Hannes, a biomimetic hand prosthetic, has been developed to replicate human hand movement and grasp properties. It has shown improved performance compared to existing devices, enabling patients to perform daily activities with ease.
Researchers at IIT and Harvard University identified the tricks used by the brain to discriminate and generalize odorous molecules. The study sheds light on how our brain processes information from the sense of smell, revealing a new mechanism for recognizing specific smells.
Researchers at Istituto Italiano di Tecnologia have discovered a novel chemical compound that shows promise in treating core symptoms of brain disorders such as Down syndrome and autism. The new compound selectively blocks the transporter NKCC1, which is dysregulated in these conditions.
Researchers at IIT have developed a revolutionary liquid retina prosthesis using nano-technology to replace damaged photoreceptors in the retina. The study demonstrates high spatial resolution and effectiveness, paving the way for future clinical trials.
Researchers develop gold nanoparticles that selectively inhibit extrasynaptic glutamate receptors, preserving neurotransmission while blocking excessive activation. This breakthrough offers promising perspectives for targeted therapy without major side effects.
The smartband iFeel-You detects high body temperatures and proximity to others, alerting users to respect social distancing. Researchers developed the wearable using technologies from a sensorized suit, aiming for practical solutions in industries and daily life.
The MEMEX project aims to develop new technologies that encourage the visibility of vulnerable social groups, using smartphones. By telling their stories, communities can gain visibility and connect with their territory, discovering historical and artistic insights.
The PROBOSCIS project aims to develop a new generation of bioinspired robot manipulators capable of adapting to uncertain environments and performing various real-world grasping tasks. By studying the anatomy and movements of elephants' proboscis, researchers will create a soft robotic system with advanced tactile sensing capabilities.
Researchers from Istituto Italiano di Tecnologia, University of Salento, and Harvard Medical School have developed a new light-based method to capture and pinpoint the epicenter of neural activity. The approach allows for novel ways to map connections across different brain regions.
Researchers at Istituto Italiano di Tecnologia have developed a new technique called Optoceutics, which uses visible light to specifically direct the fate of tissue cells. This breakthrough has significant potential for regenerative medicine and treating cardiovascular diseases.
Four researchers from Istituto Italiano di Tecnologia have been awarded ERC Starting grants to develop collaborative robotics and biotechnologies. Their projects aim to improve human-robot interactions, create new solar energy storage methods, and enhance immunotherapies using genetically modified T cells.
HyQReal, the latest version of hydraulic-powered quadruped robots, successfully pulled a 3300kg small passenger airplane at Genova Airport. The robot features increased ruggedness, reliability, and energy efficiency compared to previous versions.
The WeDraw project developed a multi-sensory teaching method using dance and music to teach mathematical concepts. The method was tested with over 100 children and showed improved learning outcomes, especially for pupils with visual impairments.
Researchers at IIT created a soft robot mimicking plant tendrils that can curl and climb using osmosis. The robot's shape is adjustable, allowing it to adapt to its environment, with potential applications in wearable technologies and robotic arms.
Researchers at IIT found that single plant leaves can generate more than 150 volts of electricity, enough to power 100 LED light bulbs. An 'hybrid tree' made of natural and artificial leaves can convert wind into electricity, providing a new sustainable energy source.
The Centauro robot has been designed to assist rescue workers in disaster scenarios, with capabilities including robust locomotion, high strength manipulation, and harsh interactions. Its mobility skills have been validated through various tasks, such as manipulating heavy objects and breaking wood pieces.
The new version of WALK-MAN humanoid robot has a lighter upper body and new hands, reducing construction cost and improving performance. It can locate fires, activate extinguishers, and transmit images back to emergency teams for evaluation and guidance.
Scientists at IIT fabricated an artificial device reproducing the blood-brain barrier, a structure protecting the central nervous system. The device is composed of artificial and biological components and will be fundamental for studying new therapeutic strategies to overcome the blood-brain barrier.
Researchers at IIT-Istituto Italiano di Tecnologia focus on iCub's evolution from its origin to date, showcasing hardware and software co-evolution. The robot's current version enables crawling, sitting, balancing, and recognizing objects, with a sensitive full-body electronic skin system.
Researchers developed an adjustable optical microprobe to analyze and control deep brain regions, enabling minimally invasive devices for diagnosis and treatment of neurological disorders. The microprobe uses optogenetics to activate or inhibit neurons with tunable light intensity, color, and frequency.