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[Volumetric analysis of gray matter, white matter and cerebrospinal fluid space in schizophrenia].

Schizophrenia is characterized by diffuse brain abnormalities, some of them involving volumes of three intracranial compartments: gray matter (GM), white matter (WM) and cerebrospinal fluid (CSF). Novel methods, such as Statistical Parametrical Mapping, provide an automated means of comparing structural features across high quality MRI scans and the measurement based on the principles of voxel based morphometry. For the purposes of the present study, we selected sex balanced group of young adults with recent onset illness to assess the effects of the illness on the volumes of compartments and also to minimize the effects of chronicity, medication, sex and aging. Sixty-four subjects were selected from a larger sample (inclusion criteria: age range 18-31). Thirty-one had DSM IV diagnosis of schizophrenia or schizoaffective disorder, 33 were controls. T1 weighted MRI images were acquired on two scanners (1.5T both): a) fast gradient echo sequence, FLASH, 40 msec repetition time, 5 ms echo time, 40 degree flip angle and b) turbo gradient echo, 12 msec repetition time, 4 msec echo time, 20 degree flip angle, 1 excitation). The resulting data set consisted of: a) 128 consecutive slices with 1.17 mm thickness and 256 x 256 pixels per slice and b) 160 consecutive slices of 1 mm thickness and 256 x 256 pixels per slice. All 64 images were processed by ANALZYE, and normalized and segmented by SPM99. Following the automatic segmentation of the images into the three intracranial compartments, volumetry was performed based on the principles of voxel analysis. Results were expressed relative to whole brain volume, and MANOVA analyses were performed to correct the confounding effects of MRI acquisition center differences and age difference between diagnostic groups. Young adults with recent onset schizophrenia had 6% reduction in GM volume and 14% increase in the volume of CSF, after all confounders were included into analyses (MANCOVA: p = 0.006 and 0.0002, respectively). No significant changes in WM volume were evident. In comparison to a few similar studies published recently, all results yielded similar scores regarding effects of recent onset illness and young adult population, thus confirming the reliability of the procedure. In conclusion, global neuropil reduction was discussed as a consequence of the cortical neurodevelopmental disgenesis. It was suggested that neuropil reduction i.e. synaptic and dendritic changes were to induce functional abnormalities and the expression of schizophrenia.

Adolescent↗

[Auditory and verbal agnosia in the left-handed patient: comparison of neuropsychological data, magnetic resonance and positron emission tomography].

A case of the post-traumatic auditory-and-speech agnosia in a left-handed female patient is presented. The patient (a professional painter) showed satisfactory recovery in painting, speech production, reading and writing, whereas a severe deficit in auditory recognition of speech, melodies and rhythms persisted over time. She was also impaired in some aspects of visual recognition including prosopagnosia. To study this patient comprehensively, a neuropsychological assessment was combined with structural (magnetic resonance imaging-MRI) and metabolic (positron emission tomography--PET) data. Both PET and MRI revealed a large bilateral cortical damage in the medial basal cortex of the frontal, temporal and occipital lobes along with the anterior half of the lateral temporal cortex. In the left hemisphere the damaged area involved the whole temporal lobe, a large part of the occipital lobe and the opercular frontal and parietal regions. The relationship of the symptoms with the brain damage extension is discussed taking into account the left-handedness of the patient.

Adult↗

[Giant hydropic fibroma: a case report].

Hydropic degeneration of a uterine leiomyoma is common. Giant forms are uncommon. Positive diagnosis may be challenging because the differential diagnosis includes other rare uterine tumors such as leiomyosarcoma. Uterine localization, the leiomyoma volume, margins with adjacent structures are best evaluated at MRI. Final diagnosis requires gross and microscopic examination. We describe such a diagnostic challenge in a 46-year-old woman with a giant hydropic leiomyoma.

Female↗

[A case of subcutaneous malignant lymphoma with dura mater lesion].

A 63-year-old male was admitted to our hospital, complaining of a scalp mass located at the frontoparietal area of his head. He noticed that it had been growing for 2 months. The mass was elastic hard and non-moving. Computed tomography demonstrated a subcutaneous mass with low density and which was enhanced homogeneously. The skull just below the mass was slightly destroyed, but the structure remained. Magnetic resonance imaging (MRI) demonstrated a mass with low signal intensity on both the T1 weighted image and the T2 weighted image. Gd-DTPA study showed homogeneous enhancement and showed also that the dura just below the mass was enhanced. At this point we couldn't diagnose it confidently, but suspected this lesion to be a malignant lymphoma. We made a general examination, but no other lesion was found. A biopsy of the subcutaneous mass was performed under local anesthesia. The histological diagnosis was large-cell type B-Cell lymphoma. The tumor was treated with chemotherapy, CHOP (cyclophosphamid, doxorubicin, vincristin predonisolone). It responded to this chemotherapy and disappeared. We treated this lesion without radiation therapy. We report a case of subcutaneous malignant lymphoma treated successfully with a minimum invasive method.

