According to the current analysis of Reports and Data, the global Ultrasound Image Analysis Software market was valued at USD 696.0 Million in 2018 and is expected to reach USD 1,351.5 million by the year 2026, at a CAGR of 8.6 %.
Of all medical imaging modalities, ultrasound is perhaps the one most often used when real-time imaging is required. Therefore, image analysis of ultrasound data is potentially useful when done in real-time as well. It is, then, necessary to create a software environment with convenient APIs that allow testing of various image analysis algorithms when ultrasound data arrives in real-time of at a rate of at least 10 frames per second. Ultrasound is a method of imaging that permits real-time visualization of the internal anatomy of a human. Like CT and MRI, ultrasound is non-invasive, but ultrasound does not carry any radiation exposure risk and is relatively inexpensive. Because of the low risk and wide availability of ultrasound, it is being increasingly used in many areas of medicine: radiology, cardiology, women’s healthcare, emergency medicine, family practice, urology, nephrology, vascular surgery, general surgery, sports medicine, ophthalmology, gastroenterology, telemedicine, veterinary medicine, etc. Clinical ultrasound typically uses frequencies of 2 to 30 MHz. Pulses of sound energy travel from the ultrasound probe to an anatomical interface, which reflects the sound back to the probe. Most ultrasound machines make the assumption that the speed of sound passing through biological tissues is 1540m/. The intensity of the reflections from a particular ultrasound pulse as a function of time (distance) represents a given interrogation of the tissue. A series of such interrogation, sweeping through a plane, are collected for each scan. Each scan is then converted in real-time to a 2D grayscale image, through a process called scan-conversion. It is this 2D image, with its regular isotropic pixels on a rectilinear lattice, which is the usually starting place for image analysis. Ultrasound imaging is extensively used for examination and navigation in diagnostic and therapeutic procedures. Ultrasound image quality is found to be considerably affected by speckle noise and physical characteristics of the patient. Moreover, ultrasound image acquisition largely depends on the skills and experience of the user. Resultantly, high-accuracy measurement, or navigation by using ultrasound imaging is difficult and time-consuming. Therefore, the development of automatic ultrasound image analysis and recognition techniques to improve the efficiency and accuracy in the workflow of diagnosis and treatment is necessary. Ultrasound image analysis software provides an effective solution to this issue.
Market Overview:
The pharma and healthcare industry is at a crossroads. Patients are benefiting from the promise of cell and gene therapies; uncommon diseases that were previously thought to be incurable are on the verge of finding true treatments. Artificial intelligence (AI) and machine-learning technologies are creating hopes that therapy discovery and development would be more innovative, as well as faster and cheaper. Manufacturing, the supply chain, and the entire healthcare ecosystem all have the potential to benefit from data-driven initiatives. Consumer attitudes and behaviours are shifting in a variety of ways, from growing use of technology and willingness to share data to an interest in using tools to make prescription and treatment decisions. Such factors will drive pharma and healthcare market growth in the coming years.
Key Players covered in this report are:
GE Healthcare, Philips Healthcare, Siemens Healthineers, Agfa Healthcare, MIM Software Inc., Esaote SpA, Merge Healthcare Incorporated, Xinapse system Ltd., Spacelab Healthcare Inc., and OSI Systems, amongst others
Ultrasound Image Analysis Software by Type Outlook (Revenue in Million USD; 2016–2026)
- Integrated Ultrasound Image Analysis Software
- Standalone Ultrasound Image Analysis Software
Ultrasound Image Analysis Software by Product Outlook (Revenue in Million USD; 2016–2026)
- 2D ultrasound systems
- 3D&4D ultrasound systems
- Doppler imaging
Based on Region market is segmented into:
- North America
- Europe
- Asia-Pacific
- South America
- Middle East & Africa
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Major Points covered in this report are as below:
• The Ultrasound Image Analysis Software industry development trends and marketing channels are analyzed. The feasibility of new investment projects are assessed and overall research conclusions offered.
• With the tables and figures, the report provides key statistics on the state of the industry and is a valuable source of guidance and direction for companies and individuals interested in the market.
• Development policies and plans, manufacturing processes and cost structures are also analyzed. This report also states import/export consumption, supply and demand figures, cost, price, revenue and gross margins.
• The Ultrasound Image Analysis Software Market report provides key statistics on the market status of the Ultrasound Image Analysis Software manufacturers and is a valuable source of guidance and direction for companies and individuals interested in the industry.
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