PubMed Health⌕ Search

PubMed · 7437765

Arterial puncture.

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

1980-09-06. Arterial puncture.. https://pubmed.ncbi.nlm.nih.gov/7437765/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Impairment in forearm endothelium-dependent vasodilation after heart transplantation.

BACKGROUND: Endothelial dysfunction has been found in the peripheral circulation of patients with severe heart failure. However, whether the endothelial dysfunction improves after heart transplantation remains unknown. Our aim was to assess the forearm endothelium-dependent vasoreactivity one and six months after heart transplantation. METHODS: We studied 12 patients using high resolution brachial artery ultrasound to assess flow-mediated dilation induced by reactive hyperemia and nitroglycerin induced dilation (NTGdil). RESULTS: One month after heart transplantation, endothelium-dependent vasodilation was significantly impaired in 10 patients (83%), while it was preserved in the remaining two (17%) (0.4%+/-2.4% vs 9.9%+/-4.6%, respectively, P=.001). NTGdil was normal in both groups (12%+/-10% vs 23%+/-5%, respectively, P=NS). At six months, endothelial dysfunction was present in all patients including the two patients without endothelial dysfunction at the first study. CONCLUSIONS: The present study demonstrates that peripheral endothelial dysfunction is present after heart transplantation despite the improvement in left ventricular function. More studies are needed to prove if endothelial dysfunction reversion may improve survival in heart transplantation.

Brachial Artery↗

Plant sterols lower LDL cholesterol without improving endothelial function in prepubertal children with familial hypercholesterolaemia.

In adults with familial hypercholesterolaemia (FH), cholesterol lowering with statins has been shown to improve the endothelial function, a hallmark of early atherogenesis. Currently, therapeutic options for treating high cholesterol levels in FH children are limited. Plant sterols safely and effectively reduce serum cholesterol concentrations by inhibiting cholesterol absorption. Therefore, we evaluated the effect of plant sterols on cholesterol and vascular function in prepubertal children with FH. We included 41 children (5-12 years old) with FH in a double-blind crossover trial using spreads containing 2.3 g of plant sterols (mainly sitosterol and campesterol) per 15 g spread and a placebo spread for a 4-week period, separated by a 6-week washout period. Lipid levels and endothelial function were assessed after both 4-week treatment periods. Endothelial function was assessed as flow-mediated dilation (FMD) of the brachial artery using a wall tracking system. Data were compared to those of 20 healthy controls. Intake of 2.3 g plant sterols per day decreased total cholesterol (-11%) and low-density cholesterol (-14%) as compared to placebo spread in FH children. FH children treated with placebo spread were characterized by an impaired FMD compared to healthy control children (7.2% +/- 3.4% versus 10.1% +/- 4.2%, p < 0.005). However, the reduction of LDL in FH children did not improve FMD (placebo: 7.2% +/- 3.4% versus plant sterols: 7.7% +/- 4.1%). In conclusion, the present study shows a clear reduction of LDL cholesterol by plant sterol treatment. However, short-term plant sterol treatment does not improve the endothelial function in FH children.

Brachial Artery↗

A comparison of five techniques for detecting cardiac activity in infants.

BACKGROUND: The new guidelines for cardiopulmonary resuscitation recommend that laypersons should begin chest compressions without checking for a pulse because the pulse check has serious limitations in accuracy. We determined the efficacy of the most suitable method to search for cardiac activity in infants. METHODS: Twenty-eight nurses tried to detect infants' cardiac activity and determined their heart rates with five different techniques: palpation of brachial pulse, carotid pulse, femoral pulse, apical impulse and auscultation of apical impulse with the naked ear (direct auscultation technique). RESULTS: The mean time interval required to find the pulse within 30 s in the auscultation, the apical, the brachial, the carotid and the femoral were 2.4 +/- 1.2, 3.5 +/- 2.7, 4.0 +/- 2.7, 9.9 +/- 7.0 and 9.1 +/- 5.9 s, respectively. The required time was significantly shorter in the auscultation method than in the palpation of carotid and femoral pulses. The percentage and 95% confidence intervals (95% CI) of pulses identified within 10 s (= the number of the correct identified within 10 s/the number of all cases) in auscultation, apical, brachial, carotid and femoral palpations were 100.0% (95% CI 51.8, 100), 75.0% (95% CI 28.9, 89.3), 73.1% (95% CI 52.2, 88.4), 50.0% (95% CI 30.6, 69.4) and 42.9% (95% CI 24.5, 62.8), respectively. These values were greater in the auscultation method than in all the palpation methods. CONCLUSIONS: The direct auscultation technique was more rapid and accurate than any other techniques to determine cardiac activity without instruments. It is suggested that direct a auscultation technique is also superior to the palpation of brachial artery in cardiopulmonary resuscitation in infants.

Brachial Artery↗