首页> 外文会议>International conference on medical image computing and computer-assisted intervention;MICCAI 2010 >Motion Artifact Correction of Multi-Photon Imaging of Awake Mice Models Using Speed Embedded HMM
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Motion Artifact Correction of Multi-Photon Imaging of Awake Mice Models Using Speed Embedded HMM

机译:使用速度嵌入式HMM对清醒小鼠模型的多光子成像进行运动伪影校正

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Multi-photon fluorescence microscopy (MFM) captures high-resolution anatomical and functional fluorescence image sequences and can be used for the intact brain imaging of small animals. Recently, it has been extended from imaging anesthetized and head-stabilized animals to awake and head-restrained ones for in vivo neurological study. In these applications, motion correction is an important pre-processing step since brain pulsation and tiny body movement can cause motion artifacts and prevent stable serial image acquisition at such a high spatial resolution. This paper proposes a speed embedded hidden Markov model (SEHMM) for motion correction in MFM imaging of awake head-restrained mice. The algorithm extends the traditional HMM method by embedding a motion prediction model to better estimate the state transition probability. SEHMM is a line-by-line motion correction algorithm, which is implemented within the in-focal-plane 2-D videos and can operate directly on the motion-distorted imaging data without external signal measurements such as the movement, heartbeat, respiration, or muscular tension. In experiments, we demonstrat that SEHMM is more accurate than traditional HMM using both simulated and real MFM image sequences.
机译:多光子荧光显微镜(MFM)捕获高分辨率的解剖和功能性荧光图像序列,可用于完整的小动物脑部成像。近来,它已从成像麻醉和头部稳定的动物扩展到清醒和头部受约束的动物,以进行体内神经学研究。在这些应用中,运动校正是重要的预处理步骤,因为脑部搏动和微小的身体运动会引起运动伪影并妨碍在如此高的空间分辨率下稳定的串行图像采集。本文提出了一种速度嵌入式隐马尔可夫模型(SEHMM),用于在清醒的头部受约束的小鼠的MFM成像中进行运动校正。该算法通过嵌入运动预测模型来扩展传统的HMM方法,以更好地估计状态转换概率。 SEHMM是逐行运动校正算法,它在焦平面二维视频中实现,可以直接对运动失真的成像数据进行操作,而无需外部信号测量,例如运动,心跳,呼吸,或肌肉紧张。在实验中,我们证明,使用模拟和实际MFM图像序列,SEHMM比传统HMM更准确。

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