Low-Cost Cardiac Ultrasound Phantom
A <$10 dynamic cardiac ultrasound phantom designed to simulate systolic and diastolic motion for accessible training.
My hands-on engineering projects:
A <$10 dynamic cardiac ultrasound phantom designed to simulate systolic and diastolic motion for accessible training.
An SLA-printed mold for a PDMS microfluidic device that enables size-based particle separation using pinch-flow fractionation.
Multi-material pliers with a press-fit assembly. No adhesives required!
A top-down modeled, filament-printed phone holder designed to mount securely to bicycle handlebars and rotate between portrait and landscape orientations.
A multi-material, 3D printed pickleball paddle that meets USA Pickleball guidelines for official play.
A generative design study of a lightweight skateboard truck hanger with an integrated motor mount, optimized for structural performance and reduced mass.
A low-cost, programmable syringe pump capable of accurate flow control for 10 mL and 20 mL syringes.
A lightweight-wearable system combining pressure sensing and IMU data to quantify gait symmetry and classify terrain in real time.