Use method for transcutaneous electrical nerve stimulation physical headache therapeutic instrument
A headache treatment instrument and electric stimulation technology, applied in physical therapy, electrotherapy, treatment, etc., can solve the problems of single electric pulse frequency, short working duration, unstable working frequency, etc., and achieve unstable working frequency and good treatment effect, the effect of low power consumption
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Embodiment 1
[0045] In order to overcome the single frequency of the electric pulse of the percutaneous nerve stimulation physical headache treatment instrument, there are few frequencies to choose from, the treatment frequency cannot be selected, and the working frequency is unstable, there are potential safety hazards, it consumes more power, and the working duration is shorter problem, this embodiment provides a method such as figure 1 The use method of the shown multi-mode transcutaneous electrical nerve stimulation physical headache treatment instrument comprises the following steps:
[0046] Step 1: Turn on the power;
[0047] Step 2: The system is initialized;
[0048] Step 3: The system monitors the voltage and current of the treatment pulse;
[0049] Step 4: Select the treatment mode and set the treatment time;
[0050] Step 5: Select the treatment pulse frequency, and the system forms a treatment pulse;
[0051] Step 6: End treatment.
[0052] The system power supply is powe...
Embodiment 2
[0059] Taking treatment mode 1 as an example, the design of treatment pulse formation is explained by taking treatment mode 1 as an example. Treatment mode 1 requires the realization of: pulse frequency 100Hz±20% treatment pulse, a treatment time slice period of 10ms, and treatment within the treatment time slice. The pulse width lasts for 30us, and the number of pulses is 3-9, forming as figure 2 Therapy mode 1 pulse shown. After entering treatment mode 1, the system program delays by 0.2ms and waits for the system to reconfigure the internal timer of msp430G2352 and stabilize the timing to form three timing times of 5us, 250us, and 10ms, and use the 5us time base software to form a real-time clock for other tasks Timing triggering, such as treatment time recording, etc.; then in Figure 9 The P1.2 pin of the shown controller U2 generates a high level for 30us, and then resets the P1.2 pin to generate a low level for 5us, and adjusts the treatment pulse according to impulse...
Embodiment 3
[0062] The system will monitor the treatment pulse voltage and current in real time during startup and treatment. The treatment voltage and current monitoring is described by taking the treatment current monitoring as an example. According to the monitoring requirements, the system will start to monitor whether the therapeutic electrodes are in contact with the human body or not, and convert the working current of the pulse forming circuit into a pulse voltage through the current sampling circuit. Figure 9 The P1.0 pin of the shown controller U2 samples, and calculates and processes the pulse current according to the voltage to determine whether the electrode sticker is in good contact with the human body. The system program configures P1.0 as a 10-bit ADC and starts the internal ADC at the second pulse rising edge within the treatment time slice. After the ADC conversion is completed, the collected ADC results are saved in the voltage register for other tasks. deal with. C...
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