SonoScape S6 Portable Ultrasound machine

Purchasing an affordable portable ultrasound machine just got easier with the SonoScape S6 System. The SonoScape S6 Portable Ultrasound Machine offers the same performance of an expensive system, but with the price tag more fitting for the average clinical budget. The Sonoscape S6 offers high performance ultrasound imaging that incorporates precise colour flow mapping, doppler and B&M mode imaging on a large 15 inch high definition LCD display.

At 7.9 Kg the S6 redefines the meaning of Hand Carried Portability with a large intuitive operating panel and all of the functionality of larger systems. The S6 can be easily configured for specific imaging applications such as Obstetrics and Gynaecology, General Abdominal Imaging, Cardiac & TOE/TEE, Vascular, MSK, Urology, ICU and Theatres.


The SonoScape S6 Portable Ultrasound machine is a state-of-the art diagnostic tool that combines high value and low price. Useful across a large option of applications thanks to the use of modern transducers and powerful software, the SonoScape S6 Portable Ultrasound system is an excellent choice for all clinical settings. The SonoScape S6 also allows users to diagnose patients anywhere or at anytime with a built-in optional battery which makes it a true portable ultrasound equipment.

SonoScape S6 Portable Ultrasound Machine


Detailed Product Description
The SonoScape S6 ultrasound machine offers the following features:

  • 15” HD LCD Display
  • Dual Active Probe Connection
  • TDI, Steer M, Panoramic Imaging
  • Full function control panel
  • Tissue Harmonic Imaging

SonoScape S6 System Applications:

  • Small Parts
  • Cardiac
  • Abdominal
  • Urology
  • OB-GYN
  • Vascular
  • Transcranial
  • Prostate
  • Surgical
  • Endo-Cavity
  • Pediatrics
  • Radiology

The SonoScape S6 portable ultrasound system is one of the best values currently on the market, and its low price makes it a very attractive option for a variety of clinical applications.
Your search for the lowest price on a refurbished SonoScape S6 portable ultrasound machine ends at PortableUltrasounds.com because we constantly check our competitors’ prices to give you the best deals on portable ultrasound systems.

Premier FeaturesFree-hand 3D Reconstruction
Colour Flow, Power Doppler, Spectral PW Doppler, Tissue Doppler
Panoramic Imaging
Multi Parameter Compound Imaging
Advanced Tissue Harmonics
Multi Frequency High Density Transducers (1.5 – 15Mhz)
MicroScan™ – Noise and Artefact Reduction Alorithm
Comprehensive Calculation Data and Tables
Network CompatibilityDual USB 2.0
DICOM 3.0
USB software upgrade via thumb drive
Easy data management and networking
Oustanding ValueThe S6, loaded with the host of standard features above, represents unsurpassed value for your ultrasound investment.acuson cv 2000,sonoscape s6 images dog,7cf2 transducer,acuson 7cf2 transducer,acuson 8v3 transducer,acuson 4v1c x300 ultrasound transducer,acuson 7cf2 ultrasound transducer,acuson 8v3 ultrasound transducer,acuson aspen 8v3 transducer,acuson ec9-4 ultrasound transducer,private medical insurance uk,private medical health insurance,medical insurance uk,medical office billing software
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The Ultrasound Technology and its use in medicine Industry

What is Ultrasound Technology?

The world Ultrasound is a term often used to refer to some sound which the human ear cannot detect or hear. The actual limit of sound to be hear varies between individuals (and there is evidence to suggest it varies according to age, too), but in general the frequency of the sound which human ear can detect meaningfully is between 20Hz to 20KHz. Ultrasound begins is generally regarded as 20 KHz (usually greater than this limit). Below this frequency, sound can be heard by the human ear and is referred to as infrasound.
The components of ultrasound machine:
The major component of Ultrasound machine involved are consist of a large list, if we start counting it actually, but the Transducer of Ultrasound machine is of more importance becuase it is the part of ultrasound technology which play centeral role in all process.
Transducer of the ultrasound machine:
Ultrasound technology uses a piece of equipment called a transducer to view a target organ or life form (such as a human fetus).
Function of the Transducer of ultrasound machine:
The transducer of ultrasound machine have two majore functions:
1. produce ultrasound
2. detect the ultrasound back.
The transducer emits sound, and detects echoes which are then used by a computer to build up a picture of the target under examination.
There are no known harmful effects of ultrasound technology, making it ideal for use during pregnancy as it cannot harm the health of a fetus.

Use of Ultrasound Technology:
There are two well known use of Ultrasound Technology:
1. Medical Field
2. Industry Field

Here we will discuss these briefly these two uses of Ultrasound Technology below.

