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Biomedical subjects

M Vignolo

Publications and source records attributed to M Vignolo.

32 records · Page 2Linked to original sources

Modified Greulich-Pyle, Tanner-Whitehouse, and Roche-Wainer-Thissen (knee) methods for skeletal age assessment in a group of Italian children and adolescents.

Modified Greulich-Pyle (GP), Tanner et al. 2, radius, ulna and short bones (TW2-RUS), TW2-20-bone and Roche-Wainer-Thissen RWT (knee) skeletal age assessments were made in an Italian population sample of 128 males and 93 females aged 4.1-16.9 years. All the scales appear to be well-suited to the Italian population despite minor differences. A very high correlation was found between the assessment of knee skeletal ages by the RWT method and that of the hand-wrist by the GP and TW2 systems in the same subject without sex and age-associated variations.

Adolescent↗

Growth and development in simple obesity.

It is well known that fat children tend to be taller than their peers and to present a slight acceleration of skeletal and pubertal maturation. To verify this tendency and to examine some of the points that are still controversial, auxological data were studied concerning 303 subjects (141 males and 162 females, aged 6-16 years) affected by simple obesity. Subjects were seen to be taller than average by about 1 SD from 6 to 9 years of age, becoming close to or shorter than average at later ages. Height below the 10th percentile was common in 17% of males and 8% of females, due to hereditary shortness, growth delay or late puberty. Girls had early puberty and menarche; the rate of sexual maturation was variable in boys.

Adolescent↗

Interindividual variability of cranioencephalic relationships as predicted by CT.

To validate a procedure assembling CT scans in a three-dimensional (3D) array, the interindividual variability of cranioencephalic relationships, as estimated by our technique, was compared with that of the normal population. To this purpose the position of the habenulopineal complex (HPC) with respect to skull references was investigated in 41 normal subjects. In particular the x, y, and z, coordinates of individual HPCs were determined after each CT was assembled in a 3D multislice array. Thereafter, distances of the HPC from the frontal and occipital poles, the vault, and the base of the skull were measured and compared with the anatomicoradiological norms. From our estimates the distances of the HPC from both the frontal pole and the vault of the skull proved to vary as a function of the maximal skull diameter with no distortion of cranioencephalic relationships. The proposed assembling method can be regarded as a reliable tool for a quantitative evaluation of data collected from CT or other reconstructive tomography techniques in anatomicoclinical studies. This method enables a generalized (i.e., not confined to neurosurgical procedures) application of stereotactic principles.

Adult↗

Statural growth and skeletal maturation in rheumatic prepubertal children treated with a third generation glucocorticoid (deflazacort) versus prednisone. An interim study.

Deflazacort, a new glucocorticoid (DFZ) which has recently become available, is known to have lower adverse effects on the skeletal metabolism and is expected to inhibit growth to a lesser extent in long-term treated children than earlier cortisone analogues. With the aim of verifying this hypothesis a multicenter study was planned to compare the effects of deflazacort and prednisone on linear growth and skeletal maturation in a group of prepubertal children requiring chronic steroid therapy. The data presented in this interim analysis refer to 24 children (11 females and 13 males ranging in age from 2.4 to 11.8 yrs) with rheumatoid arthritis (18), systemic lupus erythematosus (4) or dermatomyositis, selected from the total sample of 65 subjects included in the trial. They were randomly allocated to DFZ or PDN treatment and received the minimum effective dose of either steroid for at least 6 months per year. Longitudinal height measurements were obtained with standard instruments and techniques, and the bone age was assessed according to Greulich and Pyle. The following indicators of growth retardation were considered: bone age delay (difference between bone age and chronological age), statural age delay (statural age, with respect to the 50th percentile minus the chronological age) and statural age loss (statural age with respect to the individual height percentile at the first observation minus the chronological age).(ABSTRACT TRUNCATED AT 250 WORDS)

Age Determination by Skeleton↗