scholarly journals THE RELATION BETWEEN CORONARY DOMINANCE AND MULTI VESSEL INVOLVEMENT

2020 ◽  
Vol 8 (3.2) ◽  
pp. 7639-7643
Author(s):  
S. Priyadharshini ◽  
◽  
M. Sivakumar ◽  
Mark Christopher Arokiaraj ◽  
V.Nagaguhan ◽  
...  
2003 ◽  
Vol 10 (4) ◽  
pp. 728-732 ◽  
Author(s):  
Peter Waldenberger ◽  
Gustav Fraedrich ◽  
Ammar Mallouhi ◽  
Werner R. Jaschke ◽  
Reinhold Perkmann ◽  
...  

2020 ◽  
Vol 2020 (12) ◽  
Author(s):  
Alison M Wallace ◽  
George D Oreopoulos ◽  
Yoga R Rampersaud ◽  
Thomas K Waddell

Abstract Here we describe the successful outcome of a complex and challenging resection of a left-sided pancoast tumour involving the left subclavian artery and vertebral bodies. The resection was performed following neoadjuvant chemoradiotherapy in a multi-staged fashion involving multiple teams including thoracic surgery, plastic surgery, neurosurgery and vascular surgery. Each operation was less than 6 h, without complication, and the patient was discharged within 1 week of each procedure. This case report highlights the importance of multidisciplinary team collaboration and planning in order to achieve a successful oncologic outcome and a good quality of life following treatment of these challenging tumours. The patient had a good functional outcome and no evidence of recurrence 1.5 years later.


Rheumatology ◽  
2021 ◽  
Vol 60 (Supplement_1) ◽  
Author(s):  
Owen Cronin ◽  
Neil D McKay ◽  
Hannah Preston ◽  
Helen Harris ◽  
Barbara Hauser

Abstract Background/Aims  Giant cell arteritis with large vessel vasculitis (LV-GCA) represents a distinct, less researched sub-category of giant cell arteritis (GCA). In comparison to cranial GCA, the patient’s diagnostic pathway is less well described and it is thought that LV-GCA is underdiagnosed, including in patients with polymyalgia rheumatica and cranial-GCA. Advances in imaging (e.g. PET-CT) and treatment (tocilizumab), have provided additional options in the diagnosis and management of LV-GCA. The aim was to describe the contemporary clinical journey for patients diagnosed with LV-GCA. Methods  The electronic patient health record system in NHS Lothian (TrakCare) was used to collect relevant data. Patients with imaging-confirmed large vessel vasculitis, diagnosed with GCA after 1 January 2017 were included. Follow-up was until August 2020. Results  Eighteen patients with LV-GCA were included. The mean age was 65 years and 66.7% were female. Two patients had known cranial-GCA but 89% of patients were diagnosed exclusively with large vessel involvement. The most common symptoms were malaise (55%), weight loss (55%), polymyalgia rheumatica (55%) and limb claudication (44%). Pyrexia of unknown origin was a feature in only 17% of patients. Two patients were asymptomatic and were investigated on the basis of raised inflammatory markers. Mean CRP at baseline was 99mg/L and ESR 85mm/hour. The mean time from symptom-onset to diagnosis was 6.8 months (range 1 to 15 months). Sixteen patients (89%) were reviewed by at least one other secondary care specialist. One third of patients were referred from General Medicine followed by Vascular Surgery (16%) and General Practice (16%). 7/18 patients were inpatients at the time of referral. 56% of patients required two modalities of imaging to confirm large vessel involvement. The most commonly used imaging techniques (in descending order) were CT-Chest/Abdomen/Pelvis, CT-angiogram, PET-CT and Vascular Ultrasound. 50% of patients underwent follow-up imaging, most commonly MR- or CT-angiography. Mean follow-up was for 1.6 years. The mean prednisolone dose at 3 months (n = 18) was 24mg daily and 8mg at 12 months (n = 12). 28% of patients relapsed during the follow-up period at 4, 5, 8, 9 and 24 months post-diagnosis. 7/18 patients were commenced on methotrexate for steroid-side effects or for relapse. 8/18 received subcutaneous tocilizumab in combination with methotrexate in two cases. Three patients were started on azathioprine but only one continued. Conclusion  In modern-day clinical practice, patients with LV-GCA experience a longer time to diagnosis than those with cranial symptoms. Patients with LV-GCA can experience an array of constitutional symptoms. Frequently, more than one imaging modality is required to confirm LV-GCA and the majority of patients will have seen other hospital specialists or have been admitted to hospital before diagnosis. Methotrexate and tocilizumab are the most frequently-used and effective steroid-adjunct in this single-centre cohort. Disclosure  O. Cronin: None. N.D. McKay: Consultancies; Gilead. Other; Has received support for conference attendance from Pfizer and Gilead, Has received educational support from UCB, Gilead, Celgene, Biogen, Sanofi, Abbvie, Novartis, Pfizer. H. Preston: None. H. Harris: None. B. Hauser: None.


