Biomedical subjects
S M Chilaia
Publications and source records attributed to S M Chilaia.
[Monitoring of myocardial gases and evaluation of the viability of the preserved heart].
For the evaluation of the viability of a nonfunctioning stored heart, a system of myocardial gases (pO2, pCO2) monitoring was developed and approved . It is shown that myocardial pCO2 monitoring is most informative in evaluation of viability of a stored heart. The character of this curve makes it possible to identify the duration of storage admissible in each concrete case as well as the loss of viability by the heart.
[Left-ventricular bypass: characteristics of homeostasis].
Experiments were conducted on donkeys to study the peculiarities of homeostasis in establishment of left ventricular bypass (LVB) by means of an artificial heart ventricle (AHV). Preliminary modelling of acute cardiac insufficiency makes the work of the AHV effective and ensures longer survival than that among intact animals. However, arterial hypertension and anemia accompanying prolonged work of the AHV and resulting from the interaction of the last named with the cardiovascular system sharply aggravate homeostasis and the course of LVB and lead to early death of the animals.
Long-term circulatory and respiratory support using two artificial ventricles and a fluorocarbon oxygenator.
Using a new heart-lung machine developed at our Institute, experiments were conducted on dogs, donkeys, and monkeys, providing complete and assisted artificial circulation, assisted oxygenation, and perfusion preservation of the heart. The new apparatus consists of two sequentially mounted artificial ventricles working in an antiphase mode; blood oxygenation is accomplished by a reusable oxygenator with a fluorocarbon preoxygenator. Experimental results indicate that clinical use of the apparatus is promising and deserves consideration. The conditions of perfusion were close to physiological conditions and provided long-term survival of the animals. Performance in left ventricular bypass was optimized by monitoring myocardial PO2 and the state of the quick-connect/cut-off assemblies.
[Modelling of acute heart failure: electrode monitoring of myocardial metabolism and the implantation of an artificial heart ventricle].
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[Perfusion preservation of the heart by cardiosynchronized pulsating flow and fluorocarbon oxygenation of the blood].
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[Treatment of heart failure by draining blood from the coronary sinus].
A method of coronary sinus drainage is suggested for the treatment of acute heart failure. This ensures an increase in the arteriovenous gradient of pressure in the coronary system by decreasing the pressure in the coronary sinus which leads to an increase in the orthograde myocardial circulation and systemic pressure as well as to improved cardio-mechanics.
Improvement in intra-aortic balloon pumping and evaluation of its efficacy by electrode methods of control.
A basically new design for the reversing balloon pump has been proposed for increasing the efficacy of intra-aortic balloon pumping (IABP). The device not only causes a significant increase in discharge, but also permits control of the central and peripheral circulation within the desired limits owing to back-and-forth movements (like a piston) of the balloon pump. Standard one- and two-chamber balloon pumps were compared. In addition to traditional hemodynamic and biochemical indexes, the efficacy of IABP was assessed based on electrode monitor control of PO2 and pH in the myocardium, peripheral tissues, and circulating blood. Based on 54 experiments on dogs, it was found that IABP with reversing balloon pumps in synchronous pulsation resulted in survival of 69% of the cases; PO2 and pH levels in the myocardium, tissues, and blood in the coronary sinus were close to normal, and coronary blood flow and peripheral circulation were increased. With standard one-chamber balloon pumps, the survival rate did not exceed 33.4%; PO2 and pH in the peripheral tissues reached critical levels.
[Monitoring of the oxygen balance during prolonged artificial circulation].
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[Effect of fluorocarbon oxygenation of blood (bench studies)].
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[Heart preservation in a cardiopulmonary preparation: methods, conditions, management].
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[Phenomenon of the "stone heart"].
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[Heart transplantation (current state of the problem)].
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[Determination of optimal conditions for biological conservation of the heart using the methods of mathematical design of experiments].
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[Oxygen tension in the blood and on the surface of the heart in a functioning heart-lung preparation].
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[Structure of the veinous sinuses of M. soleus and their role in the origin of thrombosis of the deep veins in the lower limbs].
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[Hemodynamic responses of a heart-lung preparation to preload and left-ventricular bypass].
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