Laser dot matrix intelligent skin physiotherapy instrument based on electroporation
A technology of laser dot matrix and smart skin, which is applied in the field of laser dot matrix smart skin physiotherapy instrument and its intelligent physiotherapy, and laser dot matrix skin physiotherapy equipment. And other issues
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Embodiment 1
[0045] like figure 1 The electroporation-based laser lattice intelligent skin physiotherapy instrument 1 in this embodiment includes a physiotherapy probe 1-0, a first cable 10, a second cable 11, and a cable combination of a third cable 12, and the host 1-1, wherein the physiotherapy probe 1-0 has a casing, one end of the casing is a physiotherapy end, the other end is a cable combination lead-out end, the first cable 10, the second cable 11, and the third wire The cable 12 is connected with the host 1-1, so that the host 1-1 can control the physiotherapy probe to perform skin physiotherapy.
[0046] like figure 2 The physiotherapy end has a dep area 2, a fractional laser area 3, and an administration area 4 inside the dep area 2, which are respectively connected with the divided dep cavity 21, the lattice laser cavity 31, and the administration cavity in the housing. One end of 41 is connected; the dot matrix laser area 3 is formed of transparent organic glass.
[0047] ...
Embodiment 2
[0059] The difference between this embodiment and Embodiment 1 lies in the aspect of image processing, wherein the image recognition unit includes an intelligent image recognition unit (not shown in the figure), and the intelligent image recognition unit is based on the sub-section of the physical therapy area of the grayscale image. The image and the control signal establish an artificial intelligence model, the artificial intelligence model identifies whether a control signal needs to be generated according to the sub-image, the artificial intelligence model includes a convolutional neural network CNN, and the CNN can identify according to the sub-image The corresponding control signal code is 1 (generated) or 0 (not generated), so as to identify whether each sub-image needs to generate a corresponding control signal.
[0060] like image 3As shown, in the grayscaled image of the collected image in the dep selection process, it is exemplified that four categories A, B, C, ...
Embodiment 3
[0062] Physiotherapy modes: including single dep physiotherapy mode, single laser lattice physiotherapy mode, and laser lattice physiotherapy mode based on electroporation. Selecting a corresponding physiotherapy mode and using the physiotherapy probe to perform corresponding physiotherapy, wherein the individual dep physiotherapy mode cooperates with the drug delivery device to control the drug delivery device to perform drug delivery during or after a prescribed first time under the action of electric pulses with set parameters, In the single laser lattice physiotherapy mode, the physiotherapy is completed within a specified second time under the action of the laser pulses of the set laser parameters, or the drug delivery device is controlled to administer the drug during or after the specified second time; If the electroporation-based laser dot matrix hybrid physiotherapy mode is used, step (2) is entered; the first and second time are 1min-1h.
[0063] (2) First perform de...
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