PI (Physik Instrumente) LP Product

Ultrasound Transducers for Therapeutic and Surgical Instruments

Model: PIC255, PIC151, PIC155, PIC181

PI (Physik Instrumente) LP

Piezoelectric ultrasonic transducers generate high-intensity focused ultrasound, enabling contactless treatment

Image of Ultrasound Transducers for Therapeutic and Surgical Instruments

Modern intravascular lithotripsy is based on piezoelectric ultrasound transducers / catheters: They are used to treat the cause of arterial fibrillation with the help of targeted lesions, to prepare the area of treatment for a catheter-supported aortic valve implantation (TAVI, TAVR) with ultrasonic waves, or to contactlessly destroy intravascular or aortic plaque. These instruments have to be ultracompact while working reliably and highly efficiently. Smallest piezo components make this combination possible – they drive the tools reliably and enable gentle but effective treatments.

To defer a transcatheter aortic valve implantation (TAVI) procedure, our customer AorticLab created a transcatheter debridement solution for ultrasonic histotripsy. It is designed to gently fragment calcifications on an aortic valve to restore its functionality. Within the device, piezoelectric transducers (ultrasonic transducers) generate ultrasound at two different frequencies, creating a strong cavitation effect to break down calcifications both in the tissue and on the valve.

The video explains why new and disruptive medical applications are best driven by ultrasonic transducers. Piezoelectric transducers generate HIFU, high-intensity focused ultrasound, enabling contactless treatment and incisionless surgery,  for example treating tumors or neurodegenerative diseases.

More information on Carrying Out Contactless Therapies with Piezo-Based Catheter Instruments

Outside of ultrasonics, piezo transducers, actuators and piezoelectric motors also find may applications in medical engineering

 

Ultrasonic Transducers in Sensing Applications

Ultrasonic transducers also work well as sensors in medical applications such as patient monitoring, flow measurement and air bubble detection used in infusion systems, pharmaceutic devices or spirometry.  Piezoelectric transducer sensors are compact, low energy and very robust and reliable.

The video explains why new and disruptive medical applications are best driven by ultrasonic transducers. Piezoelectric transducers generate HIFU, high-intensity focused ultrasound, enabling contactless treatment and incisionless surgery, for example treating tumors or neurodegenerative diseases.

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