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  2. Transcranial pulsed ultrasound - Wikipedia

    en.wikipedia.org/wiki/Transcranial_pulsed_ultrasound

    They discovered that this low-power ultrasound is able to stimulate high neuron activity which allows for the manipulation of the brain waves through an external source. Unlike deep brain stimulation or Vagus nerve stimulation , which use implants and electrical impulses, TPU is a noninvasive and focused procedure that does not require the ...

  3. Functional ultrasound imaging - Wikipedia

    en.wikipedia.org/wiki/Functional_Ultrasound_Imaging

    Acquisitions can also typically easily provide gigabytes of data depending on acquisition duration. Ultrasensitive Doppler has a typical 50-200 μm spatial resolution depending on the ultrasound frequency used. [2] It features temporal resolution ~10 ms, can image the full depth of the brain, and can provide 3D angiography. [10]

  4. Ultrasound Localization Microscopy - Wikipedia

    en.wikipedia.org/wiki/Ultrasound_Localization...

    The motion artifact can be particularly problematic for clinical use. [5] Though ULM achieves resolutions under 10 micrometers, "motion in the body or from the ultrasound transducer can be several orders of magnitudes beyond this level". [3] [11] For example, body motion could be on the scale of 0.5 mm, while ULM resolutions may be 5 to 10 ...

  5. Pre-hospital ultrasound - Wikipedia

    en.wikipedia.org/wiki/Pre-hospital_ultrasound

    This means that in terms of trauma diagnosis involving brain injury, sonography will be difficult and requires high-end ultrasound machines. [citation needed] The depth penetration of ultrasound is limited, making it difficult to image structures deep in the body, especially in obese patients. [citation needed] The method is operator-dependent.

  6. Medical ultrasound - Wikipedia

    en.wikipedia.org/wiki/Medical_ultrasound

    Medical ultrasound includes diagnostic techniques (mainly imaging techniques) using ultrasound, as well as therapeutic applications of ultrasound. In diagnosis, it is used to create an image of internal body structures such as tendons, muscles, joints, blood vessels, and internal organs, to measure some characteristics (e.g., distances and velocities) or to generate an informative audible sound.

  7. Cranial ultrasound - Wikipedia

    en.wikipedia.org/wiki/Cranial_ultrasound

    Cranial ultrasound is a technique for scanning the brain using high-frequency sound waves. It is used almost exclusively in babies because their fontanelle (the soft spot on the skull) provides an "acoustic window". A different form of ultrasound-based brain scanning, transcranial Doppler, can be used in any age group.

  8. Focused ultrasound for intracranial drug delivery - Wikipedia

    en.wikipedia.org/wiki/Focused_ultrasound_for...

    Ultrasound imaging deposits energy over a large area while therapeutic ultrasound focuses the energy on one target site. Focused ultrasound for intracrainial drug delivery is a non-invasive technique that uses high-frequency sound waves (focused ultrasound, or FUS) to disrupt tight junctions in the blood–brain barrier (BBB), allowing for increased passage of therapeutics into the brain.

  9. Phased array ultrasonics - Wikipedia

    en.wikipedia.org/wiki/Phased_array_ultrasonics

    By changing the pulse delays, the computer can scan the beam of ultrasound in a raster pattern across the tissue. Echoes reflected by different density tissue, received by the transducers, build up an image of the underlying structures. Weld examination by phased array. TOP: The phased array probe emits a series of beams to flood the weld with ...