PubMed Health⌕ Search

PubMed · 11508962

Optimal focusing by spatio-temporal inverse filter. I. Basic principles.

Abstract

A focusing technique based on the inversion of the propagation operator relating an array of transducers to a set of control points inside a medium was proposed in previous work [Tanter et al., J. Acoust. Soc. Am. 108, 223-234 (2000)] and is extended here to the time domain. As the inversion of the propagation operator is achieved both in space and time, this technique allows calculation of the set of temporal signals to be emitted by each element of the array in order to optimally focus on a chosen control point. This broadband inversion process takes advantage of the singular-value decomposition of the propagation operator in the Fourier domain. The physical meaning of this decomposition is explained in a homogeneous medium. In particular, a definition of the number of degrees of freedom necessary to define the acoustic field generated by an array of limited aperture in a focal plane of limited extent is given. This number corresponds to the number of independent signals that can be created in the focal area both in space and time. In this paper, this broadband inverse-focusing technique is compared in homogeneous media with the classical focusing achieved by simple geometrical considerations but also with time-reversal focusing. It is shown that, even in a simple medium, slight differences appear between these three focusing strategies. In the companion paper [Aubry et al., J. Acoust. Soc. Am. 110, 48-58 (2001)] the three focusing techniques are compared in heterogeneous, absorbing, or complex media where classical focusing is strongly degraded. The strong improvement achieved by the spatio-temporal inverse-filter technique emphasizes the great potential of multiple-channel systems having the ability to apply completely different signal waveforms on each transducer of the array. The application of this focusing technique could be of great interest in various ultrasonic fields such as medical imaging, nondestructive testing, and underwater acoustics.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

M Tanter, J F Aubry, J Gerber, J L Thomas, M Fink. 2001. Optimal focusing by spatio-temporal inverse filter. I. Basic principles.. https://doi.org/10.1121/1.1377051

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

The value of three-dimensional ultrasonography in the screening of the fetal skeleton.

INTRODUCTION: 3D ultrasound is a new technical advance that gives complementary information to that provided by the 2D ultrasound. It may help to correctly diagnose fetal anomalies. VALUE OF 3D ULTRASOUND: Its major advantages are as follows: any section plane can be created within the volume, making it possible to realize sections perpendicular to the ultrasound beam; multiplanar view; storage of volumes that can be reviewed afterward and may be useful for educational purposes.

Echoencephalography↗

Future perspectives in intraoperative imaging.

Of all the advances in imaging science in the past twenty years, none has had a greater impact than Magnetic Resonance Imaging. Since its introduction as a diagnostic tool in the mid-1980's, MRI has evolved into the premier neuroimaging modality, and with the addition of higher field magnets, we are able to achieve spatial resolution of such superb quality that even the most exquisite details of the brain anatomy can be visualized. With the implementation of intraoperative, neurosurgical MRI, we can not only monitor brain shifts and deformations; we can achieve intraoperative navigation using intraoperative image updates. In the future, intraoperative MRI can be used not only to localize, target, and resect brain tumors and other lesions but also to fully comprehend the surrounding cortical and white matter functional anatomy. In addition to the inclusion of new imaging methods such as diffusion tensor imaging, new therapeutic methods will be applied. Especially encouraging are the promising results in MRI-guided Focused Ultrasound Surgery, in which the non-invasive thermal ablation of tumors is monitored and controlled by MRI. With the clinical introduction of these advances, intraoperative MRI is changing the face of Neurosurgery today.

Echoencephalography↗