Transparent Neural Implant Monitors Multiple Brain Areas at Once
By HospiMedica International staff writers Posted on 15 Jan 2024 |

Current neural implant technologies suffer from various limitations. For instance, existing surface arrays are minimally invasive, although they are unable to capture information beyond the brain’s outer layers. In contrast, electrode arrays with thin needles that penetrate the brain can probe deeper layers but often cause inflammation and scarring, thus compromising signal quality over time. Now, a thin, flexible implant when placed on the surface of the brain enables researchers to capture high-resolution information about neural activity deep inside the brain without causing any damage to its delicate tissue.
Researchers at the University of California San Diego (La Jolla, CA, USA) have developed a groundbreaking neural implant that can provide information about deep brain activity while being non-invasively positioned on the brain's surface. This innovative device consists of a slim, flexible polymer strip embedded with a densely packed array of graphene electrodes, each with a diameter of 20 micrometers. All the electrodes are connected by a micrometers-thin graphene wire to a circuit board. This technological advancement, successfully trialed in transgenic mice, marks significant progress toward creating a less invasive brain-computer interface (BCI). Such an interface would be capable of providing detailed insights into deep neural activities through recordings made on the brain's surface.
In experimental applications on transgenic mice, this neural implant demonstrated its ability to capture high-resolution data on two distinct types of neural activities: electrical and calcium activities, simultaneously. When positioned on the surface of the brain, the implant recorded electrical signals from the neurons in the outer layers. Concurrently, the researchers employed a two-photon microscope, projecting laser light through the implant to visualize calcium spikes from neurons up to 250 micrometers beneath the surface. They discovered a notable correlation between the electrical signals captured from the surface and the calcium spikes occurring in deeper layers. This correlation was significant as it allowed the team to train neural networks to accurately predict calcium activity.
This prediction was not just limited to large groups of neurons but extended to individual neurons at varying depths. The capability to predict calcium activity based on electrical signals addresses the constraints of conventional imaging experiments. Typically, imaging calcium spikes requires the subject's head to be immobilized under a microscope in experiments spanning just one or two hours. However, this new implant technology offers a more dynamic and prolonged approach to studying brain activities, overcoming these limitations and paving the way for more advanced and continuous neural monitoring.
“We are expanding the spatial reach of neural recordings with this technology,” said study senior author Duygu Kuzum, a professor in the Department of Electrical and Computer Engineering at the UC San Diego Jacobs School of Engineering. “Even though our implant resides on the brain’s surface, its design goes beyond the limits of physical sensing in that it can infer neural activity from deeper layers.”
Related Links:
University of California San Diego
Latest Surgical Techniques News
- Hydrogel-Based Miniaturized Electric Generators to Power Biomedical Devices
- Custom 3D-Printed Orthopedic Implants Transform Joint Replacement Surgery
- Wearable Technology Monitors and Analyzes Surgeons' Posture during Long Surgical Procedures
- Cutting-Edge Imaging Platform Detects Residual Breast Cancer Missed During Lumpectomy Surgery
- Computational Models Predict Heart Valve Leakage in Children
- Breakthrough Device Enables Clear and Real-Time Visual Guidance for Effective Cardiovascular Interventions
- World’s First Microscopic Probe to Revolutionize Early Cancer Diagnosis
- World’s Smallest Implantable Brain Stimulator Demonstrated in Human Patient
- Robotically Assisted Lung Transplants Could Soon Become a Reality
- AI to Provide Heart Transplant Surgeons with New Decision-Making Data
- New Surgical Tool Empowers Precision and Confidence in Operating Room
- Future Muscle-Powered Surgical Robots Could Perform Minimally Invasive Procedures inside Body
- Non-Invasive Technique Combines Cardiac CT with AI-Powered Blood Flow for Heart Bypass Surgery
- First-Of-Its-Kind Device Repairs Leaky Tricuspid Heart Valve
- New Signaling Method Enables Precise Localization of Miniature Robots and Surgical Instruments inside Body
- Novel Catheter System Enables Safer, More Cost-Effective Transseptal Procedures
Channels
Artificial Intelligence
view channel
AI-Powered Algorithm to Revolutionize Detection of Atrial Fibrillation
Atrial fibrillation (AFib), a condition characterized by an irregular and often rapid heart rate, is linked to increased risks of stroke and heart failure. This is because the irregular heartbeat in AFib... Read more
