<?xml version="1.0" encoding="utf-8"?><feed xmlns="http://www.w3.org/2005/Atom" ><generator uri="https://jekyllrb.com/" version="3.10.0">Jekyll</generator><link href="https://proceedings.mlr.press/v334/feed.xml" rel="self" type="application/atom+xml" /><link href="https://proceedings.mlr.press/v334/" rel="alternate" type="text/html" /><updated>2026-08-16T14:52:37+00:00</updated><id>https://proceedings.mlr.press/v334/feed.xml</id><title type="html">Proceedings of Machine Learning Research</title><subtitle>Proceedings of the 2nd Conference on Topology, Algebra, and Geometry in Data Science(TAG-DS 2026)
  Held in Boston, Massachusetts, USA on 18-20 August 2026

Published as Volume 334 by the Proceedings of Machine Learning Research on 16 August 2026.

Volume Edited by:
  Eddie Berman
  Guillermo Bernárdez
  Samantha Chen
  Alex Cloninger
  Timothy Doster
  Tegan Emerson
  J. Elisenda Grigsby
  Henry Kvinge
  Hannah Lawrence
  Tim Marrinan
  Audun Myers
  Mathilde Papillon
  Behrooz Tahmasebi
  Lev Telyatnikov
  Robin Walters
  Melanie Weber
  YuQing Xie
  Eric Yeats

Series Editors:
  Neil D. Lawrence
  Hoel Kervadec
  Tegan Emerson
</subtitle><author><name>PMLR</name></author><entry><title type="html">Loss Landscape Geometry of Partial Differential Equation Emulators: Or, Symmetry Learning via Gradient Alignment</title><link href="https://proceedings.mlr.press/v334/amarel26a.html" rel="alternate" type="text/html" title="Loss Landscape Geometry of Partial Differential Equation Emulators: Or, Symmetry Learning via Gradient Alignment" /><published>2026-08-16T00:00:00+00:00</published><updated>2026-08-16T00:00:00+00:00</updated><id>https://proceedings.mlr.press/v334/amarel26a</id><content type="html" xml:base="https://proceedings.mlr.press/v334/amarel26a.html"><![CDATA[]]></content><author><name>[{&quot;given&quot;=&gt;&quot;James&quot;, &quot;family&quot;=&gt;&quot;Amarel&quot;}, {&quot;given&quot;=&gt;&quot;Robyn&quot;, &quot;family&quot;=&gt;&quot;Miller&quot;}, {&quot;given&quot;=&gt;&quot;Nicolas&quot;, &quot;family&quot;=&gt;&quot;Hengartner&quot;}, {&quot;given&quot;=&gt;&quot;Benjamin&quot;, &quot;family&quot;=&gt;&quot;Migliori&quot;}, {&quot;given&quot;=&gt;&quot;Emily&quot;, &quot;family&quot;=&gt;&quot;Taylor&quot;}, {&quot;given&quot;=&gt;&quot;Alexei&quot;, &quot;family&quot;=&gt;&quot;Skurikhin&quot;}, {&quot;given&quot;=&gt;&quot;Earl&quot;, &quot;family&quot;=&gt;&quot;Lawrence&quot;}, {&quot;given&quot;=&gt;&quot;Gerd J.&quot;, &quot;family&quot;=&gt;&quot;Kunde&quot;}]</name></author><summary type="html"><![CDATA[]]></summary></entry><entry><title type="html">Encoding the Euler Characteristic Transform</title><link href="https://proceedings.mlr.press/v334/blaser26a.html" rel="alternate" type="text/html" title="Encoding the Euler Characteristic Transform" /><published>2026-08-16T00:00:00+00:00</published><updated>2026-08-16T00:00:00+00:00</updated><id>https://proceedings.mlr.press/v334/blaser26a</id><content type="html" xml:base="https://proceedings.mlr.press/v334/blaser26a.html"><![CDATA[]]></content><author><name>[{&quot;given&quot;=&gt;&quot;Nello&quot;, &quot;family&quot;=&gt;&quot;Blaser&quot;}, {&quot;given&quot;=&gt;&quot;Odin Hoff&quot;, &quot;family&quot;=&gt;&quot;Gardaa&quot;}, {&quot;given&quot;=&gt;&quot;Lars M.