50 research outputs found
Causal hierarchy within the thalamo-cortical network in spike and wave discharges
Background: Generalised spike wave (GSW) discharges are the electroencephalographic (EEG) hallmark of absence seizures, clinically characterised by a transitory interruption of ongoing activities and impaired consciousness, occurring during states of reduced awareness. Several theories have been proposed to explain the pathophysiology of GSW discharges and the role of thalamus and cortex as generators. In this work we extend the existing theories by hypothesizing a role for the precuneus, a brain region neglected in previous works on GSW generation but already known to be linked to consciousness and awareness. We analysed fMRI data using dynamic causal modelling (DCM) to investigate the effective connectivity between precuneus, thalamus and prefrontal cortex in patients with GSW discharges. Methodology and Principal Findings: We analysed fMRI data from seven patients affected by Idiopathic Generalized Epilepsy (IGE) with frequent GSW discharges and significant GSW-correlated haemodynamic signal changes in the thalamus, the prefrontal cortex and the precuneus. Using DCM we assessed their effective connectivity, i.e. which region drives another region. Three dynamic causal models were constructed: GSW was modelled as autonomous input to the thalamus (model A), ventromedial prefrontal cortex (model B), and precuneus (model C). Bayesian model comparison revealed Model C (GSW as autonomous input to precuneus), to be the best in 5 patients while model A prevailed in two cases. At the group level model C dominated and at the population-level the p value of model C was ∼1. Conclusion: Our results provide strong evidence that activity in the precuneus gates GSW discharges in the thalamo-(fronto) cortical network. This study is the first demonstration of a causal link between haemodynamic changes in the precuneus - an index of awareness - and the occurrence of pathological discharges in epilepsy. © 2009 Vaudano et al
Topology by Design in Magnetic nano-Materials: Artificial Spin Ice
Artificial Spin Ices are two dimensional arrays of magnetic, interacting
nano-structures whose geometry can be chosen at will, and whose elementary
degrees of freedom can be characterized directly. They were introduced at first
to study frustration in a controllable setting, to mimic the behavior of spin
ice rare earth pyrochlores, but at more useful temperature and field ranges and
with direct characterization, and to provide practical implementation to
celebrated, exactly solvable models of statistical mechanics previously devised
to gain an understanding of degenerate ensembles with residual entropy. With
the evolution of nano--fabrication and of experimental protocols it is now
possible to characterize the material in real-time, real-space, and to realize
virtually any geometry, for direct control over the collective dynamics. This
has recently opened a path toward the deliberate design of novel, exotic
states, not found in natural materials, and often characterized by topological
properties. Without any pretense of exhaustiveness, we will provide an
introduction to the material, the early works, and then, by reporting on more
recent results, we will proceed to describe the new direction, which includes
the design of desired topological states and their implications to kinetics.Comment: 29 pages, 13 figures, 116 references, Book Chapte
Magnetization transfer imaging in ‘premanifest’ Huntington’s disease
To investigate whether magnetization transfer imaging (MTI) is a useful detector of diffuse brain abnormalities in ‘premanifest’ carriers of the Huntington’s disease (HD) gene mutation. Furthermore we examined the relations between MTI, clinical measures and CAG repeat length. Sixteen premanifest carriers of the HD gene without motor manifestation and 14 non-carriers underwent a clinical evaluation and a MRI scan. MTI analysis of whole brain, grey matter and white matter was performed producing magnetization transfer ratio (MTR) histograms. A lower peak height of the grey matter MTR histogram in carriers was significantly associated with more UHDRS motor abnormalities. Furthermore, a lower peak height of the whole brain, grey and white matter was strongly associated with a longer CAG repeat length. MTI measures themselves did not differ significantly between carriers and non-carriers. In premanifest HD mutation carriers, a lower MTR peak height, reflecting worse histological brain composition, was related to subtle motor abnormalities and higher CAG repeat length. Although we could not detect altered MTI characteristics in carriers of the HD gene mutation without clinical manifestations, we did provide evidence that the MTR peak height might reflect genetic and subclinical disease burden and may be of value in monitoring further disease progression and provide insight in clinical heterogeneity
Evidence for the return of subducted continental crust
Author Posting. © Nature Publishing Group, 2007. This is the author's version of the work. It is posted here by permission of Nature Publishing Group for personal use, not for redistribution. The definitive version was published in Nature 448 (2007): 684-687, doi:10.1038/nature06048.Substantial quantities of terrigenous sediments are known to enter the
mantle at subduction zones, but little is known about their fate in the mantle.
