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Assessing medical residents' usage and perceived needs for personal digital assistants.

Health care professionals need information delivery tools for accessing information at the point of patient care. Personal digital assistants (PDAs), or hand-held devices demonstrate great promise as point of care information devices. An earlier study [The Constellation Project: experience and evaluation of personal digital assistants in the clinical environment, in: Proceedings of the 19th Annual Symposium on Computer Applications in Medical Care, 1995, 678] on the use of PDAs at the point of care found that hardware constraints, such as memory capability limited their usefulness, however, they were used frequently for accessing medical references and drug information [The Constellation Project: experience and evaluation of personal digital assistants in the clinical environment, in: Proceedings of the 19th Annual Symposium on Computer Applications in Medical Care, 1995, 678]. Since this study was completed in 1995, hand-held computer technology has advanced rapidly, and between 26 and 50% of physicians currently use PDAs [Physician's use of hand-helds increases from 15% in 1999 to 26% in 2001: Harris interactive poll results, Harris Poll. 8-24-2002 (electronic citation); ACP-ASIM survey finds nearly half of U.S. members use hand-held computers: ACP-ASIM press release, American College of Physicians, 9-3-2002 (electronic citation)]. This use appears higher among residents, with one recent study finding that over two-thirds of family practice residencies use hand-held computers in their training programs [J. Am. Med. Inform. Assoc. 9 (1) (2002) 80]. In this study, we systematically evaluate PDA usage by residents in our institution using quantitative and qualitative methods. Our evaluation included a brief on-line survey of 88 residents in seven residency programs including primary care and specialty practices. The surveys were completed between 26 October 2001 and 30 April 2002. Follow-up interviews with 15 of the surveyed residents were then conducted between 24 April 2002 and 13 May 2002. The original contributions of this study are the evaluation of residents in primary and specialty programs and evaluation of both medical application software and the conventional personal organizational software (such as calendars and to-do lists). This evaluation was also conducted using significantly advanced hardware and software compared with previous studies [The Constellation Project: experience and evaluation of personal digital assistants in the clinical environment, in: Proceedings of the 19th Annual Symposium on Computer Applications in Medical Care, 1995, 678]. Results of our survey and follow-up interviews of residents showed most residents use PDAs daily, regardless of practice or whether their program encourages PDAs. Uses include commercial medical references and personal organization software, such as calendars and address books. Concerns and drawbacks mentioned by these residents included physical size of the PDA and the potential for catastrophic data loss. Another issue raised by our results suggests that security and Health Information Portability and Accountability Act (HIPAA) compliance need to be addressed, in part by resident education about securing patient data on PDAs. Overall, PDAs may become even more widely used if two issues can be addressed: (a) providing secure clinical data for the current patients of a given resident, and (b) allaying concerns of catastrophic data loss from their PDAs (e.g. by educating residents about procedures to recover information from PDA backup files).

Academic Medical Centers↗

The development of intelligent, triage-based, mass-gathering emergency medical service PDA support systems.

The support systems for the Emergency Medical Services (EMS) at mass gatherings, such as the local marathon or large international baseball games, are underdeveloped. The purposes of this study were to extend well-developed, triage-based, EMS Personal Digital Assistant (PDA) support systems to cover pre-hospital emergency medical services and onsite evaluation forms for the mass gatherings, and to evaluate users ' perceived ease of use and usefulness of the systems in terms of Davis ' Technology Acceptance Model (TAM). The systems were developed based on an established intelligent triage PDA support system and two other forms the general EMS form from the Taipei EMT and the customer-made Mass Gathering Medical form used by a medical center. Twenty-three nurses and six physicians in the medical center, who had served at mass gatherings, were invited to examine the new systems and answer the TAM questionnaire. The PDA systems were composed of 450 information items within 42 screens in 6 categories. The results supported the potential for using triage-based PDA systems at mass gatherings. Overall, most of the subjects agreed that the systems were easy to use and useful for mass gatherings, and they were willing to accept the systems.

Adult↗

Knowledge in the Palm of your hands: PDAs in the clinical setting.