&quot;, &quot;family&quot;=&gt;&quot;Salbu&quot;}, {&quot;given&quot;=&gt;&quot;Elena Xinyi&quot;, &quot;family&quot;=&gt;&quot;Wang&quot;}, {&quot;given&quot;=&gt;&quot;Bastian&quot;, &quot;family&quot;=&gt;&quot;Rieck&quot;}]</name></author><summary type="html"><![CDATA[]]></summary></entry><entry><title type="html">Topology of a Smile: Persistent Homology in Dental Imaging</title><link href="https://proceedings.mlr.press/v334/dahlmeier26a.html" rel="alternate" type="text/html" title="Topology of a Smile: Persistent Homology in Dental Imaging" /><published>2026-08-16T00:00:00+00:00</published><updated>2026-08-16T00:00:00+00:00</updated><id>https://proceedings.mlr.press/v334/dahlmeier26a</id><content type="html" xml:base="https://proceedings.mlr.press/v334/dahlmeier26a.html"><![CDATA[]]></content><author><name>[{&quot;given&quot;=&gt;&quot;Leon&quot;, &quot;family&quot;=&gt;&quot;Dahlmeier&quot;}, {&quot;given&quot;=&gt;&quot;Sara Kalisnik&quot;, &quot;family&quot;=&gt;&quot;Hintz&quot;}, {&quot;given&quot;=&gt;&quot;Albert&quot;, &quot;family&quot;=&gt;&quot;Mehl&quot;}, {&quot;given&quot;=&gt;&quot;Bastian&quot;, &quot;family&quot;=&gt;&quot;Rieck&quot;}]</name></author><summary type="html"><![CDATA[]]></summary></entry><entry><title type="html">Disentanglement by Prediction: A Twin Autoencoder with a Factored Latent Traveler</title><link href="https://proceedings.mlr.press/v334/emerson26a.html" rel="alternate" type="text/html" title="Disentanglement by Prediction: A Twin Autoencoder with a Factored Latent Traveler" /><published>2026-08-16T00:00:00+00:00</published><updated>2026-08-16T00:00:00+00:00</updated><id>https://proceedings.mlr.press/v334/emerson26a</id><content type="html" xml:base="https://proceedings.mlr.press/v334/emerson26a.html"><![CDATA[]]></content><author><name>[{&quot;given&quot;=&gt;&quot;Tegan&quot;, &quot;family&quot;=&gt;&quot;Emerson&quot;}, {&quot;given&quot;=&gt;&quot;Audun D&quot;, &quot;family&quot;=&gt;&quot;Myers&quot;}, {&quot;given&quot;=&gt;&quot;Sarah McGuire&quot;, &quot;family&quot;=&gt;&quot;Scullen&quot;}, {&quot;given&quot;=&gt;&quot;Tim&quot;, &quot;family&quot;=&gt;&quot;Marrinan&quot;}]</name></author><summary type="html"><![CDATA[]]></summary></entry><entry><title type="html">GrAE ScaLE: Grassmannian AutoEncoder for Scalable Linearly-invariant Embeddings</title><link href="https://proceedings.mlr.press/v334/emerson26b.html" rel="alternate" type="text/html" title="GrAE ScaLE: Grassmannian AutoEncoder for Scalable Linearly-invariant Embeddings" /><published>2026-08-16T00:00:00+00:00</published><updated>2026-08-16T00:00:00+00:00</updated><id>https://proceedings.mlr.press/v334/emerson26b</id><content type="html" xml:base="https://proceedings.mlr.press/v334/emerson26b.html"><![CDATA[]]></content><author><name>[{&quot;given&quot;=&gt;&quot;Tegan&quot;, &quot;family&quot;=&gt;&quot;Emerson&quot;}, {&quot;given&quot;=&gt;&quot;Tim&quot;, &quot;family&quot;=&gt;&quot;Marrinan&quot;}, {&quot;given&quot;=&gt;&quot;Audun D&quot;, &quot;family&quot;=&gt;&quot;Myers&quot;}, {&quot;given&quot;=&gt;&quot;Sarah McGuire&quot;, &quot;family&quot;=&gt;&quot;Scullen&quot;}]</name></author><summary type="html"><![CDATA[]]></summary></entry><entry><title type="html">Freeze, Diffuse, Decode: Task-Aware Adaptation of Transformer Embeddings for Antimicrobial Peptide Design</title><link href="https://proceedings.mlr.press/v334/gawade26a.html" rel="alternate" type="text/html" title="Freeze, Diffuse, Decode: Task-Aware Adaptation of Transformer Embeddings for Antimicrobial Peptide Design" /><published>2026-08-16T00:00:00+00:00</published><updated>2026-08-16T00:00:00+00:00</updated><id>https://proceedings.mlr.press/v334/gawade26a</id><content type="html" xml:base="https://proceedings.mlr.press/v334/gawade26a.html"><![CDATA[]]></content><author><name>[{&quot;given&quot;=&gt;&quot;Pankhil&quot;, &quot;family&quot;=&gt;&quot;Gawade&quot;}, {&quot;given&quot;=&gt;&quot;Adam&quot;, &quot;family&quot;=&gt;&quot;Izdebski&quot;}, {&quot;given&quot;=&gt;&quot;Myriam&quot;, &quot;family&quot;=&gt;&quot;Lizotte&quot;}, {&quot;given&quot;=&gt;&quot;Kevin R.