Subducted sediment may be entrained in buoyantly upwelling plumes and returned
to the earth’s surface at hotspots, but the proportion of recycled sediment in the
mantle is small and clear examples of recycled sediment in hotspot lavas are rare.
We report here remarkably enriched 87Sr/86Sr and 143Nd/144Nd isotope signatures
(up to 0.720830 and 0.512285, respectively) in Samoan lavas from three dredge
locations on the underwater flanks of Savai’i island, Western Samoa. The
submarine Savai’i lavas represent the most extreme 87Sr/86Sr isotope compositions
reported for ocean island basalts (OIBs) to date. The data are consistent with the
presence of a recycled sediment component (with a composition similar to upper
continental crust, or UCC) in the Samoan mantle. Trace element data show similar
affinities with UCC—including exceptionally low Ce/Pb and Nb/U ratios—that
complement the enriched 87Sr/86Sr and 143Nd/144Nd isotope signatures. The
geochemical evidence from the new Samoan lavas radically redefines the
composition of the EM2 (enriched mantle 2) mantle endmember, and points to the
presence of an ancient recycled UCC component in the Samoan plume
Experiments in Globalisation, Food Security and Land Use Decision Making
The globalisation of trade affects land use, food production and environmentsaround the world. In principle, globalisation can maximise productivity andefficiency if competition prompts specialisation on the basis of productive capacity.In reality, however, such specialisation is often constrained by practical or politicalbarriers, including those intended to ensure national or regional food security.These are likely to produce globally sub-optimal distributions of land uses. Bothoutcomes are subject to the responses of individual land managers to economicand environmental stimuli, and these responses are known to be variable and often(economically) irrational. We investigate the consequences of stylised food securitypolicies and globalisation of agricultural markets on land use patterns under avariety of modelled forms of land manager behaviour, including variation inproduction levels, tenacity, land use intensity and multi-functionality. We find that asystem entirely dedicated to regional food security is inferior to an entirelyglobalised system in terms of overall production levels, but that several forms ofbehaviour limit the difference between the two, and that variations in land useintensity and functionality can substantially increase the provision of food and otherecosystem services in both cases. We also find emergent behaviour that results inthe abandonment of productive land, the slowing of rates of land use change andthe fragmentation or, conversely, concentration of land uses following changes indemand levels
Primary epithelial tumors of the lacrimal gland; a retrospective analysis of 22 patients
This study analyzed the clinical and histopathological aspects, treatment and prognosis of 22 patients with primary epithelial tumors of the lacrimal gland treated in a single institution over 25 years. 191 lacrimal gland lesions retrieved from the archives of the Department of Pathology, Erasmus University Medical Center, were retrospectively reviewed. The clinical and surgical pathology files of 22 primary epithelial neoplasms (16 benign; 6 malignant tumors) were studied. All benign tumors were pleomorphic adenomas; 50% of the malignant neoplasms were adenoid cystic carcinomas. The mean time from complaint to diagnosis was 3 years for benign tumors and 6 months for malignancies. Most benign tumors were treated by local excision; no recurrences occurred. Treatment of malignant tumors varied but generally involved extensive surgery with postoperative radiotherapy. 50% of these patients showed regional and/or distant metastasis. 33% of patients with malignancy died of their disease. Most primary epithelial tumors of the lacrimal gland are pleomorphic adenomas. They have a long duration of symptoms before diagnosis, are treated by limited surgery and recur infrequently. Malignant tumors have a short duration of symptoms, are sometimes mistaken for inflammatory disease, and are, even in case of aggressive surgery, characterized by a high rate of local recurrence and metastasis
Equivalent pathways in melting and gelation of well-defined biopolymer networks
\u3cp\u3eWe use multiple particle tracking microrheology to study the melting and gelation behavior of well-defined collagen-inspired designer biopolymers expressed by the transgenic yeast P. Pastoris. The system consists of a hydrophilic random coil-like middle block and collagen-like end block. Upon cooling, the end blocks assemble into well-defined transient nodes with exclusively 3-fold functionality. We apply the method of time-cure superposition of the mean-square displacement of tracer beads embedded in the biopolymer matrix to study the kinetics and thermodynamics of approaching the gel point from both the liquid and the solid side. The melting point, gel point, and critical relaxation exponents are determined from the shift factors of the mean-square displacement and we discuss the use of dynamic scaling exponents to correctly determine the critical transition. Critical relaxation exponents obtained for different concentrations in both systems are compared with the currently existing dynamic models in literature. In our study, we find that, while the time scales of gelation and melting are different by orders of magnitude, and show inverse dependence on concentration, that the pathways followed are completely equivalent. (Figure Presented).\u3c/p\u3