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Biomedical subjects

D Fredy

Publications and source records attributed to D Fredy.

At least 19 recordsLinked to original sources

[Cerebral arterial infarction and diffusion tensor imaging].

PURPOSE: Diffusion-weighted imaging (3 directions) and diffusion tensor imaging (9 directions) were compared for their sensitivity to detect ischemic lesion. MATERIALS AND METHODS: 41 patients (18 supposed transient ischemic attacks, 23 arterial stroke, MRI<or=48h) presenting with stroke syndrome were imaged using two diffusion sequences (3 directions, 2 excitations, acquisition time: 40 seconds and 9 directions, 1 excitation, acquisition time: 50 seconds, other parameters being identical). The following variables were compared (Wilcoxon test): number and extent of lesions, MRI signal and absolute ADC values, relative signal intensity and ADC ratio. Fractional anisotropy was measured within the principal lesion on the 9 directions sequence. RESULTS: 24 patients presented a lesion on both sequences. Four of them (including one TIA) had more lesions (<5 mm) on the 9 directions sequence than on the 3 directions sequence. Both sequences were normal for the 17 remaining patients (TIA=4, differential diagnosis=7, indeterminate=6). No significant difference was found for the other study parameters between 3 vs 9 directions sequences. There was a 10% decrease of the mean fractional anisotropy in ischemic lesion. CONCLUSION: By showing more lesions than standard diffusion-weighted imaging and providing quantitative anisotropy measurements, diffusion tensor imaging could replace the standard 3 directions diffusion-weighted sequence.

Adult↗

Perfusion-weighted MR imaging studies in brain hypervascular diseases: comparison of arterial input function extractions for perfusion measurement.

BACKGROUND AND PURPOSE: Brain hypervascular diseases are complex and induce hemodynamic disturbances on brain parenchyma, which are difficult to accurately evaluate by using perfusion-weighted (PWI) MR imaging. Our purpose was to test and to assess the best AIF estimation method among 4 patients with brain hypervascular disease and healthy volunteers. METHODS: Thirty-three patients and 10 healthy volunteers underwent brain perfusion studies by using a 1.5T MR imaging scanner with gadolinium-chelate bolus injection. PWI was performed with the indicator dilution method. AIF estimation methods were performed with local, regional, regional scaled, and global estimated arterial input function (AIF), and PWI measurements (cerebral blood volume [CBV] and cerebral blood flow [CBF]) were performed with regions of interest drawn on the thalami and centrum semiovale in all subjects, remote from the brain hypervascular disease nidus. Abnormal PWI results were assessed by using Z Score, and evaluation of the best AIF estimation method was performed by using a no gold standard evaluation method. RESULTS: From 88% to 97% of patients had overall abnormal perfusion areas of hypo- (decreased CBV and CBF) and/or hyperperfusion (increased CBV and CBF) and/or venous congestion (increased CBV, normal or decreased CBF), depending on the AIF estimation method used for PWI computations. No gold standard evaluation of the 4 AIF estimates found the regional and the regional scaled methods to be the most accurate. CONCLUSION: Brain hypervascular disease induces remote brain perfusion abnormalities that can be better detected by using PWI with regional or regional scaled AIF estimation methods.

Adolescent↗

[Imaging of dementia with magnetic resonance].

The diagnostic approach of dementia has clearly improved with the progress in medical imaging, notably magnetic resonance imaging. The conventional T1 and T2 sequences or morphological imaging have demonstrated their interest in the positive and differential diagnosis of dementia, together with the more precise description of normal ageing of the brain. The ANAES (French medicines agency) proposes systematic brain imaging, notably by magnetic resonance imaging (MRI) in their practical guidelines for the diagnosis of Alzheimer's disease (http://www.anaes.fr). THE INTEREST OF CERTAIN IMAGING TECHNIQUES: The therapeutic progress in treatment of dementia implies that the different affections be recognised as early as possible. With this in mind, the functional MRI is capable of describing the damage in cases when morphological imaging is not sufficiently specific. Recent studies have reported the interest of diffusion and perfusion imaging, activation MRI and proton spectroscopy. FROM A THERAPEUTIC POINT OF VIEW: The combination of morphological and functional approaches will provide a better definition of the groups at risk in order to target current treatments and those to come.

