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Stephan Willems Boris A. Hoffmann Benjamin Schaeffer Arian Sultan Doreen Schreiber Jakob Lüker Daniel Steven 《Journal of interventional cardiac electrophysiology》2014,40(3):229-235
The involvement of the Purkinje system in a subset of patients with idiopathic ventricular fibrillation or polymorphic VT/VF related to structural heart disease was first demonstrated in the pioneering work of Michel Haissaguerre and co-workers (Circulation 106:962–967, 2002 and Lancet 359:677–678, 2002). It is very important to identify these patients with recurrent episodes of ventricular fibrillation and/or ICD shocks with regard to the presence of triggering premature ventricular contractions (PVC), which may be amenable to mapping and catheter ablation by screening Holter and ICD recordings. The practical problem, which is frequently encountered, is the absence of these PVCs when the patients are brought to the EP lab. However, catheter ablation is an important adjunctive tool to antiarrhythmic drug treatment, beta blocker therapy, and general anesthesia in this setting. Local electrogram criteria related to this phenomenon have been identified guiding mapping and ablation (e.g., low amplitude, high-frequency Purkinje potentials preceding a closely coupled ventricular signal (Fig. 1a)). The favorable long-term follow-up after catheter ablation has been demonstrated in the setting of right and left ventricular Purkinje-related PVCs leading to polymorphic VT/VF (Leenhardt et al., Circulation 89:206–215, 1994) and also following myocardial infarction (Baensch et al., Circulation 108:3011–3016, 2003) and right ventricular outflow tract-associated VF (Noda et al., Journal of the American College of Cardiology 46:1288–1294, 2005). Most recently, epicardial ablation strategies leading to suppression of polymorphic VT/VF episodes related to the Brugada syndrome have been described irrespective to the presence of premature ventricular beats (Nademanee et al., Circulation 123:1270–1279, 2011). 相似文献
135.
Diem‐Lan Vu Julie‐Anne Dayer Stavroula Masouridi‐Levrat Christophe Combescure Elsa Boely Nina Khanna Nicolas J. Mueller Martina Kleber Michael Medinger JOERG Halter Jakob Passweg Antonia M. Müller Urs Schanz Yves Chalandon Dionysios Neofytos Christian van Delden Laurent Kaiser 《Transplant infectious disease》2020,22(4)
136.
Predictors for prolonged hospital stay after transcatheter mitral valve repair with the MitraClip®
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137.
Partial delignification and densification provide a pathway to significant improvement in the mechanical performance of wood. In order to elucidate potential effects of this treatment on the mechanical anisotropy of wood, partially delignified and densified spruce wood veneers were characterized at varying degrees of off-axis alignment. While the tensile strength and the modulus of elasticity (MOE) were clearly improved in parallel to the axis of wood fibers, this improvement quickly leveled off at misalignment angles ≥30°. For transverse tensile strength, the performance of alkaline-treated and densified wood was even inferior to that of untreated wood. Microscopic examination revealed the presence of microscopic cracks in treated wood, which are assumed to be responsible for this observation. It is concluded that impaired transverse tensile properties are a weakness of partially delignified and densified wood and should be considered when a potential usage in load-bearing applications is intended. 相似文献
138.
Continuous tissue microarray based identification of cancers with homogeneous target expression for successful targeted therapy in clinical routine practice
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Eike Burandt Melanie Schreiber Alexander Stein Sarah Minner Till S. Clauditz Carsten Bokemeyer Fritz Jänicke Margit Fisch Jakob R. Izbicki Rainald Knecht Guido Sauter Phillip R. Stahl 《Genes, chromosomes & cancer》2014,53(3):228-239
In cancer therapy, the number of drugs targeting cells with characteristic molecular aberrations is continuously rising. However, application of these new drugs still is limited to a few tumor entities. The aim of this study was to test the concept of routinely identifying all possible cancer patients who might eventually benefit from targeted therapy. Therefore, all malignant tumors routinely submitted to our Institute of Pathology over a period of 4 months were brought into a tissue microarray format. Using “in situ” methods, tumors were analyzed for HER2, EGFR, and KIT status as examples for potential therapeutic target genes. In positive cases, target heterogeneity was excluded by analyzing all available large sections. Outside of tumor entities for which targeted drugs are already approved, the study revealed six tumors with homogeneously distributed HER2 overexpression/amplification (bladder, esophageal and colorectal) and seven tumors with homogeneous EGFR amplification (vulvar, ovarian, breast, esophageal and laryngeal, and adenocarcinoma of unknown primary). A total of 151 tumors showed KIT overexpression but none of seven sequenced cases showed KIT mutations. We furthermore report on a 69‐year‐old patient with homogeneously HER2‐amplified metastatic colorectal cancer who is successfully treated by trastuzumab monotherapy. This study demonstrates that tissue microarray based screening for therapeutic target genes in tumors outside established indications represents a feasible approach suitable for routine application. The successful treatment of one patient with homogeneously HER2 positive metastatic colorectal cancer argues for the clinical utility of this approach at least in carefully selected, homogeneous cancers. © 2013 Wiley Periodicals, Inc. 相似文献
139.
MicroRNAs (miRNAs), small non-coding RNAs, play a critical role in differentiation and self-renewal of pluripotent stem cells, as well as in differentiation of cardiovascular lineage cells. Several miRNAs have been demonstrated to repress stemness factors such as Oct4, Nanog, Sox2 and Klf4 in embryonic stem cells, thereby promoting embryonic stem cell differentiation. Furthermore, targeting of different miRNAs promotes reprogramming towards induced pluripotent stem cells. MicroRNAs are critical for vascular smooth muscle cell differentiation and phenotype regulation, and miR-143 and miR-145 play a particularly important role in this respect. Notably, these miRNAs are down-regulated in several cardiovascular disease states, such as in atherosclerotic lesions and vascular neointima formation. MicroRNAs are critical regulators of endothelial cell differentiation and ischaemia-induced neovascularization. miR-126 is important for vascular integrity, endothelial cell proliferation and neovascularization. miR-1 and miR-133 are highly expressed in cardiomyocytes and their precursors and regulate cardiomyogenesis. In addition, miR-499 promotes differentiation of cardiomyocyte progenitor cells. Notably, miRNA expression is altered in cardiovascular disease states, and recent studies suggest that dysregulated miRNAs may limit cardiovascular repair responses. Dysregulation of miRNAs may lead to an altered function and differentiation of cardiovascular progenitor cells, which is also likely to represent a limitation of autologous cell-based treatment approaches in these patients. These findings suggest that targeting of specific miRNAs may represent an interesting novel opportunity to impact on endogenous cardiovascular repair responses, including effects on stem/progenitor cell differentiation and functions. This approach may also serve to optimize cell-based treatment approaches in patients with cardiovascular disease. 相似文献
140.
Robert Bell Reinier Beeuwkes Hans Erik B?tker Sean Davidson James Downey David Garcia-Dorado Derek J. Hausenloy Gerd Heusch Borja Ibanez Masafumi Kitakaze Sandrine Lecour Robert Mentzer Tetsuji Miura Lionel Opie Michel Ovize Marisol Ruiz-Meana Rainer Schulz Richard Shannon Malcolm Walker Jakob Vinten-Johansen Derek Yellon 《Basic research in cardiology》2012,107(6):1-7