Please wait a minute...
Frontiers of Medicine

ISSN 2095-0217

ISSN 2095-0225(Online)

CN 11-5983/R

邮发代号 80-967

2019 Impact Factor: 3.421

Frontiers of Medicine  2014, Vol. 8 Issue (3): 376-381   https://doi.org/10.1007/s11684-014-0356-9
  本期目录
A study on specialist or special disease clinics based on big data
Zhuyuan Fang, Xiaowei Fan, Gong Chen()
Jiangsu Province Hospital of TCM, Nanjing 210029, China
 全文: PDF(443 KB)   HTML
Abstract

Correlation analysis and processing of massive medical information can be implemented through big data technology to find the relevance of different factors in the life cycle of a disease and to provide the basis for scientific research and clinical practice. This paper explores the concept of constructing a big medical data platform and introduces the clinical model construction. Medical data can be collected and consolidated by distributed computing technology. Through analysis technology, such as artificial neural network and grey model, a medical model can be built. Big data analysis, such as Hadoop, can be used to construct early prediction and intervention models as well as clinical decision-making model for specialist and special disease clinics. It establishes a new model for common clinical research for specialist and special disease clinics.

Key wordsbig data    correlation analysis    medical information    integration    data analysis    clinical model
收稿日期: 2014-05-22      出版日期: 2014-10-09
Corresponding Author(s): Gong Chen   
 引用本文:   
. [J]. Frontiers of Medicine, 2014, 8(3): 376-381.
Zhuyuan Fang, Xiaowei Fan, Gong Chen. A study on specialist or special disease clinics based on big data. Front. Med., 2014, 8(3): 376-381.
 链接本文:  
https://academic.hep.com.cn/fmd/CN/10.1007/s11684-014-0356-9
https://academic.hep.com.cn/fmd/CN/Y2014/V8/I3/376
Fig.1  
Fig.2  
1 L Douglas. The Importance of “Big Data”: A Definition. Gartner. Retrieved 2012-June-21
2 BY Liu. A navigational chart for contemporary traditional Chinese medicine to be drawn based on big data. China News Tradit Chin Med (Zhongguo Zhong Yi Yao Bao) 2013-5.3 (in Chinese)
3 L Liu. Biomedicine of big data age. Commun CCF (Zhongguo Ji Suan Ji Xue Hui Tong Xun) 2013; 91(9): 16–19 (in Chinese)
4 WQ Wang, E Krishnan. Big data and clinicians: a review on the state of the science. JMIR Med Inform 2014; 2(1): 1–11
5 D Borthaku. The Hadoop Distributed File System: Architecture and Design. [last published 2008-–10-17]
6 J Dean, S Ghemawat. MapReduce: simplified data processing on large clusters. Commun ACM 2008; 51(1): 107–113
7 QY Gong, X Li, D Liu, XE Fan. Application research of ETL technology in public health data on sharing. Chin J Public Health Eng (Zhongguo Wei Sheng Gong Cheng Xue) 2009; 8(1): 54–56 (in Chinese)
8 KL Wang, L Wang, PL Wang, B Song. Research on technology of ETL in data warehouse and its practice. Comput Appl Softw (Ji Suan Ji Ying Yong Yu Ruan Jian) 2005; 22(11), 30–31, 78 (in Chinese)
9 HS Xia. Data Warehouse and Data Mining Technology. Beijing: Science Press, 2004: 165 (in Chinese)
10 JL Deng. Grey Theory. Wuhan: Huazhong University of Science and Technology Press, 2002 (in Chinese)
11 LQ Han. Artificial Neural Network Tutorial. Beijing: Beijing University of Posts and Telecommunication Press, 2007 (in Chinese)
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed