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Maxwell D. Collins

8 accepted papers

2021

STEP: Segmenting and Tracking Every Pixel

NeurIPS 2021poster

The task of assigning semantic classes and track identities to every pixel in a video is called video panoptic segmentation. Our work is the first that targets this task in a real-world setting requiring dense interpretation in both spatial and temporal domains. As the ground-truth for this task is…

Cited by 89SourcecodeScholar
2020

Naive-Student: Leveraging Semi-Supervised Learning in Video Sequences for Urban Scene Segmentation

ECCV 2020poster

Supervised learning in large discriminative models is a mainstay for modern computer vision. Such an approach necessitates investing in large-scale human-annotated datasets for achieving state-of-the-art results. In turn, the efficacy of supervised learning may be limited by the size of the human an…

2020

Panoptic-DeepLab: A Simple, Strong, and Fast Baseline for Bottom-Up Panoptic Segmentation

CVPR 2020poster

In this work, we introduce Panoptic-DeepLab, a simple, strong, and fast system for panoptic segmentation, aiming to establish a solid baseline for bottom-up methods that can achieve comparable performance of two-stage methods while yielding fast inference speed. In particular, Panoptic-DeepLab adopt…

Cited by 776PDFcodeScholar
2019

SegSort: Segmentation by Discriminative Sorting of Segments

ICCV 2019poster

Almost all existing deep learning approaches for semantic segmentation tackle this task as a pixel-wise classification problem. Yet humans understand a scene not in terms of pixels, but by decomposing it into perceptual groups and structures that are the basic building blocks of recognition. This mo…

Cited by 165PDFScholar
2018

Tensorize, Factorize and Regularize: Robust Visual Relationship Learning

CVPR 2018poster

Visual relationships provide higher-level information of objects and their relations in an image – this enables a semantic understanding of the scene and helps downstream applications. Given a set of localized objects in some training data, visual relationship detection seeks to detect the most like…

Cited by 74SourcePDFScholar
2017

Spatially Adaptive Computation Time for Residual Networks

CVPR 2017poster

This paper proposes a deep learning architecture based on Residual Network that dynamically adjusts the number of executed layers for the regions of the image. This architecture is end-to-end trainable, deterministic and problem-agnostic. It is therefore applicable without any modifications to a wid…

Cited by 431PDFcodeScholar
2016

Coupled Harmonic Bases for Longitudinal Characterization of Brain Networks

CVPR 2016poster

There is a great deal of interest in using large scale brain imaging studies to understand how brain connectivity evolves over time for an individual and how it varies over different levels/quantiles of cognitive function. To do so, one typically performs so-called tractography procedures on diffusi…

Cited by 9PDFScholar
2015

A Projection Free Method for Generalized Eigenvalue Problem With a Nonsmooth Regularizer

ICCV 2015poster

Eigenvalue problems are ubiquitous in computer vision, covering a very broad spectrum of applications ranging from estimation problems in multi-view geometry to image segmentation. Few other linear algebra problems have a more mature set of numerical routines available and many computer vision libra…

Cited by 13PDFScholar