Blood Velocity Variation in Right Renal and Superior Mesenteric Arteries During Cardio-pulmonary Bypass
Ориентир для пациента и семьи
Простыми словами
Автоматическая сводка по структурированным данным реестра. Она помогает сориентироваться, но не заменяет официальный протокол или оценку врача.
- Что изучают
- В протоколе указаны: transesophageal echocardiogram.
- Кому может быть актуально
- Состояния в реестре: Heart Surgical Procedure. Базовые параметры: от 18 лет · Все.
- Что важно проверить
- Возраст, диагноз и пол — только базовые ориентиры. Предыдущее лечение, анализы и другие обязательные условия указаны ниже в критериях участия.
- Где проводится
- Италия
- Следующий шаг
- Сохраните исследование, покажите его лечащему врачу и уточните актуальный статус у исследовательского центра. Расходы, документы и поездка →
Не всё понятно в терминах? Прочитайте наш гид для пациентов →
Обзор
The cardiopulmonary by-pass technique, used in cardiac surgery to obtain a bloodless operating field and an immobile heart, determines important effects on the blood vessel wall, especially when a continuous and non-continuous blood flow is used. In fact, a reduction in Nitric Oxide (NO) production by the endothelium, an increase in systemic vascular resistance and an increased risk of cerebral and renal hypoperfusion have been observed and can result in potential organ damage. Acute kidney injury (AKI) after heart surgery is a major cause of mortality and morbidity. Its incidence varies according to different definitions, but can reach 30%. In some series, 1-5% of patients require renal replacement therapy in the postoperative period presenting a mortality that can reach 50-70%. However, even more limited increases in serum creatinine are associated with worsening prognosis and the risk of chronic kidney disease. The pathophysiology of AKI in cardiac surgery is complex and still partly unknown.Recently a technique has been described that allows to measure the blood velocity in the right renal artery and in the superior mesenteric artery using the transesophageal echocardiogram (TEE); this technique allows to view these arteries and measure the speed of the blood with good precision because the insonation angle (ie the angle formed by the ultrasound flow and the direction of the blood vessel) is adequate. In cardiac surgery, this methodology allows you to monitor blood velocity in the right renal artery and superior mesenteric artery during surgery. Some authors have used it to conduct pilot studies in which the blood velocity values in the renal arteries during cardiac surgery were used to calculate the pulsatility and resistivity indices, as predictors of the risk of postoperative AKI. At present, therefore, despite the fact that TEE is routinely used for monitoring renal perfusion during cardiac surgery, the blood velocity in the renal and mesenteric arteries has been little studied during cardiopulmonary by-pass (CPB) and has never been evaluated during CPB with continuous flow; in particular, the possible variation in blood velocity measured during CPB compared to the baseline values measured before extracorporeal circulation and its correlation with the onset of postoperative renal failure is not known.
Подробное описание
The cardiopulmonary by-pass (CPB) technique, used in cardiac surgery to obtain a bloodless operating field and an immobile heart, determines important effects on the blood vessel wall, especially when a continuous and non-continuous blood flow is used. In fact, a reduction in NO production by the endothelium, an increase in systemic vascular resistance and an increased risk of cerebral and renal hypoperfusion have been observed and can result in potential organ damage.
Acute kidney injury (AKI) after heart surgery is a major cause of mortality and morbidity. Its incidence varies according to different definitions, but can reach 30%. In some series, 1-5% of patients require renal replacement therapy (RRT) in the postoperative period presenting a mortality that can reach 50-70%. However, even more limited increases in serum creatinine (sCr) are associated with worsening prognosis and the risk of chronic kidney disease (CKD). The pathophysiology of AKI in cardiac surgery is complex and still partly unknown. It is believed that one of the main causative factors is hypoperfusion and renal hypoxia, in particular of the medullary region; this would result in a vasoconstriction of the afferent arterioles to the glomerulus and a reduction in filtration. Risk factors associated with the increased incidence of AKI include bleeding, use of the aortic pump, excessive cardiopulmonary bypass duration, excessive haemodilution, insufficient pump flow, or insufficient blood pressure. Hypothermia, which also has a protective effect against hypoperfusion and tissue hypoxia, could induce AKI by increasing renal vascular resistance and favoring medullary hypoxia during subsequent rewarming.
In addition to AKI, another complication of cardiac surgery, rarer but associated with a higher mortality, is acute mesenteric ischemia; the most frequent type is non-occlusive mesenteric ischemia (NOMI) which seems to have as a predisposing cause a reduction or maldistribution of splanchnic blood flow and the use of vasoconstrictors.
Recently a technique has been described that allows to measure the blood velocity in the right renal artery and in the superior mesenteric artery using the transesophageal echocardiogram (TEE); this technique allows to view these arteries and measure the speed of the blood with good precision because the insonation angle (ie the angle formed by the ultrasound flow and the direction of the blood vessel) is adequate. In cardiac surgery, this methodology allows you to monitor blood velocity in the right renal artery and superior mesenteric artery during surgery. Some authors have used it to conduct pilot studies in which the blood velocity values in the renal arteries during cardiac surgery were used to calculate the pulsatility and resistivity indices, as predictors of the risk of postoperative AKI. The calculation of these indices, however, requires the use of a pulsatile blood flow to generate a periodic variation of the blood velocity, and they are not evaluable during CPB since the current practice in almost all centers is to use a continuous blood flow. At present, therefore, despite the fact that TEE is routinely used for monitoring renal perfusion during cardiac surgery, the blood velocity in the renal and mesenteric arteries has been little studied during CPB and has never been evaluated during CPB with continuous flow; in particular, the possible variation in blood velocity measured during CPB compared to the baseline values measured before extracorporeal circulation and its correlation with the onset of postoperative renal failure is not known.
