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Na voljo sta dva načina iskanja: enostavno in napredno. Enostavno iskanje lahko zajema niz več besed iz naslova, povzetka, ključnih besed, celotnega besedila in avtorja, zaenkrat pa ne omogoča uporabe operatorjev iskanja. Napredno iskanje omogoča omejevanje števila rezultatov iskanja z vnosom iskalnih pojmov različnih kategorij v iskalna okna in uporabo logičnih operatorjev (IN, ALI ter IN NE). V rezultatih iskanja se izpišejo krajši zapisi podatkov o gradivu, ki vsebujejo različne povezave, ki omogočajo vpogled v podroben opis gradiva (povezava iz naslova) ali sprožijo novo iskanje (po avtorjih ali ključnih besedah).

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1101 - 1110 / 2000
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1101.
Enhancing the reliability and accuracy of wireless sensor networks using a deep learning and blockchain approach with DV‑HOP algorithm for DDoS mitigation and node localization
Bhupinder Kaur, Deepak Prashar, Leo Mršić, Ahmad Almogren, Ateeq Ur Rehman, Ayman Altameem, Seada Hussen, 2025, izvirni znanstveni članek

Povzetek: Wireless sensor networks (WSNs) are subject to distributed denial-of-service (DDoS) attacks that impact data dependability, mobility of nodes, and energy drain. The remedy to these challenges in this work is a solution based on deep learning integrated with a blockchain-aided distance-vector hop (DV-HOP) localization algorithm for reliable and secure node localization. Incorporating a blockchain ledger makes the network more trustworthy as it verifies usual and unusual system activities, whereas the DV-HOP algorithm mitigates localization inaccuracies and enhances node placement. The system is evaluated according to different performance measures like localization error, accuracy ratio, average localization error (ALE), probability of location, false positive rate (FPR), false negative rate (FNR), energy utilization, network stability, node failure rate, node recovery rate, and malicious node detection rate. Experimental results reveal improved security, accuracy, and efficiency with 17% FPR and 15% FNR, outperforming the conventional methods. This model enhances WSN performance in different environments via precise data transmission from the source to the destination. The results confirm that integrating deep learning with blockchain and DV-HOP increases network robustness, thus making WSNs more secure against security attacks while reducing energy consumption and localization accuracy. The proposed model presents a strong solution for real-world applications in wireless network environments.
Ključne besede: wireless network devices, DV-HOP algorithm, blockchain ledger, reliable network devices, deep learning
Objavljeno v DiRROS: 09.09.2025; Ogledov: 310; Prenosov: 157
.pdf Celotno besedilo (3,73 MB)
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1102.
Hybrid Classical-Quantum Exact Solver for the QUBO Problem
Omkar Narayan Bihani, Aljaž Krpan, Roman Kužel, Janez Povh, 2025, objavljeni povzetek znanstvenega prispevka na konferenci

Ključne besede: high-performance computing, quantum computing, QUBO problems
Objavljeno v DiRROS: 09.09.2025; Ogledov: 318; Prenosov: 77
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1103.
1104.
Poročilo o preskusu št.: LVG 2025-126 : vzorec št. 2025/00571
Nikica Ogris, Špela Jagodic, Špela Hočevar, Barbara Piškur, 2025, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize
Objavljeno v DiRROS: 09.09.2025; Ogledov: 212; Prenosov: 0
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1105.
Poročilo o preskusu št.: LVG 2025-125 : vzorec št. 2025/00570
Barbara Piškur, Špela Jagodic, Špela Hočevar, Nikica Ogris, 2025, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize
Objavljeno v DiRROS: 09.09.2025; Ogledov: 249; Prenosov: 0
Gradivo ima več datotek! Več...

1106.
Poročilo o preskusu št.: LVG 2025-124 : vzorec št. 2025/00491
Nikica Ogris, Patricija Podkrajšek, Špela Hočevar, Barbara Piškur, 2025, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize
Objavljeno v DiRROS: 09.09.2025; Ogledov: 214; Prenosov: 0
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1107.
Poročilo o preskusu št.: LVG 2025-122 : vzorec št. 2025/00539/mdg
Maarten De Groot, 2025, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize
Objavljeno v DiRROS: 09.09.2025; Ogledov: 207; Prenosov: 0
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1108.
Magnetomechanical detachment of bacterial biofilms using anisotropic magnetic iron oxide nanochains
Matija Šavli, Manca Černila, Maja Caf, Abida Zahirović, Nika Zaveršek, Sebastjan Nemec, Spase Stojanov, Anja Klančnik, Jerica Sabotič, Slavko Kralj, Aleš Berlec, 2025, izvirni znanstveni članek

Povzetek: Bacterial biofilms attach to various surfaces and represent an important clinical and public health problem, as they are highly recalcitrant and are often associated with chronic, nonhealing diseases and healthcare-associated infections. Antibacterial agents are often not sufficient for their elimination and have to be combined with mechanical removal. Mechanical forces can be generated by actuating nonspherical (anisotropic) magnetically responsive nanoparticles in a rotating magnetic field. We have thus prepared anisotropic superparamagnetic nanochains in the size range of 0.5−1 μm by magnetically assembling several iron oxide nanoparticle clusters and coating them with a layer of silica with different shell morphologies: smooth, moderately rough, and highly rough. The silica surface was additionally functionalized with carboxylic groups to increase colloidal stability. The efficacy of the nanochains in biofilm removal was studied systematically with three different model nonpathogenic bacterial species Escherichia coli, Lactococcus lactis, and Pseudomonas fragi; two different magnetic field strengths; two stirring speeds; and two treatment durations. All bacterial species were engineered to express fluorescent proteins to enable quantification of biofilm removal by colony-forming unit count and fluorescence measurements. Nanochains removed >90% of Gram-negative E. coli and P. fragi with a stronger magnetic field, and <90% of Gram-positive L. lactis with a weaker magnetic field. Surface roughness of nanochains, duration, and stirring speed also affected removal, but the effect could not be generalized. In contrast to their effects on biofilms, the functionalized nanochains showed no toxicity to Caco-2 intestinal epithelial cells, regardless of whether magnetomechanical force was employed or not. In summary, we demonstrated that remotely controlled spatial movement of nanoparticles can generate sufficient mechanical forces to disperse attached biofilms while retaining safety in an epithelial cell model.
Ključne besede: bacterial biofilm, magnetomechanical detachment, magnetic nanoparticles, nanochains
Objavljeno v DiRROS: 09.09.2025; Ogledov: 299; Prenosov: 137
.pdf Celotno besedilo (6,84 MB)
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1109.
Poročilo o preskusu št.: LVG 2025-123 : vzorec št. 2025/00519
Maarten De Groot, Špela Hočevar, Barbara Piškur, 2025, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize
Objavljeno v DiRROS: 09.09.2025; Ogledov: 187; Prenosov: 0
Gradivo ima več datotek! Več...

1110.
Poročilo o preskusu št.: LVG 2025-121 : vzorec št. 2025/00572/mdg
Maarten De Groot, 2025, izvedensko mnenje, arbitražna odločba

Ključne besede: varstvo gozdov, morfološke analize
Objavljeno v DiRROS: 09.09.2025; Ogledov: 179; Prenosov: 0
Gradivo ima več datotek! Več...

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