English

Estimating Hormone Concentrations in the Pituitary-Thyroid Feedback Loop from Irregularly Sampled Measurements

Systems and Control 2026-05-13 v3 Systems and Control

Abstract

Model-based control techniques have recently been investigated for the recommendation of medication dosages to address thyroid diseases. These techniques often rely on knowledge of internal hormone concentrations that cannot be measured from blood samples. Moreover, the measurable concentrations are typically only obtainable at irregular sampling times. In this work, we empirically verify a notion of sample-based detectability that accounts for irregular sampling of the measurable concentrations on two pituitary-thyroid loop models representing patients with hypo- and hyperthyroidism, respectively, and include the internal concentrations as states. We then implement sample-based moving horizon estimation for the models, and test its performance on virtual patients across a range of sampling schemes. Our study shows robust stability of the estimator across all scenarios, and that more frequent sampling leads to less estimation error in the presence of model uncertainty and misreported dosages.

Keywords

Cite

@article{arxiv.2512.10657,
  title  = {Estimating Hormone Concentrations in the Pituitary-Thyroid Feedback Loop from Irregularly Sampled Measurements},
  author = {Seth Siriya and Tobias M. Wolff and Isabelle Krauss and Victor G. Lopez and Matthias A. Müller},
  journal= {arXiv preprint arXiv:2512.10657},
  year   = {2026}
}

Comments

8 pages; This work has been accepted for presentation at the 23rd IFAC World Congress 2026

R2 v1 2026-07-01T08:20:36.816Z