摘要:
Smart phones capable of detecting electrical impedances of and providing electronic pulse stimuli to acupuncture points located on a human body are disclosed. An example smart phone is equipped with a hardware diagnosis module and a hardware treatment module that function based on the principle of holography of protruding parts of the human body, in addition to having regular smart phone functions. The diagnosis module may receive electrical impedance data detected from protruding parts of a human body and determine the type of illness according to the analog electrical impedance data. The treatment module may generate electronic pulse stimuli on acupoints located on the human body (such as ears, hands and feet), thereby performing electronic acupuncture treatment. The example smart phone may also detect blood pressure, heart rate, blood oxygen value and blood glucose values of the human body.
摘要:
A bio-impedance measurement apparatus includes a flexible band member fastened around a body portion, two probe sets attached to the flexible band member, a measurement device, and a wireless device. One probe set includes a probe having a tip portion for piercing the skin of the body portion to be located adjacent to an acupuncture point. Another probe set, used as an electrical ground, includes a probe that contacts the reference skin. The measurement device is disposed on the flexible band member and electrically coupled to the two probe sets to provide an impulse current signal to the acupuncture point. The measurement device amplifies and measures the voltage response across the acupuncture points and the ground. The amplified signal is converted to a digital signal for Fourier transformation. The wireless device, coupled to the measurement device, transmits the acupuncture code and impedance information to a remote monitor station.
摘要:
A system and method for delivery of selected electrical impulses to selected locations on the body of a patient. In certain embodiments, the selected electrical impulses mimic the natural impulses that travel along neurons and the inverse thereof. A system for administering the selected electrical impulses may include an input element, impulse generator, impulse shaper, circuit booster element, output control element, time and sequence controller, display element, power source, and output element.
摘要:
A cell excitation terminal and a therapeutic system using customized electromagnetic (EM) waves varying dynamically with time for excitation include one or more EM wave generators, each of the EM wave generators is connected to a central processing unit (CPU), and the CPU controls, according to a signal detected by a human body status detection device, the EM wave generator to send EM waves corresponding to a detected status or subject patient. The therapeutic system can perform remote management. A remote server optimizes and updates therapeutic waveforms of a patient constantly according to a therapeutic effect of the patient, thereby improving the therapeutic effect constantly.
摘要:
The present invention relates to a system for determining treatment options from at least two electrical readings. The electrical readings are conductivity measurements of a particular region on the human body. The system utilizes a correlation algorithm to determine the diagnosis which can easily be correlated with appropriate treatments. The correlation algorithm may include the analysis of multiple electrical readings in determining the diagnosis. The system may also utilize a database of clinical data to further assist in determining the diagnosis.
摘要:
An acupuncture point position evaluating apparatus in which a current generated in a current generating section is applied to measurement points of skin of a subject through current application electrodes. The applied current and a voltage generated in the skin by the current application are measured in a measuring section. In a frequency analyzing section, the measured current and the measured voltage are provided with frequency analysis, and skin impedance Z(jf) in the respective measurement points is calculated. In a characteristics amount generating section, based on the frequency response of the skin impedance Z(jf) in the measurement points, frequency response K(f)=XZ(f)/RZ(f) as a ratio between real part RZ(f) and imaginary part XZ(f) of the skin impedance Z(jf) are calculated. In a determining section, based on the difference of the frequency response K(f), an acupuncture point position is determined from among the respective measurement points.
摘要:
The present invention relates to accurately measuring electrical readings. One embodiment of the present invention includes a method for measuring the electrical readings, recording the electrical readings to produce a relationship, correlating the relationship to a plurality of known mistakes, and then generating an accuracy level. The relationship may be a mathematical or graphical relationship among the measured electrical readings. The relationship can then be correlated to relationships that are produced when a particular measurement error is made. The probability that particular measurement errors were made can be determined such that an overall accuracy level can be quantified. In addition, the method may include suggesting corrective actions if the accuracy level indicates a high probability of measurement error. Another embodiment of the present invention includes a system for accurately measuring electrical readings. The system includes modules for receiving the electrical readings, correlating the relationship of the readings to known measurement mistakes, and outputting an accuracy level.
摘要:
An apparatus for measuring local skin impedance includes a multi-channel electrode including a plurality of measurement sensors on an electrode surface having a predetermined area, a channel selector for selecting each of channels included in the multi-channel electrode in response to a channel control signal, a constant current source for applying a predetermined constant current to a region to be measured, a preprocessing unit for amplifying and filtering a potential value measured at each of the channels while the predetermined constant current is flowing through the region to be measured, an analog-to-digital converter for converting the potential value output from the preprocessing unit into a digital signal, and a control unit for generating the channel control signal, for processing the digital signal output from the analog-to-digital converter, and for controlling the entire apparatus.
摘要:
The invention provides an apparatus and method for automatic evaluation of skin resistance or impedance variations in order to diagnose the state of health of at least a portion of a human or animal body. The difference between an AC impedance measured at a specific frequency and at a specific skin area with calibration electrode and a reference electrode and the impedance measured at a similar frequency and in the same area with a measurement electrode and a reference electrode, is used to determine the state of health of the internal organ corresponding to the examined skin area. Alternatively, the skin between the electrodes is exposed to a DC potential of a magnitude selected to give a break-through effect. The resistance of the skin is measured between a measurement electrode polarised negatively with respect fo a reference electrode, and the DC resistance of the same skin area is again measured but with the measurement electrode polarised positively with respect to the reference electrode. The ratio of these two values is used to determine the state of health of the internal organ corresponding with the examined skin area.
摘要:
A meridian point-probing device includes a pulse wave-detecting unit for detecting pulse waves, a stimulation unit having an end that stimulates a position of skin of a trial subject, a memory unit for storing pulse waveforms detected by the pulse wave-detecting unit before and after the stimulation of the position by the stimulation unit, and a meridian point determination unit for determining whether the stimulated position is a meridian point, according to the pulse waveforms stored in the memory unit. The position of the meridian point can be objectively determined with high reproducibility.