Co-Authors
This is a "connection" page, showing publications co-authored by Peter Mukli and Shannon Conley.
Connection Strength
0.578
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Energy metabolism dysregulation, cerebrovascular aging, and time-restricted eating: Current evidence and proof-of-concept findings. PNAS Nexus. 2024 Nov; 3(11):pgae505.
Score: 0.061
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The vasoprotective role of IGF-1 signaling in the cerebral microcirculation: prevention of cerebral microhemorrhages in aging. Geroscience. 2024 Sep 14.
Score: 0.061
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Longitudinal detection of gait alterations associated with hypertension-induced cerebral microhemorrhages in mice: predictive role of stride length and stride time asymmetry and increased gait entropy. Geroscience. 2024 Jun 25.
Score: 0.060
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Young blood-mediated cerebromicrovascular rejuvenation through heterochronic parabiosis: enhancing blood-brain barrier integrity and capillarization in the aged mouse brain. Geroscience. 2024 May 10.
Score: 0.059
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Rejuvenation of cerebromicrovascular function in aged mice through heterochronic parabiosis: insights into neurovascular coupling and the impact of young blood factors. Geroscience. 2023 Dec 21.
Score: 0.058
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Endothelial deficiency of insulin-like growth factor-1 receptor leads to blood-brain barrier disruption and accelerated endothelial senescence in mice, mimicking aspects of the brain aging phenotype. Microcirculation. 2023 Dec 11; e12840.
Score: 0.058
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Preventing spontaneous cerebral microhemorrhages in aging mice: a novel approach targeting cellular senescence with ABT263/navitoclax. Geroscience. 2023 Dec 04.
Score: 0.058
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Exposome and unhealthy aging: environmental drivers from air pollution to occupational exposures. Geroscience. 2023 Sep 09.
Score: 0.057
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Imaging the time course, morphology, neuronal tissue compression, and resolution of cerebral microhemorrhages in mice using intravital two-photon microscopy: insights into arteriolar, capillary, and venular origin. Geroscience. 2023 Jun 20.
Score: 0.056
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Old blood from heterochronic parabionts accelerates vascular aging in young mice: transcriptomic signature of pathologic smooth muscle remodeling. Geroscience. 2022 04; 44(2):953-981.
Score: 0.051