Neutrophil-Rich Thrombus the Detection of Recurrent Same-Site Deep Vein Thrombosis by Illuminating Recently F-Fluorodeoxyglucose Positron Emission Tomography / Computed Tomography Enables 18
暂无分享,去创建一个
R. Weissleder | G. Wojtkiewicz | F. Jaffer | K. Jokivarsi | M. Jaff | A. Brownell | A. Tawakol | J. Truelove | P. Henke | W. Hucker | C. Kessinger | M. MacNabb
[1] René M. Botnar,et al. Magnetic Resonance T1 Relaxation Time of Venous Thrombus Is Determined by Iron Processing and Predicts Susceptibility to Lysis , 2013, Circulation.
[2] Y. Magata,et al. Comparison of Contrast Agents for Atherosclerosis Imaging Using Cultured Macrophages: FDG Versus Ultrasmall Superparamagnetic Iron Oxide , 2013, The Journal of Nuclear Medicine.
[3] S. Goldhaber,et al. Rationale and design of the ATTRACT Study: a multicenter randomized trial to evaluate pharmacomechanical catheter-directed thrombolysis for the prevention of postthrombotic syndrome in patients with proximal deep vein thrombosis. , 2013, American heart journal.
[4] A. Kjaer,et al. 18F-FDG PET Imaging of Murine Atherosclerosis: Association with Gene Expression of Key Molecular Markers , 2012, PloS one.
[5] S. Abbara,et al. Arterial inflammation in patients with HIV. , 2012, JAMA.
[6] T. Wakefield,et al. Critical review of mouse models of venous thrombosis. , 2012, Arteriosclerosis, thrombosis, and vascular biology.
[7] Gordon H Guyatt,et al. Diagnosis of DVT: Antithrombotic Therapy and Prevention of Thrombosis, 9th ed: American College of Chest Physicians Evidence-Based Clinical Practice Guidelines. , 2012, Chest.
[8] B. Kundu,et al. FDG-PET Quantification of Lung Inflammation with Image-Derived Blood Input Function in Mice , 2011, International journal of molecular imaging.
[9] V. Fuster,et al. Pioglitazone modulates vascular inflammation in atherosclerotic rabbits noninvasive assessment with FDG-PET-CT and dynamic contrast-enhanced MR imaging. , 2011, JACC. Cardiovascular imaging.
[10] S. de Jong,et al. Total Abdominal 18F-FDG Uptake Reflects Intestinal Adenoma Burden in Apc Mutant Mice , 2011, The Journal of Nuclear Medicine.
[11] S. Koenig,et al. Accuracy of ultrasonography performed by critical care physicians for the diagnosis of DVT. , 2011, Chest.
[12] Alberto Smith,et al. Leukocytes and the natural history of deep vein thrombosis: current concepts and future directions. , 2011, Arteriosclerosis, thrombosis, and vascular biology.
[13] A. de Roos,et al. Magnetic resonance imaging and computed tomography developments in imaging of venous thromboembolism , 2010, Journal of magnetic resonance imaging : JMRI.
[14] M. Tucci,et al. Assessment of lung inflammation with 18F-FDG PET during acute lung injury. , 2010, AJR. American journal of roentgenology.
[15] Daniel Rico,et al. Substrate Fate in Activated Macrophages: A Comparison between Innate, Classic, and Alternative Activation , 2010, The Journal of Immunology.
[16] K. Ohtomo,et al. Inflammatory Cytokines and Hypoxia Contribute to 18F-FDG Uptake by Cells Involved in Pannus Formation in Rheumatoid Arthritis , 2009, Journal of Nuclear Medicine.
[17] Fabien Hyafil,et al. Quantification of Inflammation Within Rabbit Atherosclerotic Plaques Using the Macrophage-Specific CT Contrast Agent N1177: A Comparison with 18F-FDG PET/CT and Histology , 2009, Journal of Nuclear Medicine.
[18] M. den Heijer,et al. Inflammation in deep vein thrombosis and the development of post‐thrombotic syndrome: a prospective study , 2009, Journal of thrombosis and haemostasis : JTH.
