Non-invasive measurement of intracranial pressure

Outlook on the Intracranial Pressure Monitoring Global Market to 2025 - Featuring Integra Lifesciences, LINET & Medtronic Among Others - ResearchAndMarkets.com

Retrieved on: 
Thursday, August 20, 2020

The "Intracranial Pressure Monitoring Market: Global Industry Trends, Share, Size, Growth, Opportunity and Forecast 2020-2025" report has been added to ResearchAndMarkets.com's offering.

Key Points: 
  • The "Intracranial Pressure Monitoring Market: Global Industry Trends, Share, Size, Growth, Opportunity and Forecast 2020-2025" report has been added to ResearchAndMarkets.com's offering.
  • The global intracranial pressure monitoring market grew at a CAGR of 6% during 2014-2019.
  • Intracranial pressure (ICP) monitoring is utilized in neurosurgery and neurology for measuring the pressure inside the skull.
  • Looking forward,, the publisher expects the global intracranial pressure monitoring market to continue its moderate growth during the next five years.

Nisonic Demonstrates Automatic Measurements of Optic Nerve Sheath Diameter as a Marker for Increased Intracranial Pressure Using Transorbital Ultrasound at Medica In Düsseldorf, Germany

Retrieved on: 
Monday, November 18, 2019

Nisonic is developing a novel method using properties of the optic nerve sheath to determine the patient's ICP.

Key Points: 
  • Nisonic is developing a novel method using properties of the optic nerve sheath to determine the patient's ICP.
  • Nisonic's method is based on using information about the optic nerve sheath obtained by placing ultrasound transducer on the eyelid.
  • When brain pressure increases, the optic nerve sheath widens and becomes stiffer, and Nisonic combines the optic nerve sheath diameter (ONSD) with additional information gathered from the nerve sheath to estimate the pressure.
  • To enable easy and fast measurements, Nisonic is using Machine Learning methods and has designed a probe optimized for transorbital ultrasound", says Tormod Selbekk (CTO).

Nisonic Demonstrates Automatic Measurements of Optic Nerve Sheath Diameter as a Marker for Increased Intracranial Pressure Using Transorbital Ultrasound at Medica In Düsseldorf, Germany

Retrieved on: 
Monday, November 18, 2019

Nisonic is developing a novel method using properties of the optic nerve sheath to determine the patient's ICP.

Key Points: 
  • Nisonic is developing a novel method using properties of the optic nerve sheath to determine the patient's ICP.
  • Nisonic's method is based on using information about the optic nerve sheath obtained by placing ultrasound transducer on the eyelid.
  • When brain pressure increases, the optic nerve sheath widens and becomes stiffer, and Nisonic combines the optic nerve sheath diameter (ONSD) with additional information gathered from the nerve sheath to estimate the pressure.
  • To enable easy and fast measurements, Nisonic is using Machine Learning methods and has designed a probe optimized for transorbital ultrasound", says Tormod Selbekk (CTO).

Endophys Holdings Expands Its Line of Pressure Sensing Access System

Retrieved on: 
Tuesday, July 9, 2019

Endophys Holdings LLC, a developer of innovative sheath-based blood pressure monitoring technology, has announced the launch of its newest Pressure Sensing Access System (PSAS).

Key Points: 
  • Endophys Holdings LLC, a developer of innovative sheath-based blood pressure monitoring technology, has announced the launch of its newest Pressure Sensing Access System (PSAS).
  • Bringing analog blood pressure monitoring to the digital age, the Endophys system features a small fiber optic pressure sensor embedded in the wall of the access sheath, making it possible to simultaneously monitor blood pressure while also using the sheath for performing a range of vascular procedures.
  • Endophys Holdings, LLC ( www.Endophys.com ) has pioneered a novel blood pressure monitoring technology that connects directly to standard patient care monitors.
  • The 8-French, 25cm Pressure Sensing Access System is the companys fourth commercial product.