Pulse microwave treatment method and system for gynaecology and obstetrics

By obtaining patient skin data and pulse data in the pulse microwave treatment system, calculating skin status evaluation value and distribution deviation value, judging the correlation between abnormal skin status and differential state of pulse microwave intensity, and adjusting the output power of the pulse instrument based on this, solving the problem of caloric accumulation caused by the increase in skin temperature during pulse microwave treatment, and improving treatment safety and patient experience.

CN120132232AInactive Publication Date: 2025-06-13CANCER CENT OF GUANGZHOU MEDICAL UNIV
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Patent Information

Application Number
CN202510219276.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2025-06-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During pulsed microwave treatment, an increase in the patient's skin temperature may cause excessive heat to accumulate in the skin, causing damage to the skin and internal tissues, reducing the patient's feeling of use, and increasing the risk of medical accidents.

Method used

By obtaining patient skin data, calculating skin status evaluation values, judging skin condition and generating treatment status signals. Based on the abnormal signal, pulse data is obtained, distribution deviation value is calculated, and the correlation between the abnormal skin state and the pulse microwave intensity difference state is determined, so as to generate correlation signals. Finally, based on the correlation signal, the pulse meter output power adjustment value is calculated to adjust the pulse output power.

Benefits of technology

It realizes timely processing of patients' skin abnormalities during pulsed microwave treatment, improves the patient's experience and feelings during treatment, reduces the incidence of skin abnormalities and medical accidents, and improves the safety of treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of pulse microwave treatment, in particular to a pulse microwave treatment method and system for gynaecology and obstetrics, and the method comprises the steps: obtaining the skin data of a patient, and calculating a skin state evaluation value; according to the skin state evaluation value, the skin condition of the patient is judged, and a treatment state signal is generated; based on the treatment state abnormal signal, acquiring pulse microwave data, and calculating to obtain a distribution deviation value; according to the distribution deviation value, the relevance between the skin abnormal state and the pulse microwave intensity difference is judged, and a pulse microwave intensity difference state relevance signal is generated; based on the pulse microwave intensity difference state correlation large signal, skin data and pulse intensity data are obtained, and a pulse instrument output power adjustment value is obtained through calculation; the experience feeling of a patient in the pulse microwave treatment process can be improved, the occurrence rate of skin abnormity of the patient can be reduced, the safety in the pulse treatment process is improved, and the occurrence rate of medical accidents is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of pulsed microwave therapy, and particularly relates to a pulsed microwave therapy method and system for obstetrics and gynecology. Background Art

[0002] Pulsed microwave therapy is a treatment method that intermittently outputs microwave energy in a pulsed mode. By using the pulsed mode to treat the diseased area, after the microwave irradiates the diseased area, the diseased tissue will absorb the microwave energy and generate heat, thereby increasing the temperature of the diseased tissue. This increase in temperature helps to improve local blood circulation, promote the absorption and dissipation of inflammation, and enhance the body's immune function at the same time; in addition, pulsed microwave also has the characteristic of selective heating, which can accurately act on the diseased tissue and reduce the damage to normal tissue.

[0003] During the pulsed microwave therapy process, the skin temperature of the patient will increase due to the pulsed microwave. If the operation is improper, the heat accumulated in the skin of the patient's lesion area will be too high, causing certain damage to the patient's skin and internal tissues, and easily reducing the patient's use experience. To avoid irreparable effects, it is necessary to reduce the incidence of abnormal skin conditions in patients and reduce the incidence of medical accidents. Summary of the Invention

[0004] The purpose of the present invention is to provide a pulsed microwave therapy method for obstetrics and gynecology to solve the problems in the above background.

