Although physiologic evaluation (e.g., fractional flow reserve) of intermediate lesions is well established in other coronary arteries, the left main coronary artery (LMCA) exhibits diagnostic challenges, hindering development of physiology-based decision-making algorithms. The aim of this study is to evaluate the relationship between angiographic stenosis severity (diameter stenosis, DS%), lesion location and morphologic characteristics and gold-standard pressure indices in patients with intermediate LMCA stenosis. We analyzed 34 patients with angiographically intermediate (25%-65%) LMCA stenosis who underwent intravascular ultrasound (IVUS) imaging and pressure wire assessment. Plaque burden, minimal lumen area (MLA), lesion location, and calcification were documented, and their relationships with FFR and iFR were evaluated. The iFR (r = -0.507 p < 0.001) and FFR (r = -0.383 p = 0.002) were only moderately correlated with DS%. FFR (r = 0.835, p < 0.001) and iFR (r = 0.769, p < 0.001) were significantly correlated with MLA. Presence of calcification partially blunted the correlation between structural and functional parameters. The receiver operating characteristic (ROC) curve showed the highest area under the curve (AUC) for FFR in detecting an MLA<6 mm², with a negative predictive value (NPV) of 80% and a positive predictive value (PPV) of 100%. All lesions with an MLA<6mm2 (n = 16) had an FFR <0.80 whereas iFR >0.89 deferred 37% of these lesions. In conclusion, angiographic percent stenosis is an unreliable indicator of hemodynamic significance in intermediate LMCA disease; given that iFR has a high false-negative rate for lesions with MLA <6 mm² despite correlating with MLA, FFR may therefore be a more suitable index for evaluating intermediate LMCA stenoses, and further studies should refine cutoffs for nonhyperemic indices and investigate their clinical implications.
BackgroundThe coronavirus disease 2019 (COVID-19) has had a great impact on patients’ physical problems as well as psychological status. However, there is limited data about the impact of psychological problems on cardiac function during the COVID-19 pandemic. In this study, we aimed to investigate the relationship between mental health disorders and subclinical early myocardial systolic dysfunction by left ventricular global longitudinal strain (LVGLS) imaging in patients recovered from COVID-19.MethodsOf the 108 participants, 71 patients had recovered from COVID-19; the members of the study group were prospectively recruited to the study after COVID-19 recovery. Comparisons were made with a risk-factor matched control group (n=37). The psychological status of the subjects, namely, Depression, Anxiety and Stress Scale-21 (DASS-21), and the Impact of Events Scale (IES-R) at follow-up visits, were assessed via questionnaire forms. The relationship between the psychological parameters and LVGLS values was subsequently evaluated.ResultsOverall, 45.0% of patients with COVID-19 had some degree of anxiety after recovery. A significant negative correlation was found between LVGLS and DASS-21 total score, DASS-21 anxiety subscale score, IES-R total score, and IES-R intrusion subscale score (r= -0.251, p=0.02; r= -0.285, p=0.008; r= -0.291, p=0.007; and r= -0.367, p=0.001, respectively). Furthermore, the DASS-21 total score was identified as an independent predictor of LVGLS (β= -0.186, p=0.03).ConclusionsPatients who suffered from the COVID-19 disease may have experienced psychological distress symptoms due to COVID-19, which may be associated with silent impairment in myocardial systolic functions measured by global longitudinal strain analysis.
