Thoracic and abdominal surface respiratory movement signal super-resolution method
A breathing motion and super-resolution technology, applied in the direction of diagnostic signal processing, medical science, diagnosis, etc., can solve the problem of not finding the breathing motion signal
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specific Embodiment approach 1
[0079] This embodiment is an embodiment of a super-resolution circuit for respiratory motion signals on the surface of the chest and abdomen.
[0080] Chest and abdomen surface respiratory motion signal super-resolution circuit, the logic block diagram is as follows figure 1As shown, the chest and abdomen surface respiratory motion signal super-resolution circuit includes a signal conversion module, a phase difference multi-output module, a resistance chain multi-phase generation module, a multi-phase sine square wave conversion module, a multi-phase fusion logic gate module and a secondary super-resolution module; among them, the circuit diagram of the phase difference multi-output module is as follows figure 2 As shown, the circuit diagram of the resistance chain multi-phase generation module is shown in image 3 As shown, the circuit diagram of the multi-phase sine square wave conversion module is as follows Figure 4 As shown, the circuit diagram of the multi-phase fusi...
specific Embodiment approach 2
[0112] This embodiment is an embodiment of a method for super-resolution of respiratory motion signals on the surface of the chest and abdomen.
[0113] The method for super-resolution of respiratory motion signals on the surface of the chest and abdomen is characterized in that it comprises the following steps:
[0114] Step a, in the signal conversion module, utilize the filter and amplifier whose passband frequency includes ω to realize the input as periodic breathing motion signal f(t), and the output is:
[0115]
[0116] in,
[0117] The filter selects the component with frequency ω to pass;
[0118] The amplifier scales the amplitude to
[0119] Step b. In the multi-phase difference output module, use two differential circuits composed of resistors, capacitors and operational amplifiers to implement one-time differential and two-time differential of the output cosine signal of the signal conversion module, and then realize that the phase difference is a tolerance...
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