In addition to providing images of many different organ systems and internal fetal anatomy, ultrasound scanning is a crucial clinical tool. Because it uses high-frequency sound waves to produce images of slices through the body, this imaging technique is also known as sonography. After applying a thin layer of conductive gel to the skin to ensure that the waves travel through the skin without resistance, an ultrasonic transducer or probe is positioned on the skin. The many structures that the ultrasonic waves meet cause them to reflect. Fetal structures and internal anatomy can be seen as static 3D images thanks to 3D imaging. In contrast, 4D ultrasounds enable live video streaming of the images, displaying the movement of the fetal heart's wall or valves as well as the blood flow through different channels. A 3D ultrasound in motion is, in essence, what 4D ultrasound imaging is. Either a 2D transducer—which quickly gathers 20–30 volumes—or a matrix array, which makes use of a 3D transducer, is used in 4D ultrasounds. The advantages of 4D ultrasound imaging are similar to those of 3D, and it also enables clinicians to observe the movements of numerous moving organs in the body.

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