OBJECTIVE
The objective of our study was to evaluate the color Doppler sonographic effect known as twinkling artifact.
MATERIALS AND METHODS
Struvite (ammonium magnesium phosphate) stone fragments, wire mesh, and a flat surface were scanned in a water bath with a sonography scanner using a high-frequency linear array probe fixed in a ring clamp. Pulse repetition frequency, color-write priority, gray-scale gain, and spectral Doppler gain were varied. Color and spectral Doppler modes were used.
RESULTS
Twinkling artifact and spectral broadening were seen most intensely behind struvite stone fragments, and both were seen more strongly behind wire mesh with greater surface roughness than behind wire mesh with less surface roughness or a flat surface. The appearance of the twinkling artifact is highly dependent on machine settings. System noise measured on a flat surface generates a band-limited Doppler shift on spectral displays with a mean frequency shift of 0 Hz and a mean (+/- SD) absolute fluctuation of 86 +/- 10 Hz over a pulse repetition frequency range of 1250-10,000 Hz. Rough surfaces increase the spectral bandwidth.
CONCLUSION
The appearance of the twinkling artifact is highly dependent on machine settings and is likely generated by a narrow-band, intrinsic machine noise called phase (or clock) jitter. Surface roughness secondarily broadens the noise spectrum. With a strongly reflecting, rough surface such as a renal stone, the high amplitude, broadband signal appears as random motion in color Doppler sonography. Understanding of the twinkling artifact may result in better use of its clinical appearance.
[1]
J M Rubin,et al.
Power Doppler US: a potentially useful alternative to mean frequency-based color Doppler US.
,
1994,
Radiology.
[2]
Daehee Han,et al.
Color and power Doppler twinkling artifacts from urinary stones: clinical observations and phantom studies.
,
2001,
AJR. American journal of roentgenology.
[3]
M. Helvie,et al.
Small (< 2.0-cm) breast cancers: mammographic and US findings at US-guided cryoablation--initial experience.
,
2004,
Radiology.
[4]
A Herment,et al.
Color Doppler twinkling artifact in hyperechoic regions.
,
1996,
Radiology.
[5]
N Grenier,et al.
Detection of encrusted indwelling ureteral stents using a twinkling artifact revealed on color Doppler sonography.
,
2001,
AJR. American journal of roentgenology.
[6]
F. Terrier,et al.
Twinkling artifact on intracerebral color Doppler sonography.
,
1999,
AJNR. American journal of neuroradiology.
[7]
B. I. Choi,et al.
Signal from hepatic hemangiomas on power Doppler US: real or artefactual?
,
1999,
Ultrasound in medicine & biology.