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Biomedical subjects

N Suwa

Publications and source records attributed to N Suwa.

At least 37 records · Page 2Linked to original sources

Left ventricular stiffness and chamber geometry in the pressure-overloaded hypertrophied heart.

Pressure-overloaded hypertrophy of the left ventricle (LV) was produced by coarctation of the ascending aorta in 7 dogs. The overall mean weight of the left ventricle (LVW) was 7.86 +/- 1.49 (S.D.) g/kg body weight; (normal, 5.99 +/- 0.70 g/kg: p less than 0.05). After potassium arrest, pressure-volume (P-V) relationships were examined with the left ventricles isolated from the normals and from the dogs of left ventricular hypertrophy (LVH-dogs). In both groups, the P-V relationships could be expressed by an equation deltaV=a-be-cP throughout the range of filling pressure of 2.5 to 35 cmH2O, where deltav was the actual volume change of LV, P intraventricular pressure, and a, b and c constants. A sensitive index of LV stiffness, the half-inflation pressure (h), was defined as 1n (2b/a)/c. In hypertrophied hearts, h was 10.5 +/- 0.7 cmH2O; (normal 8.0 +/- 0.4 cmH2O; P less than 0.001). The ratio of LVW to LVVp=h (the left ventricular volume at h) in hypertrophy, which was related to the LV chamber geometry, was 3.1 +/- 0.6 in contrast with the normal value of 2.0 +/- 0.3. The development of concentric hypertrophy was thus demonstrated. Moreover, h was closely correlated with LVW/LVVp=h in both the normals and the LVH-dogs (r=0.83; p less than 0.01). On the other hand, an index of LV wall stiffness h/LVW/LVVP=h was relatively constant. Therefore, the increase of LV stiffness in the LVH-dogs was attributed to the change in chamber geometry.

Animals↗

Two cases of acute pandysautonomia.

Two men had acute nonprogressive pandysautonomia. Both of them showed orthostatic hypotension, fainting in upright position, pupillary disturbances, diminished sweating, anacidity, and impotence. Case 1 showed considerable but inadequate improvement within 31 months. Case 2 recovered completely after 11 months. Clinical and pharmacodynamic investigations suggested that the main lesion was located in postganglionic fibers in case 1 and in preganglionic fibers in case 2. The cause of this disorder is unknown, although both patients had undergone substantial weight loss.

Acetylcholine↗

Analysis of diastolic pressure-volume relation of the canine left ventricle: half-inflation pressure as an index of left ventricular compliance.

A sensitive index was proposed for the determination of left ventricular compliance. In the isolated potassium-arrested canine left ventricle, the pressure-volume (P-V) relationship was expressed as deltaV=a-be-cP throughout the range of filling pressure from 0 to 40 cmH2O, where deltaV and P were the actual volume change and intraventricular pressure, and a, b and c were constants. Then, half-inflation pressure (h) was calculated from h=[ln(2b/a)]/c. Left ventricular weight (LVW), intraventricular volume (LVV), ventricular external radius (ro) and internal radius (ri) were obtained from the measurements on the left ventricle, fixed at a filling pressure of 10 cmH2O. Then, LVVp=h, ro and ri at h were calculated. In the normal canine hearts, h was well correlated to LVW/LVVp=h and [(ro-ri)/ri]p=h. On the other hand, h/LVW/LVVp=h and h/[(ro-ri)/ri]p=h were constant and independent of LVW within a range of 40 to 150 g. These ratios rose markedly in the state of rigor mortis. From these results, it was concluded that h/LVW/LVVp=h and h/[(ro-ri)/ri]p=h depended on the left ventricular wall stiffness. And h was influenced by changes in LVW/LVVp=h and [(ro-ri)/ri]p=h in the absence of changes in intrinsic muscle stiffness.

Animals↗