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Biomedical subjects

G Piatelli

Publications and source records attributed to G Piatelli.

4 recordsLinked to original sources

Spinal dysraphism: MR imaging rationale.

Spinal cord development occurs through the three consecutive periods of gastrulation (weeks 2-3), primary neurulation (weeks 3-4), and secondary neurulation (weeks 5-6). Spinal cord malformations derive from defects in these early embryonic stages, and are collectively called spinal dysraphisms. Spinal dysraphisms may be categorized clinically into open and closed, based on whether the abnormal nervous tissue is exposed to the environment or covered by skin. Open spinal dysraphisms include myelomeningocele and other rare abnormalities such as myelocele, hemimyelomeningocele, and hemimyelocele, and are always associated with a Chiari II malformation. Closed spinal dysraphisms are further divided into two subsets based on whether a subcutaneous mass is present in the low back. Closed spinal dysraphisms with mass comprise lipomyelocele, lipomyelomeningocele, meningocele, and myelocystocele. Closed spinal dysraphisms without mass comprise simple dysraphic states (tight filum terminale, filar and intradural lipomas, persistent terminal ventricle, and dermal sinuses) and complex dysraphic states. The latter category involves abnormal notochordal development, either in the form of failed midline integration (ranging from complete dorsal enteric fistula to neurenteric cysts and diastematomyelia) or of segmental agenesis (caudal agenesis and spinal segmental dysgenesis). Magnetic resonance imaging is the imaging modality of choice for evaluation of this complex group of disorders.

Adolescent↗

On the predictive value of radiological signs for the presence of dural lacerations related to fractures of the lower thoracic or lumbar spine.

The predictive value of radiological signs for the presence of lacerations of the thoracolumbar dura in spine-injured patients could represent an important adjunct to the rationale for the optimal management, owing to the possible onset of early or delayed complications of these lesions. Occurrence of signs assumed to be related to dural tears, such as separation of the pedicles, fractures of the laminae, and encroachment of the spinal canal, was analyzed in a consecutive series of 25 patients submitted to surgical reduction and stabilization of the fractured lower thoracic or lumbar spine in a 24-month period. No statistically significant correlation was found between dural lacerations and any of the examined signs. Leaks of cerebrospinal fluid through traumatic breachs of the meninges were found in 16 of the 25 cases. The high rate of occurrence of dural lesions associated with fractures of the lower thoracic or lumbar spine adds a further argument to the aggressive approach to these injuries.

Adolescent↗

Intraventricular supratentorial tumors in children.

Overall, intraventricular supratentorial tumors are rare in childhood. Classification can be based on the separation of lesions originating in intraventricular structures, such as choroid plexuses, from glial neoplasms of the ventricular wall which tend to infiltrate the ventricular cavities. Aim of the present study is to review the most common neoplasms of this region in childhood. Choroid plexus tumors (papillomas and carcinomas) and subependymal giant cell astrocytomas are dealt with, while for the other neoplasms which are rarer or more typic of other age ranges, specific reports should be consulted. Choroid plexus papillomas affect infants and are the most frequent oncological type among congenital tumors. The malignant variant (grade III-IV) is represented by the less frequent the neoplasms. The malignant variant (grade III-IV) is represented by the less frequent choroid plexus carcinoma which is markedly invasive with respect to adjacent nervous structures and has a high tendency to form metastases even at onset. Anaplastic papillomas are intermediate forms whose correct histopathology is still debated. Most frequent glial tumors are subependymal giant-cell astrocytomas. They are benign tumors (grade I) typically albeit not constantly associated to tuberous sclerosis. In this case the differentiation from subependymal nodules plays a major role. Contrast enhanced CT is fundamental in this assessment. Anaplastic variants, though rare, are well-known.

Brain↗