Medical Ultrasound Imaging
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High Intensity Focused Ultrasound
(HIFU / FUS) High intensity focused ultrasound is used in thermotherapy or thermoablation e.g., for the treatment of benign prostate hyperplasia or under study for the treatment of cancer.
An applied ultrasound probe (see transrectal sonography) focuses sound waves at one spot, elevating the tissue temperature to a point that the tissue destroys. Generally, lower frequencies (from 250 kHz to 2000 kHz) are used than for medical diagnostic ultrasound, but significantly higher time-averaged intensities.

See also Magnetic Resonance Guided Focused Ultrasound, Low Intensity Pulsed Ultrasound, and Lithotripsy.
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Mallinckrodt, Inc.
www.mallinckrodt.com In June 2007 Tyco International Ltd. completed the separation of its healthcare business, which is named Covidien. Mallinckrodt, Inc. is now part of Covidien Ltd. The company makes and distributes products for respiratory care; bulk and dosage pharmaceuticals, primarily for pain relief and addiction therapy; and imaging agents for magnetic resonance, ultrasound, x-ray, and nuclear medicine applications. With worldwide manufacturing and distribution facilities and sales offices, Mallinckrodt, Inc. sells its products worldwide.
Albunex was one of the first marketed ultrasound contrast agents. Currently, Mallinckrodt discontinued the manufacturing and development of ultrasound contrast agents.

Ultrasound Contrast Agents:

Contact Information
MAIL
Covidien Imaging Solutions
675 McDonnell Blvd.
Hazelwood, MO 63042
USA
PHONE
US: (888)744-1414
International: +1-314-654-3177
FAX
+1-314-654-5380
Molecular Biosystems Inc.
Molecular Biosystems, Inc. (MBI), founded in 1980, is a biomedical company developing a range of contrast agents for use with diagnostic ultrasound, magnetic resonance imaging (MRI), and computed tomography (CT).
Alliance Pharmaceutical Corp. acquires Molecular Biosystems in Nov. 2000.
Picture Archiving and Communication System
(PACS) A system used to communicate and archive medical imaging data, mostly images and associated textural data generated in a radiology department, and disseminated throughout the hospital. A PACS is usually based on the DICOM (Digital Imaging and Communications in Medicine) standard.

The main components in the PACS are: acquisition devices where the images are acquired;
short and longer term archives for storage of digital and textural data;
a database and database management;
diagnostic and review workstations;
software to run the system;
a communication network linking the system components;
interfaces with other networks (hospital and radiological information systems).

Acquisition devices, which acquire their data in direct digital format, like a MRI system, are most easily integrated into a PACS.
Short term archives need to have rapid access, such as provided by a RAID (redundant array of independent disks), whereas long term archives need not have such rapid access and can be consigned, e.g. to optical disks or a magnetic.
High speed networks are necessary for rapid transmission of imaging data from the short term archive to the diagnostic workstations. Optical fibre, ATM (asynchronous transfer mode), fast or switched Ethernet, are examples of high speed transmission networks, whereas demographic textural data may be transmitted along conventional Ethernet.
Sophisticated software is a major element in any hospital-wide PACS. The software concepts include: preloading or prefetching of historical images pertinent to current examinations, worklists and folders to subdivide the vast mass of data acquired in a PACS in a form, which is easy and practical to access, default display protocols whereby images are automatically displayed on workstation monitors in a prearranged clinically logical order and format, and protocols radiologists can rapidly report worklists of undictated examinations, using a minimum of computer manipulation.
Quadrature Detection
Quadrature detection is used in Doppler ultrasound as well as in magnetic resonance imaging and is also called quadrature demodulation or phase quadrature technique. Quadrature detection is the acquisition of Mx and My simultaneously as a function of time by using two separate detector channels. This signal processing method is used for directional Doppler in which the signal reference frequency for the two channels has a phase shift of 1/4 period. The output Doppler signal phase for both channels also depends on the Doppler shift whether positive or negative.
The fast Fourier transform analyzer performs spectral Doppler analysis in ultrasound machines and displays different quadrature Doppler frequencies, when a sample volume cursor is used along time.
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 [last update: 2023-11-06 01:42:00]