Magnetic Resonance Imaging Stocks List

Related ETFs - A few ETFs which own one or more of the above listed Magnetic Resonance Imaging stocks.

Magnetic Resonance Imaging Stocks Recent News

Date Stock Title
Jul 1 A Agilent Appoints Bret DiMarco as Chief Legal Officer
Jul 1 GEHC Is GE HealthCare Technologies (NASDAQ:GEHC) A Risky Investment?
Jul 1 A Agilent Names Bret DiMarco Chief Legal Officer
Jul 1 IRMD What Does IRADIMED CORPORATION's (NASDAQ:IRMD) Share Price Indicate?
Jun 30 A Agilent Technologies, Inc.'s (NYSE:A) Fundamentals Look Pretty Strong: Could The Market Be Wrong About The Stock?
Jun 28 GEHC GE Healthcare files for mixed shelf offering
Jun 28 A Why Is Agilent (A) Down 0.5% Since Last Earnings Report?
Jun 28 PHG Philips Stock Surges: Risk Remains On Respironics, But With Investment Potential
Jun 28 PHG Philips BiPAP recall now linked to 65 deaths, 952 injuries
Jun 27 A Agilent downgraded at Wolfe on limited upside
Jun 27 A EV, Chips, Crypto Stocks in Crosshairs as Biden, Trump Face Off
Jun 27 A Dynatrace initiated, U.S. Bancorp downgraded: Wall Street's top analyst calls
Jun 27 A Agilent Hit By Cyclical Headwinds, But The Growth Story Remains Intact Long Term
Jun 27 GEHC With 75% ownership of the shares, GE HealthCare Technologies Inc. (NASDAQ:GEHC) is heavily dominated by institutional owners
Jun 27 PHG SyntheticMR’s SyMRI version 15 secures CE mark
Jun 26 GEHC GE HealthCare Technologies declares $0.03 dividend
Jun 26 GEHC GE HealthCare announces cash dividend for second quarter of 2024
Jun 26 PHG Billionaire Agnelli Is Philips' Largest Shareholder Now - What's Going On?
Jun 26 BRKR Bruker's (BRKR) Strategic Buyouts Aid Amid Macroeconomic Woes
Jun 26 A Agilent’s ESG Report Highlights Expansion of Solutions to Help Labs Manage Their Environmental Footprint
Magnetic Resonance Imaging

Magnetic resonance imaging (MRI) is a medical imaging technique used in radiology to form pictures of the anatomy and the physiological processes of the body in both health and disease. MRI scanners use strong magnetic fields, magnetic field gradients, and radio waves to generate images of the organs in the body. MRI does not involve X-rays or the use of ionizing radiation, which distinguishes it from CT or CAT scans and PET scans. Magnetic resonance imaging is a medical application of nuclear magnetic resonance (NMR). NMR can also be used for imaging in other NMR applications such as NMR spectroscopy.
While the hazards of X-rays are now well-controlled in most medical contexts, an MRI scan may still be seen as a better choice than a CT scan. MRI is widely used in hospitals and clinics for medical diagnosis, staging of disease and follow-up without exposing the body to radiation. However, MRI may often yield different diagnostic information compared with CT. There may be risks and discomfort associated with MRI scans. Compared with CT scans, MRI scans typically take longer and are louder, and they usually need the subject to enter a narrow, confining tube. In addition, people with some medical implants or other non-removable metal inside the body may be unable to undergo an MRI examination safely.
MRI was originally called NMRI (nuclear magnetic resonance imaging), but the use of 'nuclear' in the acronym was dropped to avoid negative associations with the word. Certain atomic nuclei are able to absorb and emit radio frequency energy when placed in an external magnetic field. In clinical and research MRI, hydrogen atoms are most often used to generate a detectable radio-frequency signal that is received by antennas in close proximity to the anatomy being examined. Hydrogen atoms are naturally abundant in people and other biological organisms, particularly in water and fat. For this reason, most MRI scans essentially map the location of water and fat in the body. Pulses of radio waves excite the nuclear spin energy transition, and magnetic field gradients localize the signal in space. By varying the parameters of the pulse sequence, different contrasts may be generated between tissues based on the relaxation properties of the hydrogen atoms therein.
Since its development in the 1970s and 1980s, MRI has proven to be a highly versatile imaging technique. While MRI is most prominently used in diagnostic medicine and biomedical research, it also may be used to form images of non-living objects. MRI scans are capable of producing a variety of chemical and physical data, in addition to detailed spatial images. The sustained increase in demand for MRI within health systems has led to concerns about cost effectiveness and overdiagnosis.

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