Diagnosis, Differential↗

Brainstem auditory evoked potentials in patients with mitochondrial encephalomyopathy.

Brainstem auditory evoked potentials (BAEPs) were evaluated in three patients with mitochondrial encephalomyopathy belonging to the same family. This study showed marked alterations of BAEPs in all patients: reduction of wave amplitude, poor repeatability of responses in test-retest and abnormalities in wave form and latency. The neuroradiological examinations (CT-scan, MRI) did not show significant structural brain abnormalities. Abnormal BAEPs in our patients may be related to central metabolic disorder rather than hearing loss.

Adult↗

Hippocampal adequacy versus functional reserve: predicting memory functions following temporal lobectomy.

While decrements in memory following temporal lobectomy for intractable epilepsy remain a major neurocognitive complication of surgical intervention, it has been difficult to identify patients who are most at risk for developing decrements in their memory functions following surgery. Two different models of hippocampal functioning have been posited to account for postsurgical memory losses: hippocampal reserve versus functional adequacy. This article briefly examines the basis of the traditional model of hippocampal reserve, which suggests that it is the reserve or capacity of the contralateral hippocampus to support memory after surgery that determines whether changes in memory function will be observed. A more in-depth review of emerging data from studies of function (baseline neuropsychological testing and intracarotid amytal procedure) and structure (histologic cell densities and MRI volumetrics) supporting a functional adequacy model of hippocampal functioning is then presented. Data from these latter studies provide strong convergent support for the view that the risk for memory decrements following mesial temporal lobe epilepsy surgery is inversely related to the functional adequacy of the tissue to be resected. Data reviewed here have broad implications for the field of neuropsychology. Not only do the data reported in this article challenge some of the basic tenets of our understanding of the role of the hippocampus in memory functioning, but they illustrate the importance of ongoing research, critical reevaluation of basic concepts, and the importance of self-scrutiny in light of new technologies.

Journal Article↗

Brain 18F-FDG PET in the diagnosis of neurodegenerative dementias: comparison with perfusion SPECT and with clinical evaluations lacking nuclear imaging.

The clinical identification and differential diagnosis of dementias is especially challenging in the early stages, but the need for early, accurate diagnosis has become more important, now that several medications for the treatment of mild to moderate Alzheimer's disease (AD) are available. Many neurodegenerative diseases produce significant brain-function alterations detectable with PET or SPECT even when structural images with CT or MRI reveal no specific abnormalities. (18)F-FDG PET images of AD demonstrate focally decreased cerebral metabolism involving especially the posterior cingulate and neocortical association cortices, while largely sparing the basal ganglia, thalamus, cerebellum, and cortex mediating primary sensory and motor functions. Assessment of the precise diagnostic accuracy of PET had until recently been hindered by the paucity of data on diagnoses made using PET and confirmed by definitive histopathologic examination. In the past few years, however, studies comparing neuropathologic examination with PET have established reliable and consistent accuracy for diagnostic evaluations using PET-accuracies substantially exceeding those of comparable studies of the diagnostic value of SPECT or of both modalities assessed side by side, or of clinical evaluations done without nuclear imaging. Similar data are emerging concerning the prognostic value of (18)F-FDG PET. Improvements in the ability of PET to identify very early changes associated with AD and other neurodegenerative dementias are currently outpacing improvements in therapeutic options, but with advances in potential preventive and disease-modifying treatments appearing imminent, early detection and diagnosis will play an increasing role in the management of dementing illness.

Brain↗

[A case of hypertrophic pachymeningitis, resolved by antimicrobial therapy].

A 65-year-old woman with diabetes mellitus and chronic otitis media developed headache, fever, and hoarseness, all of which did not responded to the oral antibiotics. As stiff neck and lower cranial nerve palsies appeared, bacterial meningitis was suspected. Neurological examination revealed the right hearing disturbance, right recurrent laryngeal nerve palsy, left sternocleidomastoid muscle atrophy and bilateral tongue atrophy. The CSF examination revealed mild pleocytosis and elevated protein, but no bacterial organism was cultured from the CSF. CT scans showed bilateral mastoiditis, and the right mastoid process and a posterior part of the petrous bone were eroded, indicating the exposed bony structures to the posterior fossa. MRI scans demonstrated the thickening of the dura mater of the posterior fossa and the right cerebellar tentorium. This is a rare example of bacterial pachymeningitis of the posterior fossa, the clinical symptoms and MRI findings of which resolved solely by antimicrobial agents without corticosteroid.

