SURFACE TREATMENT OF 3D PRINTED POROUS TI6AL4V IMPLANTS BY ULTRAVIOLET PHOTOFUNCTIONALIZATION FOR IMPROVED OSSEOINTEGRATION

Surface treatment of 3D printed porous Ti6Al4V implants by ultraviolet photofunctionalization for improved osseointegration

Three-dimensional (3D)-printed porous Ti6Al4V implants play an important role in the reconstruction of bone defects.However, its osseointegration capacity needs to be further improved, and related methods are inadequate, especially lacking customized surface treatment technology.Consequently, we aimed to design an omnidirectional radiator based on

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Predicting patient-level new-onset atrial fibrillation from population-based nationwide electronic health records: protocol of FIND-AF for developing a precision medicine prediction model using artificial intelligence

Beauty Mirror Introduction Atrial fibrillation (AF) is a major cardiovascular health problem: it is common, chronic and incurs substantial healthcare expenditure because of stroke.Oral anticoagulation reduces the risk of thromboembolic stroke in those at higher risk; but for a number of patients, stroke is the first manifestation of undetected AF.T

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Dynamics of a coupled epileptic network with time delay

Epilepsy is considered as a brain network disease.Epileptic computational models are developed to simulate the electrophysiological process of seizure.Some studies have shown that the epileptic network based Antenna Adaptor on those models can be used to predict the surgical outcome of patients with drug-resistant epilepsy.Most studies focused on t

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