Industry
Mother sues OpenAI in US after daughter's death linked to ChatGPT use
Mother sues OpenAI in US after daughter's death linked to ChatGPT use Alice Carrier had recently started playing the guitar again, a hobby she enjoyed in high school but had set aside during college. It was one of several pursuits she filled her free time with as she interviewed for new jobs, spent time with her dog and enjoyed activities, including gaming. By all appearances, at least to her mother, Kristie Carrier, things were going well. Alice was working as a web developer in Montreal, Canada, fulfilling a dream she had carried since growing up in the small town of Lawrence, New Brunswick. But what Carrier did not know was how much her daughter was struggling in silence.
Cognitive Predictive Processing: A Human-inspired Framework for Adaptive Exploration in Open-World Reinforcement Learning
Open-world reinforcement learning challenges agents to develop intelligent behavior in vast exploration spaces. Recent approaches like LS-Imagine have advanced the field by extending imagination horizons through jumpy state transitions, yet remain limited by fixed exploration mechanisms and static jump thresholds that cannot adapt across changing task phases, resulting in inefficient exploration and lower completion rates. Humans demonstrate remarkable capabilities in open-world decision-making through a chain-like process of task decomposition, selective memory utilization, and adaptive uncertainty regulation. Inspired by human decision-making processes, we present Cognitive Predictive Processing (CPP), a novel framework that integrates three neurologically-inspired systems: a phase-adaptive cognitive controller that dynamically decomposes tasks into exploration, approach, and completion phases with adaptive parameters; a dual-memory integration system implementing dual-modal memory that balances immediate context with selective long-term storage; and an uncertainty-modulated prediction regulator that continuously updates environmental predictions to modulate exploration behavior. Comprehensive experiments in MineDojo demonstrate that these human-inspired decision-making strategies enhance performance over recent techniques, with success rates improving by an average of 4.6\% across resource collection tasks while reducing task completion steps by an average of 7.1\%. Our approach bridges cognitive neuroscience and reinforcement learning, excelling in complex scenarios that require sustained exploration and strategic adaptation while demonstrating how neural-inspired models can solve key challenges in open-world AI systems.
3D Human Pose Estimation with Muscles
We introduce MusclePose as an end-to-end learnable physics-infused 3D human pose estimator that incorporates muscle-dynamics modeling to infer human dynamics from monocular video. Current physics pose estimators aim to predict physically plausible poses by enforcing the underlying dynamics equations that govern motion. Since this is an underconstrained problem without force-annotated data, methods often estimate kinetics with external physics optimizers that may not be compatible with existing learning frameworks, or are too slow for real-time inference. While more recent methods use a regression-based approach to overcome these issues, the estimated kinetics can be seen as auxiliary predictions, and may not be physically plausible. To this end, we build on existing regression-based approaches, and aim to improve the biofidelity of kinetic inference with a multihypothesis approach --- by inferring joint torques via Lagrange's equations and via muscle dynamics modeling with muscle torque generators. Furthermore, MusclePose predicts detailed human anthropometrics based on values from biomechanics studies, in contrast to existing physics pose estimators that construct their human models with shape primitives. We show that MusclePose is competitive with existing 3D pose estimators in positional accuracy, while also able to infer plausible human kinetics and muscle signals consistent with values from biomechanics studies, without requiring an external physics engine.
'Tell Him He's a Piece of Shit': Meta's New AI Unit Is a Total Mess
'Tell Him He's a Piece of Shit': Meta's New AI Unit Is a Total Mess Executives and employees alike are struggling with Meta's chaotic AI strategy, according to sources and internal discussions reviewed by WIRED. Someone interrupted a livestreamed, employee-only presentation at Meta earlier this week with an expletive-filled outburst about "being the company's bitch," according to a recording heard by WIRED. The individual then asked the people leading the call to write to a specific Meta AI executive and tell him that he's a piece of shit. One of the presenters covered their face with their hands, according to a witness. The incident, which took place on a call open to thousands of employees, reflects growing frustration inside the company's Applied AI team, which was formed in March to support the work of AI researchers at Meta Superintelligence Labs .
Words That Unite The World: A Unified Framework for Deciphering Central Bank Communications
Central banks around the world play a crucial role in maintaining economic stability. Deciphering policy implications in their communications is essential, especially as misinterpretations can disproportionately impact vulnerable populations. To address this, we introduce the World Central Banks (WCB) dataset, the most comprehensive monetary policy corpus to date, comprising over 380k sentences from 25 central banks across diverse geographic regions, spanning 28 years of historical data. After uniformly sampling 1k sentences per bank (25k total) across all available years, we annotate and review each sentence using dual annotators, disagreement resolutions, and secondary expert reviews. We define three tasks: Stance Detection, Temporal Classification, and UncertaintyEstimation, with each sentence annotated for all three.
The Right to Red-Team: Adversarial AI Literacy as a Civic Imperative in K-12 Education
The increasing societal integration of Large Language Models (LLMs) and agent-based AI demands a new civic competency: adversarial reasoning. This position paper argues that K-12 AI education must move beyond passive literacy to actively equip students with skills in responsible adversarial prompting and ethical system hacking. Such capabilities are essential for citizens to critically probe AI systems, understand their inherent limitations, identify manipulative patterns, and hold them accountable. We posit that cultivating a generation skilled in red-teaming AI is vital for maintaining transparency, preventing undue influence, and fostering a democratic engagement with these transformative technologies.
MSI Frieren: Beyond Journey's End -- Where Anime magic meets premium gaming hardware
When you purchase through links in our articles, we may earn a small commission. MSI | Frieren: Beyond Journey's End -- Where Anime magic meets premium gaming hardware It's that emotional depth--rare in any medium--that has made the series a cultural phenomenon since its debut. Now, MSI has channelled that same spirit into something tangible: an officially licensed, co-branded limited-edition collaboration collection that brings the world of Frieren directly to your gaming setup. This isn't a merchandise drop dressed up as hardware. The MSI | Frieren: Beyond Journey's End collection is a thoughtfully engineered lineup of premium gaming peripherals and graphics hardware that marries the anime's delicate aesthetic with the kind of performance specifications serious PC gamers demand.