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Biomedical subjects

N Momoi

Publications and source records attributed to N Momoi.

5 recordsLinked to original sources

[Coronary sinus atrial septal defect diagnosed by cyanosis after operation of ventricular septal defect].

We have experienced a case of coronary sinus atrial septal defect (ASD) with ventricular septal defect (VSD). Cardiac catheterization revealed a step-up of oxygen saturation in right ventricle, L-R shunt 70.3%, R-L shunt 6.9% and pulmonary hypertension (PH). Since diagnosis of coronary sinus ASD was difficult, the operation was performed under diagnosis of VSD. Although the operation was success, cyanosis appeared after the operation. Contrast echocardiography using subcostal 4 chamber view showed coronary sinus ASD with a large Thebesian valve and the right-to-left shunt of the ASD. The Thebesian valve seemed to lead the venous return flow to the left atrium. Coronary sinus ASD was closed using a Xenomedica patch.

Cyanosis↗

Hemodynamic effects of phosphodiesterase III inhibitor in patients with a large ventricular left-to-right shunt.

The hemodynamic effects of olprinone, a newly synthesized phosphodiesterase (PDE) III inhibitor, were assessed in patients with a large cardiac left-to-right shunt. Ten patients with a large ventricular septal defect (VSD) were evaluated during cardiac catheterization. Olprinone was administered as a bolus, 20 microg/kg body weight, and hemodynamic data were obtained before and after the administration. Heart rate and systemic flow increased significantly after administration. On the other hand, olprinone significantly reduced left and right atrial pressure, the systolic pulmonary/arterial pressure ratio, and systemic vascular resistance. However, pulmonary flow and pulmonary vascular resistance were not changed. These results suggested that olprinone had a positive inotropic effect and selective vasodilator effect on patients with a large ventricular left-to-right shunt. Thus, PDE inhibitors may be beneficial for the treatment of patients with a large VSD.

3',5'-Cyclic-AMP Phosphodiesterases↗

Growth of the neopulmonary valve annulus after arterial switch operation in transposition of the great arteries.

BACKGROUND: It is known that supravalvular pulmonary artery stenosis can occur in patients with d-transposition of the great arteries (TGA) after arterial switch operation (ASO). However, little is known about the growth of the neopulmonary valve annulus after the ASO. This study investigated the growth potential of the neopulmonary (old aortic) valve annulus. METHODS AND RESULTS: Annular diameters of the old aortic and neopulmonary valve were measured from cineangiograms in patients who underwent cardiac catheterizations both before and > 1 year after the ASO. Of 71 patients, 13 (18%) had either a small annulus (< 70% of the expected normal value) or no significant growth of the neopulmonary annulus after the ASO, and 4 (6%) had a pressure gradient of > 30 mm Hg across the valve. The small annulus or no growth of the neopulmonary valve was more frequent in patients with a history of pulmonary artery banding. After the ASO, the valve diameter in patients with a ventricular septal defect was 80 +/- 15% of normal (n = 24), and the value was significantly less than in patients with an intact ventricular septum (91 +/- 11%, n = 47). In all patients with an intact ventricular septum who underwent the one-stage ASO, the valve diameters before and after the ASO were within normal limits, and a significant increase in the pulmonary valve annulus was observed. CONCLUSIONS: These data indicate that not only supravalvular pulmonary stenosis but also pulmonary valvular stenosis due to a small annulus can occur in TGA, especially in patients with a history of pulmonary artery banding and in patients with ventricular septal defect.

Humans↗

[Vibration hazards in quarry workers].

Vibration hazards were surveyed in a population of quarry workers using chipping hammers and to a lesser extent, rock drills. Sixty-nine male quarry workers, aged 49.1 +/- 8.7 and exposed to vibration for 16.4 +/- 5.1 years, were surveyed in 1981-82. They were exposed to vibration for about 2-4 hours per days, mainly under a piece-work pay system. They had a high prevalence of Raynaud's phenomenon (36.2%) and numbness in upper extremities (53.6%). It is considered that the high prevalence was mainly due to large vibration levels in chipping hammers and rock drills and long daily exposure time. The attacks of Raynaud's phenomenon were found predominantly in the left hand, which held chisels, whereas the restriction of motion in the elbow was predominantly in the right arm which pushed chipping hammers. The same 49 male quarry workers in this population were also surveyed in 1976-77 and the prevalence of their complaints between 1976-77 and 1981-82 was compared. The prevalence of Raynaud's phenomenon was the same, but the frequency of the attacks increased between the two periods. The prevalence of other complaints such as numbness, pain and chills in the upper extremities also increased. Between 1976-77 and 1981-82, the prevalence of Raynaud's phenomenon, numbness, and pain in the upper extremities increased in the population of quarriers exposed to vibration for above 2.6 hours per day and 200 days per year, or 600 hours per year. On the other hand, the prevalence of these complaints mostly decreased in the population of quarriers with less exposure.

Adult↗

Percutaneous balloon valvuloplasty of both pulmonary and aortic valves in a neonate with pulmonary atresia and critical aortic stenosis.

We report a case of hydrops fetalis originating from critical aortic stenosis and pulmonary atresia with intact ventricular septum that was diagnosed in utero by echocardiography. We performed a percutaneous balloon valvuloplasty of the bilateral semilunar valves on the 2nd day after birth. We used a stiff-ended guidewire to perforate the pulmonary valve. After valvuloplasty, the aortic valve pressure gradient decreased from 55 to 25 mmHg. The procedure was successful, and the patient's heart condition improved.

Aortic Valve Stenosis↗