Madison Scientific Closes $7M in Seed Financing
Funds will be used to advance development of the company's SmartShunt™ System
that aims to address current challenges with existing hydrocephalus treatments
"Hydrocephalus is a challenging condition to manage. Current shunt devices lack the sophistication to alert when medical intervention is necessary," explained
MadSci's SmartShunt System is designed to integrate diagnostic and therapeutic functions to enable personalized and informed hydrocephalus management. The system features a proprietary valve, state-of-the-art intracranial pressure (ICP) sensor, and advanced algorithms to optimize shunt drainage to meet each patient's needs. The in-development SmartShunt System aims to leverage ICP readings to reduce life threatening shunt failure, while also facilitating on-demand and informed patient management, reducing uncertainty for patients and their families.
Hydrocephalus is an incurable neurological condition impacting approximately one million children and adults in the
"We are committed to improving outcomes for the underserved population of hydrocephalus patients," stated
In addition to this financing, the company was previously awarded several non-dilutive grants, including a Phase I Small Business Innovation Research Program (SBIR) grant from the National Institutes of Health (NIH) and a Phase 2 SBIR Grant from the National Science Foundation (NSF).
The SmartShunt System is under development and is not yet authorized for use or available for sale in any country.
ABOUT MADISON SCIENTIFIC
Madison Scientific (MadSci) is an early-stage medical device company innovating smart electro-mechanical devices to improve treatment and long-term care for patients with hydrocephalus and other neurologic conditions. Hydrocephalus is a potentially fatal condition that affects over one million children and adults in the
Media Contact:
Sprig Consulting
[email protected]
1 Hydrocephalus Association Fact Sheet
2 Allied Market Research, Hydrocephalus Shunt Market, Global Opportunity Analysis and Industry Forecast, 2020-2027
3 Drake et al. "Randomized Trial of Cerebrospinal Fluid Shunt Valve Design in Pediatric Hydrocephalus". Neurosurgery 43(2):p 294-303,
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SOURCE Madison Scientific, Inc.
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