Patent classifications
A61H39/06
Therapeutic Heat Energy Measuring System, Method And Application For Meridian Thermal Therapy Device
A therapeutic thermal energy measuring system, method and application for a meridian thermal therapy device. The therapeutic thermal energy measuring system for a meridian thermal therapy device comprises: a time setting module for setting a time; a temperature setting module or an intensity level setting module for setting a temperature or an intensity level; a therapeutic thermal energy measuring module for measuring therapeutic thermal energy on the basis of a preset time and a preset temperature or intensity level, and outputting a result, and/or performing real-time measurement of therapeutic thermal energy on the basis of a preset temperature or intensity level and cumulative working hours of a treatment head of the meridian thermal therapy device, and outputting a result. the therapeutic heat energy measuring system uses the thermal energy generated by the treatment head of the meridian thermal therapy device as a parameter for measuring therapeutic thermal energy, thus solving a bottleneck problem of having no way of quantizing therapeutic thermal energy in meridian thermal therapy.
Massage Chair Having a Noise-Reducing Enclosure Device, Hammering Devices, and Oxygen Generation
The disclosure is directed to a massage chair having a massage chair frame, a massage system, and a noise-reducing, enclosure device. The massage chair frame includes a first end, a second end, a seat body area portion, and a back body area portion. The massage system includes at least one air massage element, an air pump, and at least one air valve device for regulating air flow into and out of the at least one air massage element. The noise-reducing, enclosure device includes an enclosure housing and noise-reducing material positioned inside the enclosure housing. The enclosure housing encloses the air pump and the plurality of air valve devices during operation during operation such that noise generated from or made by the air pump and the plurality of air valve devices during operation is reduced, contained or eliminated. Additionally, the disclosure provides additional features for improving user experience including hammering devices, heating acupuncture devices, oxygen generation, voice recognition control, a remote control pouch, and a wireless device pouch having wireless charging functionality.
COLD COMPRESSION DEVICE
A cold compression device has a driving assembly, a tank, a wrap assembly, and a tube assembly. The driving assembly includes a water pump and an air pump. The wrap assembly has a wrap, a water pack in the wrap, and an air pack in the wrap and overlapped on the water pack. The tube assembly has a first tube, a second tube, a third tube, and a fourth tube. The first tube connects the tank and the water pump. The second tube connects the water pump and the water pack. The third tube communicates with the water pack and the tank. The fourth tube connects the air pump and the air pack. Thus, as the first tube is detachable from and put out of the tank, the water pump may draw air into the water pack, which discharges the water in the water pack thoroughly.
COLD COMPRESSION DEVICE
A cold compression device has a driving assembly, a tank, a wrap assembly, and a tube assembly. The driving assembly includes a water pump and an air pump. The wrap assembly has a wrap, a water pack in the wrap, and an air pack in the wrap and overlapped on the water pack. The tube assembly has a first tube, a second tube, a third tube, and a fourth tube. The first tube connects the tank and the water pump. The second tube connects the water pump and the water pack. The third tube communicates with the water pack and the tank. The fourth tube connects the air pump and the air pack. Thus, as the first tube is detachable from and put out of the tank, the water pump may draw air into the water pack, which discharges the water in the water pack thoroughly.
THERMOTHERAPY BED
In order to maximize spatial utilization and to minimize the volume of a thermotherapy bed so that the thermotherapy bed can be easily stored or moved, the thermotherapy bed includes: a bed body having a thermotherapy device placed therein; side frames connected to both side surfaces of the bed body, respectively; and bed legs configured to support the bed body and connected to the side frames, respectively, wherein the thermotherapy device is placed in a center of the bed body and forms a protrusion on a bottom surface of the bed body, and the bed legs are folded to face an inside of the bed body and are accommodated in spaces formed at both sides of the thermotherapy device.
CERAMIC LIFTING AND LOWERING DEVICE FOR THERMOTHERAPEUTIC APPARATUS
To provide a heating apparatus for a heat treatment machine configured to accurately bring each ceramic member into contact with a set moxibustion point, the present invention provides a heating apparatus for a heat treatment machine including a base plate, an ascending and descending member of which one end is coupled to the base plate through a coupler, a plurality of ceramic members provided in the ascending and descending member, a first driving part configured to raise and lower the ascending and descending member, and a second driving part configured to convey the base plate in a horizontal direction.
Intelligent Moxibustion Device
The invention provides an intelligent moxibustion device, comprising a vertically disposed barrel, an ash tower buckled with the barrel, a moxa stick driving unit and an intelligent control unit disposed in the barrel; wherein the moxa stick driving unit comprises a moxa stick sleeve and a stepping motor disposed above the moxa stick sleeve; the stepping motor drives the moxa stick to move up and down through the transmission of a gear; the intelligent control unit comprises a battery disposed above the stepping motor for powering the entire moxibustion device, a circuit board fixed above the battery, and a temperature sensor disposed in the ash tower, the battery being connected to the circuit board to provide power to the circuit board, the circuit board being connected to the temperature sensor through input and output terminals.
METHOD FOR CONDUCTING STIMULUS TREATMENT
A method of conducting a stimulus treatment includes the steps of examining health conditions of a subject to obtain examination data information of the subject, registering the examination data information in an information accumulation device, planning a schedule of the stimulus treatment determined to be suitable for the subject based on the examination data, and conducting the stimulation application treatment by applying a stimulation to a stimulation receiving site of the subject with a stimulation application device so as to increase the blood flow in the subject by 60% or more after the application of stimulation, as compared to the blood flow before the application of the stimulation.
METHOD FOR CONDUCTING STIMULUS TREATMENT
A method of conducting a stimulus treatment includes the steps of examining health conditions of a subject to obtain examination data information of the subject, registering the examination data information in an information accumulation device, planning a schedule of the stimulus treatment determined to be suitable for the subject based on the examination data, and conducting the stimulation application treatment by applying a stimulation to a stimulation receiving site of the subject with a stimulation application device so as to increase the blood flow in the subject by 60% or more after the application of stimulation, as compared to the blood flow before the application of the stimulation.
Device for curing obesity using cooling
The present invention relates to a device for treating obesity using cooling, the device comprising: a controller body for setting a cooling temperature and operating time, supplying cooling water for cooling a thermoelectric element, and providing suction force through a vacuum pump; a handpiece body for displaying operating conditions and providing suction force through a suction hole; a cable for connecting the controller body and the handpiece body; a suction cup mounted on the handpiece body to form a suction space; and cooling devices positioned on opposite sides of the suction cup to cool a part to be treated, which has been sucked into the suction space. Further, metallic cooling plates in-molded in a suction cup made of silicone make contact with the part to be treated via a thin silicone layer such that fat can be destroyed efficiently using a small amount of anti-freezing agent while protecting the skin.