[0005] The purpose of the present invention can be achieved by the following technical solutions:

[0006] A pulsed microwave therapy method for obstetrics and gynecology includes:

[0007] Step 1: Obtain the patient's skin data and calculate the skin state evaluation value; wherein, the patient's skin data includes the skin redness area and skin temperature;

[0008] Step 2: Judge the patient's skin condition according to the skin state evaluation value and generate a treatment state signal; wherein, the skin state signal includes a normal treatment state signal and an abnormal treatment state signal;

[0009] Step 3: Based on the abnormal treatment state signal, obtain the pulse data and calculate the distribution deviation value; wherein, the pulse data includes the pulse intensity, and the skin state data includes the skin state evaluation value;

[0010] Step 4: Judge the correlation between the abnormal skin state and the difference state of the pulsed microwave intensity according to the distribution deviation value and generate a correlation signal of the difference state of the pulsed microwave intensity; wherein, the correlation signal of the difference state of the pulsed microwave intensity includes a large correlation signal of the difference state of the pulsed microwave intensity and a small correlation signal of the difference state of the pulsed microwave intensity;

[0011] Step Five: Based on the large-signal correlation of the pulse microwave intensity difference state, obtain skin data and pulse intensity data, and calculate the adjustment value of the output power of the pulse instrument; wherein, the skin data includes the skin state evaluation value, and the pulse data includes the pulse intensity.

[0012] As a further solution of the present invention: In Step One, set a detection period, divide the detection period into several detection time periods with the pulse interval as the dividing line, and obtain the skin red and swollen area of the patient's pulse microwave irradiation area within the detection time period;

[0013] Calculate the ratio of the skin red and swollen area within the detection time period to the total area of the drug application area to obtain the skin red and swollen area ratio.

[0014] As a further solution of the present invention: In Step One, obtain the skin temperature data of the patient within the detection time period through an infrared thermal imaging sensor and mark it as the skin temperature value;

[0015] Calculate the difference between the skin temperature value and the normal skin temperature value of the patient to obtain the skin temperature difference value;

[0016] Compare the skin temperature difference value with the skin temperature difference threshold; if the skin temperature difference value is greater than or equal to the temperature difference threshold, generate a skin temperature abnormality signal, and mark this detection time period as the skin temperature abnormality detection time period;

[0017] Obtain the number of skin temperature abnormality detection time periods, and calculate the ratio of the number of skin temperature abnormality detection time periods to the total number of detection time periods to obtain the proportion of skin temperature abnormality detection time periods.

[0018] As a further solution of the present invention: In Step Two, calculate the ratio of the skin temperature value within the detection time period to the normal skin temperature value of the patient to obtain the skin temperature performance value;

[0019] Sum up the skin temperature performance value and the proportion of skin temperature abnormality detection time periods to obtain the skin temperature state value;

[0020] Sum up the proportion of skin red and swollen area and the skin temperature value to obtain the skin state evaluation value.

[0021] As a further solution of the present invention: In Step Two, obtain the skin state evaluation value and preset the skin state evaluation threshold;

[0022] Compare the skin state evaluation value with the skin state evaluation threshold;

[0023] If the skin state evaluation value is greater than the skin state evaluation threshold, generate a treatment state abnormality signal.

[0024] As a further solution of the present invention: in step three, obtain the pulsed microwave intensity during the detection period;

[0025] Calculate the difference between the pulsed microwave intensity during the detection period and the pulsed microwave intensity threshold to obtain the pulsed microwave intensity difference value;

[0026] Calculate the ratio of the pulsed microwave intensity difference value to the pulsed microwave intensity threshold to obtain the pulsed microwave intensity difference degree value;

[0027] Compare the pulsed microwave intensity difference degree value with the pulsed microwave intensity difference degree threshold;

[0028] If the pulsed microwave intensity difference value is greater than or equal to the pulsed microwave intensity difference threshold, generate a pulsed microwave intensity abnormal signal and mark this detection period as a pulsed microwave intensity abnormal detection period;

[0029] Obtain the number of pulsed microwave difference abnormal detection periods, and calculate the ratio of the number of pulsed microwave difference abnormal detection periods to the total number of detection periods to obtain the proportion of pulsed microwave difference detection periods;

[0030] Calculate the pulsed microwave intensity evaluation value QP through the formula QP = MC * α + BS * β; where, MC represents the pulsed microwave intensity difference degree value, BS represents the proportion of pulsed microwave difference detection periods, and α and β are both weight ratio coefficients, and α + β = 1.

