Influence of long-term glycemic control on the development of cardiac autonomic neuropathy in pediatric patients with type I diabetes.
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Indications for cardiac pacing continue to expand. Pacing to improve functional capacity, which is now common, relies on careful patient selection and technical improvements, such as complex software algorithms and diagnostic capabilities.
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Preliminary results of the new generation CT scanners in the study of the heart and coronary arteries, are reported, after an overview of basic anatomy, physiology and main technical problems. Comparison is made with the other conventional procedures. The clinical validation of cardiac CT is under way while preliminary results are very encouraging. However, for cardiac CT to become an examination of first choice in the study of the heart and coronary arteries, spatial resolution should be improved and acquisitions of 15 cm volume with less than 15 sec breath-hold should be feasible. The improvement in cardiac synchronization and temporal resolution will allow a kynetic systolic as well as diastolic study. This is going to be possible with the new generation CT scanners able of 16 or 32 sections per second.
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The paper deals with detection of the QRS complex of a cardiac signal at the level of interferences by the rank method. An algorithm is proposed to detect informational cardiac pulses of an electrocardiographic signal and its temporary ranges. The use of such algorithms provides portable devices to examine an electrocardiographic signal when the patient freely moves under high interference.
OBJECTIVE: We studied the effect of long-term, high-altitude hypoxia on cardiac myosin, actin, and troponin T (TnT) isoforms and Ca(2+)- and Mg(2+)-activated myofibrillar adenosine triphosphatase (ATPase) activities in fetal and adult sheep. METHODS: We exposed pregnant (beginning at day 30 of gestation) and nonpregnant sheep to high altitude (3820 m) for 110 days. Myosin, actin, and TnT isoforms were analyzed by Western analysis. In purified myofibrillar preparations, Ca(2+)(-) and Mg(2+)-ATPase activities were measured by the appearance of inorganic phosphate after the addition of NaATP and various concentrations of either calcium or magnesium to the reaction mixture. RESULTS: We found no change in myosin, actin, or TnT isoform composition after exposure to long-term hypoxia in either fetal or adult sheep. However, Mg(2+)-activated myofibrillar ATPase activity decreased significantly in the right ventricle of both fetus and adult after hypoxic exposure. There was also a significant maturational increase in both Ca(2+)- and Mg(2+)-ATPase activity in control animals. CONCLUSION: The decrease in Mg(2+)-activated myofibrillar ATPase activity might affect the decrease in cardiac contractility previously noted in the right ventricle of fetal sheep after exposure to long-term hypoxia. Likewise, the increase in Ca(2+)- and Mg(2+)-activated ATPase activities from the fetus to adult could partially explain the previously found maturational increase in cardiac contractility.
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