OBJECTIVE: To explore the impact of hand-held computers on patient care by identifying: (i) how often clinical staff accessed resources on hand-held computers to inform their clinical decision making; (ii) Which hand-held resources were thought to be most useful in the clinical setting; (iii) the barriers to using hand-held resources to support patient care. DESIGN: A descriptive study comparing aspects of Personal Digital Assistant (PDA) resource use in two phases, between August 2002 and December 2003. There was variability in the way that resources were accessed between the two studies. SETTING: University Hospitals of Leicester NHS Trust, an acute teaching hospital, and one primary care practice. PARTICIPANTS: A purposive sample of 14 clinical and librarian staff participated in phase one and 14 in phase two of the study. Participants consisted of consultants, nurses, pharmacist, junior doctors, clinical librarians, and a general practitioner. MAIN OUTCOME MEASURES: Baseline Data Questionnaire to identify the participants' level of knowledge and use of hand-helds on entering the study. End-of-phase questionnaire with self-reported measures of use of the hand-held and PDA resources during the study. RESULTS: All of the participants used hand-helds in their clinical setting to support evidence-based practice and education, but with varying frequency. More staff reported using the hand-held to answer specific patient questions in phase two than phase one of the study. UK resources were preferred to American resources. The 'plug-in and go' method using Secure Digital (SD) cards was preferred to downloading resources from the Internet. CONCLUSIONS: Hand-held technology is emerging as an effective clinical tool to aid evidence-based practice and support the educational needs of clinical staff. The hand-held can provide a critical mass of information that is relevant, quickly accessible and in a coherent format: delivering clinical information at the point of need with a resulting benefit to patient safety.

Computer Literacy↗

Technology induced error and usability: the relationship between usability problems and prescription errors when using a handheld application.

This paper describes an innovative approach to the evaluation of a handheld prescription writing application. Participants (10 physicians) were asked to perform a series of tasks involving entering prescriptions into the application from a medication list. The study procedure involved the collection of data consisting of transcripts of the subjects who were asked to "think aloud" while interacting with the prescription writing program to enter medications. All user interactions with the device were video and audio recorded. Analysis of the protocols was conducted in two phases: (1) usability problems were identified from coding of the transcripts and video data, (2) actual errors in entering prescription data were also identified. The results indicated that there were a variety of usability problems, with most related to interface design issues. In examining the relationship between usability problems and errors, it was found that certain types of usability problems were closely associated with the occurrence of specific types of errors in prescription of medications. Implications for identifying and predicting technology-induced error are discussed in the context of improving the safety of health care information systems.

Adult↗

The relationship of usability to medical error: an evaluation of errors associated with usability problems in the use of a handheld application for prescribing medications.

This paper describes an innovative approach to the evaluation of a handheld prescription writing application. Participants (10 physicians) were asked to perform a series of tasks involving entering prescriptions into the application from a medication list. The study procedure involved the collection of data consisting of transcripts of the subjects who were asked to "think aloud" while interacting with the prescription writing program to enter medications. All user interactions with the device were video and audio recorded. Analysis of the protocols was conducted in two phases: (1) usability problems were identified from coding of the transcripts and video data (2) actual errors in entering prescription data were also identified. The results indicated that there were a variety of usability problems, with most related to issues of ease of use. In addition, other problems were identified which were related to limitations of the content of the program. In examining the relationship between usability problems and errors, it was found that certain types of usability problems were closely associated with the occurrence of specific types of errors in prescription of medications. Implications for the improvement of safety of health care information systems are discussed.

Computers, Handheld↗

A mobile clinical e-portfolio for nursing and medical students, using wireless personal digital assistants (PDAs).

This paper outlines the development and evaluation of a wireless personal digital assistant (PDA) based clinical learning tool designed to promote professional reflection for health professionals. The "Clinical e-portfolio" was developed at the University of British Columbia School of Nursing to enable students immediately to access clinical expertise and resources remotely, and record their clinical experiences in a variety of media (text, audio and images). The PDA e-portfolio tool was developed to demonstrate the potential use of mobile networked technologies to support and improve clinical learning; promote reflective learning in practice; engage students in the process of knowledge translation; help contextualize and embed clinical knowledge whilst in the workplace; and to help prevent the isolation of students whilst engaged in supervised clinical practice. The mobile e-portfolio was developed to synchronise wirelessly with a user's personal Web based portfolio from any remote location where a cellular telephone signal or wireless (Wi-Fi) connection could be obtained. An evaluation of the tool was undertaken with nurse practitioner and medical students, revealing positive attitudes to the use of PDA based tools and portfolios, but limits to the use of the PDA portfolio due to the inherent interface restrictions of the PDA.

Attitude of Health Personnel↗

Radiology on handheld devices: image display, manipulation, and PACS integration issues.

