# Charting Cervical Spinal Cord Morphometry Across the Lifespan

Kurt G. Schilling, Michael E. Kim, Matthew Amandola, Chenyu Gao, Karthik Ramadass, Praitayini Kanakaraj, Sam Bogdanov, Gaurav Rudravaram, Nancy R. Newlin, Derek Archer, Timothy J. Hohman, Angela L. Jefferson, Victoria L. Morgan, Alexandra Roche, Dario J. Englot, Murat Bilgel, Lori L. Beason Held, Luigi Ferrucci, Laurie Cutting, Laura A. Barquero, Micah A. D’archangel, Tin Q. Nguyen, Kathryn L. Humphreys, Yanbin Niu, Sophia Vinci-Booher, Carissa J. Cascio, The HABS-HD Study Team, Alzheimer’s Disease Neuroimaging Initiative, The BIOCARD Study Team, Zhiyuan Li, Daniel Moyer, Simon N. Vandekar, Panpan Zhang, Samuelle St-Onge, Sandrine Bédard, Jan Valošek, Benjamin De Leener, Julien Cohen-Adad, John C. Gore, Seth Smith, Bennett A. Landman

bioRxiv · 2026 · Preprint (not peer reviewed)

https://doi.org/10.64898/2026.06.03.729823

## Summary

This preprint develops cervical spinal cord reference charts using 78,269 scans from 41,042 individuals across 30 datasets. Measurements from C1 to C7 capture size and shape from birth to age 100. The charts reveal regional and sex differences and support age-adjusted comparison of individual cord measurements.

## Study overview

Normative reference data are needed to interpret spinal cord size and shape across the lifespan. This preprint combines brain MRI datasets with cervical coverage and applies contrast-agnostic segmentation to 78,269 scans from 41,042 individuals aged 0–100. Measurements include cross-sectional area, diameters, and shape indices across C1–C7. The resulting models show rapid growth in childhood and adolescence, maturation in early-to-mid adulthood, and later decline, with regional and sex-related differences. Cord trajectories also show temporal relationships with brain white matter and brainstem volumes. The released framework is designed for age- and sex-specific centile scoring, with further validation needed beyond this preprint report.

## Findings / topics

- Uses 30 datasets and 41,042 individuals spanning ages 0–100.
- Models size and shape at cervical levels C1–C7.
- Cross-sectional area typically peaks in the mid-30s before decreasing.

## Resources

- [Original work](https://doi.org/10.64898/2026.06.03.729823)
- [Open full text](https://pmc.ncbi.nlm.nih.gov/articles/PMC13277863/)

Lab page: https://www.microstructure-connectivity-lab.com/publications/cervical-cord-lifespan-charts/

This is a research summary, not the full article.
