{ "approved_by_author": "\u231b", "citation": "Tong, Huige, et al. \"Cell-type specific epigenetic clocks to quantify biological age at cell-type resolution.\" Aging 16 (2024): 13452\u201313504.", "citations": 32, "citations_date": "2026-10-02", "clock_name": "neusin", "data_type": "DNA methylation", "doi": "https://doi.org/10.18632/aging.206184", "journal": "Aging", "last_author": "Andrew E. Teschendorff", "model_type": "elastic net regression", "n_features": 672, "notes": "Neu-Sin is a neuron semi-intrinsic chronological-age clock: elastic-net regression was restricted to neuron age-DMCTs but fitted to methylation values not adjusted for brain cell fractions. Coefficients were fitted in the 450K Jaffe cortex cohort; the regularization penalty was selected on the EPIC Pihlstrom cohort.", "platform": [ "Illumina 450K", "Illumina EPIC" ], "population": "adults", "predicts": [ "chronological age" ], "research_only": null, "species": "Homo sapiens", "tissue": [ "brain cortex" ], "training_target": [ "chronological age" ], "unit": [ "years" ], "version": "0.5.7", "year": 2024 }