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Effective receptive fields (colored dots) of BTFormer with different D on a input image.

Effective receptive fields (colored dots) of BTFormer with different D on a input image.

<p>As <i>D</i> increases, we can obtain more widespread receptive fields with less concentrated focus in certain directions.</p>

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Bibliographic Details
Main Author: Hua Wang (13530) (author)
Other Authors: Yiming Li (40290) (author), Linwei Qiu (22110240) (author), Jicong Zhang (3700579) (author), Jingfei Hu (8894756) (author)
Published: 2025
Subjects:
Developmental Biology
Science Policy
Space Science
Biological Sciences not elsewhere classified
Mathematical Sciences not elsewhere classified
Chemical Sciences not elsewhere classified
Information Systems not elsewhere classified
typical public dataset
soft aggregation operation
lower computational resources
embed features extracted
diversified receptive field
challenging task due
86 %, 91
81 %, 92
25 %, 92
local feature maps
different tissue structures
collect global cues
free attention mechanism
free attention block
art segmentation performance
free attention
range cues
local structure
different angles
rotation consistency
poor contrast
novel transformer
jaccard index
embryo images
dice coefficient
catches non
blastocyst components
blast transformer
based architecture
ambiguous boundaries
45 %.
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