Cosmological bounds to the magnetic moment of heavy tau neutrinos.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to D Grasso.
Explore the source record for details and available documents.
Few other forms of surgery embody the authentic, full essence of surgery as does rhinoplasty, where functional results are joined to meet one's innermost expectations. the present work reviews the main stages in the course of the evolution of the philosophy and surgical techniques adopted to resolve both the functional and esthetic problems of the nose. This provides a broad view of the issues every surgeon has had to deal with in this regard. The history of rhinoplasty once more teaches us that the evolution of a discipline hinges around the daily renewal of one's preparation through study, observation and insights.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
The theoretical analysis of the protein denaturation model which includes an irreversible, exothermic and rate-limited step has been improved and applied to the DSC profile of Azurin. The two-step nature of the irreversible denaturation of globular proteins is usually depicted in the following simplified scheme: N <--> U <--> F, which is known as the Lumry and Eyring model. In most of the works concerning the thermal unfolding of proteins, it is usually assumed that the irreversible step of the process does not take place significantly during the short time the protein spends in the temperature range of the DSC transition, or if this is not the case, that this irreversible step occurs with a negligible thermal effect. As we will show, this last assumption cannot be accepted acritically; in fact we have found that in the case of Azurin an evident exothermic effect occurs at the end of the transition. In order to fit the experimental Cp(exc) profile of Azurin, we have analyzed a model in which the exothermic effects of the irreversible step and the variations of DeltaH with temperature are taken into account. Our model was first tested simulating a series of profiles and considering the effects of the variation of the parameters on the shape of the curves, and successfully used to fit the experimental calorimetric profile of Azurin.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
OBJECTIVE: To research the nongenital audiological target for gonadal steroids in postmenopausal women who are treated with hormone replacement therapy. DESIGN: Fifty postmenopausal volunteers were treated with hormone replacement therapy. Women with an intact uterus had sequential weekly transdermal estradiol plus nomegestrole acetate 5 mg orally for 12 days per month or a continuous daily oral dose of conjugated estrogen 0.625 mg and medroxyprogesterone acetate 5 mg tablet. Eighteen surgically postmenopausal women received a weekly transdermal estradiol system. Twenty-five postmenopausal volunteers-5 with a natural menopause and 10 with a surgical menopause-and 20 premenopausal normally cycling women were used as a control group. Each woman performed auditory brainstem response by auditory-evoked potentials for waves I, III, and V and for interpeak I-III, I-V, and III-V intervals. RESULTS: Women who were treated with hormone replacement therapy showed wave latencies and interpeak latencies shorter than those for postmenopausal women in the control group (p < or = 0.05), overlapping those of the premenopausal women (p > 0.05). Women who were treated with estrogen replacement therapy showed shorter time latencies than those treated with combined hormone replacement therapy (p < or = 0.05). CONCLUSIONS: Our data suggest that fluctuating hormone levels cause changes in auditory brain-stem response waves, even if the exact mechanism of activity of the gonadal steroids is not clear. However, we believe that estrogen may influence the neuronal plasticity, the metabolic levels of neurotransmitters, and thus the neuronal conduction time into the audiological system.
Explore the source record for details and available documents.