Development of acoustic systems for ultrasound attenuation measurement in polydimethylsiloxane

Med Eng Phys. 2026 May 22;147(6). doi: 10.1088/1873-4030/ae691f.

Abstract

Ultrasound absorption by polydimethylsiloxane (PDMS) can have a significant impact on the acoustic radiation force needed for the stimulation of cells in an organ-on-a-chip. Hence, finding the PDMS attenuation coefficient is the key to determining the fraction of absorbed acoustic energy in microfluidic systems. To measure the attenuation coefficient of PDMS, two methods were compared: a vector network analyzer and a pulse transmission method. Ten PDMS samples with thicknesses ranging from 2.5 to 18.5 mm were tested both before and after 24 h water immersion. The attenuation coefficient of PDMS, commonly used in microfluidics, was determined within a frequency range relevant to human health, i.e. 1-3 MHz. For a representative 5 mm thick microfluidic chip, the fraction of absorbed acoustic energyEis estimated to be approximately 21% at 1 MHz and 68% at 3 MHz. This level of absorption is expected to substantially modulate cell stimulation mediated by acoustic radiation forces.

Keywords: attenuation; microfluidics; organ-on-a-chip; polydimethylsiloxane; ultrasound.

MeSH terms

  • Acoustics*
  • Dimethylpolysiloxanes* / chemistry
  • Lab-On-A-Chip Devices
  • Ultrasonic Waves*

Substances

  • Dimethylpolysiloxanes
  • baysilon