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1 echocardiography at 10 min (transesophageal/intracardiac), 24 h, 1 month, and 6 months (transthoraci
3 sted OR, 2.25; 95% CI, 1.25-4.03; P = .007), intracardiac abscess (47/144 [32.6%]; adjusted OR, 1.86;
4 confidence interval, 1.21-3.68; P=0.006) and intracardiac abscess (hazard ratio, 2.25; 95% confidence
7 endently predicted in-hospital mortality and intracardiac abscess and valve perforation independently
9 works (CNN) may enable objective analysis of intracardiac activation in AF, which could be applied cl
10 e combination of paced P wave morphology and intracardiac activation sequence can be used for the ide
11 ing to match the P wave morphology and paced intracardiac activation sequence recorded from multiple
12 G at the successful ablation site, and paced intracardiac activation sequence was identical to that o
16 n led to the discovery of massive amounts of intracardiac air which demanded urgent lung isolation an
17 d to what extent these Treg subsets regulate intracardiac allogeneic responses in transplant patients
18 nsional image using multiple views, evaluate intracardiac anatomy at different depth planes, and recr
19 c burden and extended survival in MDA-MB-231 intracardiac and 4T1 orthotopic (median survival, >80 da
20 d the ability to colonize the bone following intracardiac and direct intratibial injection of athymic
24 es the diagnostic tools for the detection of intracardiac and pulmonary shunts, reviews therapeutic o
25 redominant alpha7-nAChR subtype found in rat intracardiac and superior cervical ganglion neurons exhi
26 eaction techniques in neonatal rat brain and intracardiac and superior cervical ganglion neurons.
27 kg) administered at the time of reperfusion (intracardiac) and then daily (intravenous) for the first
29 ncreased cardiac fibrosis and suppression of intracardiac anti-fibrotic cytokines, while premenopausa
32 study, all of the rats were euthanized, and intracardiac blood samples and mandible tissues were obt
35 d weight < or =70 kg, as well as the lack of intracardiac cardioverter-defibrillator on the day of li
36 reased cardiac inflammation, increased total intracardiac CD45(+) leukocytes, elevated anti-cardiac m
37 natriuretic peptide (NT-proBNP(1-76)) after intracardiac cleavage of their molecular precursor, proB
39 o-dimensional echocardiography showed normal intracardiac connections, with the tricuspid valve in th
41 to assess the exact roles of circulating and intracardiac cytokines in this particular patient popula
42 ria for LBBB incompletely predicted CCB, and intracardiac data might be useful in refining patient se
44 p detects evidence of cardiomyopathy, and an intracardiac defibrillator is implanted to reduce the ri
45 yarrhythmias during follow-up and 3 received intracardiac defibrillator shocks for ventricular tachyc
47 5+/-8 years, 47% male) without a preexisting intracardiac device or prior valve surgery who underwent
49 endocarditis include absence of a permanent intracardiac device, sterile follow-up blood cultures wi
52 e endocarditis (IE) in prosthetic valves and intracardiac devices is challenging because both the mod
53 pacemaker placement (3 L-loop ventricles, 2 intracardiac devices, 1 double inlet-double outlet RV).
54 rfarin), use (or planned use) of implantable intracardiac devices, and blood pressure control (<140/9
63 catheter at the ostium of the LAA guided by intracardiac echocardiography (167 patients; group 3).
64 lar implantable electronic device leads with intracardiac echocardiography (ICE) during ablation proc
65 t of left atrial (LA) thrombus documented by intracardiac echocardiography (ICE) during LA ablation f
66 e transesophageal echocardiography (TEE) and intracardiac echocardiography (ICE) for the diagnosis of
67 to determine the feasibility and accuracy of intracardiac echocardiography (ICE) in guiding percutane
69 ve of this study was to assess the impact of intracardiac echocardiography (ICE) on the long-term suc
75 d the occurrence of bubble formation seen on intracardiac echocardiography and the microembolic signa
76 ps between the degree of bubble formation on intracardiac echocardiography and the number of MESs (P=
77 a sham procedure (femoral venous access with intracardiac echocardiography but no IASD placement).
