1.Carotid artery stenting in patients with symptomatic coronary artery disease.
Young Sup YOON ; Won Heum SHIM ; Seung Min KIM ; Kyung Jin PARK ; Seung Yun CHO
Yonsei Medical Journal 2000;41(1):89-97
Carotid artery stenting has been accepted as a potential alternative to carotid endarterectomy in patients with significant carotid artery stenosis. The objective of this study was to evaluate the feasibility, safety and long-term outcome of percutaneous stenting of carotid artery stenosis in patients with coexisting symptomatic coronary disease. Between May 1996 and May 1999, we performed carotid artery stenting at 48 lesions in 36 patients with carotid stenosis of 60% and symptomatic coronary artery stenosis. Twenty-one patients (58%) had neurologic symptoms. Carotid stenting was performed in 43 internal, 2 external and 3 common carotid lesions. We used Wallstent in 46 lesions, Palmaz stent in 2 lesions and Microstent II in 1 lesion. Staged or combined coronary intervention was performed in 18 patients (50%) and staged coronary artery bypass surgery was performed in 6 patients (17%). In the other 12 patients (33%), medical treatments were performed. Carotid stenting was successful in all lesions. Simultaneous bilateral carotid stenting was performed in 11 patients (31%). One major and 1 minor stroke developed during the procedure. There were no deaths during the procedures and within 30 days post-procedure. During the follow-up of 14 +/- 7 (3 to 40) months, there were no deaths or neurological events. On follow-up (6 +/- 1 months) angiography and/or duplex sonography of 44 eligible lesions in 32 patients, there were 2 cases of asymptomatic restenosis (4.5%) which developed in Palmaz stents implanted at the external carotid artery and the common carotid artery, respectively. In conclusion, carotid artery stenting in patients with coexistent carotid and coronary artery disease is feasible, safe and shows favorable follow-up outcomes.
Aged
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Angioplasty, Transluminal, Percutaneous Coronary*
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Carotid Arteries*
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Coronary Angiography
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Coronary Disease/therapy*
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Coronary Disease/radiography
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Female
;
Follow-Up Studies
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Human
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Male
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Middle Age
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Postoperative Complications
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Stents*
2.Clinical impact of routine follow-up coronary angiography after second- or third-generation drug-eluting stent insertion in clinically stable patients.
Seonghoon CHOI ; Hee Sun MUN ; Min Kyung KANG ; Jung Rae CHO ; Seong Woo HAN ; Namho LEE
The Korean Journal of Internal Medicine 2015;30(1):49-55
BACKGROUND/AIMS: In the bare-metal stent era, routine follow-up coronary angiography (RFU CAG) was used to ensure stent patency. With the advent of drug-eluting stents (DESs) with better safety and efficacy profiles, RFU CAG has been performed less often. There are few data on the clinical impact of RFU CAG after second- or third-generation DES implantation in clinically stable patients with coronary artery disease; the aim of this study was to examine this issue. METHODS: We analyzed clinical outcomes retrospectively of 259 patients who were event-free at 12-month after stent implantation and did not undergo RFU CAG (clinical follow-up group) and 364 patients who were event-free prior to RFU CAG (angiographic follow-up group). Baseline characteristics were compared between the groups. RESULTS: The Kaplan-Meier estimated total survival and major adverse cardiac event (MACE)-free survival did not differ between the groups (p = 0.100 and p = 0.461, respectively). The cumulative MACE rate was also not different between the groups (hazard ratio, 0.85; 95% confidence interval, 0.35 to 2.02). In the angiographic follow-up group, 8.8% revascularization was seen at RFU CAG. CONCLUSIONS: RFU CAG did not affect long-term clinical outcome after second- or third-generation DES implantation in clinically stable patients.
