The following pages link to Fractal analysis and tumour growth (Q955500):
Displaying 15 items.
- Using fractal geometry and universal growth curves as diagnostics for comparing tumor vasculature and metabolic rate with healthy tissue and for predicting responses to drug therapies (Q378957) (← links)
- Influence of electrode array parameters used in electrotherapy on tumor growth kinetics: a mathematical simulation (Q449651) (← links)
- The Gompertzian curve reveals fractal properties of tumor growth (Q1416183) (← links)
- Fractal dynamics in the growth of root (Q1433815) (← links)
- Time-fractional Cahn-Hilliard equation: well-posedness, degeneracy, and numerical solutions (Q2074104) (← links)
- Analysis of the fluctuations of the tumour/host interface (Q2146837) (← links)
- The dynamic evolution of the power exponent in a universal growth model of tumors (Q2202150) (← links)
- On computer-aided fractal analysis of growth processes at tumor-stroma border (Q2957361) (← links)
- The Fibonacci constant and limits of tissue self-organization; local complexity measures in evaluation of the risk of metastasis formation (Q5155598) (← links)
- Fractal characteristics of Heterocapsa Circularisquama and Prorocentrum Dentatum cells growth (Q5208635) (← links)
- Tumor Growth in the Fractal Space-Time with Temporal Density (Q5392766) (← links)
- (Q5456978) (← links)
- FROM THE PHYSICAL LAWS OF TUMOR GROWTH TO MODELLING CANCER PROCESSES (Q5485821) (← links)
- Improvement of nonlocal Pennes heat transfer equation in fractal dimensions in the analysis of tumor growth (Q6175770) (← links)
- Using persistent homology topological features to characterize medical images: case studies on lung and brain cancers (Q6179122) (← links)