Medical Uses of Ultrasound Technology:

Ultrasound technology can be used in many other ways in addition to its most widely known use to collect information about a fetus during pregnancy. Depending on the dosage and frequency used, ultrasound can be used in a variety of ways to treat diseases and improve health.

•Detect abnormalities in other parts of the body, such as tissues and organs.
•Treat tumors using a process called focused ultrasound surgery, which uses high intensity ultrasound at a specific frequency.
•Penetrate the blood-brain barrier and deliver chemotherapy drugs to brain cells for the treatment of cancer.
•Treating cataracts, administering physiotherapy, and cleaning teeth.

The use of Ultrasound technology in Industry:
In industry, ultrasonic testing is routinely employed as a type of nondestructive testing to find flaws in objects and materials, or to measure their thickness. Generally these use a frequency of between two and ten MHz. Automated ultrasound examination is a technology used in most modern manufacturing processes, as a wide variety of materials can be examined, including plastics, metals, composites, wood, and concrete.

For the consumer, two pieces of equipment employ ultrasound technology: ultrasonic cleaners (typically used for jewelry, watches, and similar items), and ultrasonic humidifiers. Both of these items have industrial and commercial uses in addition to being available to consumers.

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The parts of an ultrasound machine


The parts of an ultrasound machine

The main parts of the ULTRASOUND machine are as follows:
Central Processing Unit (CPU)
The central processing unit CPU is the heart of an ultrasound machine. It is like a computer that contains:
  1. the microprocessor,
  2. memory,
  3. amplifiers and
  4. power supplies for the microprocessor and transducer probe.

The central processing unit is the calculation computer and contains the electrical power supplies for itself and the transducer probe.The transducer of ultrasound machine receives electrical currents from the CPU and sends electrical pulses outside towards the body which is under examination, that are created by returning echoes. The CPU of ultrasound machine does all of the calculations and processing during the operation to produce an image on the monitor, and also stores the useful processed information on a disk already attached with the system.
Transducer Pulse Controls

The operator of ultrasound machine , is called the ultrasonographer. Ultra-sono-grapher uses the transducer pulse controls to set and change the frequency of ultra-sounds pulses and duration of the ultrasound pulses. The transducer pulse controls of ultrasound machine also allow for scanning the mode of the machine. Commands from the operator are changed into fluctuating electrical currents that are applied to the piezo-electric (PZ) crystals in the transducer probe.
The transducer probe sends and receives the sound waves.
The transducer pulse controls change the amplitude, frequency and duration of the pulses emitted from the transducer probe.
Display of ultrasound machine

The display is used to display and turn the processed data from the CPU into an image. This image can be either in black-and-white image or color image, depending upon the model of the ultrasound machine. The display (oscilloscope or computer monitor) shows the image from the ultrasound data processed by the CPU.
Keyboard/Cursor of ultrasound machine

Ultrasound machines have a keyboard and a cursor. The keyboard allows the operator to add notes and to take measurements of the image.
Data input and measurements are done with the keyboard cursor.
Disk Storage of ultrasound machine

The processed data and/or images can be stored on disks. These disks can be hard disks, floppy disks, compact disks (CDs), or digital video disks (DVDs). Most of the time, ultrasound scans are filled on floppy disks and stored with the patient’s medical records. Disk storage devices (FDD, HDD, CD, DVD) store the acquired images.
Printers of ultrasound machine

Most ultrasound machines have printers which are thermal. These can be used to capture a printed picture of the image from the monitor. The displayed ultrasound pictures can be printed on thermal paper, radiographic film or videotape.

B-mode machines represent the vast majority of machines used in echocardiology, obstetrical scans, abdominal scans, gynecological scans, etc.

B-mode ultrasound machines usually produce the sector (or pie segment-shaped) scans. These ultrasound scans require either a mechanical scanner transducer (the transducer moves to produce the sector scan), or a linear array transducer operated as a phased array.

Ultrasound System Performance, Coaxial Cable, and Microbubble Scanner Modification.
3D imaging shows a better look at the organ being examined and is used for:
Detection of abnormal fetus development, e.g. of the face and limbs.
Visualization of e.g. the colon and rectum.
Detection of cancerous and benign tumors, e.g. tumors of the prostate gland, and breast lesions.
Pictures of blood flow in various organs or a fetus.