Aged↗

MR perfusion imaging in proliferative angiopathy.

Seizures, which may be the main expression of cerebral arteriovenous malformations (CAVM) can be difficult to control medically. Our goal was to use perfusion-weighted imaging (PWI) in correlation with clinical data to detect abnormal areas of the cerebrum related to a particular type of CAVM (proliferative angiopathy) and to study the pathophysiology. We use PWI, with a bolus injection of contrast medium, to investigate seven patients with proliferative angiopathy and fits producing language disturbance. Perfusion parameters were calculated using the first-pass moment theory. Five patients had perimalformative and/or contralateral abnormal areas with relative hyperperfusion (cerebral blood volume +20.7+/-16.2%, blood flow 92.5+/-68.8 ml/min/100 g). Areas of hypoperfusion and venous congestion were detected in two patients. One patient who underwent MRI after a severe focal deficit had no significant haemodynamic abnormality.

Adolescent↗

[Topography of secondary dystonia lesions].

Biological causes provoking dystonia can not be systematized, with the exception of the small group of levodopa-responsive dystonia. Therefore the pathophysiology of the dystonic syndrome can be approached by considering the site of the lesions. In 40 cases of uni or bilateral symptomatic dystonias, this site could be identified with CT Scan or MRI. Twenty-one were located in the striatum, six in the pallidum, seven in the thalamus, six in the midbrain. Each group is characterized by etiologic and clinical criteria, sometimes associated with abnormal movements. In the striatal group, the most important, dystonia was often associated by athetosis or choreoathetoid abnormal movements. In some cases, in children, lesions were vascular due to impairment of lenticulo-striatal arteries, often following cranial trauma. The pallidal lesions were usually provoked by metabolic or infectious agents. Most thalamic dystonias were of vascular origin, sometimes accompanied by myoclonia. Midbrain lesions were usually vascular with tremor. Athetosis occurred after striatal rarely after pallidal lesions. It is advisable not to assimilate dystonia and athetosis as both are simultaneously observed if the lesions are located in the striatum, rarely in the the pallidum but not in the midbrain.

Adolescent↗

[What is your diagnosis? Aneurysm of the abdominal aorta destroying the lumbar spine].

A 58 year old woman suffering from lumbalgia over 3 years is admitted for bilateral cruralgia. Ten years before, she was treated for cervix carcinoma by hysterectomy, pelvic and lumbo-aortic radiotherapy and chemotherapy. On admission, physical examination reveals L2 level hypoesthesia and abolition of deep tendon reflexes. Plain films and CT scan show a lysis of L3, L4 and L5 vertebral bodies and a cuneiform appearance of vertebral body of L2 due to a large abdominal aortic aneurysm.

Aortic Aneurysm, Abdominal↗

Experimental evaluation of nonlinearities of small-sized insertable gradient coils.

A phase imaging technique is proposed to map out and quantify gradient nonlinearities of small-sized insertable gradient coils, assuming the whole-body system gradients are highly linear in the domain of interest. The theory is developed and simple equations are derived to allow quantification. It is applied to a 4-loop 18-cm diameter cylindrical gradient coil of optimal design. Experimental gradient nonlinearity maps are obtained for different fields of view. Gradient non-linearities are quantified locally and in regions of interest, showing close agreement with model data.

Algorithms↗

[Imaging of non-osseous malignant tumors of the anterior skull base. Preoperative evaluation].

Imaging is fundamental in pre-operative evaluation for cancers of anterior cranial base and ethmoido-sphenoidal region, particularly because clinical examination is poorly contributive and cannot evaluate the tumoral extension. Radiological data are based on CT-scan and MRI. The first goal of radiological evaluation is to recognize the presence of a tumor and to differentiate it from inflammatory lesions, which is not always very easy. The second aim is the evaluation of tumoral extension, particularly towards the intra-cranial cavity and the orbit. It leads to an extension grading which is essential for the choice of a therapeutic strategy (inductive chemotherapy, surgical approach, radiotherapy). The third goal of imaging examination is the evaluation of tumoral response to pre-operative inductive chemotherapy.

