Search PubMed⌕ Search

PubMed · 16097128

Problem list coding in e-HIM.

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Greg Fraser. Problem list coding in e-HIM.. https://pubmed.ncbi.nlm.nih.gov/16097128/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Outpatient drug safety: new steps in an old direction.

Iatrogenic injury from adverse drug events (ADEs) is a common and often preventable problem in modern medical practice. Attention to this problem has focused on the inpatient hospital setting and healthcare professionals. However, most medication is prescribed and used outside of hospitals and is managed by patients or lay caregivers in homes or workplaces. To address the public health problem of outpatient drug safety, interventions to prevent adverse events must recognize the central role of the patient in medication management and environmental factors specific to the outpatient setting. Lessons and techniques from the field of injury prevention should guide the development and implementation of safety interventions. First, Haddon's phase-factor matrix can be used to help conceptualize outpatient drug safety interventions. Second, interventions to improve outpatient drug safety should be patient-centered and extend beyond patient education to include engineering innovations and enforcement strategies. Third, the sustainability of active versus passive interventions should be considered when choosing safety interventions.

Ambulatory Care↗

A remote data access architecture for home-monitoring health-care applications.

With the aging of the population and the increasing patient preference for receiving care in their own homes, remote home care is one of the fastest growing areas of health care in Taiwan and many other countries. Many remote home-monitoring applications have been developed and implemented to enable both formal and informal caregivers to have remote access to patient data so that they can respond instantly to any abnormalities of in-home patients. The aim of this technology is to give both patients and relatives better control of the health care, reduce the burden on informal caregivers and reduce visits to hospitals and thus result in a better quality of life for both the patient and his/her family. To facilitate their widespread adoption, remote home-monitoring systems take advantage of the low-cost features and popularity of the Internet and PCs, but are inherently exposed to several security risks, such as virus and denial-of-service (DoS) attacks. These security threats exist as long as the in-home PC is directly accessible by remote-monitoring users over the Internet. The purpose of the study reported in this paper was to improve the security of such systems, with the proposed architecture aimed at increasing the system availability and confidentiality of patient information. A broker server is introduced between the remote-monitoring devices and the in-home PCs. This topology removes direct access to the in-home PC, and a firewall can be configured to deny all inbound connections while the remote home-monitoring application is operating. This architecture helps to transfer the security risks from the in-home PC to the managed broker server, on which more advanced security measures can be implemented. The pros and cons of this novel architecture design are also discussed and summarized.

Ambulatory Care↗