Aged
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*Coronary Angiography
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Coronary Artery Bypass
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Coronary Artery Disease/radiography/*therapy
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Coronary Restenosis/etiology/radiography/surgery
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Coronary Vessels/*radiography
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Disease Progression
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Disease-Free Survival
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*Drug-Eluting Stents
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Female
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Humans
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Kaplan-Meier Estimate
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Male
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Middle Aged
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Myocardial Infarction/etiology/radiography/surgery
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Patient Selection
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Percutaneous Coronary Intervention/adverse effects/*instrumentation
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Predictive Value of Tests
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Proportional Hazards Models
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Prosthesis Design
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Retrospective Studies
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Risk Factors
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Time Factors
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Treatment Outcome
3.Prediction of Coronary Atherosclerotic Ostial Lesion with a Damping of the Pressure Tracing during Diagnostic Coronary Angiography.
Ae Young HER ; Soe Hee ANN ; Gillian Balbir SINGH ; Yong Hoon KIM ; Bon Kwon KOO ; Eun Seok SHIN
Yonsei Medical Journal 2016;57(1):58-63
PURPOSE: When performing coronary angiography (CAG), diagnostic catheter intubation to the ostium can cause damping of the pressure tracing. The aim of this study was to determine the predictors of atherosclerotic ostial stenosis in patients showing pressure damping during CAG. MATERIALS AND METHODS: In total, 2926 patients who underwent diagnostic CAG were screened in this study. Pressure damping was defined as an abrupt decline of the coronary blood pressure with a blunted pulse pressure after engagement of the diagnostic catheter. According to CAG and intravascular ultrasound (IVUS), we divided damped ostia into two groups: atherosclerotic ostial lesion group (true lesion group) and non-atherosclerotic ostium group (false lesion group). Clinical and angiographic characteristics were compared between the two groups. RESULTS: The overall incidence of pressure damping was 2.3% (68 patients and 76 ostia). Among the pressure damped ostia, 40.8% (31 of 76 ostia) were true atherosclerotic ostial lesions (true lesion group). The true lesion group had more frequent left main ostial damping and more percutaneous coronary interventions (PCIs) performed on non-ostial lesions, compared to the false lesion group. On multivariate logistic regression analysis, left main ostial damping [hazard ratio (HR) 4.11, 95% confidence interval (CI) 1.24-13.67, p=0.021] and PCI on non-ostial lesion (HR 5.34, 95% CI 1.34-21.27, p=0.018) emerged as independent predictors for true atherosclerotic ostial lesions in patients with pressure damping. CONCLUSION: Left main ostial damping and the presence of a non-ostial atherosclerotic lesion may suggest a significant true atherosclerotic lesion in the coronary ostium.
Aged
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*Coronary Angiography
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Coronary Artery Disease/etiology/*radiography
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Coronary Occlusion/diagnosis/*therapy
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Coronary Stenosis/etiology/*radiography
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Coronary Vessel Anomalies/radiography
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Coronary Vessels/*pathology
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Female
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Humans
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Incidence
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Male
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Middle Aged
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Percutaneous Coronary Intervention/adverse effects/methods
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Predictive Value of Tests
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Proportional Hazards Models
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Radiography, Interventional
5.The Role of Optical Coherence Tomography in Coronary Intervention.
Mitsuyasu TERASHIMA ; Hideaki KANEDA ; Takahiko SUZUKI
The Korean Journal of Internal Medicine 2012;27(1):1-12
Optical coherence tomography (OCT) is an optical analog of intravascular ultrasound (IVUS) that can be used to examine the coronary arteries and has 10-fold higher resolution than IVUS. Based on polarization properties, OCT can differentiate tissue characteristics (fibrous, calcified, or lipid-rich plaque) and identify thin-cap fibroatheroma. Because of the strong attenuation of light by blood, OCT systems required the removal of blood during OCT examinations. A recently developed frequency-domain OCT system has a faster frame rate and pullback speed, making the OCT procedure more user-friendly and not requiring proximal balloon occlusion. During percutaneous coronary intervention (PCI), OCT can provide detailed information (dissection, tissue prolapse, thrombi, and incomplete stent apposition [ISA]). At follow-up examinations after stent implantation, stent strut coverage and ISA can be assessed. Several OCT studies have demonstrated delayed neointimal coverage following drug-eluting stent (DES) implantation vs. bare metal stent (BMS) placement. While newer DESs promote more favorable vascular healing, the clinical implications remain unknown. Recent OCT studies have provided insights into restenotic tissue characteristics; DES restenotic morphologies differ from those with BMSs. OCT is a novel, promising imaging modality; with more in-depth assessments of its use, it may impact clinical outcomes in patients with symptomatic coronary artery disease.