[0031] As a further solution of the present invention: in step three, establish a two-dimensional coordinate system model, with the detection period as the X-axis of the coordinate system and the abnormal degree ratio as the Y-axis of the coordinate system;

[0032] Substitute the skin state evaluation value within the detection period into the two-dimensional coordinate system model to obtain the skin abnormal state distribution map;

[0033] Then substitute the pulsed microwave intensity evaluation value into the two-dimensional coordinate system model to obtain the pulsed microwave intensity abnormal state distribution map;

[0034] Through the formula Calculate the distribution deviation value PM; where, Pi represents the coordinate of the skin state evaluation value during the detection period, Qi represents the coordinate of the pulsed microwave intensity evaluation value during the detection period, and n represents the number of detection periods.

[0035] As a further solution of the present invention: in step four, obtain the distribution deviation value PM, and compare the distribution deviation value PM with the distribution deviation threshold;

[0036] If the distribution deviation value PM is less than or equal to the distribution deviation threshold, generate a large signal for the correlation of pulsed microwave intensity difference states.

[0037] As a further solution of the present invention: in step five, obtain the skin evaluation value and pulse intensity during the abnormal detection period, calculate the ratio of the skin state evaluation value and the pulse intensity value, and obtain the change coefficient of the pulse intensity and the skin state;

[0038] Calculate the average value of the change coefficients of the pulse intensity and the skin state within all abnormal detection periods to obtain the average change coefficient of the pulse intensity and the skin state evaluation value;

[0039] Based on the average change coefficient of the pulse intensity and the skin state evaluation value, through the formula Calculate the output power adjustment value WT of the pulse instrument; where DP represents the current skin state evaluation value, YP represents the skin state evaluation difference value, MC represents the current pulse microwave intensity, and ∈ represents the correction coefficient of the current output power of the pulse instrument.

[0040] An obstetrics and gynecology pulse microwave treatment system includes:

[0041] Acquisition and calculation module: acquire patient skin data and calculate the skin state evaluation value; where the patient skin data includes the skin red and swollen area and skin temperature;

[0042] Treatment state evaluation module: judge the patient's skin condition according to the skin state evaluation value and generate a treatment state signal; where the skin state signal includes a normal treatment state signal and an abnormal treatment state signal;

[0043] Distribution deviation value calculation module: based on the abnormal treatment state signal, acquire pulse data and calculate the distribution deviation value; where the pulse data includes pulse intensity;

[0044] Pulse microwave intensity difference state correlation judgment module: judge the correlation between the skin abnormal state and the pulse microwave intensity difference state according to the distribution deviation value and generate a pulse microwave intensity difference state correlation signal; where the pulse microwave intensity difference state correlation signal includes a large pulse microwave intensity difference state correlation signal and a small pulse microwave intensity difference state correlation signal;

[0045] Pulse instrument output power adjustment value calculation module: based on the large pulse microwave intensity difference state correlation signal, acquire skin data and pulse intensity data and calculate the output power adjustment value of the pulse instrument; where the skin data includes the skin state evaluation value and the pulse data includes pulse intensity.

[0046] The beneficial effects of the present invention:

[0047] (1) The present invention can determine whether there is an abnormality in pulsed microwave treatment based on the redness and swelling state and temperature state of the patient's skin, and can promptly handle the abnormal skin conditions of the patient, improving the patient's experience during pulsed microwave treatment;

[0048] (2) The present invention can determine the correlation between the pulsed intensity of the pulse instrument and the patient's skin, and adjust the pulsed output power of the pulse instrument according to signals and data, reducing the incidence of abnormal skin conditions in patients, preventing irreversible damage to the patient's skin, improving the safety during pulsed treatment, and reducing the incidence of medical accidents. BRIEF DESCRIPTION OF THE DRAWINGS

[0049] The present invention will be further described below with reference to the accompanying drawings.

[0050] Figure 1 is a flowchart of Embodiment 1 of the present invention;

[0051] Figure 2 is a flowchart of Embodiment 2 of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0052] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0053] Embodiment 1

[0054] Please refer to Figure 1 As shown, the present invention is a pulsed microwave treatment method for obstetrics and gynecology, including the following steps:

[0055] Step 1: Obtain the patient's skin data and calculate the skin state evaluation value;

[0056] Among them, the patient's skin data includes the skin redness and swelling area and the skin temperature;

[0057] In some embodiments, a detection period is set, and the detection period is divided into several detection time periods with the pulse interval as the dividing line, and the skin redness and swelling area of the patient's pulsed microwave irradiation area within the detection time period is obtained;

