Relatively high-energy ultrasound can break up stony deposits, ablate tissue, accelerate the effect of drugs in a targeted area, assist in the measurement of the elastic properties of tissue, and sort cells or small particles for research. This is often utilized to break up calculi such as kidney stones and gallstones into pieces small enough to be passed from the body without undue difficulty, a procedure known as
lithotripsy. The success of lithotripsy depends on the size and location of the stone, and the patient's age. This is accomplished using a technique known as
high intensity focused ultrasound (HIFU), also called
focused ultrasound surgery. This procedure uses generally lower frequencies than medical diagnostic ultrasound (250–2000 kHz), but significantly higher time-averaged intensities. The treatment is often guided by
magnetic resonance imaging (MRI); the combination is then referred to as
magnetic resonance-guided focused ultrasound. In the clinical setting, HIFU techniques are currently being investigated to treat liver, kidney, and prostatic tumors.
Ophthalmology • Focused ultrasound sources may be used for
cataract treatment by
phacoemulsification in which the internal lens of the eye is broken down into small pieces that may then be aspirated. HIFU can also be used in
ophthalmology to treat
glaucoma. This is accomplished by targeting the ultrasound beams to ablate the
ciliary body. These procedures generally use high frequency ultrasound (1–10 MHz) and a range of intensities (0–20 W/cm2). The acoustic energy is focused on the tissue of interest to agitate the cellular matrix and make it more permeable for therapeutic drugs. • Ultrasound has been used to trigger the release of anti-cancer drugs from delivery vectors including liposomes, polymeric microspheres and self-assembled polymeric. •
Phonophoresis is a form of soft tissue treatment that involves the use of ultrasound combined with medication gels to enhance drug delivery to the desired area.
Vascular Surgery • Ultrasound is essential to the procedures of ultrasound-guided
sclerotherapy and
endovenous laser treatment for the non-surgical treatment of varicose veins. Ultrasound-guided
sclerotherapy techniques are also used to treat
ovarian endometriomas, especially for patients who are pregnant.
Plastic Surgery •
Ultrasound-assisted lipectomy involves the use of ultrasound to aid in removal of
subcutaneous fat during
liposuction procedures. Highly focused ultrasound waves are used to emulsify fat cells and allow for easier removal with suction. ==History==