Вмешательства
- Диагностический тест transesophageal echocardiogram
To measure mean blood velocity at the level of the right renal and superior mesenteric artery
Первичные конечные точки
- Comparison of right renal artery mean blood velocities before and during cardiopulmonary by-pass (CPB) [Срок оценки: Basal 1: up to 10 minutes after induction of anesthesia and placement of transesophageal probe]
- Comparison of right renal artery mean blood velocities before and during cardiopulmonary by-pass (CPB) [Срок оценки: Basal 2: up to 30 minutes after sternotomy in conditions of hemodynamic stability]
- Comparison of right renal artery mean blood velocities before and during cardiopulmonary by-pass (CPB) [Срок оценки: CPB 5 min: during CPB, 5 minutes after the end of the first cardioplegia]
- Comparison of right renal artery mean blood velocities before and during cardiopulmonary by-pass (CPB) [Срок оценки: CPB 30 min: during CPB, 30 minutes after the end of the first cardioplegia]
- Comparison of right renal artery mean blood velocities before and during cardiopulmonary by-pass (CPB) [Срок оценки: CPB 60 min: during CPB, 60 minutes after the end of the first cardioplegia]
Вторичные конечные точки (12)
- Comparison of superior mesenteric artery mean blood velocities before and during cardiopulmonary by-pass (CPB) [Срок оценки: Basal 1: up to 10 minutes after induction of anesthesia and placement of transesophageal probe]
- Comparison of superior mesenteric artery mean blood velocities before and during cardiopulmonary by-pass (CPB) [Срок оценки: Basal 2: up to 30 minutes after sternotomy in conditions of hemodynamic stability]
- Comparison of superior mesenteric artery mean blood velocities before and during cardiopulmonary by-pass (CPB) [Срок оценки: CPB 5 min: during CPB, 5 minutes after the end of the first cardioplegia]
- Comparison of superior mesenteric artery mean blood velocities before and during cardiopulmonary by-pass (CPB) [Срок оценки: CPB 30 min: during CPB, 30 minutes after the end of the first cardioplegia]
- Comparison of superior mesenteric artery mean blood velocities before and during cardiopulmonary by-pass (CPB) [Срок оценки: CPB 60 min: during CPB, 60 minutes after the end of the first cardioplegia]
- Correlation between mean blood velocity values and hemodynamic parameters: cardiopulmonary by-pass (CPB) blood flow [Срок оценки: CPB 5 min: 5 minutes after the end of the first cardioplegia, during CPB]
- Correlation between mean blood velocity values and CPB blood flow [Срок оценки: CPB 30 min: 30 minutes after the end of the first cardioplegia, during CPB]
- Correlation between right renal artery mean blood velocity values and CPB blood flow [Срок оценки: CPB 60 min: 60 minutes after the end of the first cardioplegia]
- Correlation between superior mesenteric artery mean blood velocity values and cardiopulmonary by-pass (CPB) blood flow [Срок оценки: CPB 5 min: 5 minutes after the end of the first cardioplegia]
- Correlation between superior mesenteric artery mean blood velocity values and CPB blood flow [Срок оценки: CPB 30 min: 30 minutes after the end of the first cardioplegia, during cardiopulmonary by-pass]
- Correlation between superior mesenteric artery mean blood velocity values and CPB blood flow [Срок оценки: CPB 60 min: 60 minutes after the end of the first cardioplegia]
- Correlation between right renal artery mean blood velocity values and hemodynamic parameters (mean arterial pressure, MAP) [Срок оценки: CPB 5 min: 5 minutes after the end of the first cardioplegia]
Критерии участия
Критерии включения
- age> 18 years
- written informed consent
- cardiac surgery with cardiopulmonary bypass (CPB)
- New York Heart Association (NYHA) class I, II, III
- preoperative serum creatinine less than 1.2 mg / dl
Критерии исключения
- contraindications to Trans Esophageal Ultrasound (TEE) based on American Society of Anesthesiologists (ASA) recommendations (esophageal or gastric diseases or previous surgery)
- history of non-coronary arterial pathologies
- atrial fibrillation
- preoperative serum creatinine greater than 1.2 mg / dl • NYHA class IV
- emergency cardiac surgery
Критерии приведены из реестра в оригинале (на английском). Окончательную оценку соответствия проводит исследовательский центр.
Здоровые добровольцы: Нет
Дизайн исследования
- Модель наблюдения
- Когортное
Центры проведения
Италия · 1 центр
- Fondazione Policlinico Universitario A,Gemelli IRCCS — Roma
Идентификаторы
NCT: NCT06009809 · 4708