Dies ist eine Übersichtsseite mit Metadaten zu dieser wissenschaftlichen Arbeit. Der vollständige Artikel ist beim Verlag verfügbar.
A fast normalized cross-correlation calculation method for motion estimation
373
Zitationen
2
Autoren
2010
Jahr
Abstract
High-precision motion estimation has become essential in ultrasound-based techniques such as time-domain Doppler and elastography. Normalized cross-correlation (NCC) has been shown as one of the best motion estimators. However, a significant drawback is its associated computational cost, especially when RF signals are used. In this paper, a method based on sum tables developed elsewhere is adapted for fast NCC calculation in ultrasound-based motion estimation, and is tested with respect to the speed enhancement of the specific application of ultrasound-based motion estimation. Both the numerator and denominator in the NCC definition are obtained through pre-calculated sum tables to eliminate redundancy of repeated NCC calculations. Unlike a previously reported method, a search region following the principle of motion estimation is applied in the construction of sum tables. Because an exhaustive search and high window overlap are typically used for highest quality imaging, the computational cost of the proposed method is significantly lower than that of the direct method using the NCC definition, without increasing bias and variance characteristics of the motion estimation or sacrificing the spatial resolution. Therefore, high quality, high spatial resolution, and high calculation speed can be all simultaneously obtained using the proposed methodology. The high efficiency of this method was verified using RF signals from a human abdominal aorta in vivo. For the parameters typically used, a real-time, very high frame rate of 310 frames/s was achieved for the motion estimation. The proposed method was also extended to 2-D NCC motion estimation and motion estimation with other algorithms. The technique could thus prove very useful and flexible for real-time motion estimation as well as in other fields such as optical flow and image registration.
Ähnliche Arbeiten
Multiscale vessel enhancement filtering
1998 · 3.640 Zit.
Elastography: A Quantitative Method for Imaging the Elasticity of Biological Tissues
1991 · 3.467 Zit.
Optimally sparse representation in general (nonorthogonal) dictionaries via ℓ <sup>1</sup> minimization
2003 · 2.907 Zit.
Transient elastography: a new noninvasive method for assessment of hepatic fibrosis
2003 · 2.701 Zit.
Calculation of pressure fields from arbitrarily shaped, apodized, and excited ultrasound transducers
1992 · 2.436 Zit.