AI Diagnostic Tool Accurately Detects Valvular Disorders Often Missed by Doctors
Doctors generally use stethoscopes to listen for the characteristic lub-dub sounds made by heart valves opening and closing. They also listen for less prominent sounds that indicate problems with these valves.... Read moreCritical Care
view channel
Deep-Learning Model Predicts Arrhythmia 30 Minutes before Onset
Atrial fibrillation, the most common type of cardiac arrhythmia worldwide, affected approximately 59 million people in 2019. Characterized by an irregular and often rapid heart rate, atrial fibrillation... Read more
Breakthrough Technology Combines Detection and Treatment of Nerve-Related Disorders in Single Procedure
The peripheral nervous system (PNS) serves as the communication network that links the brain and spinal cord to every other part of the body. It consists of two parts: the somatic nervous system, which... Read morePatient Care
view channel
Surgical Capacity Optimization Solution Helps Hospitals Boost OR Utilization
An innovative solution has the capability to transform surgical capacity utilization by targeting the root cause of surgical block time inefficiencies. Fujitsu Limited’s (Tokyo, Japan) Surgical Capacity... Read more
Game-Changing Innovation in Surgical Instrument Sterilization Significantly Improves OR Throughput
A groundbreaking innovation enables hospitals to significantly improve instrument processing time and throughput in operating rooms (ORs) and sterile processing departments. Turbett Surgical, Inc.... Read more
Next Gen ICU Bed to Help Address Complex Critical Care Needs
As the critical care environment becomes increasingly demanding and complex due to evolving hospital needs, there is a pressing requirement for innovations that can facilitate patient recovery.... Read more
Groundbreaking AI-Powered UV-C Disinfection Technology Redefines Infection Control Landscape
Healthcare-associated infection (HCAI) is a widespread complication in healthcare management, posing a significant health risk due to its potential to increase patient morbidity and mortality, prolong... Read moreHealth IT
view channel
Machine Learning Model Improves Mortality Risk Prediction for Cardiac Surgery Patients
Machine learning algorithms have been deployed to create predictive models in various medical fields, with some demonstrating improved outcomes compared to their standard-of-care counterparts.... Read more
Strategic Collaboration to Develop and Integrate Generative AI into Healthcare
Top industry experts have underscored the immediate requirement for healthcare systems and hospitals to respond to severe cost and margin pressures. Close to half of U.S. hospitals ended 2022 in the red... Read more
AI-Enabled Operating Rooms Solution Helps Hospitals Maximize Utilization and Unlock Capacity
For healthcare organizations, optimizing operating room (OR) utilization during prime time hours is a complex challenge. Surgeons and clinics face difficulties in finding available slots for booking cases,... Read more
AI Predicts Pancreatic Cancer Three Years before Diagnosis from Patients’ Medical Records
Screening for common cancers like breast, cervix, and prostate cancer relies on relatively simple and highly effective techniques, such as mammograms, Pap smears, and blood tests. These methods have revolutionized... Read morePoint of Care
view channel
Critical Bleeding Management System to Help Hospitals Further Standardize Viscoelastic Testing
Surgical procedures are often accompanied by significant blood loss and the subsequent high likelihood of the need for allogeneic blood transfusions. These transfusions, while critical, are linked to various... Read more
Point of Care HIV Test Enables Early Infection Diagnosis for Infants
Early diagnosis and initiation of treatment are crucial for the survival of infants infected with HIV (human immunodeficiency virus). Without treatment, approximately 50% of infants who acquire HIV during... Read more
Whole Blood Rapid Test Aids Assessment of Concussion at Patient's Bedside
In the United States annually, approximately five million individuals seek emergency department care for traumatic brain injuries (TBIs), yet over half of those suspecting a concussion may never get it checked.... Read more
New Generation Glucose Hospital Meter System Ensures Accurate, Interference-Free and Safe Use
A new generation glucose hospital meter system now comes with several features that make hospital glucose testing easier and more secure while continuing to offer accuracy, freedom from interference, and... Read moreBusiness
view channel
Johnson & Johnson Acquires Cardiovascular Medical Device Company Shockwave Medical
Johnson & Johnson (New Brunswick, N.J., USA) and Shockwave Medical (Santa Clara, CA, USA) have entered into a definitive agreement under which Johnson & Johnson will acquire all of Shockwave’s... Read more