1,019 research outputs found
Active management of multi-service networks.
Future multiservice networks will be extremely large and complex. Novel management solutions will be required to keep the management costs reasonable. Active networking enables management to be delegated to network users as a large set of independent small scale management systems. A novel architecture for an active network based management solution for multiservice networking is presented
Wicking of a liquid bridge connected to a moving porous surface
We study the coupled problem of a liquid bridge connected to a porous surface and an impermeable surface, where the gap between the surfaces is an externally controlled function of time. The relative motion between the surfaces influences the pressure distribution and geometry of the liquid bridge, thus affecting the shape of liquid penetration into the porous material. Utilizing the lubrication approximation and Darcy’s phenomenological law, we obtain an implicit integral relation between the relative motion between the surfaces and the shape of liquid penetration. A method to control the shape of liquid penetration is suggested and illustrated for the case of conical penetration shapes with an arbitrary cone opening angle. We obtain explicit analytic expressions for the case of constant relative speed of the surfaces as well as for the relative motion between the surfaces required to create conical penetration shapes. Our theoretical results are compared with experiments and reasonable agreement between the analytical and experimental data is observed
Chaos in Shear Flows
Almost 25 years ago Lorenz published his seminal
study on the existence of a strange attractor in the phase
space of a severely truncated model system arising from
the hydrodynamical equations describing two-dimensional
convection. Nearly a century ago Poincare
published his famous treatise Les Methodes Noovelles
de la Mecaniaue Celeste (1892) in which the possible
complexity of behavior in nonintegrable, conservative
systems was first envisioned. Both these works address
an age old puzzle: How do apparently stochastic outputs
arise from an entirely deterministic system subject to
non-stochastic inputs
Flow Velocity Measurement by Image Processing of Optically Activated Tracers
A computerized flow visualization technique
capable of quantifying the flow field automatically
has been developed. This technique uses afterglowing effect of optically activated phosphorescent
particles to retrieve vectorial information on each
trace. By using this information, in conjunction
with computer image processing, the flow field of a
free surface transient vortex was investigated
Effects of softwood biochar on the status of nitrogen species and elements of potential toxicity in soils
The effects of softwood-derived biochar materials on the chemical behaviour of environmental contaminants in
soils were examined in two microcosm scenarios. Addition of the biochar materials into an alkaline sandy soil
significantly reduced NH3 volatilization and made it available for conversion into NO3- via nitrification. This
process could be enhanced by an increased application rate of biochar produced at a higher pyrolysis temperature.
Under the alkaline conditions encountered in the experiment, the biochar surfaces tended to be negatively
charged which disfavours the adsorption of NO3-. Therefore, in a fully open system, the addition of
biochar materials was likely to contribute to nitrate leaching from the fertilized alkaline sandy soil. The effects of
the biochar materials on the immobilization of Fe2+ generated via anaerobic iron reduction in the inundated
contaminated soil were not observed, except for the treatment with a higher dose of biochar material produced
under pyrolysis temperature at 700°C after the 240th h of incubation. Arsenic showed similar behaviour to Fe.
Zn tended to have a higher affinity to the biochar, as compared to Mn. Immobilization of Pb occurred regardless
of whether or not the biochar is present
Accuracy of early rapid ultrasound in shock (RUSH) examination performed by emergency physician for diagnosis of shock etiology in critically ill patients
Background: Rapid Ultrasound in Shock (RUSH) is a recently reported emergency ultrasound protocol designed to help clinicians better recognize distinctive shock etiologies in a short time. We tried to evaluate the accuracy of early RUSH protocol performed by emergency physicians to predict the shock type in critically ill patients. Materials and Methods: Our prospective study was approved by the ethics committee of trauma research center, Baqiyatallah University of Medical Science, Iran. We enrolled 52 patients with shock state in the emergency department from April 2013 to October 2013. We performed early bed-side sonographic examination for participants based on RUSH protocol. Patients received all needed standard therapeutic and diagnostic interventions without delay and were followed to document their final diagnosis. Agreement (Kappa index) of initial impression provided by RUSH with final diagnosis, and also sensitivity, specificity, positive predictive value (PPV), and negative predictive value (NPV) of RUSH for diagnosis of each shock type were calculated. Results: Fifty-two patients were enrolled in our study. Kappa index was 0.7 (P value = 0.000), reflecting acceptable general agreement between initial impression and final diagnosis. For hypovolemic and obstructive shocks, the protocol had sensitivity of 100 but had lower PPV. For shocks with distributive or mixed etiology, RUSH showed PPV of 100 but had low sensitivity. For cardiogenic shocks, all reliability indices were above 90. Conclusion: We highlight the role of RUSH examination in the hands of an emergency physician in making a rapid diagnosis of shock etiology, especially in ruling out obstructive, cardiogenic, and hypovolemic types
Malignancy risk analysis in patients with inadequate fine needle aspiration cytology (FNAC) of the thyroid
Background
Thyroid fine needle aspiration cytology (FNAC) is the standard diagnostic modality for thyroid nodules. However, it has limitations among which is the incidence of non-diagnostic results (Thy1). Management of cases with repeatedly non-diagnostic FNAC ranges from simple observation to surgical intervention. We aim to evaluate the incidence of malignancy in non-diagnostic FNAC, and the success rate of repeated FNAC. We also aim to evaluate risk factors for malignancy in patients with non-diagnostic FNAC.
Materials and Methods
Retrospective analyses of consecutive cases with thyroid non diagnostic FNAC results were included.
Results
Out of total 1657 thyroid FNAC done during the study period, there were 264 (15.9%) non-diagnostic FNAC on the first attempt. On repeating those, the rate of a non-diagnostic result on second FNAC was 61.8% and on third FNAC was 47.2%. The overall malignancy rate in Thy1 FNAC was 4.5% (42% papillary, 42% follicular and 8% anaplastic), and the yield of malignancy decreased considerably with successive non-diagnostic FNAC. Ultrasound guidance by an experienced head neck radiologist produced the lowest non-diagnostic rate (38%) on repetition compared to US guidance by a generalist radiologist (65%) and by non US guidance (90%).
Conclusions
There is a low risk of malignancy in patients with a non-diagnostic FNAC result, commensurate to the risk of any nodule. The yield of malignancy decreased considerably with successive non-diagnostic FNAC
Hysteresis at low Reynolds number: the onset of 2D vortex shedding
Hysteresis has been observed in a study of the transition between laminar
flow and vortex shedding in a quasi-two dimensional system. The system is a
vertical, rapidly flowing soap film which is penetrated by a rod oriented
perpendicular to the film plane. Our experiments show that the transition from
laminar flow to a periodic K\'arm\'an vortex street can be hysteretic, i.e.
vortices can survive at velocities lower than the velocity needed to generate
them.Comment: RevTeX file 4 pages + 5 (encapsulated postscript) figures. to appear
in Phys.Rev.E, Rapid Communicatio
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