78 electroanatomic mapping in conjunction with intracardiac echocardiography demonstrated that 1 of the
80 tion of the PSP-LV with an RA approach under intracardiac echocardiography guidance were performed in
83 hout transesophageal echocardiogram but used intracardiac echocardiography imaging of the appendage f
84 transesophageal echocardiogram screening or intracardiac echocardiography imaging of the appendage i
85 transesophageal echocardiogram screening or intracardiac echocardiography imaging of the appendage;
89 rve as origins of presumed RVOT arrhythmias; intracardiac echocardiography localization of the PV all
96 tion based on PV angiography, 102; guided by intracardiac echocardiography, 140; with energy delivery
97 ls include transesophageal echocardiography, intracardiac echocardiography, intracardiac endoscopy, a
99 ping, multidetector computed tomography, and intracardiac echocardiography, with arrhythmia foci bein
104 to the time of fixation, the duration of the intracardiac EGM in ventricular leads increased from 150
106 ury was characterized as the duration of the intracardiac electrogram (EGM) and the magnitude of ST-s
108 ucted, which measured T-wave timing using an intracardiac electrogram during a ventricular pacing tra
109 asibility of using real-time, high-fidelity, intracardiac electrogram monitoring from a permanently i
110 nvestigation using real-time, high-fidelity, intracardiac electrogram monitoring from a permanently I
112 electrophysiology studies with recording of intracardiac electrograms and atrial and ventricular pac
114 graphy, surface ECG and conscious telemetry, intracardiac electrograms and pacing, and optical mappin
117 n=12), and adapted for sequentially acquired intracardiac electrograms during human persistent atrial
122 g these is the ability to store counters and intracardiac electrograms of individual atrial high-rate
127 Both groups of transgenic mice underwent intracardiac electrophysiologic, electrocardiographic (E
131 in type 1 diabetic Akita mice using in vivo intracardiac electrophysiology, high-resolution optical
132 cardiography, intracardiac echocardiography, intracardiac endoscopy, and electroanatomic mapping syst
133 art failure, lower body mass index, elevated intracardiac filling pressures, lower cardiac index, ane
134 a ratio may not be as reliable in predicting intracardiac filling pressures, particularly in those wi
135 reased extracellular fluid leads to elevated intracardiac filling pressures, resulting in a constella
139 thway in patients with a lateral tunnel (LT) intracardiac Fontan connection and outcomes of percutane
140 Na(V)1.8 labeling in dorsal root ganglia and intracardiac ganglia and only modest Na(V)1.8 expression
141 1.8 staining in isolated neurons from murine intracardiac ganglia but no Na(V)1.8 expression in isola
142 ptide (VIP) have been found within mammalian intracardiac ganglia, but the cellular effects of these
143 heart diseases argues for the importance of intracardiac haemodynamics as a key epigenetic factor in
145 oppler echocardiography accurately estimated intracardiac hemodynamics in these patients supported wi
147 is not uncommon and is associated with worse intracardiac hemodynamics, higher B-type natriuretic pep
150 review will propose the features of an ideal intracardiac imaging tool, summarize the intracardiac im
151 eal intracardiac imaging tool, summarize the intracardiac imaging tools that are currently available
156 metastasis, we developed a mouse model using intracardiac injection and in vivo selection to isolate
157 xenograft model of lung metastasis and in an intracardiac injection model of experimental bone and lu
165 onance (MR) imaging that therapy with direct intracardiac injection of vascular endothelial growth fa
166 ow, here we used a novel survivable in utero intracardiac injection technique to deliver a vascular t
167 s in inducing myocardial repair after single intracardiac injection using synthetic lipid formulation
168 ravascular administration of donor cells via intracardiac injection was far more efficient and result
169 ected in the brain vasculature 4 hours after intracardiac injection, and a few adherent cells persist
170 t cancer metastasizes to bone are limited to intracardiac injection, which seeds the cancer cells dir
171 ir ability to colonize in the bone following intracardiac injection, while reexpression of phosphoryl
172 2 mimics for at least 12 days after a single intracardiac injection, with minimal dispersion to other
175 ric mean parasite loads (GMPL) comparable to intracardiac inoculation of 10(7)-10(8) parasites, altho
176 hen experimental metastases were induced via intracardiac inoculation, mice bearing CHO/MIP-1alpha tu
177 istration of cells requires intracoronary or intracardiac instrumentation, which is potentially assoc
180 new intracardiac visualization and magnetic intracardiac lead positioning tools are examples of just
182 of eliminating the need for intravenous and intracardiac leads and their associated risks and shortc
