Yes, the destruction of stones using high-energy ultrasonic waves traveling through water or gel is a medical procedure known as extracorporeal shock wave lithotripsy (ESWL). This non-invasive technique is commonly used to break down kidney stones into smaller pieces that can be passed out of the body through urine.
No, ultrasonic waves will have difficulty passing through a 1cm thick iron plate due to the high density and thickness of the material. Iron is known to be a good reflector and attenuator of ultrasonic waves, making it an obstruction to their passage.
The velocity of ultrasonic waves through human tissue is approximately 1500-1600 m/s. This velocity can vary slightly depending on the specific type of tissue and its composition. Ultrasonic waves are commonly used in medical imaging techniques such as ultrasound.
Diagnostics: Ultrasonic waves can be used in medical imaging techniques such as ultrasound to visualize internal body structures. Therapeutics: High-energy focused ultrasound can be used for pain relief, tissue destruction, and tumor ablation. Drug delivery: Ultrasonic waves can be used to enhance the delivery of drugs to target tissues through a process known as sonoporation.
An ultrasonic wave is not an electromagnetic wave; it is a sound wave.An ultrasonic wave is not an electromagnetic wave; it is a sound wave.An ultrasonic wave is not an electromagnetic wave; it is a sound wave.An ultrasonic wave is not an electromagnetic wave; it is a sound wave.
No. They are mechanical waves, ultrasonic waves are sound waves and require a medium for propagation. The word ultrasonic denotes that they have a frequency above the audible range (above 20 KHz).
lithotripsyLithotripsyLiThOtRiPsYextracorporeal shockwave lithotripsy (ESWL)Extracorporeal shock wave lithotripsy (ESWL) means destruction of a kidney stone or gallstone by ultrasonic waves traveling through water.lithotripsy
Ultrasonic waves are used to break kidney stones into smaller fragments, making them easier to pass through the urinary tract. The waves are produced by a device called a lithotripter, and are directed at the stone from outside the body while the patient is immersed in a water bath. The high-energy waves cause the stone to fragment without the need for surgery.
bats can hear ultrasonic sound
A bullet traveling through the body causes tissue destruction through outward forces called cavitation. Cavitation occurs when the bullet creates a temporary cavity as it moves and displaces tissue, resulting in damage beyond the bullet's direct path.
No, ultrasonic waves will have difficulty passing through a 1cm thick iron plate due to the high density and thickness of the material. Iron is known to be a good reflector and attenuator of ultrasonic waves, making it an obstruction to their passage.
Sometimes ultrasound is used to break up kidney stones so that they will pass with the urine. This is not always possible.
Yes.
The velocity of ultrasonic waves through human tissue is approximately 1500-1600 m/s. This velocity can vary slightly depending on the specific type of tissue and its composition. Ultrasonic waves are commonly used in medical imaging techniques such as ultrasound.
An ultrasonic wave is not an electromagnetic wave; it is a sound wave.An ultrasonic wave is not an electromagnetic wave; it is a sound wave.An ultrasonic wave is not an electromagnetic wave; it is a sound wave.An ultrasonic wave is not an electromagnetic wave; it is a sound wave.
Diagnostics: Ultrasonic waves can be used in medical imaging techniques such as ultrasound to visualize internal body structures. Therapeutics: High-energy focused ultrasound can be used for pain relief, tissue destruction, and tumor ablation. Drug delivery: Ultrasonic waves can be used to enhance the delivery of drugs to target tissues through a process known as sonoporation.
No. They are mechanical waves, ultrasonic waves are sound waves and require a medium for propagation. The word ultrasonic denotes that they have a frequency above the audible range (above 20 KHz).
No, the velocity of ultrasonic sound in a medium is primarily influenced by the elasticity and the compressibility of the medium. Density does not have a direct impact on the velocity of ultrasonic sound but can indirectly affect it through its relationship with the elastic and compressible properties of the medium.