Humans↗

Cerebral arteriovenous malformations: the value of radiologic parameters in predicting response to radiosurgery.

PURPOSE: To define the morphological patterns of cerebral arteriovenous malformations (AVMs) that influence their response to radiosurgery at 2 years. METHODS: We retrospectively reviewed the yearly MR and angiographic follow-up studies in 102 patients who had radiosurgical treatment for cerebral AVMs between 1990 and 1992. Parameters studied were maximum length and volume of the nidus, position relative to the midline, anatomic structures involved, sectional anatomic location (depth within the brain tissue), angioarchitecture, and Spetzler and Martin grading. Statistical analysis determined their influence on treatment results at 2 years. RESULTS: Parameters that correlated with obliteration at 2 years were maximum length less than 25 mm, small volume, sectional location deep within brain tissue, and plexiform angioarchitecture. Ventricular and paraventricular locations correlated with nonobliteration at 2 years. CONCLUSION: This study highlights the role of two new morphological parameters in predicting the efficiency of radiosurgery in the treatment of cerebral AVMs: depth within the parenchyma and angioarchitecture. It also emphasizes the usefulness of sectional imaging in the work-up before radiosurgery.

Adolescent↗

[Stereotaxic radiotherapy of cerebral arteriovenous malformations: the role of neuroradiology].

The therapeutic approach to cerebral arteriovenous malformations has been modified with the availability of stereotactic radiosurgery, initially, the main indications of radiosurgery were limited, non surgical arteriovenous malformations. Indications are now much more diverse. Imaging plays an important role in the radiosurgical management of arteriovenous malformations and its evaluation. In this review, the different roles of neuroimaging are discussed; characterization of malformations, choice of the best indications, role of embolization, delimitation of the target, evaluation of results and complications of radiosurgery.

Cerebral Angiography↗

[The rolandic line: a simple baseline for the identification of the central region. An MRI study and functional validation].

INTRODUCTION: The identification of the central region--i.e. the central sulcus, the pre- and post-central gyri, the paracentral lobule--on MRI and angiographic images may be necessary prior to stereotactic procedures such as biopsies or resection of centrally located tumors, depth electrode recordings for presurgical evaluation of drug-resistant epilepsies, or radiosurgery of arteriovenous malformations. Stereotactic methods, such as the Talairach's proportional grid based on the bicommissural system, demonstrated the statistical position of the central sulcus according to the Ac-Pc, Vac and Vpc baselines. However, the course and the spatial position of this sulcus have remarkable individual differences that sometimes make the sulcus difficult to identify on serial sagittal MRI or lateral angiographic images. In order to facilitate this identification, the authors propose a new oblique baseline, the rolandic (R) line. MATERIAL AND METHODS: The stereotactic MRI and angiography of 22 patients were reviewed for this study. Eleven of these patients had stereotactic biopsies for a low-grade tumor located in the central region, while eleven others had multiple intracerebral electrodes implantation and depth EEG recording (SEEG: stereoelectroencephalography) in the presurgical evaluation of drug-resistant partial epilepsy, prior to epileptogenic cortex resection. The Ac-Pc, Vac, Vpc baselines and segments of the central sulcus were drawn from the mid-sagittal and lateral T1-weighted MRI images and reported on an individual graph. Surface and deep margins as well as axis of the central sulcus were also reported along with corpus callosum baselines as defined by Olivier et al.: horizontal plane, anterior and posterior callosal planes. The rolandic line was then traced from the graph:it joined the intersection point between the anterior callosal plane and an orthogonal line passing through the floor of the temporal fossa, and the intersection point between posterior callosal plane and an orthogonal line passing through the top of the hemisphere. The rolandic line was then superimposed on any sagittal MRI image or lateral stereotactic angiographic film. Finally, the spatial position of electrode contracts through which electrical stimulations elicited motor and/or sensory responses, either from central electrode implanted for motor fibers identification prior to stereotactic biopsies or from SEEG electrodes implanted for epileptogenic zone identification and cortical mapping, was reported on the individual graph. Angular and linear measurements were taken from the graph, between the rolandic line, the central sulcus axis, the Ac-Pc and callosal baselines, and the central sulcus limits (top, bottom, anterior and posterior margins). RESULTS: Graph measurements indicated that the rolandic line was significantly closer to the inferior part of the central sulcus than to its superior part (average distance between the line and the inferior point of the sulcus: 1.86 +/- 1.87 mm; average distance between the line and the superior point of the sulcus: 4.5 +/- 2.3 mm; p < 0.001-t test); similarly, the rolandic line was closer to the deep margin of the sulcus rather than to its superficial border (average distance between the line and the most anterior point of the sulcus: 11.43 +/- 3.16 mm; average distance between the line and the most posterior point of the sulcus: 7.95 +/- 4.14 mm; p < 0.01-t test). In 90% of the cases, the rolandic line followed the deep or middle part of the sulcus, with an average angle of 4.18 degrees +/- 2.53 degrees between the line and the sulcus axis. The spatial position of the electrode contacts that elicited motor/or sensory responses to stimulations correlated topographically well in all cases with the position of the motor and sensory fibers defined according to the central sulcus, baselines and reference to stereotactic atlases. (ABSTRACT TRUNCATED)