[19] T. Kondo,et al. Time-dependent appearance of intrathrombus neutrophils and macrophages in a stasis-induced deep vein thrombosis model and its application to thrombus age determination , 2009, International Journal of Legal Medicine.
[20] D. Lamping,et al. Determinants and time course of the postthrombotic syndrome after acute deep venous thrombosis. , 2008, Annals of internal medicine.
[21] A. Roos,et al. Magnetic resonance direct thrombus imaging of the evolution of acute deep vein thrombosis of the leg , 2008, Journal of thrombosis and haemostasis : JTH.
[22] T. Wakefield,et al. Mechanisms of venous thrombosis and resolution. , 2008, Arteriosclerosis, thrombosis, and vascular biology.
[23] S. P. Butler,et al. Aging of Acute Deep Vein Thrombosis Measured by Radiolabeled 99mTc-rt-PA , 2007, Journal of Nuclear Medicine.
[24] Ahmed Tawakol,et al. In vivo 18F-fluorodeoxyglucose positron emission tomography imaging provides a noninvasive measure of carotid plaque inflammation in patients. , 2006, Journal of the American College of Cardiology.
[25] Andrea J. Moore,et al. Targeted Deletion of CCR2 Impairs Deep Vein Thombosis Resolution in a Mouse Model12 , 2006, The Journal of Immunology.
[26] Z. Zhou,et al. Molecular imaging of lung glucose uptake after endotoxin in mice. , 2005, American journal of physiology. Lung cellular and molecular physiology.
[27] G. Ailawadi,et al. Neutrophil Depletion Inhibits Experimental Abdominal Aortic Aneurysm Formation , 2005, Circulation.
[28] Andrea J. Moore,et al. Vein wall remodeling after deep vein thrombosis involves matrix metalloproteinases and late fibrosis in a mouse model. , 2005, Journal of vascular surgery.
[29] Ahmed Tawakol,et al. Noninvasive in vivo measurement of vascular inflammation with F-18 fluorodeoxyglucose positron emission tomography , 2005, Journal of nuclear cardiology : official publication of the American Society of Nuclear Cardiology.
[30] H. Ermert,et al. Ultrasound elastography for the age determination of venous thrombi , 2005, Thrombosis and Haemostasis.
[31] Y. Shiomi,et al. Case report: internal and external jugular vein thrombosis with marked accumulation of FDG. , 2004, The British journal of radiology.
[32] H. Watabe,et al. (18)F-FDG accumulation in atherosclerotic plaques: immunohistochemical and PET imaging study. , 2004, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[33] T. Wakefield,et al. Neutropenia impairs venous thrombosis resolution in the rat. , 2003, Journal of vascular surgery.
[34] T. Baglin,et al. Incidence of recurrent venous thromboembolism in relation to clinical and thrombophilic risk factors: prospective cohort study , 2003, The Lancet.
[35] R. Taillefer,et al. Imaging characteristics of a novel technetium Tc 99m-labeled platelet glycoprotein IIb/IIIa receptor antagonist in patients With acute deep vein thrombosis or a history of deep vein thrombosis. , 2003, Archives of internal medicine.
[36] A. Alavi,et al. Detection of chronic recurrent lower extremity deep venous thrombosis on fluorine-18 fluorodeoxyglucose positron emission tomography. , 2000, Clinical nuclear medicine.
[37] M. Burdick,et al. Neovascularization during venous thrombosis organization: a preliminary study. , 1999, Journal of vascular surgery.
[38] G. Seabrook,et al. Catheter-directed thrombolysis for lower extremity deep venous thrombosis: report of a national multicenter registry. , 1999, Radiology.
[39] H. Büller,et al. Diagnosis of recurrent deep vein thrombosis. , 1995, Haemostasis.
[40] A A Connolly,et al. Deep vein thrombosis. , 1988, BMJ.
[41] T. Herlin,et al. Energy metabolism of human neutrophils during phagocytosis. , 1982, The Journal of clinical investigation.