[0058] It should be noted that: the skin image of the patient's lesion area can be obtained through an image sensor, and then the skin image obtained during pulsed microwave treatment is compared with the skin image obtained before pulsed microwave treatment through an image analyzer, and the positions where the two images are different are marked as skin redness points;

[0059] In addition, different judgment bases for the two images include, but are not limited to, analyzing the degree of color change through methods such as Lab color space parameters, RGB color space parameters, HVS color space parameters, etc., and determining whether the degree of color change exceeds the degree of change generated by normal pulsed microwave therapy;

[0060] Calculate the ratio of the area of skin redness and swelling during the detection period to the total area of the drug application area to obtain the skin redness and swelling area ratio;

[0061] It should be noted that: the drug application area refers to the patient applying the corresponding drug to the skin of the lesion area before pulsed microwave therapy, and this is to clean, protect, etc. the skin of the lesion area;

[0062] Furthermore, obtain the skin temperature data of the patient during the detection period through an infrared thermal imaging sensor and mark it as the skin temperature value;

[0063] Calculate the difference between the skin temperature value and the normal skin temperature value of the patient to obtain the skin temperature difference value;

[0064] Compare the skin temperature difference value with the skin temperature difference threshold;

[0065] It should be noted that the skin temperature difference threshold is an empirical value. During pulsed microwave therapy, pulsed microwaves will cause a certain increase in skin temperature. Depending on the intensity of the pulsed microwaves, the degree of temperature increase will also vary. The inevitable temperature increase caused by pulsed microwaves should be within the range that the patient can tolerate or the normal human skin can tolerate (this range should ensure that the skin does not show irreversible skin damage), and relevant personnel in this field should obtain the value of the temperature difference threshold based on experience;

[0066] If the skin temperature difference value is less than the temperature difference threshold, generate a normal skin temperature signal and mark this detection period as a normal skin temperature detection period;

[0067] If the skin temperature difference value is greater than or equal to the temperature difference threshold, generate a skin temperature abnormal signal and mark this detection period as a skin temperature abnormal detection period;

[0068] Obtain the number of skin temperature abnormal detection periods, and calculate the ratio of the number of skin temperature abnormal detection periods to the total number of detection periods to obtain the proportion of skin temperature abnormal detection periods;

[0069] Furthermore, calculate the ratio of the skin temperature value during the detection period to the normal skin temperature value of the patient to obtain the skin temperature performance value;

[0070] Sum up the skin temperature performance value and the proportion of skin temperature abnormal detection periods to obtain the skin temperature status value;

[0071] The skin redness and swelling area ratio and the skin temperature value are summed up to obtain the skin condition assessment value;

[0072] Step 2: judging the patient's skin condition based on the skin condition assessment value and generating a treatment status signal;

[0073] The skin status signal includes a normal treatment status signal and an abnormal treatment status signal;

[0074] In some embodiments, a skin condition evaluation value is obtained, and a skin condition evaluation threshold is preset;

[0075] comparing the skin condition assessment value with a skin condition assessment threshold;

[0076] If the skin condition evaluation value is less than or equal to the skin condition evaluation threshold, a normal treatment status signal is generated; when a normal treatment status signal is received, it means that the smaller the skin condition evaluation value is, the lighter the abnormality of the skin is;

[0077] If the skin condition evaluation value is greater than the skin condition evaluation threshold, a treatment status abnormality signal is generated; when a treatment status abnormality signal is received, it means that the greater the skin condition evaluation value, the more serious the skin abnormality is, and the cause of the skin abnormality needs to be analyzed;

[0078] Relevant personnel in this field should be aware that there are individual differences among the patient population. Each patient has different sensitivity to skin abnormalities and tolerance. Therefore, during the pulse microwave treatment, it is necessary to judge whether the skin abnormality exceeds the patient's tolerance according to the patient's wishes. When the patient's skin abnormality exceeds the patient's tolerance, the pulse microwave treatment should be stopped immediately, and appropriate rescue measures should be taken if necessary;

[0079] Step 3: Based on the abnormal signal of the treatment state, the pulse microwave data and the skin state data are obtained, and the distribution deviation value is calculated;

