Amanote Research
Register
Sign In
Study on Maize Leaf Morphological Modeling and Mesh Simplification of Surface
doi 10.1007/978-0-387-77251-6_76
Full Text
Open PDF
Abstract
Available in
full text
Date
Unknown
Authors
Xinyu Guo
Chunjiang Zhao
Boxiang Xiao
Shenglian Lu
Changfeng Li
Publisher
Springer US
Related search
Volume Cost Based Mesh Simplification
Fast Algorithm for Triangular Mesh Simplification Based on Vertex Decimation
Lecture Notes in Computer Science
Computer Science
Theoretical Computer Science
Modeling Study of Mesh Conductors and Their Electroluminescent Devices
Applied Physics Letters
Astronomy
Physics
A Case Study: Impact of Target Surface Mesh Size and Mesh Quality on Volume-To-Surface Registration Performance in Hepatic Soft Tissue Navigation
International journal of computer assisted radiology and surgery
Radiology
Nuclear Medicine
Computer Graphics
Pattern Recognition
Health Informatics
Computer Vision
Computer Science Applications
Computer-Aided Design
Imaging
Medicine
Surgery
Biomedical Engineering
Transgenic Events Interference on Maize Morphological and Productive Attributes
Revista Agrogeoambiental
Leaves of Grass: Focusing Phenomics on Maize Leaf Growth
Genome Biology
Effects of the Morphological Diversity of Leaf Surface and Phytochemicals Composition on Preference Behavior of Leafhopper and Planthoppers on Some Solanaceous Crops
Journal of Plant Protection and Pathology
Surface Simplification Guided by Morph-Targets
Reliable Transient Transformation of Intact Maize Leaf Cells for Functional Genomics and Experimental Study
Plant Physiology
Plant Science
Genetics
Physiology