Medical Ultrasound Imaging
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Searchterm 'Depth' found in 52 articles
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ALOKA SSD-500V
www.aloka.com/products/view_system.asp?id=9 From ALOKA Co., Ltd.;
'A High-Quality, Portable Veterinary Ultrasound System.
The SSD-500V is a rugged, portable convex sector/linear scanner that offers versatility, superb image quality and reliable performance in a compact design. This 22 lb system has Electronic dynamic focus and 256 shades of gray that produces high-quality images.
The SSD-500V includes comprehensive measurement and analysis packages. Measurements include distance/depth, area, circumference, velocity, heart rate, ratio and angle. The system also included obstetrical analysis functions that can calculate estimated gestational age and expected date of confinement.
In addition, customized obstetrical tables can be easily created. The SSD-500V software package also includes left ventricular function software for M-mode Cardiac evaluation.
The 500V provides excellent clinical versatility − for use in both small and large animal applications − using a wide range of optional convex and linear array transducers.'

ALOKA SSD-900
www.aloka.com/products/view_system.asp?id=7 From ALOKA Co., Ltd.;
'Innovative Image Quality in a Compact Size.
Featuring design concepts inherited from our higher end systems along with Aloka's latest proprietary electronic technologies, the compact SSD-900 delivers superb images.
Traditionally, portable units suffer from hardware and software limitations that affect image quality. Aloka's SSD-900 sets new standards for what's possible in a portable unit. Incorporating over 50 years of experience and unique micro-chip technologies, the SSD-900 generates incredibly high-resolution images.
The SSD-900 offers a full range of measurement functions for professional ultrasonic examination. And unlike conventional portable systems, the SSD-900 includes annotation labeling and 15-channel preset functions as standard features.
The system also use Super High Density transducers (found our high-end systems) to enhance imaging resolution. These multi-frequency transducers provide a broad range of imaging frequencies to optimize scan frequency for depth of view.'

ALOKA SSD-900V
www.aloka.com/products/view_system.asp?id=8 From ALOKA Co., Ltd.;
'Innovative Image Quality in a Compact Size
Featuring design concepts inherited from our higher end systems along with Aloka's latest proprietary electronic technologies, the compact SSD-900V delivers superb images.
Traditionally, portable units suffer from hardware and software limitations that affect image quality. Aloka's SSD-900V sets new standards for what's possible in a portable unit. Incorporating over 50 years of experience and unique micro-chip technologies, the SSD-900V generates incredibly high-resolution images.
The SSD-900V offers a full range of measurement functions for professional ultrasonic examination. And unlike conventional portable systems, the SSD-900V includes annotation labeling and 15-channel preset functions as standard features.
The system also use Super High Density transducers (found our high-end systems) to enhance imaging resolution. These multi-frequency transducers provide a broad range of imaging frequencies to optimize scan frequency for depth of view.'

Acoustic Shadowing
Through diffraction and refraction on intersections edge acoustic shadowing can be created. The acoustic shadowing artifact is the loss of information below a dense object because the majority of the sound energy was reflected back by the object.
Shadowing artifacts occur if decreasing of the echo amplitude is not exponential with penetration depth caused by inhomogeneous tissue layers and fluid or air-filled regions. Bone, air, foreign bodies and calcification stop the transmission of sound waves producing a 'sonic shadow' which is a dark region distal to the echogenic obstructing region. This artifact occurs also in objects like e.g. prosthetic valves.

See also Boundary Layer, and Half-Value Layer.
Amplitude
The amplitude is the signal height. The amplitude of the ultrasound echo is proportional to the difference of the acoustical impedance caused by different tissue layers. The amplitude decreases with increasing penetration depth of a homogeneous tissue.

See also Color Amplitude Imaging.
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 [last update: 2023-11-06 01:42:00]