Huber H, Riojas A, Moody A, Li C, et al.
bioRxiv . 2024 May; PMID: 38746316
We previously demonstrated in baboons that maternal undernutrition (MUN), achieved by 70 % of control nutrition, impairs fetal liver function, but long-term changes associated with aging in this model remain...
5.
Lin W, Wall J, Li G, Newman D, Yang Y, Abney M, et al.
Cell Genom . 2024 Mar; 4(3):100509. PMID: 38430910
Steady-state expression quantitative trait loci (eQTLs) explain only a fraction of disease-associated loci identified through genome-wide association studies (GWASs), while eQTLs involved in gene-by-environment (GxE) interactions have rarely been characterized...
6.
Grilo L, Zimmerman K, Puppala S, Chan J, Huber H, Li G, et al.
bioRxiv . 2023 Nov; PMID: 38014295
Age is a prominent risk factor for cardiometabolic disease, and often leads to heart structural and functional changes. However, precise molecular mechanisms underlying cardiac remodeling and dysfunction resulting from physiological...
7.
Cox L, Puppala S, Chan J, Zimmerman K, Hamid Z, Ampong I, et al.
Neurobiol Aging . 2023 Oct; 132:109-119. PMID: 37797463
The prefrontal cortex (PFC) has been implicated as a key brain region responsible for age-related cognitive decline. Little is known about aging-related molecular changes in PFC that may mediate these...
8.
Cox L, Olivier M
Nat Aging . 2023 Oct; 3(10):1178-1179. PMID: 37783814
No abstract available.
9.
Puppala S, Chan J, Zimmerman K, Hamid Z, Ampong I, Huber H, et al.
bioRxiv . 2023 Sep; PMID: 37662261
The liver is critical for functions that support metabolism, immunity, digestion, detoxification, and vitamin storage. Aging is associated with severity and poor prognosis of various liver diseases such as nonalcoholic...
10.
Gawrieh S, Karns R, Kleiner D, Olivier M, Jenkins T, Inge T, et al.
Arch Clin Biomed Res . 2023 Aug; 7(1):112-119. PMID: 37583647
Introduction: To gain insights into the mechanisms underlying distinct nonalcoholic fatty liver disease (NAFLD) histological phenotypes between children and adults, we compared hepatic gene expression profiles associated with NAFLD phenotypes...