Adolescent↗

Traumatic aneurysms of the internal and external carotid arteries. One case and a review of the literature.

The case of a female patient with two traumatic aneurysms diagnosed by serial angiography is reported. The first aneurysms, located on the orbito-frontal branch of the left anterior cerebral artery, was removed. The second aneurysm involving the right middle meningeal artery was treated by endovascular embolization. The causes and physiopathology of such lesions are reviewed. The frequency of traumatic cerebral aneurysms has been reduced by the routine use of computed tomography. Aggressive treatment of these aneurysms is advocated because of their natural history.

Adolescent↗

[The scanner: contribution of 3-dimensional (3D) imaging in rheumatology].

The whole body scanner (Exel 2,400) of the Centre Hospitalier Sainte-Anne enables the three-dimensional reconstruction, with visualization, of the object in its real volume in less than 10 minutes after taking 20 to 40 radiological sections. The exploration can be complete at all levels. Bone lesions can be perfectly shown, the study of osteoarticular or intraspinal abnormalities is facilitated, all solution of continuity can be detected. A "soft parts" program as well as a "colour" program enable a clear and rapid visualization of organic lesions. Three-dimensional imaging can be of great value in rheumatology.

Bone and Bones↗

Central sulcus patterns at MRI.

Radiologists can now use Talairach's bicommissural reference system and simple T-weighted sagittal magnetic resonance imaging (MRI) sections to recognize the central sulcus of the brain with its spatial features. In this study of 50 MRI examinations performed on normal subjects with contiguous 9 mm thick sagittal sections related to a standard proportional model that takes into account variations in the size and shape of the brain, the central sulcus could be identified on each section, despite its complexity on lateral projections and its frequent changes of course. By comparisons with the co-planar stereotaxic atlas of Talairach and Tournoux, it will be possible to localize the classical functional areas of the telencephalon.

Adolescent↗

[Tolerability of a new non-ionic contrast medium, iopromide in x-ray computed tomography. Comparison with ioxaglate 320 mgI/ml].

Three randomized prospective and comparative trials were conducted in 165 patients undergoing brain (80) and whole body (85) CT scans. The two products compared where a new non-ionic contrast medium iopromide 300 (brain) and 370 (whole body) and the ionic low osmolar contrast medium, ioxaglate 320. Imaging quality was not different but the tolerance of the non-ionic medium was significantly better (p less than 0.05).

Contrast Media↗