This page showcases my design projects that explore the intersection of technology, healthcare, and human experience. From innovative medical devices to architectural visualization tools, my work aims to solve real-world problems through thoughtful design and user-centered approaches.
My projects span multiple domains including healthcare innovation, architectural technology, speculative design, and human-computer interaction. I am particularly interested in how design can improve public health outcomes, enhance our understanding of built environments, and create more intuitive interfaces between humans and complex systems.
we developed an interactive device that enables non-diabetics to experience the dietary restrictions of diabetic patients. Integrated with AI technology, the device offers personalized dietary comments, raising awareness of the daily challenges faced by individuals with diabetes.
This project explores how Fologram can support designers during fabrication and assembly process by providing real-time visual guidance. It introduces a workflow that starts with 2D structural analysis and moves into 3D stress-based reinforcement topology, connecting parametric assembly with considerations of structural stability and material performance. From design to fabrication, the process includes both additive and subtractive manufacturing methods, generating G-code or rapid code for robotic fabrication. Fologram is used in the assembly stage to translate digital notations into physical actions, helping align parts with design intention. This approach allows the design-to-fabrication process to stay both flexible and accurate, while responding to both structural logic and practical constraints.
This plugin, based on the Fologram framework, is designed as an AR visualization tool for bone marrow puncture guidance using inputs from different skeletal models. By optimizing the model and converting point clouds, it generates features such as bone marrow pathways, path guidance, distance and angle indicators, and dangerous area warnings. The goal is to enhance surgical precision and streamline the surgical process for orthopedic surgeons.
In the future society, brain computer interface technology will be widely used for monitoring and management; the rapid transmission and processing of information make society orderly, but the abuse of technology leads to the oppression and control of managers' spirit, and this project showcases the living conditions of a low-level manager in a circular surveillance society through an experimental video, reflecting the mental state under heavy surveillance.
A speculative design project examining cohabitation between humans and urban wildlife. Through participatory design methods, this work proposes interventions that accommodate both human needs and animal behaviors in shared urban environments.
stealth performance of the tank under radar waves is improved. Thus improving the battlefield survival and strategic strike capabilities of tanks.
To solve the following problems in the COVID-19: Massive rise in testing for novel coronavirus nucleic acid Nucleic acid test in increased demand for healthcare professionals High expenditure on nucleic acid testing I hope to redesign the nucleic acid testing machine and user interfaceto address the above issues.
Based on the current living environment, there are a largenumber of explicit or implicit housing aging phenomena.However, there is often an emotional connection betweenpeople and their living space. When conducting housinginspections, residents often have doubts about the inspectionresults and are difficult to accept. Therefore, I hope to providebetter methods and visualization of housing aging inspection,so that residents can better understand their livingenvironment.