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1.
J Indian Assoc Pediatr Surg ; 28(3): 227-232, 2023.
Article in English | MEDLINE | ID: mdl-37389386

ABSTRACT

Purpose: Despite standard preoperative fasting guidelines, children are subjected to prolonged fasting due to various reasons. This does not reduce gastric residual volume (GRV) further, instead causes hypoglycemia, hypovolemia, and unnecessary discomfort. We calculated the cross-sectional area (CSA) of antrum and GRV in children in fasting state and 2 h after intake of oral carbohydrate-rich fluid, using gastric ultrasound. Methods: Anteroposterior and craniocaudal gastric antral diameters were measured by ultrasonography in the right lateral decubitus position, at fasting and at 2 h after 8 ml/kg of pulp-free fruit juice ingestion. CSA of antrum and GRV was calculated using validated mathematical models. Results: Data of 149 children of age >1-12 years were analyzed. Greater than ninety-nine percent of children emptied ≥95% of the ingested pulp-free fruit juice volume within 2 h. One hundred and seven (71.8%) children had reduced CSA and GRV at 2 h after fruit juice ingestion (2.01 ± 1.00 cm2 and 7.77 ± 6.81 ml) as compared to fasting state (3.18 ± 1.40 cm2 and 11.89 ± 7.80 ml). Fourty-nine (28.2%) children had slightly increased CSA and GRV at 2 h after fruit juice (2.46 ± 1.14 cm2 and 10.61 ± 7.26 ml) than at fasting (1.89 ± 0.92 cm2 and 8.61 ± 6.75 ml), but this increased GRV was grossly lower than limit of risk stomach (26.54 ± 8.95 ml). Conclusion: Carbohydrate-rich drink in the form of pulp-free fruit juice may be safely permitted up to 2 h before anesthetic induction, as it promoted gastric emptying in ≈ 72% of children and 28% of children, although GRV was slightly higher at 2 h after fruit juice ingestion than fasting but remained considerably lower than limit of risk stomach.

3.
Ann Card Anaesth ; 12(1): 49-52, 2009.
Article in English | MEDLINE | ID: mdl-19136755

ABSTRACT

The state of vasoplegia in immediate post-cardiopulmonary bypass period is characterized by severe hypotension, supranormal cardiac output, low systemic vascular resistance (SVR), and resistance to vasoconstrictors. We could successfully use induced mild hypothermia to increase SVR, and could avoid very high doses of nor-epinephrine (>0.3 mcg/kg/min) in the background of severe pulmonary hypertension (systolic pulmonary pressure> 90 mmHg). Its effects such as decreased oxygen demand, positive inotropy and better right ventricle performance probably helped to improve oxygenation in presence of pulmonary oedema.


Subject(s)
Cardiopulmonary Bypass/adverse effects , Hypothermia, Induced , Mitral Valve Stenosis/surgery , Pulmonary Edema , Vasodilation , Adult , Heart Failure/complications , Humans , Hypotension/etiology , Male , Mitral Valve Stenosis/complications , Pulmonary Edema/etiology , Pulmonary Edema/therapy , Rheumatic Heart Disease/complications , Syndrome , Treatment Outcome , Vascular Resistance
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