Results 41 to 50 of about 3,568 (259)
Reciprocal control of viral infection and phosphoinositide dynamics
Phosphoinositides, although scarce, regulate key cellular processes, including membrane dynamics and signaling. Viruses exploit these lipids to support their entry, replication, assembly, and egress. The central role of phosphoinositides in infection highlights phosphoinositide metabolism as a promising antiviral target.
Marie Déborah Bancilhon, Bruno Mesmin
wiley +1 more source
Learning-Oriented QoS- and Drop-Aware Task Scheduling for Mixed-Criticality Systems
In Mixed-Criticality (MC) systems, multiple functions with different levels of criticality are integrated into a common platform in order to meet the intended space, cost, and timing requirements in all criticality levels.
Behnaz Ranjbar +4 more
doaj +1 more source
Engineering mixed-criticality interactive applications
In the field of critical systems, safety standards such as DO-178C define Development Assurance Levels (DALs) for software systems (or sub-systems). The higher the consequence of a failure the higher DAL is required by certification authorities. Developing a system at a DAL A requires the use of formal description techniques and is thus expensive.
Camille Fayollas +3 more
openaire +2 more sources
Fluorescent probes allow dynamic visualization of phosphoinositides in living cells (left), whereas mass spectrometry provides high‐sensitivity, isomer‐resolved quantitation (right). Their synergistic use captures complementary aspects of lipid signaling. This review illustrates how these approaches reveal the spatiotemporal regulation and quantitative
Hiroaki Kajiho +3 more
wiley +1 more source
Mixed Criticality Reward-Based Systems Using Resource Reservation
Real-time systems mostly interact with the external world and each input operation must meet predetermined deadlines to be useful. However, in many real-time applications, a partial result is also acceptable. We developed a reward-based mixed criticality
Amjad Ali +5 more
doaj +1 more source
Global Adaptation Controlled by an Interactive Consistency Protocol
Static schedules for systems can lead to an inefficient usage of the resources, because the system’s behavior cannot be adapted at runtime. To improve the runtime system performance in current time-triggered Multi-Processor System on Chip (MPSoC), a ...
Alina Lenz, Roman Obermaisser
doaj +1 more source
Mixed-State Long-Range Order and Criticality from Measurement and Feedback
We propose a general framework for using local measurements, local unitaries, and nonlocal classical communication to construct quantum channels, which can efficiently prepare mixed states with long-range quantum order or quantum criticality.
Tsung-Cheng Lu +3 more
doaj +1 more source
Structural and biochemical characterisations show that the planar cell polarity (PCP) protein Inturned harbours a unique PDZ‐like domain that does not bind canonical PDZ‐binding motifs (PBMs) like that of another PCP protein Vangl2. In contrast, the apical‐basal polarity protein Scribble contains four PDZ domains that bind Vangl2, but one PDZ domain ...
Stephan Wilmes +4 more
wiley +1 more source
Performance-Based Scheduling in Distributed Mixed Criticality Systems
With a focus on computationally intensive, distributed, and parallel workloads, scheduling in mixed-criticality distributed systems presents significant challenges due to shared memory and resources, as well as the diverse demands of tasks.
Amjad Ali +5 more
doaj +1 more source
Leveraging Mixed Criticality Task Budgets
Dans les systèmes à criticité mixte, les modèles classiques supposent un budget de temps d'exécution estimé pour les tâches de chaque criticité possible, et lorsqu'un job présente un dépassement de ce budget, ils ont tendance à rejeter les tâches à faible criticité pour préserver l'ordonnancement des tâches à criticité plus élevée.
Khelassi, Mohamed Amine +1 more
openaire +2 more sources

