Home Knowledge Base Next Generation Optical Transport Networks

Next Generation Optical Transport Networks

No mentions found

This entity hasn't been tracked yet, or Iris is still building its knowledge base.

Related Articles from SNS

A prognostic human brain network for diffuse midline glioma

Abstract Diffuse midline gliomas (DMGs) are near-universally lethal tumours of the childhood central nervous system1,2. In animal models, DMGs form brain-wide integrated networks through neuron-to-glioma synapses3,4,5,6 and glioma-to-glioma gap junctional coupling3. This extensive connectivity robustly promotes the growth and invasion of DMG3,4,5,6,7,8,9 and other glial malignancies10,11,12 through paracrine mechanisms and direct neuron-to-glioma synapses.

Nature 19h ago

ZTE Day Indonesia 2026 strengthens AI innovation and digital infrastructure collaboration to accelerate Indonesia's digital transformation

ZTE held ZTE Day Indonesia 2026 in Jakarta to showcase its latest integrated ICT innovations aimed at accelerating Indonesia's digital transformation. The event highlighted how AI, intelligent networks, and cloud infrastructure are crucial for national digital competitiveness and future economic growth. ZTE emphasised the need for strong cross-industry collaboration to build a robust digital foundation for the country.

The Register 19d ago

ZTE Demonstrates Integrated AI, Connectivity and Digital Utility Technologies at TNB Energy Transition Conference

At the recent TNB Energy Transition Conference, ZTE showcased an integrated portfolio of digital utility, Artificial Intelligence (AI), and intelligent infrastructure technologies. The display highlighted how advanced connectivity and digitalization can support the evolving needs of modern power utilities while driving Malaysia's broader energy transition ambitions. The technologies presented by ZTE encompassed a broad range of digital utility and intelligent infrastructure solutions...

The Register 2d ago

Light-induced quantum friction of carbon nanotubes in water

Abstract Friction slows down moving objects at both macroscopic and microscopic scales1. At the electronic level, quantum friction describes direct transfer of momentum between a liquid and the electrons of a solid2. Owing to its microscopic nature, this phenomenon remains experimentally challenging to capture3.

Nature 19h ago

In situ nanocrystal confinement for efficient blue perovskite LEDs

Abstract Metal halide perovskites have emerged as promising semiconductors for light-emitting diodes (LEDs) owing to their excellent luminescence properties1. However, their performance remains limited, primarily owing to the inherent contradiction between ‘high crystallinity’ and ‘small size’ in the in situ synthesis of perovskite nanocrystals on substrates. Here we report efficient blue perovskite LEDs (PeLEDs) achieved via in situ polymerization-driven nanocrystal confinement to...

Nature 19h ago

A walking tour of surveillance infrastructure in Seattle

Note: this guide is a work in progress and may change at any time! We’ve done our best to cite our sources, but this page has not been professionally fact-checked. This workshop was first run as part of two pilot workshops with the Tech Equity Coalition, in partnership with the ACLU of Washington, in October 2019.

Hacker News 8d ago

Whole-genome duplication shaped cell-type evolution in the vertebrate brain

Abstract The complex brains of vertebrates have more cell types than those of their closest relatives. Whole-genome duplications (WGDs) occurred during early vertebrate evolution1, but it is unclear whether the duplicated genes (ohnologues) facilitated cell-type evolution. Here using brain single-cell transcriptomes from five chordates—human2, mouse3, lizard4, lamprey5 and amphioxus—we report that many cell-type families with conserved core transcription factors in vertebrates do not show...

Nature 19h ago