BACKGROUND:There is an ongoing debate on the extension of reperfusion-related microvascular damage (MVD) throughout the remote noninfarcted myocardial regions in patients with ST-elevation myocardial infarction (STEMI) that undergo primary percutaneous intervention (pPCI). The aim of this study was to elucidate the impact of reperfusion on remote microcirculatory territory by analyzing hemodynamic alterations in the nonculprit-vessel in relation to reperfusion. METHODS:A total of 20 patients with STEMI undergoing pPCI were included. Peri-reperfusion temporal changes in hemodynamic parameters were obtained in angiographically normal nonculprit vessels before and 1-h after reopening of the culprit vessel. Intracoronary pressure and flow velocity data were compared using pairwise analyses (before and 1-h after reperfusion). RESULTS:In the non-culprit vessel, compared to the pre-reperfusion state, mean resting average peak velocity (33.4 ± 9.4 to 25.0 ± 4.9 cm/s, P < 0.001) and mean hyperemic average peak velocity (53.5 ± 14.4 to 42.1 ± 10.66 cm/s, P = 0.001) significantly decreased; whereas baseline (3.2 ± 1.0 to 4.0 ± 1.0 mmHg.cm-1.s, P < 0.001) and hyperemic microvascular resistance (HMR) (1.9 ± 0.6 to 2.4 ± 0.7 mmHg.cm-1.s, P < 0.001) and mean zero flow pressure (Pzf) values (32.5 ± 6.9 to 37.6 ± 8.3 mmHg, P = 0.003) significantly increased 1-h after reperfusion. In particular, the magnitude of changes in HMR and Pzf values following reperfusion were more prominent in patients with larger infarct size and with higher extent of MVD in the culprit vessel territory. CONCLUSION:Reperfusion-related microvascular injury extends to involve remote myocardial territory in relation to the magnitude of the adjacent infarction and infarct-zone MVD. (GUARD Clinical TrialsNCT02732080).
OBJECTIVE:Bicuspid aortic valve (BAV) is the most common congenital heart defect. Ascending aorta dilatation is related to BAV- and hypertension (HTN)-associated aortopathy. The aim of this study was to investigate aortic elasticity, as well as aortic deformation of the ascending aorta, using strain imaging, and to evaluate the possible relationship of biomarkers, such as endotrophin and matrix metalloproteinase-2 (MMP-2), with ascending aorta dilatation in patients with BAV- or HTN-associated aortopathy.PATIENTS AND METHODS:This prospective study included patients with ascending aorta dilatation with BAV (n = 33), or normal tricuspid aortic valve with HTN (n = 33), and 20 control subjects. The mean age of the total patients was 42.76 ± 10.4 years (67% male, 33% female). We calculated aortic elasticity parameters using the relevant formula by M-mode echocardiography and determined layer-specific longitudinal and transverse strains of the proximal aorta by speckle-tracking echocardiography. Blood samples of the participants were drawn for the analysis of endotrophin and MMP-2.RESULTS:Aortic strain and aortic distensibility were significantly decreased, whereas the aortic stiffness index was significantly increased in patient groups with BAV or HTN compared to the control group (p < 0.001). Moreover, longitudinal strain of both the anterior and posterior aortic walls of the proximal aorta were significantly impaired in BAV and HTN patients (p < 0.001). Serum endotrophin levels were significantly reduced in the patient cohort compared to the controls (p = 0.001). Endotrophin was noted to be significantly positively correlated with aortic strain and aortic distensibility (r = 0.37, p = 0.001; r = 0.45, p < 0.001, respectively), whereas inversely associated with aortic stiffness index (r = -0.402, p < 0.001). Furthermore, endotrophin was the single independent predictor of ascending aorta dilatation (OR = 0.986, p < 0.001). A cut-off value of endotrophin ≤ 82.38 ng/mL predicted ascending aorta dilatation with a sensitivity of 80.3% and specificity of 78.5% (p < 0.0001).CONCLUSIONS:The present study showed that aortic deformation parameters and elasticity are impaired in BAV and HTN patients, and strain imaging allows for a good analysis of ascending aorta deformation. Endotrophin could be a predictive biomarker of ascending aorta dilatation in BAV and HTN aortopathy.