Handheld personal digital assistants (PDAs) have undergone continuous and substantial improvements in hardware and graphics capabilities, making them a compelling platform for novel developments in teleradiology. The latest PDAs have processor speeds of up to 400 MHz and storage capacities of up to 80 Gbytes with memory expansion methods. A Digital Imaging and Communications in Medicine (DICOM)-compliant, vendor-independent handheld image access system was developed in which a PDA server acts as the gateway between a picture archiving and communication system (PACS) and PDAs. The system is compatible with most currently available PDA models. It is capable of both wired and wireless transfer of images and includes custom PDA software and World Wide Web interfaces that implement a variety of basic image manipulation functions. Implementation of this system, which is currently undergoing debugging and beta testing, required optimization of the user interface to efficiently display images on smaller PDA screens. The PDA server manages user work lists and implements compression and security features to accelerate transfer speeds, protect patient information, and regulate access. Although some limitations remain, PDA-based teleradiology has the potential to increase the efficiency of the radiologic work flow, increasing productivity and improving communication with referring physicians and patients.

Computer Security↗

Prospective study of clinician-entered research data in the Emergency Department using an Internet-based system after the HIPAA Privacy Rule.

BACKGROUND: Design and test the reliability of a web-based system for multicenter, real-time collection of data in the emergency department (ED), under waiver of authorization, in compliance with HIPAA. METHODS: This was a phase I, two-hospital study of patients undergoing evaluation for possible pulmonary embolism. Data were collected by on-duty clinicians on an HTML data collection form (prospective e-form), populated using either a personal digital assistant (PDA) or personal computer (PC). Data forms were uploaded to a central, offsite server using secure socket protocol transfer. Each form was assigned a unique identifier, and all PHI data were encrypted, but were password-accessible by authorized research personnel to complete a follow-up e-form. RESULTS: From April 15, 2003-April 15 2004, 1022 prospective e-forms and 605 follow-up e-forms were uploaded. Complexities of PDA use compelled clinicians to use PCs in the ED for data entry for most forms. No data were lost and server log query revealed no unauthorized entry. Prospectively obtained PHI data, encrypted upon server upload, were successfully decrypted using password-protected access to allow follow-up without difficulty in 605 cases. Non-PHI data from prospective and follow-up forms were available to the study investigators via standard file transfer protocol. CONCLUSIONS: Data can be accurately collected from on-duty clinicians in the ED using real-time, PC-Internet data entry in compliance with the Privacy Rule. Deidentification-reidentification of PHI was successfully accomplished by a password-protected encryption-deencryption mechanism to permit follow-up by approved research personnel.

Computer Security↗

PalmCIS: a wireless handheld application for satisfying clinician information needs.

Wireless handheld technology provides new ways to deliver and present information. As with any technology, its unique features must be taken into consideration and its applications designed accordingly. In the clinical setting, availability of needed information can be crucial during the decision-making process. Preliminary studies performed at New York Presbyterian Hospital (NYPH) determined that there are inadequate access to information and ineffective communication among clinicians (potential proximal causes of medical errors). In response to these findings, the authors have been developing extensions to their Web-based clinical information system including PalmCIS, an application that provides access to needed patient information via a wireless personal digital assistant (PDA). The focus was on achieving end-to-end security and developing a highly usable system. This report discusses the motivation behind PalmCIS, design and development of the system, and future directions.

Computer Communication Networks↗

Using a personal digital assistant to streamline the OR workload.

PERSONAL DIGITAL ASSISTANTS (PDAs), are handheld minicomputers used for tasks such as referencing, documentation, and data storage and retrieval. THESE DEVICES can help perioperative nurses solve problems associated with updating, maintaining, and retrieving surgical preference cards and accessing treatment and medication references. CHOOSING A PDA and accessories, finding basic software, and writing a perioperative nursing program can be painless, even for a novice. NURSING DOCUMENTATION can be accelerated and streamlined with the use of PDAs, which leaves perioperative nurses more time for quality patient care.

Computers, Handheld↗

Integration of information technology, wireless networks, and personal digital assistants for triage and casualty.

The purpose of this study was to evaluate a portable tool for use by first responders in documenting triage of victims in a mass casualty incident (MCI) more effectively. The tool presented in this study allows first responders to gather patients vital signs, injuries, and triage status in a prompt and accurate way, and enables first responders to wirelessly communicate vital health information throughout the entire care continuum. The architecture infrastructure for the portable device is called Triage and Casualty Informatics Technology (TACIT) and can expedite triage, transport and treatment procedures within an MCI. TACIT was developed by integrating handheld devices, wireless networks, global positioning system (GPS), digital cameras, and bar code scanners with customized triage software. Two MCI initial field trials verified that the TACIT software, battery life, data accuracy, and wireless transmission met the emergency response system requirements. Initial field trials also demonstrated robustness of operation, reduced triage collection time and improved collection accuracy. The TACIT system could work as an efficient prehospital response tool and platform.

