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arXiv research

A locally-built, LLM-digested index of recent arXiv papers in quant finance, geometry/topology, and statistical ML — keyword search served straight from SQLite on this machine.

169,291 papers · 148 categories

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48 results for subset scan

Novel method detects group differences in temporal data using scan statistics.

problem Detecting group differences in temporally evolving data with poor effect sizes.
method Parametric model for SPD matrix trends, generalized scan statistics for graph structures.
result Identifies scientifically interesting group differences not seen in full graph models.

Detects events from unlabeled data using graph structure learning.

problem Detecting future events from unlabeled data.
method Proposes a novel framework using constrained and unconstrained subset scans, mean normalized log-likelihood ratio score, and efficient graph structure search.
result Shows faster and more accurate detection of events.

Simplified feature selection using a single agent with restructured choice strategy.

problem Efficiency and cost issues in multi-agent reinforced feature selection.
method Single-agent approach with restructured choice strategy, including scanning method, feature prioritization, state representation, and reward scheme.
result Improved efficiency and effectiveness of feature selection.

New method for real-time reconstruction of sparse STEM images from non-rectangular scans.

problem Sparse sampling and non-rectangular scanning in STEM.
method General method for real-time reconstruction of sparsely sampled images from high-speed, non-invasive and diverse scanning pathways.
result Demonstrated on synthetic and experimental STEM data, achieving real-time reconstruction.

Statistical image reconstruction (SIR) methods are studied extensively for X-ray computed tomography (CT) due to the potential of acquiring CT scans with reduced X-ray dose while maintaining image quality. However, the longer reconstruction time of SIR methods hinders their use in X-ray CT in practice. To accelerate st…

2015-12-14abs ↗pdf ↗

Random scan CAVI converges linearly under log-concave assumptions.

problem Analyzing the convergence rate of random scan Coordinate Ascent Variational Inference (CAVI) under log-concave conditions.
method Building on previous work, we analyze the random scan version of CAVI using optimal transport geometry.
result We obtain tight linear convergence rates for the random scan version of CAVI.

FUNSD dataset tackles noisy scanned forms, offering comprehensive annotations.

problem Extracting and structuring textual content from noisy scanned documents.
method Comprehensive dataset with real, fully annotated forms, including text detection, OCR, layout analysis, and entity linking.
result First publicly available dataset for form understanding, addressing challenges in noisy scanned documents.

SCAN learns hierarchical visual concepts from unsupervised data.

problem Discovering coherent rules in natural world visual diversity.
method SCAN learns concepts through fast symbol association and disentangled visual primitives.
result SCAN generates diverse images from symbolic descriptions and manipulates visual concepts hierarchically.

A new method reduces CT scan radiation exposure while improving image quality.

problem Reducing patient radiation exposure in CT scans while maintaining image quality.
method PWLS-ULTRA method that combines clustering and learning-based techniques.
result The method significantly improves image quality compared to existing methods.

Paper explores vulnerabilities in image authenticity detection methods, especially printing and scanning attacks.

problem Vulnerability of image authenticity detection models to printing and scanning attacks.
method Demonstrates and proposes a new machine learning model to counter these attacks.
result Proposed model outperforms state-of-the-art models when trained on images from a single printer.

Paper reproduces a kernel-based scan B-statistic for online change-point detection.

problem Continuous detection of distribution changes in online data streams.
method Efficient kernel-based scan B-statistic for online change-point detection.
result Scan B-statistic outperforms parametric methods in challenging scenarios.

GAN normalizes CT scans for consistent radiomic feature values.

problem Variations in dose levels and slice thickness affect radiomic features sensitivity.
method Used a 3D generative adversarial network (GAN) to normalize reduced dose, thick slice images to normal dose, thinner slice images.
result GAN-based approach led to significantly smaller error in radiomic features.

Framework detects and mitigates data-poisoning attacks in causal effect estimation.

problem Vulnerability to append-only attacks in observational causal analyses.
method Develops a data-poisoning audit for augmented inverse-probability-weighted estimation.
result Proposes a greedy scan to compute exact worst-case movement at every append budget.