Aged↗

[Bridging the genomic approach and the neurodevelopmental and neurodenerative hypothesis of schizophrenia].

Schizophrenia is hypothesized as a neurodevelopmental and neurodegenerative disorder based on the following findings. 1. MRI studies have revealed brain structural abnormalities from the onset of schizophrenia and the progress of these structural abnormalities. 2. Histopathological studies have elucidated cytoarchitectural abnormalities in schizophrenic brains without gliosis. 3. Obstetric complications are one of the risk factors for schizophrenia. 4. Relapse of schizophrenia results in a deteriorating progress of the disorder. Furthermore, data from family, twin and adoption studies show evidence of a substantial genetic component in schizophrenia, Thus, a molecular genetic study combined with a neurodevelopmental and neurodegenerative hypothesis is required to elucidate the pathophysiology of schizophrenia. The positive association between neuregulin 1 and Icelandic schizophrenia that has been reproduced in Scottish and North European schizophrenia is one of the intriguing examples of this type of research. Neuregulin 1 regulates the cytoarchitecture of brain. Mice mutated for neuregulin 1 show a behavioral phenotype that overlaps with mouse models for schizophrenia. Furthermore, the behavioral phenotypes of the neuregulin 1 hypomorphs are reversible with clozapine. We also demonstrated a positive association between schizophrenia and a 5-HT5A receptor polymorphism, Pro15Ser, that may have role in cell differentiation in the brain.

Animals↗

[Digital model of human lower extremity musculature based on CT & MRI].

A new method to reconstruct comparatively complete muscle model of human lower limb from CT and MRI data is presented. Topological structure of more than fourteen muscles is built and the coordinates of origin and insertion points are given. Based on this model, straight-line model and centroid-line muscle model are acquired. Muscle force prediction is discussed according to the model reconstructed, and a multi-objective optimization method is put forward for evaluating muscle forces of human lower extremity.

Humans↗

Neuropsychological and neuroimaging aspects of latent hepatic encephalopathy (LHE).

It has become increasingly clear that many cirrhotic patients who do not display overt clinical encephalopathy, on closer examination, do demonstrate significant cognitive impairment, which often goes unrecognised. This "latent" hepatic encephalopathy (LHE) is usually characterised by memory impairment and psychomotor slowing, and is not simply attributable to the effects of alcohol. Structural neuroimaging studies (CT and MRI) have produced conflicting results. Functional neuroimaging studies (PET and SPECT) which have measured regional cerebral blood flow, however, have found evidence of increased regional cerebral activity in sub-cortical areas in LHE patients, with the degree of sub-cortical activity correlated with the severity of neuropsychological impairment.

Cognition Disorders↗

[A case report of giant esophageal leiomyoma associated with an epiphrenic esophageal diverticulum].

A well-nourished 33-year-old male, who was entirely asymptomatic and in apparently good health, was referred to our hospital because of abnormal findings on a routine chest X-ray film. A chest X-ray taken upon admission revealed an oval mass suggesting a mediastinal tumor in the posterior mediastinum. An esophagogram demonstrated severe distortion of the esophageal lumen and an epiphrenic diverticulum on the right side. Endoscopy disclosed a submucosal bulge covered by normal mucosa. The mass, which was located on the right diaphragm between the heart and right ribs, appeared to be of homogenous density on CT scan and MRI films. Infiltration of contiguous structures and enlargement of mediastinal lymph nodes appeared to be absent. The preoperative diagnosis was an esophageal leiomyoma. A right posterior thoracotomy was performed in the prone position under general anesthesia. The tumor (12 x 8 x 4.5 cm, 170 g) associated with an epiphrenic esophageal diverticulum was removed by a partial esophageal resection. The pathologic specimen showed a leiomyoma with normal esophageal mucosa and a true diverticulum containing all the layers of the esophageal wall. We suggest that the diverticulum resulted from retraction of the esophageal wall related to the extraluminal growth of the leiomyoma.

Adult↗

Generation of three-dimensional medical thermograms.