*Angioplasty, Balloon, Coronary/adverse effects/instrumentation
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Coronary Angiography
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Coronary Artery Disease/*pathology/radiography/*therapy/ultrasonography
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Coronary Restenosis/etiology/pathology
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Coronary Vessels/*pathology/ultrasonography
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Humans
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Predictive Value of Tests
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Severity of Illness Index
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Stents
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*Tomography, Optical Coherence
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Treatment Outcome
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Ultrasonography, Interventional
6.Impact of an endothelial progenitor cell capturing stent on coronary microvascular function: comparison with drug-eluting stents.
Woong Gil CHOI ; Soo Hyun KIM ; Hyung Seok YOON ; Eun Joo LEE ; Dong Woon KIM
The Korean Journal of Internal Medicine 2015;30(1):42-48
BACKGROUND/AIMS: Although drug-eluting stents (DESs) effectively reduce restenosis following percutaneous coronary intervention (PCI), they also delay re-endothelialization and impair microvascular function, resulting in adverse clinical outcomes. Endothelial progenitor cell (EPC) capturing stents, by providing a functional endothelial layer on the stent, have beneficial effects on microvascular function. However, data on coronary microvascular function in patients with EPC stents versus DESs are lacking. METHODS: Seventy-four patients who previously underwent PCI were enrolled in this study. Microvascular function was evaluated 6 months after PCI based on the index of microvascular resistance (IMR) and the coronary flow reserve (CFR). IMR was calculated as the ratio of the mean distal coronary pressure at maximal hyperemia to the inverse of the hyperemic mean transit time (hTmn). The CFR was calculated by dividing the hTmn by the baseline mean transit time. RESULTS: Twenty-one patients (age, 67.2 +/- 9.6 years; male:female, 15:6) with an EPC stent and 53 patients (age, 61.5 +/- 14.7 years; male:female, 40:13) with second-generation DESs were included in the study. There were no significant differences in the baseline clinical and angiographic characteristics of the two groups. Angiography performed 6 months postoperatively did not show significant differences in their CFR values. However, patients with the EPC stent had a significantly lower IMR than patients with second-generation DESs (median, 25.5 [interquartile range, 12.85 to 28.18] vs. 29.0 [interquartile range, 15.42 to 39.23]; p = 0.043). CONCLUSIONS: Microvascular dysfunction was significantly improved after 6 months in patients with EPC stents compared to those with DESs. The complete re-endothelialization achieved with the EPC stent may provide clinical benefits over DESs, especially in patients with microvascular dysfunction.
Aged
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Blood Flow Velocity
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Coronary Angiography
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Coronary Artery Disease/diagnosis/physiopathology/*therapy
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*Coronary Circulation
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Coronary Vessels/*physiopathology/radiography
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Drug-Eluting Stents
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*Endothelial Progenitor Cells/radiography
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Female
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Humans
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Male
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Microvessels/*physiopathology/radiography
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Middle Aged
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Percutaneous Coronary Intervention/*instrumentation
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Prosthesis Design
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*Re-Epithelialization
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*Stents
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Time Factors
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Treatment Outcome
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Vascular Resistance
7.2014 Korean Guidelines for Appropriate Utilization of Cardiovascular Magnetic Resonance Imaging: A Joint Report of the Korean Society of Cardiology and the Korean Society of Radiology.