[0080] Wherein, the pulse microwave data includes the pulse microwave intensity, and the skin condition data includes the skin condition evaluation value;

[0081] In some embodiments, obtaining the pulse microwave intensity within the detection period;

[0082] It should be noted that the preset pulse microwave intensity is set according to the depth of the patient's lesion; in addition, during the actual treatment process, the actual pulse microwave intensity deviates from the preset pulse microwave intensity. The present invention is based on the pulse microwave intensity actually acting on the patient's lesion area;

[0083] Calculate the difference between the pulsed microwave intensity during the detection period and the pulsed microwave intensity threshold to obtain the pulsed microwave intensity difference value;

[0084] Calculate the ratio of the pulsed microwave intensity difference value to the pulsed microwave intensity threshold to obtain the pulsed microwave intensity difference degree value;

[0085] Compare the pulsed microwave intensity difference degree value with the pulsed microwave intensity difference degree threshold;

[0086] If the pulsed microwave intensity difference value is greater than or equal to the pulsed microwave intensity difference threshold, generate a pulsed microwave intensity abnormal signal and mark the detection period as a pulsed microwave intensity abnormal detection period;

[0087] Obtain the number of pulsed microwave difference abnormal detection periods, and calculate the ratio of the number of pulsed microwave difference abnormal detection periods to the total number of detection periods to obtain the proportion of pulsed microwave difference detection periods;

[0088] Perform a weighted sum of the pulsed microwave intensity difference degree value and the proportion of pulsed microwave difference detection periods to calculate the pulsed microwave intensity evaluation value;

[0089] Exemplarily, calculate the pulsed microwave intensity evaluation value QP through the formula QP = MC * α + BS * β; where, MC represents the pulsed microwave intensity difference degree value, BS represents the proportion of pulsed microwave difference detection periods, α and β are both weight ratio coefficients, and α + β = 1;

[0090] Furthermore, establish a two-dimensional coordinate system model, with the detection period as the X-axis of the coordinate system and the abnormal degree ratio as the Y-axis of the coordinate system;

[0091] Substitute the skin state evaluation value within the detection period into the two-dimensional coordinate system model to obtain the skin abnormal state distribution map;

[0092] Then substitute the pulsed microwave intensity evaluation value into the two-dimensional coordinate system model to obtain the pulsed microwave intensity abnormal state distribution map;

[0093] It should be noted that: if there is no abnormality in the skin state or pulsed microwave intensity state at a certain time point, the value on the Y-axis of the corresponding distribution map is set to 0;

[0094] Through the formula Calculate the distribution deviation value PM; where, Pi represents the coordinate of the skin state evaluation value within the detection period, Qi represents the coordinate of the pulsed microwave intensity evaluation value within the detection period, and n represents the number of detection periods;

[0095] Step Four: Based on the distribution deviation value, determine the correlation between the skin abnormal state and the pulse microwave intensity difference state, and generate a correlation signal for the pulse microwave intensity difference state;

[0096] Among them, the correlation signal for the pulse intensity difference state includes a large correlation signal for the pulse microwave intensity difference state and a small correlation signal for the pulse microwave intensity difference state;

[0097] In some embodiments, obtain the distribution deviation value PM, and compare the distribution deviation value PM with the distribution deviation threshold;

[0098] If the distribution deviation value PM is less than or equal to the distribution deviation threshold, then generate a large correlation signal for the pulse microwave intensity difference state;

[0099] If the distribution deviation value PM is greater than the distribution deviation threshold, then generate a small correlation signal for the pulse microwave intensity difference state;

[0100] It should be noted that: calculate the difference between the skin state evaluation threshold and the pulse microwave intensity difference threshold, sum the calculation result with the preset deviation value, and calculate the distribution deviation value; in addition, the preset deviation value is set by relevant personnel in the field;

[0101] When receiving a large correlation signal for the pulse microwave intensity difference state, it means that when the distribution deviation value PM is smaller, the similarity between the skin abnormal state distribution map and the pulse intensity abnormal state distribution map is higher, and the correlation between the pulse intensity difference situation and the skin state situation is greater;