To visualise non-invasively human organs in their true form and shape has intrigued mankind for centuries. Three-dimensional (3D) imaging is one recent development that has brought us closer to fulfilling the age-old quest of non-invasive visualisation so that diagnoses by doctors can be efficiently enhanced. Nowadays, 3D CT and MRI images have been very popular. Thermography is an important medical imaging technique that displays the temperature distribution on the surface of a human organ and it has been proved to be significant in offering a unique physiological reflection of pathology that may confirm or enhance the anatomic findings of other diagnostic imaging modalities. It is the only imaging modality that can evaluate pain whereas plain radiographs, CT and MRI, etc. can only depict structural anatomic abnormalities that may not always coincide with patients' clinical complaints. It is against this background that 3D thermograms have been developed. A set of comprehensive calibration procedures for the 3-camera system have been designed based on different models for the optical and infrared cameras. The accuracy of the results is high enough to produce 3D thermograms that can be used to correlate with the 3D images from other medical imaging modalities. One important achievement of the system is that the resultant 3D images are absolutely dimensioned and hence, it is particularly favourable for fully autonomous applications with robots. The system can also provide an overall picture of both the structural abnormalities and nervous responses of patients.

Algorithms↗

[Memory in multiple sclerosis: review of performance and relationship with clinical variables and neuroimaging].

INTRODUCTION: Neuropsychological studies in multiple sclerosis (MS) mainly have centred on the study of memory disorder. DEVELOPMENT: The prevalence of memory deficits in MS population is around 40-60%. These deficits could be sum up in an impaired immediate memory, a learning capacity lower than normal controls subjects and a worse long term memory. The results of the reviewed studies about the relationship between performance in memory tasks and clinical variables, show that physical disability and depressive symptoms do not influence this performance. Whilst, years of evolution and, mainly, disease course are related to a worse performance in memory tasks. In structural neuroimaging studies (CT and MRI) it is considered that ventricular dilatation and the total lesion load are predictor variables of MS patients performance in different memory tasks. CONCLUSION: This paper reviews several studies relative to amnesic function in subjects suffering from MS, emphasizing the most relevant contributions of the present neuropsychological literature.

Brain↗

Corpus callosal connection mapping using cortical gray matter parcellation and DT-MRI.

Population maps of the corpus callosum (CC) and cortical lobe connections were generated by combining cortical gray matter parcellation with the diffusion tensor fiber tractography of individual subjects. This method is based on the fact that the cortical lobes of both hemispheres are interconnected by the corpus callosal fibers. T1-weighted structural MRIs and diffusion tensor MRIs (DT-MRI) of 22 right-handed, healthy subjects were used. Forty-seven cortical parcellations in the dorsal prefrontal cortex, ventral prefrontal cortex, sensory-motor cortex, parietal cortex, temporal cortex, and occipital cortex were semi-automatically derived from structural MRIs, registered to DT-MRI, and used to identify callosal fibers. The probabilistic connections to each cortex were mapped on entire mid-sagittal CC voxels that had anatomical homology between subjects as determined by spatial registration. According to the population maps of the callosal connections, the ventral prefrontal cortex and parts of the dorsal prefrontal cortex both project fibers through the genu and rostrum. The CC regions through which the superior frontal cortex passes extend into the posterior body. Fibers arising from the parietal lobe and occipital lobe run mainly through the splenium, while fibers arising from the sensory-motor cortex pass through the isthmus. In general, dorsal or medial cortical lobes project fibers through the dorsal region of the CC, while lateral cortical lobes project fibers through the ventral region of the CC. The probabilistic subdivision of the CC by connecting cortical gray matter provides a more precise understanding of the CC.

Brain Mapping↗

Neuroanatomy and neurophysiology in schizophrenia.

Schizophrenia is a major mental disorder, characterized by their set of symptoms, including hallucinatory-delusional symptoms, thought disorder, emotional flattening, and social withdrawal. Since 1980s, advances in neuroimaging and neurophysiological techniques have provided tremendous merits for investigations into schizophrenia as a brain disorder. In this article, we first overviewed neuroanatomical studies using structural magnetic resonance imaging (s-MRI), MR spectroscopy (MRS), and postmortem brains, followed by neurophysiological studies using event-related potentials (ERPs) and magnetoencephalography (MEG), in patients with schizophrenia. Evidences from these studies suggest that schizophrenia is a chronic brain disorder, structurally and functionally affecting various cortical and subcortical regions involved in cognitive, emotional, and motivational aspects of human behavior. Second, we reviewed recent investigations into neurobiological basis for schizophrenic symptoms (auditory hallucinations and thought disorder) using these indices as well as hemodynamic assessments such as positron emission tomography (PET) and functional MRI (f-MRI). Finally, we addressed the issue of the heterogeneity of schizophrenia from the neurobiological perspective, in relation to the neuroanatomical and neurophysiological measures.

Brain↗

Electroclinical correlates of flumazenil and fluorodeoxyglucose PET abnormalities in lesional epilepsy.