Yeonyee E YOON ; Yoo Jin HONG ; Hyung Kwan KIM ; Jeong A KIM ; Jin Oh NA ; Dong Hyun YANG ; Young Jin KIM ; Eui Young CHOI
Korean Journal of Radiology 2014;15(6):659-688
Cardiac magnetic resonance (CMR) imaging is now widely used in several fields of cardiovascular disease assessment due to recent technical developments. CMR can give physicians information that cannot be found with other imaging modalities. However, there is no guideline which is suitable for Korean people for the use of CMR. Therefore, we have prepared a Korean guideline for the appropriate utilization of CMR to guide Korean physicians, imaging specialists, medical associates and patients to improve the overall medical system performances. By addressing CMR usage and creating these guidelines we hope to contribute towards the promotion of public health. This guideline is a joint report of the Korean Society of Cardiology and the Korean Society of Radiology.
Cardiomyopathies/diagnosis/radiography
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Cardiotonic Agents/therapeutic use
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Chest Pain/complications/diagnosis/radiography
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Coronary Artery Bypass
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Coronary Artery Disease/*diagnosis/drug therapy/radiography
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Dobutamine/therapeutic use
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Echocardiography
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Heart Defects, Congenital/diagnosis/radiography
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Heart Failure/diagnosis/ultrasonography
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Humans
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*Magnetic Resonance Imaging
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Mucocutaneous Lymph Node Syndrome/complications/diagnosis
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Percutaneous Coronary Intervention
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Prognosis
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Risk Assessment
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Ventricular Function, Left/physiology
8.Acute Myocardial Infarction after Radiofrequency Catheter Ablation of Typical Atrial Flutter.
Sehyo YUNE ; Woo Joo LEE ; Ji won HWANG ; Eun KIM ; Jung Min HA ; June Soo KIM
Journal of Korean Medical Science 2014;29(2):292-295
A 53-yr-old man underwent radiofrequency ablation to treat persistent atrial flutter. After the procedure, the chest pain was getting worse, and the electrocardiogram showed ST-segment elevation in inferior leads with reciprocal changes. Immediate coronary angiography showed total occlusion with thrombi at the distal portion of the right coronary artery, which was very close to the ablation site. Intervention with thrombus aspiration and balloon dilatation was successful, and the patient recovered without any kind of sequelae. Although the exact mechanism is obscure, the most likely explanation is a thermal injury to the vascular wall that ruptured into the lumen and formed thrombus. Vasospasm and thromboembolism can also be other possibilities. This case raise the alarm to cardiologists who perform radiofrequency ablation to treat various kinds of cardiac arrhythmias, in that myocardial infarction has been rarely considered one of the complications.
Acute Disease
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Angioplasty, Balloon, Coronary
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Atrial Flutter/*surgery
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Catheter Ablation/*adverse effects
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Chest Pain/etiology
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Coronary Occlusion/etiology
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Coronary Vessels/radiography
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Humans
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Male
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Middle Aged
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Myocardial Infarction/*diagnosis/etiology/therapy
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Thrombosis/surgery
9.The Association Between Current Helicobacter pylori Infection and Coronary Artery Disease.
Seung Won JIN ; Sung Ho HER ; Jong Min LEE ; Hee Jeoung YOON ; Su Jin MOON ; Pum Joon KIM ; Sang Hong BAEK ; Ki Bae SEUNG ; Jae Hyung KIM ; Sang Bum KANG ; Jae Hi KIM ; Keon Yeop KIM
The Korean Journal of Internal Medicine 2007;22(3):152-156
BACKGROUND: The role of Helicobacter pylori (H. pylori) in the pathogenesis of coronary artery disease (CAD) is still controversial, and the relation between current H. pylori infection and CAD has not been fully examined. This study evaluated the relation between H. pylori infection as confirmed by gastroduodenoscopic biopsy and CAD. METHODS: We determined the presence of H. pylori infections, via gastroduodenoscopy, in 88 patients of the normal coronary angiographic group and also in 175 patients of the CAD group, and the latter patients had more than 50% coronary stenosis angiographically demonstrated. We excluded those patients with a history of previous H. pylori eradication and/or malignancy. A small piece of tissue from the antrum, which was obtained by gastroduodenoscopic biopsy, was stained by Warthin-starry silver stain. We defined a negative staining result that there was no stained tissue in the sample and the stained tissue was also positive for H. pylori infection. RESULTS: There was no significant difference, except for gender, age, smoking and high density lipoprotein cholesterol (HDL-c), of the demographic and laboratory characteristics between the groups. Twenty seven (30.7%) patients of the normal control group and 71 (40.6%) patients of the CAD group were positive of H. pylori infection, yet there was no statistical difference. We angiographically followed up the 80 patients of the CAD group who were treated by percutaneous coronary intervention (PCI) at 6 to 9 months after their primary intervention. Twenty two (37.9%) of the 58 patients of the H. pylori negative group and 10 (45.5%) of the 22 patients of the H. pylori positive group were treated with reintervention, but reintervention was also not significantly different between the group with H. pylori infection and the group without the infection. CONCLUSIONS: These data indicated that H. pylori infection had a modest influence on CAD and progressive atheroma, but the showed a tendency to increase. Further studies are needed to evaluate the relationship between H. pylori infection and CAD.
