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Fluorescence molecular imaging system with a novel mouse surface extraction method and a rotary scanning scheme

机译:具有新型小鼠表面提取方法的荧光分子成像系统和旋转扫描方案

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We have developed a new fluorescence molecular tomography (FMT) imaging system, in which we utilized a phase shifting method to extract the mouse surface geometry optically and a rotary laser scanning approach to excite fluorescence molecules and acquire fluorescent measurements on the whole mouse body. Nine fringe patterns with a phase shifting of 2π/9 are projected onto the mouse surface by a projector. The fringe patterns are captured using a webcam to calculate a phase map that is converted to the geometry of the mouse surface with our algorithms. We used a DigiWarp approach to warp a finite element mesh of a standard digital mouse to the measured mouse surface thus the tedious and time-consuming procedure from a point cloud to mesh is avoided. Experimental results indicated that the proposed method is accurate with errors less than 0.5 mm. In the FMT imaging system, the mouse is placed inside a conical mirror and scanned with a line pattern laser that is mounted on a rotation stage. After being reflected by the conical mirror, the emitted fluorescence photons travel through central hole of the rotation stage and the band pass filters in a motorized filter wheel, and are collected by a CCD camera. Phantom experimental results of the proposed new FMT imaging system can reconstruct the target accurately.
机译:我们开发了一种新的荧光分子断层摄影(FMT)成像系统,其中我们利用了相移方法光学地提取了鼠标表面几何形状和旋转激光扫描方法来激发荧光分子,并在整个小鼠体上获取荧光测量。通过投影仪将九个带有相移的边缘图案突出到鼠标表面上。使用网络摄像头捕获条纹图案以计算与我们的算法转换为鼠标表面的几何形状的相位映射。我们使用DIGIWARP方法将标准数字鼠标的有限元滤网扭曲到测量的鼠标表面,因此避免了从点云到网格的繁琐且耗时的过程。实验结果表明,该方法的准确性误差小于0.5毫米。在FMT成像系统中,将鼠标放置在锥形镜中并用安装在旋转级的线图案激光器扫描。在由锥形镜反射之后,发射的荧光光子通过旋转级的中心孔和电动过滤器中的带通滤波器行进,并且由CCD相机收集。所提出的新型FMT成像系统的幻影实验结果可以准确地重建目标。

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