In this episode, we talk about how MIT engineers have proven a way to detect the presence of origin for cancer cells in pee using nanoparticles, the robotic neck brace developed by Columbia University researchers, and a novel method to reduce the noise generated by airplanes during landing.
Active high-pass filters remove unwanted low-frequency signals while preserving useful higher frequencies. This article covers first- and second-order filter design, Sallen-Key and multiple-feedback topologies, and practical applications in audio electronics, instrumentation, and signal processing.
A new glove with more than three dozen actuators across all five fingers and the palm, developed by Cornell researchers, aims to reduce swelling for people suffering from edema.
AI-powered artificial muscles made from pliable materials are reshaping recovery, from stroke rehabilitation to prosthetic design. These machines help people regain motion, strength, and confidence.
Researchers at ETH Zurich have developed an innovative hand exoskeleton that helps persons after stroke re-learn how to grasp. Its accordion-like structure makes it light, robust and easy to integrate into everyday life.
AI-powered artificial muscles made from pliable materials are reshaping recovery, from stroke rehabilitation to prosthetic design. These machines help people regain motion, strength, and confidence.
MIT CSAIL researchers enhance robotic precision with sophisticated tactile sensors in the palm and agile fingers, setting the stage for improvements in human-robot interaction and prosthetic technology.
In this episode, we talk about how MIT engineers have proven a way to detect the presence of origin for cancer cells in pee using nanoparticles, the robotic neck brace developed by Columbia University researchers, and a novel method to reduce the noise generated by airplanes during landing.
In this episode, we talk about a graduate student’s thesis which resulted in a robot that’ll allow you to hug loved ones that are far away, how artificial photosynthesis might hold the key to our energy crisis, and a novel technique to conduct spinal stimulation therapy via non-invasive surgery.
In this episode, we talk about how MIT has built a magic carpet to avoid privacy concerns with human body tracking, an initiative from Texas A&M to track nanoparticles in produce, and the novel approach from Carnegie Mellon to turn household items into sensors.
In this episode, we talk about a research from Penn State that has proven the concept of printing tissue during surgery, a joint effort between MIT & Harvard to develop a hair brushing robot, and a breakthrough in anode free and sodium based batteries coming out of Washington University in St. Louis
In this episode, we talk about how a research team led by MIT has found a way to create functional textiles from polyethylene, rumors surrounding the Apple car, and EPFL’s newest iteration of a retinal implant.
By combining cost-effective 3D printing with affordable electronics and wireless technology, new accessibility solutions empower children with limb differences.
In this episode, we talk about a novel approach to detect Alzheimer's using retinal images, monitoring stress levels using sweat, and a new method of processing biomass which leads to better bioplastics.