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Biomedical subjects

M Caldarelli

Publications and source records attributed to M Caldarelli.

64 records · Page 4Linked to original sources

On the pathology of experimental hydrocephalus induced by artificial increase in endoventricular CSF pulse pressure.

In lambs, acute and chronic communicating hydrocephalus has been created by merely increasing the amplitude of the intraventricular cerebrospinal fluid (CSF) pulsations, leaving the mean CSF pressure unchanged. The pathologic changes occurring in this type of hydrocephalus do not differ qualitatively from those observed in obstructive hydrocephalus. Beside demonstrating a direct role of ventricular pulsations in the ventricular dilation, the observed findings indicate that an increase in mean CSF pressure is not a necessary condition for the occurrence of the hydrocephalus. Consequently, the hypothesis of abnormal high intraventricular CSF pressure oscillations at the basis of the ventricular dilation of normal pressure hydrocephalic patients, receives a significant support. Further support is provided is provided by considering the recorded experimental pathological lesions are quite similar to those observed in normal pressure hydrocephalic patients with patent subarachnoid CSF pathways.

Acute Disease↗

Influences of phasic changes in systemic blood pressure on intracranial pressure.

In acute experiments on lambs, the effects of short-lasting induced modifications in arterial and venous systemic blood pressure on intracranial pressure have been studied. Haemodynamic changes have been provoked by increasing the cardiac venous return, by increasing or decreasing the arterial resistance and by stimulating the vagus nerve. Intracranial pressure modifications have been demonstrated to depend essentially on arterial influences. A direct venous influence is apparent only when the central venous pressure is increased, as occurs in the case of increased venous cardiac return.

Animals↗

Experimental hydrocephalus following mechanical increment of intraventricular pulse pressure.

Experimental hydrocephalus has been induced in lambs by artificial increase of the amplitude of intraventricular cerebrospinal fluid (CSF) oscillations related to arterial pulsations, without concomitant changes of the mean CSF-pressure. The characteristics of this hydrocephalus demonstrate that the intraventricular CSF-pulsations can play a role in the genesis of ventricular dilation. Such a method may be used to produce an original model of hydrocephalus independent of changes of CSF-circulation or absorption.

Animals↗

The study of cerebrospinal fluid dynamics in apparently 'arrested' hydrocephalus in children.

18 children having hydrocephalus, which could be regarded clinically as 'arrested', underwent cerebral angiography and a constant infusion manometric test. Intracranial pressure was directly recorded in 3 cases. The above examinations indicated that hydrocephalus was still 'active' in 8 children. This was confirmed by the good results of the surgical treatment.

Cerebral Ventriculography↗