PubMed Health⌕ Search

Biomedical subjects

M Huo

Publications and source records attributed to M Huo.

2 recordsLinked to original sources

Electrodynamic heart model construction and ECG simulation.

OBJECTIVES: In this paper, we present a unified electrodynamic heart model that permits simulations of the body surface potentials generated by the heart in motion. The inclusion of motion in the heart model significantly improves the accuracy of the simulated body surface potentials and therefore also the 12-lead ECG. METHODS: The key step is to construct an electromechanical heart model. The cardiac excitation propagation is simulated by an electrical heart model, and the resulting cardiac active forces are used to calculate the ventricular wall motion based on a mechanical model. The source-field point relative position changes during heart systole and diastole. These can be obtained, and then used to calculate body surface ECG based on the electrical heart-torso model. RESULTS: An electromechanical biventricular heart model is constructed and a standard 12-lead ECG is simulated. Compared with a simulated ECG based on the static electrical heart model, the simulated ECG based on the dynamic heart model is more accordant with a clinically recorded ECG, especially for the ST segment and T wave of a V1-V6 lead ECG. For slight-degree myocardial ischemia ECG simulation, the ST segment and T wave changes can be observed from the simulated ECG based on a dynamic heart model, while the ST segment and T wave of simulated ECG based on a static heart model is almost unchanged when compared with a normal ECG. CONCLUSIONS: This study confirms the importance of the mechanical factor in the ECG simulation. The dynamic heart model could provide more accurate ECG simulation, especially for myocardial ischemia or infarction simulation, since the main ECG changes occur at the ST segment and T wave, which correspond with cardiac systole and diastole phases.

Electrocardiography↗

Total hip arthroplasty in cerebral palsy. Long-term follow-up results.

Patients with cerebral palsy frequently develop coxarthrosis after acquired hip dislocation or dysplasia. Nineteen total hip arthroplasties (THA) were performed in 18 patients with cerebral palsy and end-stage hip degeneration. The average age at arthroplasty was 30 years (range, 16-52 years). All components were cemented, and four hips required bone graft augmentation of the deficient acetabulum. Spica casts were used in 16 of 18 patients to minimize the incidence of dislocation and trochanteric nonunion. The average follow-up time was ten years (range, three to 17 years). Seventeen of 18 patients (94%) had pain relief and improved function after arthroplasty. One stem loosened at three years, and one acetabular component loosened at 15 years. One stem and one acetabular component were revised for malposition. Survivorship analysis was 95% at ten years for loosening and 86% with removal for any reason. Total hip arthroplasty can provide long-term relief and improved function in cerebral palsy patients with severe coxarthrosis.

Activities of Daily Living↗