[0102] When receiving a small correlation signal for the pulse microwave intensity difference state, it means that when the distribution deviation value PM is larger, the similarity between the skin abnormal state distribution map and the pulse microwave intensity abnormal state distribution map is lower, and the correlation between the pulse microwave intensity difference situation and the skin state situation is smaller, and it is necessary to further analyze the abnormal situation of the patient's skin state;

[0103] Step Five: Based on the large correlation signal for the pulse microwave intensity difference state, obtain skin data and pulse intensity data, and calculate the output power adjustment value of the pulse instrument;

[0104] Among them, the skin data includes the skin state evaluation value, and the pulse data includes the pulse intensity value;

[0105] In some embodiments, obtain the skin evaluation value and pulse intensity during the abnormal detection period;

[0106] It should be noted that: the abnormal detection period refers to the detection period when both the treatment state abnormal signal and the pulse microwave intensity abnormal signal appear simultaneously;

[0107] Calculate the ratio of the skin condition assessment value and the pulse intensity value to obtain the change coefficient of the pulse intensity and the skin condition;

[0108] Calculate the average value of the change coefficients of the pulse intensity and the skin condition within all abnormal detection periods to obtain the average change coefficient of the pulse intensity and the skin condition assessment value;

[0109] Based on the average change coefficient of the pulse intensity and the skin condition assessment value, through the formula Calculate the output power adjustment value WT of the pulse instrument; where, DP represents the current skin condition assessment value, YP represents the skin condition assessment difference value, MC represents the current pulse microwave intensity, and ∈ represents the correction coefficient of the current output power of the pulse instrument;

[0110] It should be noted that: the calculation formula of the output power adjustment value WT of the pulse instrument is obtained by converting the equation Moreover, this equation is deduced based on the average change coefficient of the pulse intensity and the skin condition assessment value;

[0111] When receiving the output power adjustment value of the pulse instrument, send a control signal to the output motor of the pulse instrument. After receiving the control signal, the output motor of the pulse instrument adjusts the output power of the output motor of the pulse instrument according to the received data, so that the output power is adjusted to the output power corresponding to the pulse microwave intensity, reducing the incidence of skin abnormalities in patients and improving the user experience;

[0112] It should be noted that: if the output power required to be adjusted by the pulse microwave instrument is too large, it means that the current pulse microwave intensity may cause certain damage to the patient's skin. At this time, it can be judged whether to immediately turn off the pulse instrument according to the patient's reaction to prevent continuous damage to the patient's skin;

[0113] Technical solution of the present invention: The present invention obtains patient skin data and calculates a skin condition evaluation value; based on the skin condition evaluation value, judges the patient's skin condition and generates a skin condition signal; based on the skin abnormality signal, obtains pulse intensity data and calculates a distribution deviation value; according to the distribution deviation value, judges the correlation between the skin abnormal state and the pulse intensity fluctuation state and generates a pulse intensity fluctuation state correlation signal; based on the large pulse intensity fluctuation state correlation signal, obtains skin data and pulse intensity data and calculates a pulse instrument output power adjustment value. The present invention can not only judge whether there is an abnormality in pulsed microwave treatment through the patient's skin condition, timely handle the patient's skin abnormality, and improve the patient's experience during pulsed microwave treatment; the present invention can also judge the correlation between the pulse intensity of the pulse instrument and the patient's skin, and adjust the pulse output power of the pulse instrument according to the signal and data, reduce the incidence of patient skin abnormalities, prevent irreversible damage to the patient's skin, improve the safety during pulsed treatment, and reduce the incidence of medical accidents.

[0114] Embodiment 2

[0115] Please refer to Figure 2 as shown, the present invention is an obstetrics and gynecology pulsed microwave treatment system, including:

[0116] Acquisition and calculation module: Obtains patient skin data and calculates a skin condition evaluation value; wherein, the patient skin data includes the skin red and swollen area and skin temperature;

[0117] Treatment state evaluation module: Based on the skin condition evaluation value, judges the patient's skin condition and generates a treatment state signal; wherein, the skin condition signal includes a normal treatment state signal and an abnormal treatment state signal;

[0118] Distribution deviation value calculation module: Based on the abnormal treatment state signal, obtains pulse data and calculates a distribution deviation value; wherein, the pulse data includes pulse intensity;