SCAN divides deep neural networks into shallow classifiers for efficient deployment.

problem Explosive growth in storage and computation limits deep neural networks on edge devices.
method SCAN divides networks into shallow classifiers, uses attention modules and knowledge distillation, and employs a threshold-controlled scalable inference mechanism.
result SCAN achieves significant performance gain on CIFAR100 and ImageNet without hyper-parameter adjustments.

RADNET achieves radiologist-level accuracy in CT scan hemorrhage detection.

problem Automated detection of brain hemorrhages in CT scans.
method RADNET uses a 3D context-aware deep learning model with attention mechanisms.
result RADNET achieves 81.82% accuracy in hemorrhage prediction, comparable to radiologists.

BP pretreatment reduces multi-label classification time.

problem Efficiently annotate large label sets for extreme multi-label classification.
method Divide instances into clusters, attach most relevant labels, train on pairs of clusters.
result BP reduces prediction time significantly without sacrificing accuracy.

Automated brain CT image retrieval from traumatic brain injury cohorts using deep neural networks.

problem Manual image retrieval of whole brain CT scans from large clinical cohorts is time-consuming and resource-intensive.
method Proposes a deep convolutional neural network (dMIR) for automated classification of 2D montage images.
result Achieved high accuracy (f1=1.0) for validation and testing data sets.

Deep learning method for brain CT scan anomaly labeling using nearest neighbors.

problem Automated anatomical labeling of brain CT scan anomalies.
method Combines local and global context, uses Relation Networks (RNs) for prediction, and employs nearest neighbors for training.
result Improved performance of Relation Networks (RNs) through nearest neighbors training strategy.

Radiological imaging of the prostate is becoming more popular among researchers and clinicians in searching for diseases, primarily cancer. Scans might be acquired with different equipment or at different times for prognosis monitoring, with patient movement between scans, resulting in multiple datasets that need to be…

2016-08-02abs ↗pdf ↗

A new knot invariant using tangle-valued 1-cocycles.

problem Creating a strong and calculable knot invariant.
method Constructing a non-trivial combinatorial 1-cocycle L\mathbb{L} that takes values in H0(Θ;Z)H_0(Θ;\mathbb{Z}) with the scan-property.
result The Alexander tree is an isotopy invariant of knots, demonstrating the non-invertibility of specific knots.

Six AI solutions accurately detect growth plate planes in mice bone scans.

problem Manual, time-consuming, and variable bone growth plate detection in micro-CT scans.
method Prepared and annotated a dataset of 3D μCT scans, organized a challenge, and developed six computer vision solutions.
result Achieved mean absolute error of 1.91±0.87 planes from ground truth.

Optimizes ASL-MRF scan design for precise brain hemodynamics quantification.

problem Fixing model parameters in ASL introduces bias, and multiparametric estimation degrades precision.
method Optimizes ASL labeling durations using Cramer-Rao Lower Bound (CRLB) and proposes a neural network regression framework.
result Improved precision in estimating multiple hemodynamic parameters from a single scan.

TESS detects most affected subpopulations in randomized experiments.

problem Identifying subpopulations most affected by a treatment in randomized experiments.
method Anomalous pattern detection via nonparametric scan statistic maximization over subpopulations.
result TESS identifies the subpopulation with the largest distributional change due to the intervention.

Deep learning classifies OCT images of normal vs AMD with high accuracy.

problem Automated classification of OCT images for diagnosing Age-related Macular Degeneration.
method Automated extraction of OCT images linked to clinical data, training a deep neural network.
result Deep learning achieved high accuracy (92.64% sensitivity, 93.69% specificity) in classifying OCT images of normal vs AMD.

Computer science scans LLMs to understand and manipulate their economic forecasts.

problem Understanding and controlling the reasoning of large language models in economics.
method Brain scanning techniques applied to LLMs to identify and manipulate underlying concepts.
result LLMs can be steered to generate forecasts with specific biases, allowing for correction or simulation.

A method for MRI brain tumor segmentation using feature vectors and kernel dictionary learning.

problem Segmenting brain tumor regions in MRI images.
method Extracting feature vectors, training kernel dictionaries, and selecting informative feature vectors.
result The method outperforms other methods in segmentation accuracy and reduces training time.