![]() To achieve the system’s stability and productivity in the early stage of new product launch, many clinically proven technologies and settings on the Aplio Platinum series have been utilized. The Canon Aplio i series features a new iBEAM digital architecture that highly enhanced fundamental processing quality compared to the old Aplio Platinum platform by re-designing both hardware and software. For in-depth radiology studies, the Canon Aplio i series also integrated clinically proven and advanced tools such as Shear wave, Fusion imaging (Smart Fusion), and Contrast Harmonic Imaging (CHI), those which have been proven for their quality and stability clinically. The Superb Micro-Vascular Imaging (SMI) function has been much improved. These two transducers are strongly recommended for those wanting state-of-the-art image quality with core convex and linear transducers as well as with these two transducers. If the buyer really wants to enjoy the real benefit of the Aplio i series, the buyer must choose the Aplio i800 with i8CX1 and i18LX5. Due to the lack of the intelligent Dynamic Mircro Slice option, the Aplio i700 is not able to support two core matrix transducers, i8CX1 and i18LX5 therefore, the Aplio i700 cannot provide the advanced quality of 2D and Doppler like the Aplio i800. Canon has a great reputation in the ultrasound industry by maintaining a high standard in image quality and functionality with in Radiology. The Aplio i700 is the top of line product from Canon for General Imaging and Women’s Healthcare. Transport mode : The system lasts 45 minutes before rechargeĬineloop review: up to 2,200 frames of 2D and color images State-of-the-art ergonomic designed system cart for comfort and convenienceĮasy-to-learn graphical user interface with reduced number of hard controlsĪdvanced control panel design with fewer, clustered controls Open Visual Studio with administrative privileges.21.5” LCD display with four-way articulationĤ transducer ports and one-handed transducer access.py file, then selecting "Open with", "Choose another app", locate Python.exe and enable "Always use this app to open. In addition, Python.exe need to be registered as default app for running. Any version >= 2015 is supported.Įnable the following workloads during installation: Install Visual Studio, either professional or community edition. This new approach also allows the vendors to continually innovate as well, instead of being locked into a frozen data specification. This approach has advantages over the traditional DICOM data standard technique including complete seamless backward compatibility to existing stored studies, smaller files sizes, faster network transfers, and faster loading of studies (since no conversion from vendor raw data to DICOM format is required). Furthermore, the limited vendor adoption of DICOM 3D means that it will take years for it to truly impact the market. However, DICOM 3D does not allow access to studies that are already stored in existing 3D proprietary formats. The DICOM 3D standard is an alternative solution to sharing of 3D ultrasound data. This approach also allows the vendors to simplify their commercial offerings to end-users since it will no longer be required to purchase multiple plugins from multiple vendors and coordinate multiple installs.įurthermore, companies outside the ultrasound system vendors (such as 3D printing, Virtual Reality, Surgical Planning, researchers, etc.) will be able to load 3D echo data seamlessly from all participating vendors. This will allow analysis tools to support data from multiple vendors, rather than having to use “plugins”, e.g. SandboxTest - Example of how to sandbox a loader in a separate process.RegFreeTest - Example of how to leverage manifest files to avoid COM registration.PackagingGE - NuGet packaging configuration.Any software or analysis tool using the API to load data can be agnostic to the specifics of the data loader, as only the common API needs to be considered. DescriptionĪpplication Programming Interface (API) to load any vendor’s proprietary ultrasound data, commonly referred to as “raw” data, using a well-defined data structures that can be used to render, display and manipulate 3D data within any vendor’s review and analysis tools.Įach ultrasound vendor will need to provide an implementation of this API specific to their proprietary data format. Interfaces for inter-vendor exchange of 3D ultrasound data, together with test code.
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