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math.AP2026

On a relaxed Cahn-Hilliard tumour growth model with single-well potential and degenerate mobility

Cecilia Cavaterra, Matteo Fornoni, Maurizio Grasselli +1

We consider a phase-field system modelling solid tumour growth. This system consists of a Cahn-Hilliard equation coupled with a nutrient equation. The former is characterised by a…

math.AP2026

Carleman estimates for backward Cahn-Hilliard-reaction-diffusion problems

Abramo Agosti, Elena Beretta, Cecilia Cavaterra +2

We study a backward inverse problem for a coupled Cahn-Hilliard-reaction-diffusion system. Our main result is a Carleman estimate for a fourth-order/second-order parabolic system w…

math.AP2024

Identifying early tumour states in a Cahn-Hilliard-reaction-diffusion model

Abramo Agosti, Elena Beretta, Cecilia Cavaterra +2

In this paper, we tackle the problem of reconstructing earlier tumour configurations starting from a single spatial measurement at a later time. We describe the tumour evolution th…

math.AP2024

Iterative algorithms for the reconstruction of early states of prostate cancer growth

Elena Beretta, Cecilia Cavaterra, Matteo Fornoni +2

The development of mathematical models of cancer informed by time-resolved measurements has enabled personalised predictions of tumour growth and treatment response. However, frequ…

math.AP2024

Mathematical analysis of a model-constrained inverse problem for the reconstruction of early states of prostate cancer growth

Elena Beretta, Cecilia Cavaterra, Matteo Fornoni +2

The availability of cancer measurements over time enables the personalised assessment of tumour growth and therapeutic response dynamics. However, many tumours are treated after di…

math.AP2024

Analysis of a Navier-Stokes phase-field crystal system

Cecilia Cavaterra, Maurizio Grasselli, Muhammed Ali Mehmood +1

We consider an evolution system modeling a flow of colloidal particles which are suspended in an incompressible fluid and accounts for colloidal crystallization. The system consist…