Visualization Engineering Platform for Pulse Diagnosis of Traditional Chinese Medicine-The Research of Similar Moiré Feature Analyzing Approach Based on Recurrent Neural Network to Process the Measured Slip Pulse Wave-Images With Chun, Guan and Chy

Sponsor
China Medical University Hospital (Other)
Overall Status
Recruiting
CT.gov ID
NCT04661605
Collaborator
(none)
80
1
12
6.7

Study Details

Study Description

Brief Summary

The diagnoses processes of Traditional Chinese Medicine (TCM) focus on the following four main types of diagnoses methods consisting of inspection, olfaction, inquiry, and palpation. The most important one is palpation also called pulse diagnosis which is to measure wrist artery pulse by TCM doctor's fingers to detect patient's health state. The pulse diagnosis has three parts, namely 'Chun', 'Guan' and 'Chy', with the location. Wrist measurements correspond to different parts of the body's organs. However, the pulse information is analyzed by TCM doctor's pulse diagnoses process, which is picked only a single waveform from a long-term pulse measured process and often discarded the other waveforms contained in the same information, e.g. Slip Pulse waveform. The research object of this project is to divide the TCM diagnosis patients into two groups, one is the Slip pulse group and the other is a Flat Pulse group, in which the cases are collected at least 50 cases for the first gruop and 30 cases for the second group, individually. The purpose of this project will integrate the TCM doctor's experiences and standardize them in order to construct an effective Slip pulse diagnosis system based on visualization engineering platform. It could refine Slip pulse diagnoses processes and reduce their diagnoses loading by using the proposed approach during this project. Therefore, we will propose a similar Moiré feature analyzing approach based on Recurrent Neural Network to process the measured Slip Pulse wave-images with 'Chun', 'Guan' and 'Chy' in order to prepare this visualization engineering platform. We will measure the waveform images of the three parts of the wrist as 'Chun', 'Guan' and 'Chy' with the moiré feature technology proposed in this project. It mainly extracts the moiré features such as pulse image from numerous measurement 'Chun', 'Guan' and 'Chy' signals, and further analyzes and summarizes them with AI technology. We could extract the pulse characteristics of Slip pulse automatically from the many measurement signals and enhance the automatic judging ability of the current pulse instrument to the Slip pulse waveform. Provide important pulse information to the TCM doctors as an important reference for precision clinical diagnoses.

Condition or Disease Intervention/Treatment Phase
  • Diagnostic Test: Recurrent Neural Network

Study Design

Study Type:
Observational
Anticipated Enrollment :
80 participants
Observational Model:
Other
Time Perspective:
Prospective
Official Title:
Visualization Engineering Platform for Pulse Diagnosis of Traditional Chinese Medicine-The Research of Similar Moiré Feature Analyzing Approach Based on Recurrent Neural Network to Process the Measured Slip Pulse Wave-Images With Chun, Guan and Chy
Anticipated Study Start Date :
Dec 1, 2020
Anticipated Primary Completion Date :
Dec 1, 2021
Anticipated Study Completion Date :
Dec 1, 2021

Outcome Measures

Primary Outcome Measures

  1. Slippery Pulse [30 minutes in duration]

    The purpose of this project will integrate the TCM doctor's experiences and standardize them in order to construct an effective Slippery Pulse diagnosis system.

Eligibility Criteria

Criteria

Ages Eligible for Study:
20 Years to 90 Years
Sexes Eligible for Study:
All
Accepts Healthy Volunteers:
Yes
Inclusion Criteria:
  1. Already sign test consent permit.

  2. More than 20-year-old.

Exclusion Criteria:
  1. There is a wound or inflammation at the wrist skin measurement.

Contacts and Locations

Locations

Site City State Country Postal Code
1 China Medical University Hospital Taichung North District Taiwan 40447

Sponsors and Collaborators

  • China Medical University Hospital

Investigators

None specified.

Study Documents (Full-Text)

None provided.

More Information

Publications

None provided.
Responsible Party:
China Medical University Hospital
ClinicalTrials.gov Identifier:
NCT04661605
Other Study ID Numbers:
  • CMUH109-REC2-159
First Posted:
Dec 10, 2020
Last Update Posted:
Dec 10, 2020
Last Verified:
Dec 1, 2020
Studies a U.S. FDA-regulated Drug Product:
No
Studies a U.S. FDA-regulated Device Product:
No
Keywords provided by China Medical University Hospital
Additional relevant MeSH terms:

Study Results

No Results Posted as of Dec 10, 2020