Circulation ◽  
2020 ◽  
Vol 142 (Suppl_3) ◽  
Author(s):  
Ramzi Dudum ◽  
Zeina A Dardari ◽  
David Feldman ◽  
Daniel Berman ◽  
Matthew J Budoff ◽  
...  

Objectives: We sought to assess characteristics of diffuse coronary artery calcium (CAC) phenotypes and their associations with cause-specific mortality. Background: CAC is a measure of subclinical atherosclerosis and improves risk stratification. CAC characteristics including vessel involvement, number of vessels, volume, and density have been shown to differentially impact risk. Less is known about clinical predictors of a diffuse CAC phenotype and its impact on cause-specific mortality. Methods: The CAC Consortium is a retrospective, multi-site cohort of 66,636 participants without CHD who underwent CAC scoring. Risk factor data were collected at enrollment or scan. Participants with CAC>0 were included—CAC area, CAC density, and the CAC index of diffusion (the percentage of total CAC in the vessel with the highest CAC score) were calculated and the association between CAC characteristics and CVD- and CHD-specific mortality was assessed. Results: In 28,147 study participants (mean age 58.3 years, 25% female, and 89.6% white), ~66% had ≥2 calcified vessels. Diabetes, hypertension, and hyperlipidemia were predictors of multivessel involvement (p<0.001). After controlling for CAC score, those with 4-vessel CAC had more CAC area involved with less dense calcification compared to those with 1-vessel involvement. After adjustment, those with CAC score 1-299 had a graded increase in CVD- and CHD-specific mortality with increasing vessel number compared with 1-vessel CAC. No difference was seen for individuals with CAC >300. Among those with multivessel CAC involvement, all-cause survival was significantly worse in diffuse compared to other phenotypes. Conclusion: Diffuse CAC involvement was characterized by less dense calcification, more CAC area, multiple coronary vessel involvement, and presence of certain traditional risk factors. Multivessel CAC is associated with increased CVD- and CHD-specific mortality, particularly among CAC scores 1-299.


2013 ◽  
Vol 5 (2) ◽  
pp. 173-181 ◽  
Author(s):  
NI Sharafat ◽  
M Khalequzzaman ◽  
M Akhtaruzzaman ◽  
AK Choudhury ◽  
S Hasem ◽  
...  

Background: It has been found that there is strong association of QT dispersion and QT dispersion ratio with extent and severity of coronary artery disease. Qualitative importance of QTc dispersion on the base line ECG in patients with MI is recognized clinically but quantification of this phenomenon is less commonly used in clinical practice, which might be a better independent risk predictor of this group of patients. Methods: A total of 100 patients were selected, Study populations sub-divided into two groups on the basis of QTc dispersion. In group I (comparison group): QTc dispersion is <60 milliseconds (msec) in group II (study group) : QTc dispersion e”60milliseconds(msec). 50 patients in each group. QT dispersion was calculated on standard resting 12 lead ECGs. QT interval was measured from the beginning of the inscription of the QRS complex to the point at which the T wave returned to the isoelectric line. Angiographic severity of coronary artery disease was assessed by- Vessel score, Friesinger score and Leaman score. Interpretation of coronary angiogram was reviewed by at least two cardiologists. . Results: The mean vessel score for group I patients was 1.16±0.68 and that of group II patients was 2.30±0.64 and the mean difference was statistically significant (p<0.05). Patients those had single vessel involvement had mean QTc dispersion 57.05, patients those had double vessel disease mean QTc dispersion was 102.00 and patients those had triple vessel involvement had mean QTc dispersion 177.60. There was a strong positive correlation with the QTc dispersion and increasing number of vessel involvement (Pearson’s correlation coefficient). The mean Friesinger score for group I patients was 4.84±2.56 and that of group II patients was 9.80±2.60. The mean difference was significantly (p<0.05) higher in group II patients. There was a strong positive correlation between the QTc dispersion and Leaman score (Pearson’s correlation coefficient). In group I patients 56% had insignificant coronary artery disease and 44% had significant coronary artery disease defined by Friesinger index (n=100). In group II patients 6% had Insignificant coronary artery disease & had 94% significant coronary artery disease. Conclusion: QTc dispersion>60 ms had independent predictive value for the severity of coronary artery disease. The greater the QTc dispersion the higher the number of coronary artery involvement. We observed that there is a positive correlation between prolonged QT dispersion and coronary artery disease severity in terms of Vessel score, Friesinger score, Leaman score. DOI: http://dx.doi.org/10.3329/cardio.v5i2.14322 Cardiovasc. j. 2013; 5(2): 173-181


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