Power

Since ultrasound systems require many channels, power consumption of all the front-end components—from T/R switch, through LNA, VGA, and ADC, to the digital circuitry of the beamformer—is a very critical specification. As has been pointed out above, there will always be a push to increase the front-end dynamic range in order to arrive at eventual integration of all ultrasound modes into one beamformer—a tendency that will lead towards increasing the power in the system. However, there is a corresponding need to make the ultrasound systems forever smaller—with a tendency towards reducing power. Power in digital circuits usually decreases with supply voltage; but this is not necessarily true for analog and mixed signal circuitry. Furthermore, taking into account the fact that reduced analog “headroom” tends to reduce dynamic range, there will be a limit to how low the supply voltage can go and still achieve a desired dynamic range.

analog beamforming (ABF) and digital beamforming (DBF) ultrasound systems

In analog beamforming (ABF) and digital beamforming (DBF) ultrasound systems, the received pulses reflected from a particular focal point along a beam are stored for each channel, then aligned in time, and coherently summed—this provides spatial processing gain because the noise of the channels is uncorrelated. Images may be formed as either a sequence of analog levels that are delayed with analog delay lines, summed, and converted to digital after summation (ABF)—or digitally by sampling the analog levels as close as possible to the transducer elements, storing them in a memory (FIFO), and then summing them digitally (DBF).

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Portable Ultrasound Machine Signostics

Pioneering medical equipment supplier company “Signostics” announced their portable or handheld ultrasound machine palm-sized (PDA Size) as personal ultrasound device (the ‘Signos’) on October 9, 2009. The Signos is small ultrasound machine that gives the physicians accelerated means to visually assess patients’ internal anatomy.

Portable ultrasound Signos uses MotionScape and SectorView technology to facilitate a wide range of high resolution clinical applications, including ultrasound guidance for needle placement, AAA exams, FAST exams, bladder volumes and more. This machine important for abdominal assessments such as bladder, abdominal aortic aneurysm screening, and trauma assessment; musculoskeletal; and basic obstetrics, such as pregnancy viability and fetal positioning.


The device delivers high-resolution images anywhere, with a touch-screen display, a start time of less than one second from sleep mode and stores up to 10,000 images. The portable ultrasound Signos is equivalent to the size of a smart phone, Weighing approximately a half pound with a sleek.

The Signos ultrasound machine features with volume measurements, customized patient data, voice note recording and multiple transducer frequencies. The Signostics palm-sized as handheld ultrasound product helps physicians deliver patient care quickly and affordably.


Signostics was established in Adelaide, Australia in 2005 and expanded into the U.S (in Silicon Valley, California) at 2008 as global sales and marketing headquarters. Right now, The Signostics company continues to grow rapidly, driven by solid investment, unique patented technology and a motivated team such as physicians, sonographers as well as biomedical, electronic and software engineers. The company has expanding their ultrasound machine product into India, South-East Asia and Europe.

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Portable Ultrasound Machine SonoSite M-OB/GYN Office

Portable Ultrasound Machine SonoSite M-OB/GYN Office is one of Sonosite company’s product that customized for use by obstetricians and gynecologists as hand-carried ultrasound machine.

Portable Ultrasound Machine SonoSite M-OB/GYN Office designed base on SonoSite’s fourth generation M-Turbo platform. The SonoSite M-OB/GYN Office provided a simple controls to the user, crisp, clear image quality in standard PC formats, and just two specialized transducers help make quick work of fetal assessments, pelvic exams and uterine screenings.

The SonoSite M-OB/GYN Office ultrasound tool has two transducers – the C60x/5-2 MHz curved array transducer for abdominal scanning and the ICTx/8-5 MHz intracavitary curved array transducer for pelvic imaging. It allows the physician or medical team to bring high-quality imaging conveniently to your exam rooms for routine and maintenance procedures.


Others feature of Portable Ultrasound Machine SonoSite M-OB/GYN Office are A specialized software package includes Tissue Harmonic Imaging, color Doppler and advanced OB calculations.

Thomas J. Dugan, Senior Vice President, US Sales and Marketing told that the SonoSite M-OB/GYN Office is ultrasound machine with combines the high performance of cart-based systems with the small footprint, speed, flexibility and durability system.

The portable Ultrasound machine SonoSite M-OB/GYN Office was introduced in October 2007 at medical meetings and congresses, for this machine the sonosite company will give 5-year Landmark Warranty.

Bellow are the others features from SonoSite M-OB/GYN Office :

  • Backed by a 5-year warranty and our 24-hour loaner program for maximum uptime.
  • Crisp and clear, featuring SonoHD™ Imaging Technology – with 16x the processing power of our previous generation.
  • Tough as nails. Drop tested to withstand the real world.
  • Backlit keyboard is easier on the eyes.
  • Capture quality video clips up to 60 seconds long.
  • PC- and Mac-friendly for effortless data management with 2 high-speed USB 2.0 ports.
  • Smaller than most laptops, this lightweight champion weighs under 7 pounds.
  • Increased application flexibility with the optional Triple Transducer Connect.
  • Super fast, Capable of going from off to scanning within 15 seconds.
  • When the Portable Ultrasound Machine SonoSite M-OB/GYN Office always kept in open condition, the user will be easy to clean and sanitize them.

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