183 ystem to record and analyze RA from multiple intracardiac leads, and deliver dynamically R-wave trigg
186 d disorganized regions detected by panoramic intracardiac mapping and correlates with the acute outco
189 lts demonstrate that the MGS can be used for intracardiac mapping, pacing, and ablation safely and ef
193 nclude the detection and characterization of intracardiac masses, thrombi, myocarditis, and sarcoidos
201 ntestinal polypeptide (VIP) is released from intracardiac neurons during vagal stimulation, ischemia,
204 ting [Ca2+]i, both PACAP and VIP depolarized intracardiac neurons, and PACAP was further shown to aug
205 reduced action potential firing frequency in intracardiac neurons, confirming a functional role for N
206 he functional presence of SCN10A/Na(V)1.8 in intracardiac neurons, indicating a novel role for this n
211 istic standpoint, nitrite treatment restored intracardiac nitrite and increased S-nitrosothiol levels
212 of 5 patients were well without evidence of intracardiac or extracardiac amyloid accumulation, and m
213 wth of metastatic brain tumors introduced by intracardiac or intracranial injection of breast cancer
216 e III collagen synthesis identified cells of intracardiac origin as the main source for collagen turn
221 assessment of the relationship between daily intracardiac pressure and occurrence of ventricular arrh
223 ric heart transplant (HT) patients, expected intracardiac pressure measurements in patients free of s
224 re (HF) management strategy using continuous intracardiac pressure monitoring could decrease HF morbi
226 fibrosis, by monitoring echocardiography and intracardiac pressure-volume relationships and myocardia
230 the Reducing Decompensation Events Utilizing Intracardiac Pressures in Patients with Chronic Heart Fa
235 on >/= 50%, increased natriuretic peptide or intracardiac pressures, and reduced exercise capacity.
238 rdiographic imaging, calibrated to panoramic intracardiac recordings and referenced to AF termination
240 AT were univentricular physiology, previous intracardiac repair, systemic right ventricle, pulmonary
243 factor-kappaB ligand, were injected via the intracardiac route into both wild-type and OPN-/- mice.
244 the form of thromboembolism, dissection and intracardiac shunting and mass effect over adjacent card
246 ume and flow, either globally (left-to-right intracardiac shunting) or from flow and volume diversion
249 us cardiopulmonary conditions, patients with intracardiac shunts, and special patient populations inc
253 lutter wave morphology and limited recording intracardiac sites proved insufficient to delineate the
255 Shifts exceeding 3 SD from a patient's daily intracardiac ST-segment range may be a sensitive/specifi
258 expression, whereas the ganglion is the only intracardiac target of NO, we hypothesize that NO serves
263 /transesophageal echocardiographic risks for intracardiac thrombosis, and effect of anticoagulation w
265 pendently associated with increased risk for intracardiac thrombosis, whereas anticoagulation was ass
267 oidosis, the AL group had significantly more intracardiac thrombus (51% versus 16%, P<0.001) and more
269 Arrhythmias, conduction abnormalities, and intracardiac thrombus are common in patients with cardia
270 e than echocardiography for the detection of intracardiac thrombus because of its unique ability to i
271 ation rate mainly due to a high incidence of intracardiac thrombus even among patients who received a
273 valence nor the effect of anticoagulation on intracardiac thrombus has been evaluated antemortem.
275 ompared with control patients, mainly due to intracardiac thrombus identified on transesophageal echo
276 We recently reported a high prevalence of intracardiac thrombus in cardiac amyloid patients at aut
277 0.02); 4 of 13 of the CA patients (31%) with intracardiac thrombus on transesophageal echocardiogram
279 early acute cardioversion (in the absence of intracardiac thrombus) with postcardioversion anticoagul
280 fied into 2 groups: systemic TEC, defined as intracardiac thrombus, ischemic stroke, or systemic arte
287 the murine host with cyclophosphamide before intracardiac tumor cell inoculation was found to signifi
288 2 transseptal punctures were performed under intracardiac ultrasound (ICE) guidance, with one of the
291 pedance signals, utilizing intrathoracic and intracardiac vectors, were measured through ring (r), co
294 n patients at a tertiary care center who had intracardiac vegetations identified by transesophageal e
297 patients with echocardiographic evidence of intracardiac vegetations, followed by a descriptive and
298 s incorporated into the catheters, measuring intracardiac ventricular electrograms, and integrating t
299 tools, guiding catheters, stenting, and new intracardiac visualization and magnetic intracardiac lea
300 tron-emission tomography (PET) imaging; (2.) intracardiac voltage mapping with visible lesion on ultr