Color Doppler twinkling is associated with rough-surfaced objects like kidney stones, some clinical breast biopsy markers, and polymethyl methacrylate (PMMA) bone cement. Microbubbles are theorized as the predominant source of twinkling, supported by decreased twinkling under increased pressure. PMMA, metallic breast markers, a low-twinkling PMMA sample, and a non-twinkling metal rod were scanned in a pressure chamber up to 1000 psi using a General Electric Logiq E9 system and C1-6 probe (1.7–3.6 MHz Doppler transmit frequency). Clinical markers maintained distinct twinkling up to 250 psi. PMMA often twinkled at higher pressures, sometimes up to 1000 psi. The controls showed no twinkling. To understand physical structure associations with twinkling, the samples were scanned in a micro-CT system with a pixel resolution of 2 μm. Analysis of PMMA and Cork internal voids showed no correlation with twinkling. However, a correlation between Sa (average difference between the mean surface profile and actual surface profile) values and twinkling was found. This indicates that internal structure is not important for twinkling, and certain surface roughness is critical, possibly providing sites for surface microbubbles to oscillate from incident ultrasound waves.
Wood et al. (Wed,) studied this question.
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