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Biomedical subjects

U Cerchiari

Publications and source records attributed to U Cerchiari.

At least 19 recordsLinked to original sources

Design and characterization of a dynamic multileaf collimator.

The characteristics of a prototype computer-assisted dynamic multileaf collimator (DMLC), specifically designed for small-field conformal radiotherapy, were evaluated at the Istituto Nazionale Tumori of Milan. The collimating device consists of two opposing banks of 16 pairs of 8 cm thick, 3.6 mm wide tungsten leaves and allows shaping of a radiation field up to a size of 10 x 10 cm2 at the isocentre. The screening thickness of each leaf is 6.25 mm at the accelerator gantry isocentre. The leaves have a trapezoidal cross section and move along an arched path, thus providing a 'double focused' collimation system. The DMLC was installed on the head of a Varian Clinac 2100C linear accelerator. Mechanical and dosimetric evaluations were performed to test the stability of the mechanical isocentre and to determine leaf leakage, penumbra width, accuracy of leaf positions and uniformity of leaf speed. Displacement of the mechanical isocentre was less than 1 mm at all gantry angles. Standard radiographic films exposed to 6 MV x-ray radiation were used for dosimetric evaluations. Leakage between leaves was less than 2.5%, and leakage through abutted leaves was less than 5.5%. The penumbra width between 20% and 80% isodose at different positions of leaf banks was 2.7 mm in the direction of the leaf motion and 3.1 mm along the side of the leaf with a standard deviation of 0.2 mm in both directions. Accuracy in the positioning of the leaf was 0.3 mm, whereas the maximum repositioning error was less than 0.2 mm. Finally, during movement of the leaves at the maximum speed of 0.5 mm s(-1), the standard deviation of the leaf positioning error was 0.2 mm, proving an accurate uniformity of leaf speed.

Neoplasms

Contemporary stereotactic atlasses: merging of functional data with individual morphological MRI acquisitions.

The traditional concept of the sterotactic brain atlas, utilized as an anatomical piece of information, to be integrated with neuroradiological data in order to organize functional observations, is evolving towards the creation of a powerful database for clinical and functional data, contained in anatomical structures. Actual computational resources make it possible to use this information, interactively adapted to each patient's anatomy, and updated, following each procedure.

Algorithms

Computer-assisted analysis of functional anatomy of human ventrolateral thalamus.

A three-dimensional map was created by a computer-assisted analysis of functional and somatotopic organization of the target area in the human ventrolateral thalamus. Stimulation in the target area mostly elicited increased tone in skeletal muscles, with a concomitant decrease or stop of tremor. Despite averaging of all responses, no clear somatotopic organization could be demonstrated for the tonifying stimulation effects. In addition, somatosensory-evoked potentials were recorded, indicating an afferent projection to the target area.

Brain Mapping

[Intracavitary and parietal cardiac measurement with nuclear magnetic resonance: comparison with echocardiography in healthy volunteers].

For quantitative evaluation of cardiac dimensions by Nuclear Magnetic Resonance (NMR), we compared the values obtained by ECG gated NMR with those obtained by two-dimensional echocardiography (2D-echo) in 18 adult healthy volunteers aged 20-40 years (mean 31.6 +/- 5.8). NMR was performed using a 2 T super-conducting magnet operating at 0.5 T with a radiofrequency impulse of 21 MHz. Spin-echo pulse sequences with echo-delay times (TEs) of 30-45 msec were used for data acquisition. The interpulse interval was obtained from the R-R interval on the ECG. Slice thickness was set at 1 cm. To obtain planes oriented along the long axis of the left ventricle similar to 2D-echo, paraxial planes were obtained by double angulation. No significant differences of mean values obtained by NMR and 2D-echo were observed. Regression coefficients were not statistically different from 1 for any of the structures measured: left atrium (y = 1.106x), aorta (y = 1.077x), left ventricle (y = 0.66x), interventricular septum (y = x 1.009x), postero-lateral wall of the left ventricle (y = 1.133x), right ventricle (y = 1.093x). However high coefficients of variation were found for measurement of postero lateral wall (79.5) and interventricular septum (41.4) thicknesses; potential causative factors are discussed.

Adult

Digital image processing to handle neuroanatomical information and neurophysiological data.

An application of computer graphics technology to functional stereotactic neurosurgery is presented. Neuroanatomical images derived from a stereotactic atlas and information retrieved from a neurophysiological data base are drawn on a graphic monitor. The pictures are oriented and scaled according to appropriate landmarks. The aim of this work is to add confidence in the surgeon's selection of the probe trajectory and to improve the knowledge of sensory and motor organization within the thalamus.

Brain

Neuroanatomical digital image processing in CT-guided stereotactic operations.

In order to utilize computed tomography (CT) for functional neurosurgical procedures, a number of problems must be resolved. One such problem is the development of an appropriate technique for digital processing of neuroanatomical images. Our previous work concerned a numerical reproduction of a well-known stereotactic atlas and its three-dimensional manipulation. In order to efficiently utilize this information with CT images we propose a technique for data reduction that allows the reconstruction of anatomical structures from the atlas. The logic of implementing these data in CT-assisted stereotactic surgery is described.

Brain

[3-dimensional automatic dosimetry in curietherapy].

Isodose curves can be viewed on multiple planes along with the radioactive implant and anatomical structures by projecting them on a video-display. The main options offered are the parallel projection of the implant selecting all the possible rotations, zooming and shifting, calculation of distance between two points of a selected plane, stereoscopic display.

Brachytherapy

Three-dimensional neuroanatomic images in CT-guided stereotaxic neurosurgery.

A technique is described for three-dimensional reconstruction of human diencephalic structures based on information contained in a widely used stereotaxic brain atlas. Various methods of graphically representing the obtained diencephalic volumes are discussed and examples are given. The anatomic information contained in the computerized atlas can be implemented with computed tomography performed under stereotaxic conditions. Volume data provided by the tomograms are used for three-dimensional "stretching" of the volumes presented in the atlas. Improved accuracy in identifying "invisible" diencephalic targets in functional stereotaxic neurosurgery is expected to result from this new technique.

Brain