We analyzed the growth pattern of tumor masses and the survival of 39 asymptomatic Italian patients with a total of 59 small (less than or equal to 5 cm in diameter) hepatocellular carcinomas arising from cirrhosis. The total length of the observation period ranged from 90 to 962 days, with an average of 364 +/- 229 (mean +/- S.D.). Doubling time ranged from 27.2 to 605.6 days (mean +/- S.D., 204.2 +/- 135; median = 171.6 days). Three different growth patterns were recognized: (a) tumors with no or very slow initial growth pattern (doubling time greater than 200 days), 10 cases (37%); (b) tumors with declining growth rate over time, 9 cases (33.4%); and (c) tumors with almost constant growth rate, 8 cases (29.6%). Using the stepwise discriminant analysis, we found a score based on albumin, alcohol intake, number of nodules, echo pattern and histological type that allowed a correct prediction of short doubling time (less than or equal to 150 days) in 55.6%, medium doubling time (151 to 300 days) in 60% and long doubling time (greater than 300 days) in 100% of cases. The estimated survival rate of the 39 patients, calculated by the Kaplan-Meier method was 81% at 1 yr, 55.7% at 2 yr and 21% at 3 yr. Stepwise discriminant analysis showed that a score based on sex, HBsAg status, alcohol consumption, ascites, gamma-glutamyltranspeptidase, prothrombin time, Child-Pugh class and all the sonographical parameters could predict 2-yr survival in 100% of cases. We conclude that great variability of growth patterns exists among and within small hepatocellular carcinomas. Prediction of subsequent growth rate is unreliable in most cases.(ABSTRACT TRUNCATED AT 250 WORDS)
We studied a group of obese hyperandrogenic amenorrheic women to determine the effects of weight loss on anthropometry, hormonal status, menstrual cycles, ovulation, and fertility. Fourteen women had polycystic ovaries, two the hyperandrogenism-insulin resistance-acanthosis nigricans syndrome, one hirsutism of adrenal origin, and three idiopathic chronic anovulation. The duration of amenorrhea before the study ranged from 3-17 months [mean, 8.6 +/- 4.5 (+/- SD)]. All women ate a hypocaloric diet for a period of 8.0 +/- 2.4 months. Weight loss ranged from 4.8 to 15.2 kg (mean, 9.7 +/- 3.1 kg; 1.35 +/- 0.56 kg/month) and the waist to hip ratio, which was used as a measurement of body fat distribution, decreased from 0.86 +/- 0.1 to 0.81 +/- 0.06 (P less than 0.0001). The women's mean plasma testosterone and LH concentrations decreased significantly (P less than 0.001 and P less than 0.005, respectively). A significant positive correlation was found between the decreases in plasma testosterone levels and the decreases in glucose-stimulated insulin levels. Moreover, the decreases in the waist to hip ratio correlated positively with the decreases in glucose-stimulated insulin levels and inversely with the decreases in plasma 17 beta-estradiol. No relationships were found between weight loss and the changes in plasma insulin, steroid, and gonadotropin concentrations. The responsiveness to the weight reduction program was evaluated by comparing the number of menstrual cycles during the study period with the number reported before it. Eight women had significantly improved menstrual cyclicity (responders), while 12 did not (nonresponders). The clinical characteristics and hormone values were similar in responder and nonresponder women. In the group as a whole, 33% of the menstrual cycles during the study were ovulatory, and 4 pregnancies occurred. Hirsutism improved significantly in more than half of the women, as did acanthosis nigricans when present. We conclude that weight loss is beneficial in all obese hyperandrogenic women regardless of the presence of polycystic ovaries, the degree of hyperandrogenism, and the degree and distribution of obesity.
The authors compared the Doppler ultrasonographic pattern of hepatic veins (HVs) in a group of 60 patients affected by liver cirrhosis and in 65 healthy subjects comparable for sex and age to (a) detect possible differences in HV waveform in the two groups and (b) investigate the relationship of these differences with the severity of the disease (according to Child-Pugh classification) and the modifications of systemic hemodynamics. The waveform of HVs was arbitrarily classified into three patterns: HV0, a normal waveform; HV1, lower oscillations without the reversed phase; and HV2, completely flat waveform. The resistivity index of the superior mesenteric artery, reflecting the peripheral splanchnic impedance and the hyperdynamic circulation, was also measured in a subgroup of 45 cirrhotic patients. The waveform of HVs in all healthy subjects corresponded to the HV0 pattern. Among cirrhotic patients, HV0 was found in 30 (50%), HV1 in 19 (31.7%), and HV2 in 11 (81.3%). The severity of functional impairment was greatest in the HV2 group and least in the HV0 group. This was significantly correlated with the decrease of the resistivity index in the superior mesenteric artery in the subgroup of 45 patients. Changes in the normal HV waveform could be considered a useful adjunctive tool for the noninvasive evaluation of liver disease. The pathophysiology of these changes in HV blood flow is still unclear. The significant correlation with the severity of the disease and with the decrease of splanchnic resistances indicates that these changes in the HV waveform occur in the presence of marked rearrangements of liver tissue and of hyperdynamic systemic circulation.
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