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Biomedical subjects

I Hashizume

Publications and source records attributed to I Hashizume.

28 records · Page 2Linked to original sources

Bilateral carotid body resection in man enhances hypoxic tachycardia.

In three groups of subjects we studied heart rate (HR) and ventilatory responses to progressive eucapnic hypoxia, steady-state hypercapnia with and without hypoxia, and hyperoxic and hypoxic breathholding (BH). Groups were six subjects about 25 years after bilateral carotid body resection (BR), eight subjects of an equally long period after unilateral resection (UR), and three control subjects similar to the study groups in age and pulmonary function (C). During progressive hypoxia, HR increased more in BR than in UR and C subjects. Ventilatory response was lowest in BR subjects (as expected). Steady-state hypoxic hypercapnia (end-tidal PO2, 60 Torr) depressed HR significantly more in C than in BR and UR subjects. Again, ventilatory response was lower in BR than in C subjects. HR progressively increased during BH initiated in hyperoxia (end-tidal PO2, 200 Torr) and hypoxia (end-tidal PO2, 70 Torr). In the BR group, the HR increment during hypoxia was significantly larger than that during hyperoxia. No such difference was apparent in UR and C groups. Thus, hypoxia with or without hypercapnia tends to accelerate HR in BR subjects whereas either less tachycardia or slowing is seen in UR and C subjects.

Asthma↗

Augmentation of CO2 drives by chlormadinone acetate, a synthetic progesterone.

We studied 10 male subjects who were administered chlormadinone acetate (CMA), a potent synthetic progesterone, to clarify the physiological basis of its respiratory effects. Arterial blood gas tension, resting ventilation, and respiratory drive assessed by ventilatory and occlusion pressure response to CO2 with and without inspiratory flow-resistive loading were measured before and 4 wk after CMA administration. In all subjects, arterial PCO2 decreased significantly by 5.7 +/- 0.6 (SE) Torr with an increase in minute ventilation by 1.8 +/- 0.6 l X min-1, whereas no significant changes were seen in O2 uptake. During unloaded conditions, both slopes of occlusion pressure and ventilatory response to CO2 increased, being statistically significant in the former but showing nonsignificant trends in the latter. Furthermore, inspiratory flow-resistive loading (16 cmH2O X l(-1) X s) increased both slopes more markedly after CMA. The magnitudes of load compensation, assessed by the ratio of loaded to unloaded slope of the occlusion pressure response curve, were increased significantly. We concluded CMA is a potent respiratory stimulant that increases the CO2 chemosensitivity and neuromechanical drives in the load-compensation mechanism.

Aged↗

High-performance liquid chromatography of alpha-keto acids in human saliva.

alpha-Keto acids in human mixed saliva collected without stimulation were analysed by reversed-phase ion-pair high-performance liquid chromatography (HPLC). Several alpha-keto acids were found in saliva and their concentrations were: alpha-ketoglutaric acid (KGA), 221 +/- 142; pyruvic acid (PA), 7490 +/- 5600; alpha-ketoisovaleric acid (KIVA), 61 +/- 23; alpha-ketoisocaproic acid (KICA), 137 +/- 79; alpha-keto-beta-methylvaleric acid (KMVA), 41 +/- 19 nmol/dl (mean +/- SD, n = 40). Their levels proved to be lower than those in plasma, except that of PA. Their concentrations in saliva showed individual variation compared with those in blood.

Adult↗

A quantitative evaluation for peripheral respiratory chemosensitivities by the withdrawal test in man.

Ten healthy subjects were tested for their peripheral respiratory chemosensitivities by the withdrawal technique two times on separate days. Hypoxic hypercapnia of PET, O2 75, 65 AND 55 mmHg with PET, CO2, 5 mmHg higher than the control level was replaced by 100% O2 two times with spontaneous respiration. Then, breath-by-breath depression calculated in minute ventilation (delta V) was observed during the period 5-20 sec after the first O2 inhalation. The results were analyzed by the linear relationship between PET, O2 and 1n delta V, and PaO2 and 1n delta V. Delta V at P02 50 mmHg, delta V50, was 9.09 +/- 6.81 liters/min (mean +/- SD) in PET, O2-1n delta V analysis and 9.22 +/- 7.46 liters/min in PaO2-1n delta V analysis, respectively. The averaged day to day variation of delta V50 expressed by SE in % was 5.3% in PET, O2-1n delta V analysis and 11.5% in PaO2-1n delta V analysis, respectively.

Adult↗