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latency
A new latency-reducing and energy-efficient protocol for the wireless sensor network
      
They can both reduce latency and save energy in the wireless sensor network (WSN) while most others propose protocols that sacrifice latency for energy.
      
The simulation results show that RMAC spends half the latency of TLP, as well as consumes less energy than TLP.
      
The corresponding contact prediction algorithm makes use of both statistic and time sequence information of contacts and allows choosing the relay that has the earliest contact to the destination, which results in low average latency.
      
Results showed that as masker duration was increased, inhibition in neuronal firing was enhanced (P >amp;lt; 0.000 1, n = 41) and the latency of neurons was lengthened (P>amp;lt;0.01, n = 41).
      
Results from simulations and experiments show that the proposed compiler-directed method can reduce energy consumption of interconnection networks by 20~70%, at a loss of less than 1% network latency and performance degradation.
      
Data access latency is an important metric of system performance in data grid.
      
By means of efficient replication strategy, the amount of data transferred in a wide area network will decrease, and the average access latency of data will decrease ultimately.
      
The motivation of our research is to solve the optimized replica distribution problem in a data grid; that is, the system should utilize many replicas for every data with storage constraints to minimize the average access latency of data.
      
Over the years, the network storage bandwidth has increased rapidly while the node-to-node latency has not decreased much.
      
This is because the latency is dominated by the protocol software execution time in the kernel, instead of by the raw transmission time over the link.
      
The obtained data in many respects expand our knowledge about the role of latency in the system of interactions between baculoviruses and their insect hosts at different ecological levels.
      
Spectral characteristics of short latency auditory evoked potentials
      
Short-latency auditory evoked potentials during change in the physical parameter of a sound stimulus
      
Human Long-Latency Auditory Evoked Potentials during Radial Motion of the Sound Source
      
Human long-latency auditory evoked potentials were studied during simulation with variable-amplitude pulse sequences from a sound source moving to and from the subject.
      
Formulating the same tasks in the second (not native) language only increased the response latency without influencing its pattern.
      
The children's sensorimotor reaction to light and acoustic stimuli is characterized with regard for their age and sex on the basis of the latency of sensorimotor reactions (LSMR), which shortened significantly with age in children of either sex.
      
An inverse relationship between the P3 (P300) peak latency and the volume of short-term and operative memory in subjects with cognitive impairments was found.
      
Spectral Characteristics of Short-Latency Auditory Evoked Potentials in Neurological Diseases
      
 

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