植物根从RGB (迷你) 根子图像的语义细分 - - 既定方法和先进的深度学习模型的概括潜力和错误阳性
Pavel Baykalov1,2, Bart Bussmann3, Richard Nair4,5
1Institute of Forest Ecology, Department of Forest and Soil Sciences, University of Natural Resources and Life Sciences, Vienna (BOKU), Vienna, Austria.
Plant methods
|November 6, 2023
概括
深度学习模型,特别是U-Net架构,显著改善了微型图像中的语义根细分. 这些模型在各种数据集中提高了准确性和通用性,减少了手动分析时间.
科学领域:
- 植物科学 植物科学
- 计算机视觉 计算机视觉 计算机视觉
- 农业技术 农业技术
背景情况:
- 为了根部细分,手工分析小米里希子图像 (MR) 是耗时的.
- 现有的语义细分方法通常在有限的,均的数据集上进行评估.
- 深度学习 (DL) 方法在准确性,错误阳性和可转移性方面存在有限的比较.
研究的目的:
- 为了比较六种最先进的DL方法用于语义根细分.
- 提出两个改进的DL模型,用于增强根细分.
- 在多样化和具有挑战性的MR数据集上评估模型性能和通用性.
主要方法:
- 六种已确定的DL语义细分技术的比较.
- 开发和评估两个新的DL模型,包括U-Net架构.
- 对同质 (玉米) 和异质 (混合物种,土壤类型,成像系统) 的MR数据集进行测试.
- 评估数据增强对模型性能的影响.
- 在独立的,未见的数据集上验证模型通用性的验证.
主要成果:
- U-Net 模型表现出卓越的性能,编码器复杂度增加与更好的准确性和通用性相关.
- 非U-Net的方法在异质数据集方面遇到了困难.
- 数据增强显著改善了模型性能.
- 改进的深度元架构和特征提取器减少了假阳性.
结论:
- 神经网络架构大大减少了从MRI图像中计算根长度所需的时间.
- 复杂的架构显示出在现实世界MR图像分析中更高的细分精度和通用性的潜力.
- 未来的工作可以专注于文物处理,以尽量减少对模型再培训的需求.
关键词:
自动图像细分自动图像细分数据增强数据增强深度学习是一种深度学习.这是错误的阳性结果.很好的根,很好的根.图像处理 图像处理矿物质中子 (MiniHirizotron) 是一种微小的物质.神经网络的神经网络的神经网络根部细分 根部细分 根部细分这就是U-Net.更多相关视频
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