Area of research
Computational Mechanics · Global and Planetary Change
Research interest
Research focused on Electroacupuncture and Idiopathic scoliosis, with related work in Basolateral amygdala, Cervical spondylosis, Oxidative stress. Notable publications include 'Fatty infiltration of the cervical multifidus musculature and its clinical correlation to cervical spondylosis', 'Biomechanical analysis of spinal range of motion and intervertebral disc loadings in normal and adolescent idiopathic scoliosis models', and 'The role of paraspinal muscle degeneration in cervical spondylosis'.
Biomechanical analysis of spinal range of motion and intervertebral disc loadings in normal and adolescent idiopathic scoliosis models
The role of paraspinal muscle degeneration in cervical spondylosis
Association between lipid accumulation product and non-alcoholic fatty liver disease with normal weight: a population-based study
Electroacupuncture attenuates anxiety caused by chronic mild stress through inhibiting NOX2-derived oxidative stress in ventral hippocampus
Thoracolumbar Biomechanical Analysis of Lenke Type 1 Adolescent Idiopathic Scoliosis Across Roussouly Classifications
Confronting the anxiety of Generation Z: electroacupuncture therapy regulates oxidative stress and microglia activity in amygdala-basolateral of socially isolated mice
Nonlinear Relationship Between Triglyceride‐to‐High‐Density Lipoprotein Cholesterol Ratio and Non‐Alcoholic Fatty Liver Disease: A Secondary Retrospective Analysis Based on a Japanese Longitudinal Study
Development of a spinopelvic complex finite element model for quantitative analysis of the biomechanical response of patients with degenerative spondylolisthesis
Confronting the Anxiety of Generation Z: Electroacupuncture Therapy Regulates Oxidative Stress and Microglia Activity in Amygdala-Basolateral of Socially Isolated Mice
Fatty infiltration of the cervical multifidus musculature and its clinical correlation to cervical spondylosis