ResearchTrend.AI
  • Papers
  • Communities
  • Events
  • Blog
  • Pricing
Papers
Communities
Social Events
Terms and Conditions
Pricing
Parameter LabParameter LabTwitterGitHubLinkedInBlueskyYoutube

© 2025 ResearchTrend.AI, All rights reserved.

  1. Home
  2. Papers
  3. 1410.6031
  4. Cited By
Demixed principal component analysis of population activity in higher
  cortical areas reveals independent representation of task parameters

Demixed principal component analysis of population activity in higher cortical areas reveals independent representation of task parameters

22 October 2014
D. Kobak
Wieland Brendel
C. Constantinidis
C. Feierstein
Adam Kepecs
Z. Mainen
R. Romo
Xue-Lian Qi
N. Uchida
C. Machens
ArXivPDFHTML

Papers citing "Demixed principal component analysis of population activity in higher cortical areas reveals independent representation of task parameters"

6 / 6 papers shown
Title
BLEND: Behavior-guided Neural Population Dynamics Modeling via Privileged Knowledge Distillation
BLEND: Behavior-guided Neural Population Dynamics Modeling via Privileged Knowledge Distillation
Zhengrui Guo
F. Zhou
Wei Yu Wu
Qichen Sun
Lishuang Feng
Jinzhuo Wang
Hao Chen
38
1
0
02 Oct 2024
Distributed Rule Vectors is A Key Mechanism in Large Language Models'
  In-Context Learning
Distributed Rule Vectors is A Key Mechanism in Large Language Models' In-Context Learning
Bowen Zheng
Ming Ma
Zhongqiao Lin
Tianming Yang
33
1
0
23 Jun 2024
Learnable latent embeddings for joint behavioral and neural analysis
Learnable latent embeddings for joint behavioral and neural analysis
Steffen Schneider
Jin Hwa Lee
Mackenzie W. Mathis
11
207
0
01 Apr 2022
Testing the Tools of Systems Neuroscience on Artificial Neural Networks
Testing the Tools of Systems Neuroscience on Artificial Neural Networks
Grace W. Lindsay
14
4
0
14 Feb 2022
ORGaNICs: A Theory of Working Memory in Brains and Machines
ORGaNICs: A Theory of Working Memory in Brains and Machines
D. Heeger
Wayne E. Mackey
20
7
0
16 Mar 2018
LFADS - Latent Factor Analysis via Dynamical Systems
LFADS - Latent Factor Analysis via Dynamical Systems
David Sussillo
Rafal Jozefowicz
L. F. Abbott
C. Pandarinath
AI4CE
19
89
0
22 Aug 2016
1