Objective Mitral annular plane systolic excursion (MAPSE) is a simple way to evaluate-left ventricle (LV) function. Our aim was to explain the relationship of MAPSE with LV function and biochemical markers in patients with preserved ejection fraction (EF), and to determine whether it has an effect on prognosis in echocardiography (echo) practice. Methods Consecutive patients referred to the echo laboratory between November 2020 and March 2021 were included in the study. In addition to conventional parameters, MAPSE of the lateral mitral annulus was measured in all patients. Patients were divided into three groups according to lateral MAPSE: low (<12 mm), relatively preserved (12-15 mm), and high (>= 15 mm). Results A total of 512 patients with preserved EF were included in the study. MAPSE was low in 44 patients (9%), relatively preserved in 231 patients (45%), and high in 237 patients (46%). The mean age was higher in the low group compared to the other two groups (p < 0.001) and the body mass index was increased in the low group compared to the high group (p = 0.010). Atrial fibrillation and hypertension were more common in patients with low MAPSE. The rate of diastolic dysfunction (DD) and all-cause hospitalization were higher in the low and relatively preserved groups than in the high group (p < 0.001, p = 0.002; respectively). The pro-BNP level and mortality rate were higher in the low group compared to the relatively preserved and high groups (p = 0.007, p = 0.005; respectively). MAPSE was identified as independent predictor of hospitalization (OR: 0.284, 95% CI: 0.093-0.862, p = 0.026) via multivariate analysis and independent predictor of in-hospital mortality (HR: 0.002, 95% CI: 0-0.207, p = 0.008). Conclusions Analysis of LV longitudinal function by echo-derived lateral MAPSE when LV ejection fraction is normal provides important information about DD and related heart failure and may predict prognosis in echo practice.
Background Intramyocardial edema and hemorrhage are key pathological mechanisms in the development of reperfusion‐related microvascular damage in ST‐segment–elevation myocardial infarction. These processes may be facilitated by abrupt restoration of intracoronary pressure and flow triggered by primary percutaneous coronary intervention. We investigated whether pressure‐controlled reperfusion via gradual reopening of the infarct‐related artery may limit microvascular injury in patients undergoing primary percutaneous coronary intervention. Methods and Results A total of 83 patients with ST‐segment–elevation myocardial infarction were assessed for eligibility and 53 who did not meet inclusion criteria were excluded. The remaining 30 patients with totally occluded infarct‐related artery were randomized to the pressure‐controlled reperfusion with delayed stenting (PCRDS) group (n=15) or standard primary percutaneous coronary intervention with immediate stenting (IS) group (n=15) (intention‐to‐treat population). Data from 5 patients in each arm were unsuitable to be included in the final analysis. Finally, 20 patients undergoing primary percutaneous coronary intervention who were randomly assigned to either IS (n=10) or PCRDS (n=10) were included. In the PCRDS arm, a 1.5‐mm balloon was used to achieve initial reperfusion with thrombolysis in myocardial infarction grade 3 flow and, subsequently, to control distal intracoronary pressure over a 30‐minute monitoring period (MP) until stenting was performed. In both study groups, continuous assessment of coronary hemodynamics with intracoronary pressure and Doppler flow velocity was performed, with a final measurement of zero flow pressure (primary end point of the study) at the end of a 60‐minute MP. There were no complications associated with IS or PCRDS. PCRDS effectively led to lower distal intracoronary pressures than IS over 30 minutes after reperfusion (71.2±9.37 mm Hg versus 90.13±12.09 mm Hg, P=0.001). Significant differences were noted between study arms in the microcirculatory response over MP. Microvascular perfusion progressively deteriorated in the IS group and at the end of MP, and hyperemic microvascular resistance was significantly higher in the IS arm as compared with the PCDRS arm (2.83±0.56 mm Hg.s.cm−1 versus 1.83±0.53 mm Hg.s.cm−1, P=0.001). The primary end point (zero flow pressure) was significantly lower in the PCRDS group than in the IS group (41.46±17.85 mm Hg versus 76.87±21.34 mm Hg, P=0.001). In the whole study group (n=20), reperfusion pressures measured at predefined stages in the early reperfusion period showed robust associations with zero flow pressure values measured at the end of the 1‐hour MP (immediately after reperfusion: r=0.782, P<0.001; at the 10th minute: r=0.796, P<0.001; and at the 20th minute: r=0.702, P=0.001) and peak creatine kinase MB level (immediately after reperfusion: r=0.653, P=0.002; at the 10th minute: r=0.597, P=0.007; and at the 20th minute: r=0.538, P=0.017). Enzymatic myocardial infarction size was lower in the PCRDS group than in the IS group with peak troponin T (5395±2991 ng/mL versus 8874±1927 ng/mL, P=0.006) and creatine kinase MB (163.6±93.4 IU/L versus 542.2±227.4 IU/L, P<0.001). Conclusions In patients with ST‐segment–elevation myocardial infarction, pressure‐controlled reperfusion of the culprit vessel by means of gradual reopening of the occluded infarct‐related artery (PCRDS) led to better‐preserved coronary microvascular integrity and smaller myocardial infarction size, without an increase in procedural complications, compared with IS. Registration URL: https://www.clinicaltrials.gov; Unique identifier: NCT02732080.