&quot;, &quot;family&quot;=&gt;&quot;Moon&quot;}, {&quot;given&quot;=&gt;&quot;Jake Slater&quot;, &quot;family&quot;=&gt;&quot;Rhodes&quot;}, {&quot;given&quot;=&gt;&quot;Guy&quot;, &quot;family&quot;=&gt;&quot;Wolf&quot;}, {&quot;given&quot;=&gt;&quot;Ewa&quot;, &quot;family&quot;=&gt;&quot;Szczurek&quot;}]</name></author><summary type="html"><![CDATA[]]></summary></entry><entry><title type="html">Local Manifold Explanations with Tangent Space Regression</title><link href="https://proceedings.mlr.press/v334/he26a.html" rel="alternate" type="text/html" title="Local Manifold Explanations with Tangent Space Regression" /><published>2026-08-16T00:00:00+00:00</published><updated>2026-08-16T00:00:00+00:00</updated><id>https://proceedings.mlr.press/v334/he26a</id><content type="html" xml:base="https://proceedings.mlr.press/v334/he26a.html"><![CDATA[]]></content><author><name>[{&quot;given&quot;=&gt;&quot;Jesse&quot;, &quot;family&quot;=&gt;&quot;He&quot;}, {&quot;given&quot;=&gt;&quot;Yusu&quot;, &quot;family&quot;=&gt;&quot;Wang&quot;}, {&quot;given&quot;=&gt;&quot;Gal&quot;, &quot;family&quot;=&gt;&quot;Mishne&quot;}]</name></author><summary type="html"><![CDATA[]]></summary></entry><entry><title type="html">Scalably computing metric magnitude</title><link href="https://proceedings.mlr.press/v334/huntsman26a.html" rel="alternate" type="text/html" title="Scalably computing metric magnitude" /><published>2026-08-16T00:00:00+00:00</published><updated>2026-08-16T00:00:00+00:00</updated><id>https://proceedings.mlr.press/v334/huntsman26a</id><content type="html" xml:base="https://proceedings.mlr.press/v334/huntsman26a.html"><![CDATA[]]></content><author><name>[{&quot;given&quot;=&gt;&quot;Steve&quot;, &quot;family&quot;=&gt;&quot;Huntsman&quot;}, {&quot;given&quot;=&gt;&quot;Jewell B.&quot;, &quot;family&quot;=&gt;&quot;Thomas&quot;}, {&quot;given&quot;=&gt;&quot;Cynthia&quot;, &quot;family&quot;=&gt;&quot;Ukawu&quot;}]</name></author><summary type="html"><![CDATA[]]></summary></entry><entry><title type="html">A Weisfeiler–Leman Characterization of Global-Attention Graph Transformers for Mixed-Integer Linear Programs</title><link href="https://proceedings.mlr.press/v334/jahin26a.html" rel="alternate" type="text/html" title="A Weisfeiler–Leman Characterization of Global-Attention Graph Transformers for Mixed-Integer Linear Programs" /><published>2026-08-16T00:00:00+00:00</published><updated>2026-08-16T00:00:00+00:00</updated><id>https://proceedings.mlr.press/v334/jahin26a</id><content type="html" xml:base="https://proceedings.mlr.press/v334/jahin26a.html"><![CDATA[]]></content><author><name>[{&quot;given&quot;=&gt;&quot;Md Abrar&quot;, &quot;family&quot;=&gt;&quot;Jahin&quot;}, {&quot;given&quot;=&gt;&quot;Craig A&quot;, &quot;family&quot;=&gt;&quot;Knoblock&quot;}, {&quot;given&quot;=&gt;&quot;Jay&quot;, &quot;family&quot;=&gt;&quot;Pujara&quot;}]</name></author><summary type="html"><![CDATA[]]></summary></entry><entry><title type="html">Even with AI, Bijection Discovery is Still Hard: The Opportunities and Challenges of OpenEvolve for Novel Bijection Construction</title><link href="https://proceedings.mlr.press/v334/jenne26a.html" rel="alternate" type="text/html" title="Even with AI, Bijection Discovery is Still Hard: The Opportunities and Challenges of OpenEvolve for Novel Bijection Construction" /><published>2026-08-16T00:00:00+00:00</published><updated>2026-08-16T00:00:00+00:00</updated><id>https://proceedings.mlr.press/v334/jenne26a</id><content type="html" xml:base="https://proceedings.mlr.press/v334/jenne26a.html"><![CDATA[]]></content><author><name>[{&quot;given&quot;=&gt;&quot;Helen&quot;, &quot;family&quot;=&gt;&quot;Jenne&quot;}, {&quot;given&quot;=&gt;&quot;Davis&quot;, &quot;family&quot;=&gt;&quot;Brown&quot;}, {&quot;given&quot;=&gt;&quot;Jesse&quot;, &quot;family&quot;=&gt;&quot;He&quot;}, {&quot;given&quot;=&gt;&quot;Max&quot;, &quot;family&quot;=&gt;&quot;Vargas&quot;}, {&quot;given&quot;=&gt;&quot;Henry&quot;, &quot;family&quot;=&gt;&quot;Kvinge&quot;}]</name></author><summary type="html"><![CDATA[]]></summary></entry></feed>