Ultrahigh-velocity resolution imaging of the microcirculation in-vivo using color Doppler optical coherence tomography

Ultrahigh-velocity resolution imaging of the microcirculation in-vivo using color Doppler optical coherence tomography
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使用彩色多普勒光学相干断层扫描对体内微循环进行超高速分辨率成像

DOI:
10.1117/12.427887
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发表时间:
2001
影响因子:
2.8
通讯作者:
J. Izatt
J. Izatt
中科院分区:
医学4区
文献类型:
--
作者:
S. Yazdanfar;A. Rollins;J. Izatt

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Color Doppler optical coherence tomography (CDOCT) is a method for noninvasive cross-sectional imaging of blood flow in vivo. In previous implementations, velocity estimates were obtained by measuring the frequency shift of discrete depth-resolved backscatter spectra, resulting in a velocity resolution on the order of 1 mm/s. We present a novel processing method that detects Doppler shifts calculated across sequential axial scans, enabling ultrahigh velocity resolution (~1 micron/s) flow measurement in scattering media. This method of sequential scan processing was calibrated with a moving mirror mounted on a precision motorized translator. Latex microspheres suspended in deuterium oxide were used as a highly scattering test phantom. Laminar flow profiles down to ~15 micron/s centerline velocity (0.02 cc/hr) were observed with a sensitivity of 1.2 micron/s. Finally, vessels on the order of 10 microns in diameter were imaged in living human skin, with a relative frequency sensitivity less than 4 x 10-5. To our knowledge, these results are the lowest velocities ever measured with CDOCT.
DOI: 10.1056/nejm199101033240101
发表时间: 1991-01-03
影响因子: 158.5
作者:
WEIDNER, N;SEMPLE, JP;FOLKMAN, J
通讯作者: FOLKMAN, J