Computers, Handheld↗

Leveraging palm technology in the advanced practice nursing environment.

The use of personal digital assistants (PDAs) in healthcare has expanded exponentially in the past several years. In addition to common feature functions such as contact lists, calculators, calendars, and expense logs, current PDAs boast a wide variety of practical healthcare-related applications such pharmacologic databases, infectious disease programs, medication calculators, and patient scheduling and billing applications. This article examines PDAs in general and the Palm series of handheld devices in particular for use in the advanced practice setting. These devices have several implications for advanced practice nursing including support of both differential diagnosis and diagnostic reasoning, reduction of medication errors, and development of effective treatment protocols. Personal digital assistant technology will inevitably become part and parcel of advanced practice nursing. The rapid, almost daily, changes in the healthcare environment require immediate access to the myriad resources and databases used by advanced practice nurses. Personal digital assistant technology provides such access.

Computers, Handheld↗

Update in handheld electronic resources for evidence-based practice in the community setting.

OBJECTIVE: To provide an update on the handheld electronic resources for evidence-based practice (EBP) in the community setting. DATA SOURCES: Electronic resources for EBP in the community setting were identified by compiling the commonly used, well-established resources and by searching MEDLINE and other Internet sites. Search terms included evidence-based medicine, evidence-based practice, resources, and abstraction. Only sources available for personal digital assistants were included. DATA EXTRACTION: Three databases were identified that provided abstraction and evaluation of the medical literature for the handheld platform. Content, features, ease of use, system requirements, and costs of each resource were evaluated. DATA SYNTHESIS: FIRSTConsult, InfoRetriever, and UpToDate were evaluated, and the utility of each in the community pharmacy setting was evaluated by tracking a clinically relevant example through each system. FIRSTConsult provides evidence-based information organized by diagnosis but is not searchable on the handheld platform. InfoRetriever focuses on searchable evidence-based summaries, while UpToDate includes comprehensive topic reviews. The latter 2 platforms have large system memory requirements. All 3 sources provide evidence-based abstraction of the medical literature for the PDA platform, convenient for use at the point of care in community pharmacy. CONCLUSIONS: While users may select a particular resource based on unique features, each provides evidence-based abstraction of the medical literature that is a practical approach to EBP in the community pharmacy setting.

Community Health Services↗

Will a handheld ultrasound scanner be applicable for screening for heart abnormalities in newborns and children?

BACKGROUND: There is significant interest in opportunities to provide echocardiography services for detection of congenital heart disease with portable, or even handheld, devices in remote areas or third world countries where conventional ultrasound systems may not be available. We tested a handheld system (HHS) (SonoHeart, SonoSite Inc, Bothell, Wash) equipped with a broadband, 7- to 4-MHz, miniaturized, curved, linear-array transducer and implemented with an improved directional Doppler flow map. METHODS: All echocardiography scanning was performed in the neonatal nursery, pediatric intensive care department, or pediatric echocardiography laboratory of our institution. We reviewed limited echocardiography view sequences sequentially obtained by the same expert examiner (D.J.S.) in 50 infants and children (age: 1 day to 6 years), with preoperative or postoperative forms of congenital heart disease. Each patient was studied twice, once with a conventional full-feature system (FFS) and then a limited scan with the HHS using similar frequency transducers. The cardiologist (D.J.S.) and blinded research laboratory reviewers (X.L., G.K.M., R.A.R.) read the FFS and HHS image sequences for diagnosis and for grading the quality of the anatomic and flow feature images. The studies were performed and reviewed with the examiner and reviewers blinded to patient diagnosis. RESULTS: The major diagnoses (eg, patent ductus arteriosus, atrio-ventricular (AV) canal, peripheral pulmonary valve stenosis, aortic coarctation, atrial septal defect, ventricular septal defect, preoperative or postoperative tetralogy of Fallot, and mitral regurgitation) were made by both readers, who were unaware of each other's diagnosis results. Furthermore, the average composite HHS cardiac anatomic feature score on a scale of 0 (not visualized) to 3 (visualized precisely) from the parasternal long-axis and 4- or 5-chamber view for cardiac anatomy were 2.67 +/- 0.49 (SD) and 2.50 +/- 0.55, respectively, versus 2.73 +/- 0.45 and 2.55 +/- 0.54 for the FFS. The mean flow feature score, comprising all views, was 2.67 +/- 0.45 (HHS) versus 2.72 +/- 0.48 (FFS). The P values for all above comparisons were >.05. Image quality of the FFS anatomic structures were, thus, not statistically different from the HHS. Although the color cosmetic was different for the HHS directional (nonvelocity) map, only 9% of 150 total findings (including structural abnormalities and flow features, none of which were critical) were missed, whereas the other 91% regurgitant, shunt, stenosis flow features or heart structure were imaged adequately by the HHS in this population. CONCLUSIONS: Implementing high-frequency transducers and programs optimized for tissue and flow imaging on the HHS should provide images of sufficient quality for targeted echocardiography examinations to determine the presence, absence, or status of congenital heart disease in newborns and young children.