[0119] Pulsed microwave intensity difference state correlation judgment module: According to the distribution deviation value, judges the correlation between the skin abnormal state and the pulsed microwave intensity difference state and generates a pulsed microwave intensity difference state correlation signal; wherein, the pulsed microwave intensity difference state correlation signal includes a large pulsed microwave intensity difference state correlation signal and a small pulsed microwave intensity difference state correlation signal;

[0120] Pulse instrument output power adjustment value calculation module: Based on the large pulsed microwave intensity difference state correlation signal, obtains skin data and pulse intensity data and calculates a pulse instrument output power adjustment value; wherein, the skin data includes the skin condition evaluation value, and the pulse data includes pulse intensity;

[0121] The above has described in detail an embodiment of the present invention, but the above content is only a preferred embodiment of the present invention and cannot be considered as defining the scope of implementation of the present invention. All equivalent changes and improvements made according to the scope of application of the present invention should still fall within the scope covered by the patent of the present invention.

Claims

1. A gynecological pulse microwave treatment method, characterized in that: The following steps are involved: Step 1: Obtain the patient's skin data and calculate the skin condition assessment value; wherein the patient's skin data includes the skin redness and swelling area and skin temperature; Step 2: judging the patient's skin condition according to the skin condition evaluation value, and generating a treatment status signal; wherein the skin condition signal includes a normal treatment status signal and an abnormal treatment status signal; Step 3: Based on the abnormal signal of the treatment state, pulse data is obtained, and a distribution deviation value is calculated; wherein the pulse data includes pulse intensity, and the skin state data includes a skin state evaluation value; Step 4: judging the correlation between the skin abnormality state and the pulse microwave intensity difference state according to the distribution deviation value, and generating a pulse microwave intensity difference state correlation signal; wherein the pulse microwave intensity difference state correlation signal includes a pulse microwave intensity difference state correlation large signal and a pulse microwave intensity difference state correlation small signal; Step 5: Based on the large signal associated with the pulse microwave intensity difference state, skin data and pulse intensity data are obtained, and the pulse meter output power adjustment value is calculated; wherein the skin data includes the skin state evaluation value, and the pulse data includes the pulse intensity.

2. The gynecological and obstetric pulse microwave treatment method according to claim 1, characterized in that: In step 1, a detection cycle is set, and the detection cycle is divided into several detection time periods with pulse intervals as the dividing line, and the skin redness and swelling area of ​​the patient's pulse microwave irradiation area within the detection time period is obtained; The skin redness and swelling area ratio was calculated by calculating the ratio of the skin redness and swelling area during the test period to the total area of ​​the drug application area.

3. The gynecological and obstetric pulse microwave treatment method according to claim 2, characterized in that: In step 1, the skin temperature data of the patient during the detection period is obtained by using an infrared thermal imaging sensor and marked as a skin temperature value; Calculate the difference between the skin temperature value and the normal skin temperature value of the patient to obtain a skin temperature difference value; comparing the skin temperature difference value to a skin temperature difference threshold; If the skin temperature difference value is greater than or equal to the temperature difference threshold, a skin temperature abnormality signal is generated, and the detection period is marked as a skin temperature abnormality detection period; The number of skin temperature abnormality detection periods is obtained, and the ratio of the number of skin temperature abnormality detection periods to the total number of detection periods is calculated to obtain the proportion of skin temperature abnormality detection periods.

4. The gynecological and obstetric pulse microwave treatment method according to claim 3, characterized in that: In step 2, the skin temperature value in the detection period is calculated by ratio with the normal skin temperature value of the patient to obtain the skin temperature performance value; The skin temperature performance value and the skin temperature abnormality detection period ratio are calculated and summed to obtain the skin temperature status value; The skin redness and swelling area ratio and the skin temperature value are summed up to obtain the skin condition assessment value.

5. The gynecological and obstetric pulse microwave treatment method according to claim 4, characterized in that: In step 2, a skin condition evaluation value is obtained, and a skin condition evaluation threshold is preset; comparing the skin condition assessment value with a skin condition assessment threshold; If the skin condition evaluation value is greater than the skin condition evaluation threshold, a treatment status abnormality signal is generated.

