异常 发表于 2025-3-25 07:15:20
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Enhanced Dynamic Source Routing Based on Link Capacity and Queue Optimization in MANET (DSR-LQ),uting design of mobile ad hoc networks (MANETs) in a unified manner. DSR-LQ routing techniques leverage the light load reliable path for routing and load balancing by managing incoming outgoing packets on links. In this routing strategy, the buffer capacity of the nodes chosen for forwarding data pa遣返回国 发表于 2025-3-25 22:30:38
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Down Syndrome Detection using DCNN,Here, we develop a method of identifying Down syndrome using facial images and deep convolutional neural networks. In obvious cases, this can easily be seen from the newborn. But in subtle cases, this is very difficult, even for geneticists and experienced morphologists. To assist in the diagnosis o立即 发表于 2025-3-26 07:09:29
Positioned Stream Cipher Basing on Fibonacci Sequence,e. This positional stream cipher where the encrypted message characters are placed at different positions of the cipher band width is secure against all types of conventional stream cipher attacks. No public or secret key is shared among the members of the communicating group. The encryption techniq推迟 发表于 2025-3-26 08:34:23
Digital Twin for Smart Factory Network QoS Enhancement Experiments,tSim—the network simulator in conjunction with Node-RED, a programming tool and a real-time database consisting of the current sensor data from the physical objects. This paper also describes a QoS enhancement experimental setup for real-time monitoring of induction motor health, using the proposed背书 发表于 2025-3-26 14:06:13
ment suggest a common pattern for cardiac hemodynamics in human adults. In the human fetal heart, hemodynamic abnormalities during gestation are known to progress to congenital heart malformations by birth. In this chapter, we discuss the current state of the knowledge of the prenatal cardiac hemodycravat 发表于 2025-3-26 20:39:07
Abhishek Kumar,Neetesh Kumar Guptacterization of distinct cardiac populations such as the hard-to-capture cardiac conduction system and the intracardiac immune population. Therefore, single-cell profiling has also resulted in new insights into the regulation of cardiac regeneration and injury repair. Single-cell multiomics approache