Aged
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Angioplasty, Transluminal, Percutaneous Coronary
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Biopsy
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Case-Control Studies
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Coronary Angiography
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Coronary Artery Disease/*microbiology/radiography/therapy
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Duodenoscopy
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Female
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Gastroscopy
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Helicobacter Infections/complications/*microbiology/pathology
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Helicobacter pylori/*isolation & purification
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Humans
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Male
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Middle Aged
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Pyloric Antrum/pathology
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Time Factors
10.Initial and late results of Freedom coronary stent.
Young Keun AHN ; Kyung Tae KANG ; Myung Ho JEONG ; Jung Chaee KANG ; Yang Kyu PARK ; Ok Kyu PARK
The Korean Journal of Internal Medicine 2000;15(1):8-12
OBJECTIVES: Initial and late results after implantation of Freedom stents, a balloon expandable stainless steel coil stents were evaluated. METHODS: From Jun. 1996 to Nov. 1997, we implanted 123 Freedom stents in 122 lesions in 117 patients and performed follow-up coronary angiograms at 7.0 3.6 months after stents placement. Clinical courses after stenting and follow-up coronary angiographic findings were evaluated. Comparison of clinical, angiographic, and procedural factors according to the presence or absence of restenosis was performed. RESULTS: In 117 patients who underwent stents implantation, major complications were not observed. Follow-up coronary angiograms were performed in 47 stents in 41 patients (35+ACU-). Among 47 stents, angiographic significant restenosis (percent diameter stenosis +AD4- 50+ACU-) was observed in 13 (28+ACU-). Mean age in 41 patients was 59 9 years, with 27 male patients (66+ACU-). Indications for stents implantation were de novo lesions in 18 (38+ACU-), suboptimal results after PTCA in 18 (38+ACU-), bail-out lesions in 4 (9+ACU-) and restenotic lesions in 7 (15+ACU-). Lesion types by AHA/ACC classification were A in 1 (1+ACU-), B1 in 10 (21+ACU-), B2 in 17 (36+ACU-), and C in 19 (40+ACU-). Average lesion length was 13.7 9.0 mm, stent diameter 3.0 0.3 mm, and stent length 24.6 9.0 mm. There were no significant differences of the clinical, angiographic, and procedural characteristics according to the presence or absence of restenosis. CONCLUSION: Freedom coronary stents implantation is safely performed in various morphology of coronary lesions and no significant predictive factors on restenosis in follow-up coronary angiogram were observed.
Aged
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Angioplasty, Transluminal, Percutaneous Coronary/methods
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Angioplasty, Transluminal, Percutaneous Coronary/instrumentation+ACo-
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Angioplasty, Transluminal, Percutaneous Coronary/adverse effects
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Chi-Square Distribution
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Comparative Study
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Coronary Angiography
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Coronary Disease/therapy+ACo-
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Coronary Disease/radiography
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Female
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Follow-Up Studies
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Human
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Male
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Middle Age
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Predictive Value of Tests
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Probability
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Recurrence
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Stents+ACo-/adverse effects
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Treatment Outcome