Abstract
To detect and map the abnormal points of organs of whole body, and the other important acupuncture points. Bi-Digital O-Ring Test(Y. Omura, 1977-2006; BDORTÅjhad used in the first stage a brass needle by touching the skin directly. Also we use the red laser light in diagnosis of BDORT, after Yoshiaki Omura (the originator of the BDORT) discovered the bi-directional transmission of molecular information by photon or electron beams passing in the close vicinity of specific molecules, and its clinical and basic research applications in the mid of 1980s’. In the early year, laser light was pointed in spot and the information of the living body was collected.
In the cancer screening of BDORT, laser light was spotted to right hand, left hand, right leg thigh, left leg thigh, CV22, CV17, CV8, Anus and checked by BDORT grading methods. If the grading of light hand, left hand and CV22 was abnormal, both ears were checked. In this method, abnormal area should be checked in detail. So, when abnormal area was estimated, aluminum foil was stuck to the body surface of the patient body and by holding the aluminum foil in half to make the abnormal area narrow and narrow. Finally the abnormal area was mapped by metal stick precisely, so it took much time in the diagnosis of BDORT. In 1999 linear line scanning method (vertical line and horizontal line (X-,Y-axis) was began to use (Shimotsuura devised this idea) and checked the abnormality in BDORT grading at the crossing point of X-, Y-axis. For example, in the cancer screening of BDORT, third person(mediator) holds 60ng of Integrin α5β1 as RCS and spots the point laser to the examinee by using BDORT grading, and checked the body surface of the examinee by X-, Y-axis linear laser scanning method. If the O-ring oh the third person was opened strongly, linear line was plotted in the body surface of the examinee by magic ink. Next the crossing point of X-axis and Y-axis line was checked normal or abnormal by spotting the point laser with holding Integrin α5β1 (60ng). Besides abnormal crossing points were checked by increase or decrease to find the maximum resonance quantity of the RCSs below; Integrin α5β1 : 350ng, Mercury: 350mg, Acetylcholine : Ipg, 8-OH-dG : 70ng, Folic Acid: Izg. Also Telomere (TTAGGG) and DHEA of abnormal and normal area were checked. Furthermore abnormal parts ware checked by resonance phenomena with holding specimens of various cancers. Finally, in blood inspection, X-ray, CT, MRI, PET Scan and endoscope inspection etc, the examinee was checked precisely. Depending upon this linear scanning method, medical examination time became short.
Detecting method of the abnormal section in the surface from linear line laser operation was devised by the staff of ORT Life Science Research Institute. At first, laser light was expanded to circular condition by passing through the lens. By irradiating the red LED light of high brightness in Square Shaped by our idea, the device that detects abnormal department was experimentally produced. Square shaped LED Light (Figure 1) and linear line laser (Figure 2) were easily exchanged by one button. The ratio of the length side of the oblong of square shape made to the golden ratio of 1:1.618.
Square shaped LED light
Linear line laser


By using Square shaped LED light with widely scanning the abnormal area, abnormal parts were easily detected. Next by changing the spots of square shaped LED light to the body surface of the patient (at first broad area of the abnormality was found, next by closing the equipment to the surface of the patient, the abnormal area was gradually narrowed. Also the abnormal oblong was smaller by using the golden ratio shape), abnormal area was detected in short time. Furthermore, as including the linear line laser in the same body, X-axis, Y-axis Scanning was easily performed in the narrowed abnormal points and crossing points were detected shortly and each parameter was easily checked out in short time. The shortening of medical examination time was realized. Following examination of our equipments should be necessary.
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