Objective: The aim of this cross-sectional, retrospective, descriptive study was to review and classify cardiac masses systematically and to determine their frequencies. Methods: The medical records of 64,862 consecutive patients were investigated within 12 years. Every patient with a cardiac mass imaged by transthoracic echocardiography (TTE) and confirmed with an advanced imaging modality such as transesophageal echocardiography (TEE), computed tomography (CT) and/or cardiac magnetic resonance imaging (CMR) was included. Acute coronary syndromes triggering thrombus formation, vegetations, intracardiac device and catheter related thrombi were excluded. Results: Data demonstrated 127 (0.195%) intracardiac masses consisting of 33 (0.050%) primary benign, 3 (0.004%) primary malignant, 20 (0.030%) secondary tumors, 3 (0.004%) hydatid cysts and 68 (0.104%) thrombi respectively. The majority of primary cardiac tumors were benign (91.67%), predominantly myxomas (78.79%), and the less malignant (8.33%). Secondary cardiac tumors were common than the primary malignant tumors (20:3), with male dominancy (55%), lymphoma and lung cancers were the most frequent. Intracardiac thrombi was the majority of the cardiac masses, thrombi accompanying malignancies were in the first range (n = 17, 25%), followed by autoimmune diseases (n = 13, 19.12%) and ischemic heart disease with low ejection fraction (n = 12, 17.65%). Conclusions: This retrospective analysis identified 127 patients with cardiac masses. The majority of benign tumors were myxoma, the most common tumors that metastasized to the heart were lymphoma and lung cancers, and the thrombi associated with malignancies and autoimmune diseases were the most frequent.
BACKGROUNDGalectin-3 has been shown to play a key pathophysiological role in pulmonary associated inflammatory response and lung fibrosis in COVID-19 and is a mediator for viral adhesion. However, there is limited data about its potential role in severity and prognosis of COVID-19. This study aimed to investigate the predictive role of serum galectin-3 concentrations in the severe clinical outcomes of hospitalized COVID-19 patients: the severity of pneumonia, in-hospital mortality, and the need for intensive care unit (ICU) admission.METHODSThis single-center study included 68 patients with laboratory- and radiologically-confirmed COVID-19 admitted to our emergency department. The study population was divided into patients with primary clinical out-comes (n = 32) and those without (n = 36). The need for ICU admission and/or in-hospital mortality were the primary clinical endpoints. The study group was also classified based on pneumonia severity: severe or mild/moderate. Blood samples were collected within 48 hours of admission to estimate serum galectin-3 concentrations.RESULTSMultivariate regression analysis showed that lower concentrations of galectin-3 and arterial oxygen saturation (SpO2) were independently associated with the primary clinical outcomes (OR = 0.951, p = 0.035; OR = 0.862, p = 0.017, respectively); increased concentrations of galectin-3 were an independent predictor of severe pneumonia (OR = 1.087, p = 0.016). In the receiver operating characteristics curve analysis, serum galectin-3 concentrations at hospital admission predicted pneumonia severity with 52.1% sensitivity and 90% specificity with a cutoff of 38.76 ng/mL.CONCLUSIONSCirculating galectin-3 at hospital admission could be a useful biomarker for identifying COVID-19 patients at high risk for severe pneumonia.