OBJECTIVE: To analyze the clinical utility of [11C]flumazenil (FMZ) PET to detect perilesional and remote cortical areas of abnormal benzodiazepine receptor binding in relation to MRI, 2-deoxy-2-[18F]fluoro-d-glucose (FDG) PET, and electrocorticographic (ECoG) findings as well as clinical characteristics of the epilepsy in epileptic patients with brain lesion. BACKGROUND: The success of resective surgery in patients with medically intractable epilepsy and brain lesion depends not only on removal of the lesion itself but also on the reliable presurgical delineation of the epileptic cortex that commonly extends beyond it. PET could provide a noninvasive identification of such epileptogenic areas. METHODS: Seventeen patients underwent high resolution MRI, FDG and FMZ PET, and presurgical EEG evaluation, including chronic intracranial ECoG monitoring or intraoperative ECoG. Regional cortical FDG/FMZ PET abnormalities were defined on partial volume-corrected PET images using an objective method based on a semiautomated definition of areas with abnormal asymmetry. Structural lesions were defined on coregistered MRI. The marked PET abnormalities visualized on three-dimensional cortical surface were compared with each other, to the extent of MRI-defined lesion, as well as to ECoG findings. RESULTS: The mean surface extent of FMZ PET abnormalities was significantly larger than the corresponding structural lesions, but it was significantly smaller than areas of glucose hypometabolism. The size of perilesional FDG PET abnormalities showed a correlation with the lifetime number of seizures (r = 0.93, p = 0.001). The extent of perilesional FMZ PET abnormalities was independent of the seizure number and showed an excellent correspondence with spiking cortex, the resection of which resulted in seizure-free outcome in all but one operated patient. Remote FMZ PET abnormalities (n = 6) were associated with early age at seizure onset (p = 0.048) and appeared in ipsilateral synaptically connected regions from the lesion area. CONCLUSIONS: Three-dimensional surface-rendered FMZ PET is able to delineate perilesional epileptic cortex, and it may be especially useful to localize such areas in patients with extensive perilesional glucose hypometabolism associated with a large number of seizures. Remote FMZ PET abnormalities in patients with early onset and long duration of epilepsy might represent secondary epileptogenesis, but this requires further study.

Adolescent↗

Anatomy of the clitoris.

PURPOSE: We present a comprehensive account of clitoral anatomy, including its component structures, neurovascular supply, relationship to adjacent structures (the urethra, vagina and vestibular glands, and connective tissue supports), histology and immunohistochemistry. We related recent anatomical findings to the historical literature to determine when data on accurate anatomy became available. MATERIALS AND METHODS: An extensive review of the current and historical literature was done. The studies reviewed included dissection and microdissection, magnetic resonance imaging (MRI), 3-dimensional sectional anatomy reconstruction, histology and immunohistochemical studies. RESULTS: The clitoris is a multiplanar structure with a broad attachment to the pubic arch and via extensive supporting tissue to the mons pubis and labia. Centrally it is attached to the urethra and vagina. Its components include the erectile bodies (paired bulbs and paired corpora, which are continuous with the crura) and the glans clitoris. The glans is a midline, densely neural, non-erectile structure that is the only external manifestation of the clitoris. All other components are composed of erectile tissue with the composition of the bulbar erectile tissue differing from that of the corpora. The clitoral and perineal neurovascular bundles are large, paired terminations of the pudendal neurovascular bundles. The clitoral neurovascular bundles ascend along the ischiopubic rami to meet each other and pass along the superior surface of the clitoral body supplying the clitoris. The neural trunks pass largely intact into the glans. These nerves are at least 2 mm in diameter even in infancy. The cavernous or autonomic neural anatomy is microscopic and difficult to define consistently. MRI complements dissection studies and clarifies the anatomy. Clitoral pharmacology and histology appears to parallel those of penile tissue, although the clinical impact is vastly different. CONCLUSIONS: Typical textbook descriptions of the clitoris lack detail and include inaccuracies. It is impossible to convey clitoral anatomy in a single diagram showing only 1 plane, as is typically provided in textbooks, which reveal it as a flat structure. MRI provides a multiplanar representation of clitoral anatomy in the live state, which is a major advantage, and complements dissection materials. The work of Kobelt in the early 19th century provides a most comprehensive and accurate description of clitoral anatomy, and modern study provides objective images and few novel findings. The bulbs appear to be part of the clitoris. They are spongy in character and in continuity with the other parts of the clitoris. The distal urethra and vagina are intimately related structures, although they are not erectile in character. They form a tissue cluster with the clitoris. This cluster appears to be the locus of female sexual function and orgasm.

Anatomy↗