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1 their tissue replenishment with intermittent harmonic imaging.
2 nt fundamental imaging and during continuous harmonic imaging.
3 ging but in only 1 patient with conventional harmonic imaging.
4 ing but in only 7 patients with conventional harmonic imaging.
5       All studies were performed with second harmonic imaging (2.0 to 2.5 MHz-transmitted frequency).
6        The improved signal to noise ratio of harmonic imaging allowed on-line definition of risk area
7  5%, respectively) and echocardiography with harmonic imaging and contrast injection (194 +/- 51, 55
8 ment of LV remodeling, echocardiography with harmonic imaging and contrast injection improved the acc
9    Enhanced US modalities include the use of harmonic imaging and flash replenishment techniques, as
10   Myocardial contrast echocardiography using harmonic imaging and intravenous injection of microbubbl
11  contrast defects observed with intermittent harmonic imaging and intravenous perfluorocarbon-exposed
12  by transthoracic echocardiogram with second harmonic imaging and transcranial Doppler ultrasonograph
13 aditional histologic outcomes, use of second harmonic imaging, and quantitative PCR.
14 rmed with high mechanical index intermittent harmonic imaging at pulsing intervals (PIs) of <1 to 30
15 ot injection of contrast medium coupled with harmonic imaging can be used to provide accurate on-line
16 ing have largely been overcome by the use of harmonic imaging, contrast opacification, and when indic
17 s study was to prove that transient response harmonic imaging could detect normal and abnormal myocar
18                                 Intermittent harmonic imaging has permitted the detection of myocardi
19 njection of FS-069 coupled with intermittent harmonic imaging (IHI) can be used to determine the pres
20  occlusion and reflow, using fundamental and harmonic imaging in both continuous and intermittent mod
21 rdiography using aortic root injections with harmonic imaging in experimental acute myocardial infarc
22 better myocardial contrast than conventional harmonic imaging in humans and can be produced safely wi
23 so show feasibility of performing ultrasound harmonic imaging in in-vivo non-human primates.
24  of interpretable images were obtained using harmonic imaging in the triggered mode.
25                                      Whereas harmonic imaging increased myocardial video intensity by
26             Our results show that ultrasound harmonic imaging is capable of accurately depicting feat
27 ssociated with grain boundaries in the third-harmonic imaging is considerably enhanced by the solvent
28 s capable of resonance phenomena detected by harmonic imaging may theoretically be able to demonstrat
29 Enhanced image contrast in biological second harmonic imaging microscopy (SHIM) has previously been r
30                                       Second-harmonic imaging microscopy (SHIM) on a laser-scanning s
31 er-scanning two-photon microscope for second-harmonic imaging microscopy (SHIM).
32 ADH and kidney fibrosis determined by second harmonic imaging microscopy.
33 (i.e., 5.5-10 MHz) and 12.5 MHz using tissue harmonic imaging modality.
34 stent with this pro-fibrotic profile, second harmonic imaging of aged lungs demonstrates increased de
35                                       Second harmonic imaging of collagen at the edge of chronic woun
36 on, but the impact of contrast injection and harmonic imaging on the accuracy or reproducibility of e
37  assess the impact of contrast injection and harmonic imaging, on the measure by echocardiography of
38 linear probes, sensitive Doppler techniques, harmonic imaging options and cross beams, ultrasound is
39 esponse imaging vs. 18 +/- 14 U conventional harmonic imaging; posterior: 17 +/- 14 U transient respo
40 emical components of tissues, whereas second harmonic imaging provides novel ways to study their spat
41                                              Harmonic imaging remained the most accurate approach.
42                                       Second harmonic imaging (SHIM) is an ideal method for probing m
43                                              Harmonic imaging showed heterogeneous opacification of t
44                            Contrast-enhanced harmonic imaging was performed, and interlobar resistive
45 . 53%) and EF (84 vs. 41%), as compared with harmonic imaging without contrast injection (all p < 0.0
46          In contrast, echocardiography using harmonic imaging without contrast injection underestimat
47 n contrast agent and electrocardiogram-gated harmonic imaging would be able to assess serial changes