Background: The novel coronavirus infection (COVID-19) disease has spread rapidly and posed a great threat to global public health. The laboratory parameters and clinical outcomes of the disease in discharged patients remain unknown. In this study, we aimed to investigate the laboratory and echocardiographic findings of patients with COVID-19 after discharge and the relation between left ventricular global longitudinal strain (LVGLS) and inflammatory parameters in discharged patients. Methods: A total of 75 patients recovering from COVID-19 as the study group were prospectively recruited from the COVID-19 outpatient clinic for their follow-up visits at a median 6 months after discharge. Patients were classified into groups according to pneumonia severity and impairment in LVGLS. Laboratory findings of patients both at admission and after discharge were evaluated and the relation with pneumonia severity at admission and LVGLS after discharge were analyzed. Results: Serum ferritin, lactate dehydrogenase (LDH) and prohormone B-type natriuretic peptide (pro-BNP) levels after discharge were significantly higher in the study group than the control group (n = 44). Ferritin was found to be related to pneumonia severity. Serum ferritin and LDH values after discharge were significantly higher in patients with impaired LVGLS than those with preserved. There was a significant correlation between LVGLS, serum ferritin and LDH values after discharge (r = -0.252, p = 0.012; r = -0.268, p = 0.005, respectively). Conclusions: Clinicians should pay close attention to the serum ferritin and LDH levels in discharged patients for predicting the severity of COVID-19 disease and early identification of subclinical left ventricular myocardial dysfunction.
OBJECTIVE:In this study, we aimed to compare the functional adaptations of the left ventricle in variant forms of left ventricular hypertrophy (LVH) and to evaluate the use of two-dimensional speckle tracking echocardiography (2D-STE) in differential diagnosis and prognosis.METHODS:This was a prospective cohort study of 68 patients with LVH, including 20 patients with non-obstructive hypertrophic cardiomyopathy (HCM), 23 competitive top-level athletes free of cardiovascular disease, and 25 patients with hypertensive heart disease (HHD). All the subjects underwent 2D transthoracic echocardiography (TTE) and 2D-STE. The primary endpoint was all-cause mortality. Global longitudinal strain (GLS) below -12.5% was defined as severely reduced strain, -12.5% to -17.9% as mildly reduced strain, and above -18% as normal strain.RESULTS:The mean LV-GLS value was higher in athletes than in patients with HCM and HHD with the lowest value being in the HCM group (HCM: -11.4±2.2%; HHD: -13.6±2.6%; and athletes: -15.5±2.1%; p<0.001 among groups). LV-GLS below -12.5% distinguished HCM from others with 65% sensitivity and 77% specificity [area under curve (AUC)=0.808, 95% confidence interval (CI): 0.699-0.917, p<0.001]. The median follow-up duration was 6.4±1.1 years. Overall, 11 patients (16%) died. Seven of these were in the HHD group, and four were in the HCM group. The mean GLS value in patients who died was -11.8±1.5%. LV-GLS was significantly associated with mortality after adjusting age and sex via multiple analysis (RR=0.723, 95% CI: 0.537-0.974, p=0.033). Patients with GLS below -12.5% had a higher risk of all-cause mortality compared with that of patients with GLS above -12.5% according to Kaplan-Meier survival analysis for 7 years (29% vs. 9%; p=0.032). The LV-GLS value predicts mortality with 64% sensitivity and 70% specificity with a cut-off value of -12.5 (AUC=0.740, 95% CI: 0.617-0.863, p=0.012).CONCLUSION:The 2D-STE provides important information about the longitudinal systolic function of the myocardium. It may enable differentiation variable forms of LVH and predict prognosis.