6. The gynecological and obstetric pulse microwave treatment method according to claim 1, characterized in that: In step three, the pulse microwave intensity in the detection period is obtained, and the difference between the pulse microwave intensity in the detection period and the pulse microwave intensity threshold is calculated to obtain a pulse microwave intensity difference value; The pulse microwave intensity difference value is calculated by ratio with the pulse microwave intensity threshold value to obtain the pulse microwave intensity difference degree value; comparing the pulse microwave intensity difference degree value with the pulse microwave intensity difference degree threshold; If the pulse microwave intensity difference value is greater than or equal to the pulse microwave intensity difference threshold, a pulse microwave intensity abnormality signal is generated, and the detection period is marked as a pulse microwave intensity abnormality detection period; The number of pulse microwave difference anomaly detection periods is obtained, and the ratio of the number of pulse microwave difference anomaly detection periods to the total number of detection periods is calculated to obtain the proportion of pulse microwave difference detection periods; The pulse microwave intensity assessment value QP is calculated by the formula QP=MC*α+BS*β; wherein MC represents the pulse microwave intensity difference degree value, BS represents the pulse microwave difference detection period ratio, α and β are weight ratio coefficients, and α+β=1.

7. The gynecological and obstetric pulse microwave treatment method according to claim 6, characterized in that: In step three, a two-dimensional coordinate system model is established, with the detection period as the X-axis of the coordinate system and the abnormality degree ratio as the Y-axis of the coordinate system; Substituting the skin condition evaluation value within the detection period into the two-dimensional coordinate system model to obtain a skin abnormality state distribution map; Then, the pulse microwave intensity evaluation value is substituted into the two-dimensional coordinate system model to obtain the abnormal state distribution diagram of the pulse microwave intensity; By formula The distribution deviation value PM is calculated; wherein Pi represents the coordinates of the skin condition evaluation value within the detection period, Qi represents the coordinates of the pulse microwave intensity evaluation value within the detection period, and n represents the number of detection periods.

8. The gynecological and obstetric pulse microwave treatment method according to claim 7, characterized in that: In step 4, a distribution deviation value PM is obtained, and the distribution deviation value PM is compared with a distribution deviation threshold; If the distribution deviation value PM is less than or equal to the distribution deviation threshold, a pulse microwave intensity difference state correlation large signal is generated.

9. The gynecological and obstetric pulse microwave treatment method according to claim 1, characterized in that: In step 5, the skin evaluation value and pulse intensity during the abnormal detection period are obtained, and the skin state evaluation value and the pulse intensity value are ratio-calculated to obtain the variation coefficient of the pulse intensity and the skin state; The variation coefficients of pulse intensity and skin condition in all abnormal detection periods are averaged to obtain the average variation coefficient of pulse intensity and skin condition assessment value; Based on the average coefficient of variation of pulse intensity and skin condition assessment value, the formula The pulse meter output power adjustment value WT is calculated; wherein DP represents the current skin condition evaluation value, YP represents the skin condition evaluation difference value, MC represents the current pulse microwave intensity, and ∈ represents the correction coefficient of the current pulse meter output power.

10. A gynecological pulse microwave treatment system, characterized in that: The system can implement any of the methods described in 1-9, including: Acquisition and calculation module: obtains the patient's skin data and calculates the skin condition evaluation value; the patient's skin data includes the skin redness and swelling area and skin temperature; Treatment status evaluation module: judges the patient's skin condition according to the skin status evaluation value and generates a treatment status signal; wherein the skin status signal includes a normal treatment status signal and an abnormal treatment status signal; Distribution deviation value calculation module: based on the abnormal signal of the treatment state, the pulse data is obtained and the distribution deviation value is calculated; wherein the pulse data includes the pulse intensity; Pulse microwave intensity difference state correlation judgment module: according to the distribution deviation value, the correlation between the skin abnormality state and the pulse microwave intensity difference state is judged, and a pulse microwave intensity difference state correlation signal is generated; wherein the pulse microwave intensity difference state correlation signal includes a pulse microwave intensity difference state correlation large signal and a pulse microwave intensity difference state correlation small signal; Pulse meter output power adjustment value calculation module: based on the large signal of pulse microwave intensity difference state correlation, skin data and pulse intensity data are obtained, and the pulse meter output power adjustment value is calculated; wherein, the skin data includes the skin state evaluation value, and the pulse data includes the pulse intensity.

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