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E Kurata

Publications and source records attributed to E Kurata.

4 recordsLinked to original sources

[Emergency pleuropneumonectomy via anterior approach to treat chronic hemorrhagic empyema due to massive hemoptysis].

A 67-year-old man with a history of surgical resection of the superior lobe of the left lung and thoracoplasty due to pulmonary tuberculosis occurring approximately 40 years previously, was admitted to the hospital due to recurrent hemoptysis. X-ray films and computed tomography (CT) scans of the chest showed the left thoracic cavity to be filled with empyema, compressing the inferior lobe downward. Since three unsuccessful attempts were made at bronchial artery embolization for hemostasis, yielding hemoptysis of approximately 1,000 ml, emergency surgery was performed. To prevent massive intra-operative hemoptysis, the left pulmonary artery was blocked by median sternotomy. A transverse incision was then made, and thus pleuropneumonectomy could be safely performed. Since it allows early blocking of blood vessels surrounding the hilum of the lung and the main bronchus, anterior approach is useful in treating hemorrhagic empyema and wet pleurisy with internal fistula.

Aged↗

Isometric contraction and relaxation times of right and left ventricles in normal subjects and in patients with right ventricular overloading measured with bidirectional echocardiography.

With the use of bidirectional echocardiography, the isometric contraction (ICT) and relaxation times (IRT) of both ventricles were measured in 14 normal subjects (N), 6 cases with right ventricular (RV) diastolic overloading (DO), and 5 cases with RV systolic overloading (SO). The RVDO group consisted of patients with atrial septal defect of ostium secundum type who had large left-to-right shunting, and the RVSO group those with pulmonary hypertension of various origins. The mean ICT and IRT in N were 28.5 +/- 4.8 and 43.8 +/- 1.7 msec for RV, and 43.3 +/- 5.6 and 60.9 +/- 9.0 msec for left ventricle (LV), respectively. The RVDO group showed no significant change in the mean ICT and IRT of RV (29.7 +/- 4.6 and 54.3 +/- 11.8 msec, respectively), but significantly greater means of ICT and IRT of LV (58.5 +/- 9.5 and 83.6 +/- 14.1 msec, respectively. In the RVSO group, the mean ICT and IRT were 51.0 +/- 4.1 and 86.8 +/- 8.2 msec for RV, and 72.4 +/- 12.2 and 116.0 +/- 20.4 msec for LV, respectively. These values were all significantly greater than the means for both N and RVDO groups, except that the mean ICT of LV was insignificantly different between the RVDO and RVSO groups. It was noted that the intervals of LV tended to increase with the increasing intervals of RV, suggesting the changes in LV function secondarily due to RV overloading. It was concluded that the measurement of ICT and IRT of both ventricles is of clinical value for evaluation of overall cardiac function in the patients with RV overloading.

Adolescent↗