Introduction: Cardiovascular risk factors both affect macrovascular and microvascular systems, resulting in negative results on the entire vascular tree. Aortic stiffness causes augmented systolic pressure, increased pulse pressure, increased myocardial oxygen demand, and consequently, coronary blood flow diminishes because of decreased diastolic augmentation. The aim of our study is to investigate the relation between macrovascular and microvascular hemodynamics. Methods: We have included 58 consecutive patients (29 male, age 54[34-71]) without any epicardial coronary stenosis in coronary angiography. Macrovascular and microvascular parameters were calculated with the measurements of tonometry, coronary flow reserve, and microvascular resistance. Results:Carotid-femoral pulse wave velocity (PWV) and subendocardial viability ratio (SEVR) had an inverse correlation (r=-0.328,p=0.007).The main reason of this correlation was priorly positive correlation between PWV and systolic pressure-time integral (SPTI) (r=0.465, p<0.001).A positive correlation was noted between augmentation index (AI) and PWV (r=0.352,p=0.010); and an inverse significant correlation was noted between AI and SEVR (r=-0.383,p=0.003).PWV had a positive correlation with diastolic/systolic coronary flow velocity (r=0.42,p=0.04) and microvascular resistance (MR) (r=0.44,p=0.03) and a negative correlation with hyperemic mean coronary flow velocity (r=-0.416,p=0.043) and coronary flow reserve (CFR) (r=-0.419,p=0.04) in diabetic patient group (n=27).AI was inversely related to CFR (r=-0.41,p=0.04) in diabetic patient group.SEVR and CFR were well correlated in the same direction (r=0.569, p<0.001).SEVR was significantly lower in the patients with lower CFR (1.41±0.23/1.58±0.24,p=0.01).SEVR had a significant negative correlation with MR (r=-0.321,p=0.016). SEVR was associated with arteriolar resistance index (r=0.413,p=0.002). Conclusion: Cardiovascular events appear as a combined result of the pathologies of the macro and microvascular levels. Aortic wall pathologies, which affect central hemodynamic properties, change subendocardial perfusion and coronary microcirculation.
Myocardial injury caused by COVID-19 was reported in hospitalized patients previously. But the information about cardiac consequences of COVID-19 after recovery is limited. The aim of the study was comprehensive echocardiography assessment of right ventricular (RV) in patients recovered from COVID-19. This is a prospective, single-center study. After recovery from COVID-19, echocardiography was performed in consecutive 79 patients that attended follow-up visits from July 15 to November 30, 2020. According to the recovery at home vs hospital, patients were divided into two groups: home recovery (n = 43) and hospital recovery (n = 36). Comparisons were made with age, sex and risk factor-matched control group (n = 41). In addition to conventional echocardiography parameters, RV global longitudinal strain (RV-GLS) and RV free wall strain (RV-FWS) were determined using 2D speckle-tracking echocardiography (2D STE). Of the 79 patients recovered from COVID-19, 43 (55%) recovered at home, while 36 (45%) required hospitalization. The median follow-up duration was 133 ± 35 (87–184) days. In patients recovered from hospital, RV-GLS and RV-FWS were impaired compared to control group (RV-GLS: −17.3 ± 6.8 vs. −20.4 ± 4.9, respectively [p = 0.042]; RV-FWS: −19.0 ± 8.2 vs. −23.4 ± 6.2, respectively [p = 0.022]). In subgroup analysis, RV-FWS was impaired in patients severe pneumonia (n = 11) compared to mild-moderate pneumonia (n = 28), without pneumonia (n = 40) and control groups (−15.8 ± 7.6 vs. −21.6 ± 7.6 vs. −20.8 ± 7.7 vs. −23.4 ± 6.2, respectively, [p = 0.001 for each]) and RV-GLS was impaired compared to control group (−15.2 ± 6.9 vs. −20.4 ± 4; respectively, [p = 0.013]). A significant correlation was detected between serum CRP level at hospital admission and both RV-GLS and RV-FWS (r = 0.285, p = 0.006; r = 0.294, p = 0.004, respectively). Age (OR 0.948, p = 0.010), male gender (OR 0.289, p = 0.009), pneumonia on CT (OR 0.019, p = 0.004), and need of steroid in treatment (OR 17.424, p = 0.038) were identifed as independent predictors of impaired RV-FWS (> −18) via multivariate analysis. We demonstrated subclinic dysfunction of RV by 2D-STE in hospitalized patients in relation to the severity of pneumonia after recovery from COVID-19. 2D-STE supplies additional information above standard measures of RV in this cohort and can be used in the follow-up of these patients.
