Reconstruction method of dynamic heart three-dimensional model
A technology of 3D model and heart, applied in dynamic reconstruction of 3D heart, 3D reconstruction field, can solve problems such as lack of modeling methods
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Embodiment 1
[0030] This embodiment directly performs model interpolation on the existing multi-temporal static heart model, completes the estimation of the motion trajectory of the whole heart and each chamber, and finally obtains a dynamic three-dimensional model of the heart. Specifically, the dynamic three-dimensional model of the heart provided in this example The reconstruction method flow is as follows figure 1 shown, including the following steps:
[0031] Step S110, select the static heart model of the important time phase in the cardiac cycle, the static heart model is as follows figure 2 As shown, including ventricular systole (0.05s isovolumic contraction, 0.09s rapid ejection period, 0.13s slowed ejection period) and ventricular diastole (0.04s prediastole, 0.08s isovolumic relaxation period, rapid filling period 0.11s, slow filling period 0.19s and atrial systole 0.1s), select important phases, such as end-diastole and end-systole, and other phases during the cardiac cycle....
Embodiment 2
[0050] As an improvement of the first embodiment, in this embodiment, the mathematical model of the heart formed by PCA is used to reproduce the motion trajectory, and interpolate the mathematical model, so as to realize the establishment of a four-dimensional heart model. Specifically, the flow of the reconstruction method for the dynamic 3D model of the heart provided in this example is as follows: image 3 shown, including the following steps:
[0051] Step S210, selecting the heart mathematical model of the important time phase in the cardiac cycle, such as Figure 4 As shown, including ventricular systole (0.05s isovolumic contraction, 0.09s rapid ejection period, 0.13s slowed ejection period) and ventricular diastole (0.04s prediastole, 0.08s isovolumic relaxation period, rapid filling period 0.11s, slow filling period 0.19s and atrial systole 0.1s). These mathematical models are generated by PCA (Principal Component Analysis) of the static three-dimensional model of t...
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