scholarly journals A Path to Qualification of PET/MR Scanners for Multicenter Brain Imaging Studies: Evaluation of MR-based Attenuation Correction Methods Using a Patient Phantom

2021 ◽  
pp. jnumed.120.261881
Author(s):  
Ciprian Catana ◽  
Richard Laforest ◽  
Hongyu An ◽  
Fernando Boada ◽  
Tuoyu Cao ◽  
...  
2021 ◽  
Vol 11 (3) ◽  
pp. 299
Author(s):  
Yeong Jin Kim ◽  
Tae-Young Jung ◽  
In-Young Kim ◽  
Shin Jung ◽  
Kyung-Sub Moon

Postoperative complications after brain tumor surgery occur occasionally and it is important for clinicians to know how to properly manage each complication. Here, we described a rare case of late-onset, subdural fluid collection localized at the resection cavity that caused motor weakness after convexity meningioma resection, requiring differentiation from an abscess, to help clinicians determine treatment strategies. A 58-year-old right-handed female was admitted to the hospital with a headache and posterior neck pain. Brain computed tomography (CT) scans and magnetic resonance (MR) images showed a homogeneously enhanced, calcified, and multi-lobulated mass adjacent to the right motor strip without perilesional edema. The patient underwent surgery without incident or residual deficit and was discharged from the hospital in good condition. Six weeks after surgery, the patient complained of left arm monoparesis without infection-related symptoms. Brain imaging studies showed a localized fluid collection in the resection cavity with an enhanced margin and perilesional edema. Diffusion restriction was not detected. After three months of conservative treatment without surgery or antibiotics, she recovered from the neurologic deficits, and brain imaging studies showed the spontaneous regression of the fluid collection and perilesional edema. Late-onset, localized fluid collection at the resection cavity, which is similar to an abscess, could occur three to eight weeks after meningioma resection. When there are predisposing factors, including blood components and hemostatic materials in the surgical cavity, it is important for clinicians to understand this type of complication and choose conservative management as a feasible strategy.


2018 ◽  
Vol 18 (1) ◽  
Author(s):  
Jakub Baran ◽  
Zhaolin Chen ◽  
Francesco Sforazzini ◽  
Nicholas Ferris ◽  
Sharna Jamadar ◽  
...  

1992 ◽  
Vol 160 (4) ◽  
pp. 442-460 ◽  
Author(s):  
Christos Pantelis ◽  
Thomas R. E. Barnes ◽  
Hazel E. Nelson

A syndrome of subcortical dementia has been described in conditions predominantly affecting the basal ganglia or thalamus, structures that have also been implicated in the pathogenesis of schizophrenia. There are similarities between subcortical dementia and the type II syndrome of schizophrenia, in terms of clinical features, pattern of neuropsychological deficits, pathology, biochemistry and data from brain-imaging studies. These similarities raise the possibility that certain schizophrenic symptoms, particularly negative symptoms and disturbance of movement, may reflect subcortical pathology. Neuropsychological deficits of presumed frontal lobe origin have been reported in some schizophrenic subjects. The occurrence of such deficits in a condition in which frontal lobe pathology has not been clearly demonstrated may be explicable in terms of a subcortical deafferentation of the pre-frontal cortex.


Author(s):  
Peter Indefrey

This article adopts the production model of Levelt to discuss brain imaging studies of continuous speech. Conclusions about the involvement of brain regions in processes of language production are mainly drawn on the basis of the presence or absence of processing components of speaking in certain experimental tasks. Such conclusions are largely theory independent, because differences between current models do not concern the assumed processing levels but the exact nature of the information flow between them. In a second step, the article tests some of these conclusions by comparing the few available data on activation time courses of brain regions and independent evidence on the timing of processes in language production. It also discusses brain regions involved in word production, conceptually driven lexical selection, phonological code (word form) retrieval, phonological encoding, phonetic encoding and articulation, self-monitoring, whether the hemodynamic core areas are necessary for word production, and bilingual language production.


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