Introduction: Two-dimensional speckle tracking echocardiography (2D-STE) is sensitive in the assessment of left ventricular (LV) systolic function and may aid in diagnosis of late cardiac effects in asymptomatic Hodgkin's lymphoma (HL) survivors in long-term follow-up. Methods: This is a cross-sectional study of 21 HL survivors previously treated with anthracyclines, with (8/21) or without-mediastinal (8/21) radiotherapy and no recurrence at least 3 years after treatment compared to age-matched 43 healthy volunteers. To assess long-term cardiac complications, we performed 12-lead electrocardiography and 2D transthoracic echocardiography. In addition to conventional echocardiographic parameters, we used tissue Doppler echocardiography for LV diastolic functions and 2D-STE for evaluating the global longitudinal strain (GLS) of the LV myocardium. Results: The mean age of the HL survivors was 40 +/- 15 years and the female sex was predominant (11/21). The average PR interval of the HL survivors was significantly longer (154.7 +/- 19.6 ms vs 133.8 +/- 13.9 ms, p<0.001) while the QTc interval was significantly shorter (383.8 +/- 18.7 ms vs 402.4 +/- 11.7 ms, p<0.001) than the control group. HL survivors had significantly impaired GLS compared to the control group (-193 +/- 2.6 vs-22.6 +/- 1.6, p<0.001). Thirteen of the HL survivors (61%) with normal LV ejection fraction had impaired GLS. The frequency of left ventricular diastolic dysfunction (LVDD) in the HL survivors group was significantly higher than that of the control group (52% vs 26%, p=0.015). Therefore, LVDD was detected in 61.5% of patients with a GLS <-20%. Conclusion: 2D-STE could be used in predicting late-onset subclinical cardiac side effects following treatment in asymptomatic HL survivors for long-term follow-up.
Background The extent of pressure‐related damage might be related to acceleration rate of the applied pressure (peak dP/dt) in the vascular system. In this study, we sought to determine whether dP/dt applied to the aortic wall (aortic dP/dt) and in turn vascular extracellular matrix degradation can be mitigated via modulation of left ventricular (LV) contractility (LV dP/dt) by pacemaker‐mediated desynchronization. Methods and Results First, in 34 patients, changes in aortic dP/dt values in 3 aortic segments in response to pacemaker‐mediated stepwise QRS widening leading to gradual desynchronization of the LV contraction by means of steadily changed atrioventricular delay (AVD) with temporary dual‐chamber pacing was examined before and after beta‐blocker (15 mg IV metoprolol) administration. Second, serum matrix metalloproteinase‐9 levels were measured in the 20 patients with permanent pacemaker while they were on sinus rhythm with normal QRS width and 3 weeks after wide QRS rhythm ensured by dual pacing, dual sensing, and dual response to sensing with short AVD. LV dP/dt substantially correlated with dP/dt measured in ascending (r=0.83), descending (r=0.89), and abdominal aorta (r=0.96). QRS width strongly correlated with dP/dt measured in ascending (r=−0.95), descending (r=−0.92), and abdominal (r=−0.96) aortic segments as well. In patients with permanent pacemaker, wide QRS rhythm led to a significant reduction in serum matrix metalloproteinase‐9 levels (from 142.5±32.9 pg/mL to 87.5±32.4 pg/mL [P<0.001]) at the end of 3 weeks follow‐up. Conclusions QRS prolongation by short AVD dual pacing, dual sensing, and dual response to sensing results in concomitant decreases in peak dP/dt values in the LV and in all aortic segments with or without background beta‐blocker administration, which in turn led to a significant reduction in circulating matrix metalloproteinase‐9 levels. Registration URL: https://www.clinicaltrials.gov; Unique identifier: NCT03665558.
