1,753 research outputs found
The infinite line pressure probe
The infinite line pressure probe provides a means for measuring high frequency fluctuating pressures in difficult environments. A properly designed infinite line probe does not resonate; thus its frequency response is not limited by acoustic resonance in the probe tubing, as in conventional probes. The characteristics of infinite line pressure probes are reviewed and some applications in turbine engine research are described. A probe with a flat-oval cross section, permitting a constant-impedance pressure transducer installation, is described. Techniques for predicting the frequency response of probes with both circular and flat-oval cross sections are also cited
First-principles method for high- photonic crystal cavity mode calculations
We present a first-principles method to compute radiation properties of
ultra-high quality factor photonic crystal cavities. Our Frequency-domain
Approach for Radiation (FAR) can compute the far-field radiation pattern and
quality factor of cavity modes times more rapidly than conventional
finite-difference time domain calculations. It also provides a simple rule for
engineering the cavity's far-field radiation pattern
Characterising seizures in anti-NMDA-receptor encephalitis with dynamic causal modelling
We characterised the pathophysiology of seizure onset in terms of slow fluctuations in synaptic efficacy using EEG in patients with anti-N-methyl-d-aspartate receptor (NMDA-R) encephalitis. EEG recordings were obtained from two female patients with anti-NMDA-R encephalitis with recurrent partial seizures (ages 19 and 31). Focal electrographic seizure activity was localised using an empirical Bayes beamformer. The spectral density of reconstructed source activity was then characterised with dynamic causal modelling (DCM). Eight models were compared for each patient, to evaluate the relative contribution of changes in intrinsic (excitatory and inhibitory) connectivity and endogenous afferent input. Bayesian model comparison established a role for changes in both excitatory and inhibitory connectivity during seizure activity (in addition to changes in the exogenous input). Seizures in both patients were associated with a sequence of changes in inhibitory and excitatory connectivity; a transient increase in inhibitory connectivity followed by a transient increase in excitatory connectivity and a final peak of excitatory-inhibitory balance at seizure offset. These systematic fluctuations in excitatory and inhibitory gain may be characteristic of (anti NMDA-R encephalitis) seizures. We present these results as a case study and replication to motivate analyses of larger patient cohorts, to see whether our findings generalise and further characterise the mechanisms of seizure activity in anti-NMDA-R encephalitis
Electrically controlled modulation in a photonic crystal nanocavity
We describe a compact modulator based on a planar photonic crystal nanocavity
whose resonance is electrically controlled. A forward bias applied across a
p-i-n diode shifts the cavity into and out of resonance with a continuous-wave
laser field in a waveguide. The sub-micron size of the nanocavity promises
extremely low capacitance, high bandwidth, and efficient on-chip integration in
optical interconnects.Comment: 9 pages, 4 figure
Efficient generation of single and entangled photons on a silicon photonic integrated chip
We present a protocol for generating on-demand, indistinguishable single
photons on a silicon photonic integrated chip. The source is a time-multiplexed
spontaneous parametric down-conversion element that allows optimization of
single-photon versus multiphoton emission while realizing high output rate and
indistinguishability. We minimize both the scaling of active elements and the
scaling of active element loss with multiplexing. We then discuss detection
strategies and data processing to further optimize the procedure. We simulate
an improvement in single-photon-generation efficiency over previous
time-multiplexing protocols, assuming existing fabrication capabilities. We
then apply this system to generate heralded Bell states. The generation
efficiency of both nonclassical states could be increased substantially with
improved fabrication procedures.Comment: 7 pages, 4 figure
Revision 1 Size and position of the healthy meniscus, and its Correlation with sex, height, weight, and bone area- a cross-sectional study
<p>Abstract</p> <p>Background</p> <p>Meniscus extrusion or hypertrophy may occur in knee osteoarthritis (OA). However, currently no data are available on the position and size of the meniscus in asymptomatic men and women with normal meniscus integrity.</p> <p>Methods</p> <p>Three-dimensional coronal DESSwe MRIs were used to segment and quantitatively measure the size and position of the medial and lateral menisci, and their correlation with sex, height, weight, and tibial plateau area. 102 knees (40 male and 62 female) were drawn from the Osteoarthritis Initiative "non-exposed" reference cohort, including subjects without symptoms, radiographic signs, or risk factors for knee OA. Knees with MRI signs of meniscus lesions were excluded.</p> <p>Results</p> <p>The tibial plateau area was significantly larger (p < 0.001) in male knees than in female ones (+23% medially; +28% laterally), as was total meniscus surface area (p < 0.001, +20% medially; +26% laterally). Ipsi-compartimental tibial plateau area was more strongly correlated with total meniscus surface area in men (r = .72 medially; r = .62 laterally) and women (r = .67; r = .75) than contra-compartimental or total tibial plateau area, body height or weight. The ratio of meniscus versus tibial plateau area was similar between men and women (p = 0.22 medially; p = 0.72 laterally). Tibial coverage by the meniscus was similar between men and women (50% medially; 58% laterally), but "physiological" medial meniscal extrusion was greater in women (1.83 Ā± 1.06mm) than in men (1.24mm Ā± 1.18mm; p = 0.011).</p> <p>Conclusions</p> <p>These data suggest that meniscus surface area strongly scales with (ipsilateral) tibial plateau area across both sexes, and that tibial coverage by the meniscus is similar between men and women.</p
The global development project contested: the local politics of the PRSP process in Malawi
Development, in an age of globalizations, has indeed become a global project. However, this project remains contested and contestable. While much attention has been given to this contestation at a macro-policy level, the dynamics of such contestations on the ground remain less studied. Noting that development projects, policies and programs are themselves products of power relations and social struggles, this paper focuses on the dynamics of these relations and struggles in relation to the dissemination of the global development project in Malawi. Drawing from the experiences and fractious journey from 2000 to 2006 of the broad-based civil society network involved in Malawiās ongoing PRSP process, the paper shows how local actors draw creatively on globalized discourses of participation and representation to contest and confound the objectives of the elites, thereby complicating the channels through which the global development project is promulgated
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