Fractional flow reserve (FFR) may not be immune from hemodynamic perturbations caused by both vessel and lesion related factors. The aim of this study was to investigate the impact of plaque- and vessel wall-related features of vulnerability on the hemodynamic effect of intermediate coronary stenoses. Methods and Results: In this cross-sectional study, patients referred to catheterization laboratory for clinically indicated coronary angiography were prospectively screened for angiographically intermediate stenosis (50–80%). Seventy lesions from 60 patients were evaluated. Mean angiographic stenosis was 62.1 ± 16.3%. After having performed FFR assessment, intravascular ultrasound (IVUS) was performed over the FFR wire. Virtual histology IVUS was used to identify the plaque components and thin cap fibroatheroma (TCFA). TCFA was significantly more frequent (65 vs. 38%, p = 0.026), and necrotic core volume (26.15 ± 14.22 vs. 16.21 ± 8.93 mm3, p = 0.04) was significantly larger in the positively remodeled than non-remodeled vessels. Remodeling index correlated with necrotic core volume (r = 0.396, p = 0.001) and with FFR (r = –0. 419, p = 0.001). With respect to plaque components, only necrotic core area (r = –0.262, p = 0.038) and necrotic core volume (r = –0.272, p = 0.024) were independently associated with FFR. In the multivariable model, presence of TCFA was independently associated with significantly lower mean FFR value as compared to absence of TCFA (adjusted, 0.71 vs. 0.78, p = 0.034). Conclusion: The current study demonstrated that for a given stenosis geometry, features of plaque vulnerability such as necrotic core volume, TCFA, and positive remodeling may influence the hemodynamic relevance of intermediate coronary stenoses.
Atrial septal defect (ASD) is known to be the most widespread type of congenital heart disease in adulthood (1). Ostium secundum type is the most common form of ASD (60%-70%). Percutaneous closure of ASD is known as an alternative treatment to surgery. Percutaneous transcatheter closure of ASD provides many benefits compared with surgery, such as decreased surgical morbidity, no scarring, and shortened hospital stay. Nowadays, transcatheter treatment is the first choice in secundum ASD treatment. Various devices have been developed for this purpose, and the Amplatzer septal occluder is the most commonly used. However, this closure method is associated with rare complications observed in the early and late stages. The frequency of device embolization in experienced centers during ASD closure is less than 1%. Embolization usually occurs in the early postoperative period and in the right heart cavities. In the acute period, if embolization into the right ventricular outflow tract or pulmonary artery branches occurs, a snare catheter may be used for the attempted recovery. Late dislocation and embolization of the ASD occluder device are rarely reported in the literature. In this case report, we report silent and late embolization of the ASD occluder device into the main pulmonary artery.
Factor V Leiden mutation is commonly associated with venous thromboembolism.Although there are cases reported with prosthetic valve thrombosis, no native valve thrombosis has been reported in the literature.In this case report, we presented the concomitant aortic valve thrombosis and sinus of Valsalva aneurysm in a patient with a Factor V Leiden mutation.To the best of our knowledge, our case is the first in the literature.
OBJECTIVE:The histological characteristics of plaque may affect the hemodynamic outcome of a given coronary stenosis. In particular, the potential effect of volumetric calcium content and the topographical distribution in the lesion segment on physiological outcome has not yet been investigated. The aim of this study was to identify any potential correlation between patterns of calcification and the fractional flow reserve (FFR) and the coronary remodeling index (RMI).METHODS:A total of 26 stable angina pectoris and 34 acute coronary syndrome patients without persistent ST-segment elevation constituted the study population. FFR was used to assess 70 intermediate coronary stenosis lesions. After obtaining hemodynamic measurements, quantitative grayscale and virtual histology-intravascular ultrasound analyses were performed. The depth, length, and circumferential distribution of calcification of the lesions were also recorded.RESULTS:Within the analyzed segment (area of interest, lesion segment), FFR was correlated with maximal thickness of deep calcification (r=-0.285; p=0.021) and calcification angle (r=-0.396; p=0.001). In lesions with a calcification angle >180°, the mean FFR value was significantly lower compared with those <180° (0.64±0.17 vs. 0.78±0.08; p=0.024). RMI was correlated with maximal angle of superficial (r=-0.437; p<0.001) and deep (r=0.425; p<0.001) calcification. RMI was correlated with maximal thickness of superficial (r=-0.357; p=0.003) and deep (r=0.417; p<0.001) calcification. RMI was also correlated with FFR (r=-0.477; p<0.001).CONCLUSION:This study demonstrated that the geometry, location, and amount of calcification of a plaque could affect hemodynamic and anatomical outcome measures in functionally significant stenoses by affecting vessel wall compliance.