Aortic Valve↗

Integration architecture of a mobile virtual health record for shared home care.

The coexistence of different information systems that are unable to communicate with each other is a persistent problem in health care in general, and in shared care in particular. This is especially critical when it comes to information access needed at the point of care, e.g. in the patient's home. The purpose of this paper is to present the technical architecture of a virtual health record (VHR) that both integrates information from different electronic health records (EHRs) and allows for documenting at the point of care using mobile devices. The VHR supports a seamless information and communication flow between different care providers giving them mobile access to selected patient-oriented information. A service oriented system architecture where database functionality and services are separated has been implemented. This guarantees flexibility with regard to changed functional demands and allows third party systems to interact with the platform in a standardised way. Major requirements for the VHR have been documentation support at the point of care, integrated presentation of the information from different feeder systems, and the possibility of offline access to the data on handheld devices. Therefore, publishing was chosen for the integration design. A patient centred XML schema is published as an interface for integration with the information broker. The feeder systems deliver their information in XML.-files that are mapped against the ideal schema and inserted into the mediator database. The paper describes both an online web application and an offline solution that was implemented on personal digital assistants (PDAs). The system has been introduced in a Swedish home care district with an established fiber-optical network infrastructure connecting all the locations forming the study site.

Computers, Handheld↗

Survey assessment of personal digital assistant use among trainees and attending physicians.

Limited information is available on personal digital assistant (PDA) use patterns in medical settings. Recognizing that use patterns may be important considerations for development of handheld-based information systems, the authors characterized PDA use at their institution. A survey was mailed to all internal medicine physicians at the Mayo Clinic, Rochester, Minnesota, in May 2002. PDA use prevalence, user demographics, hardware preferences, and work setting and application use frequencies were assessed for respondents reporting current PDA use. Use patterns of trainees (residents and subspecialty fellows) and attending physicians were compared. Trainees reported more frequent PDA use in the hospital setting and for direct patient care. Attending physicians reported more frequent PDA use in administrative settings and for calendar functions. These findings may reflect differences in the information needs and work roles of learners and experienced physicians. Such factors may be important considerations for the development and implementation of institutional PDA resources.

Computers, Handheld↗

Personal digital assistants herald new approaches to teaching and evaluation in medical education.

Since its arrival in 1994, the personal digital assistant (PDA) has made significant inroads in the handheld industry, with 50% of physicians anticipated as users by 2005 due to its functionality as a point-of-care medical informatics tool. However, its use in medical education is less well documented. Since 1998, PDAs have been used at Medical College of Wisconsin (MCW) as both a teaching and an evaluation tool for medical student and resident education. This article highlights the use of the PDA in medical education and describes current applications for monitoring clinical experiences of students/residents, and teaching resources for hypertension, cardiac auscultation, and community health. MCW's experiences with the PDA as a real time teaching and data collection tool serves as a model for other medical schools and for our students who are educated in the importance of self-monitoring one's clinical experiences and the need for continuous improvement as future physicians.

Attitude to Computers↗

Update on personal digital assistant applications for the healthcare provider.

OBJECTIVE: To review the common general drug information applications and specialty drug information applications available for personal digital assistants (PDAs). DATA SOURCES: The literature was accessed through MEDLINE (2003-June 2004). Other information was obtained through secondary sources, such as Web sites describing common PDA applications as well as actual product trials. The key search terms used were handheld, PDA, personal digital assistants, drug information, pharmacokinetics, medical information, and medical applications. STUDY SELECTION AND DATA EXTRACTION: Articles or studies that provided a review of drug information references for the PDA since 2002 were included. Data pertaining to cost and application size were obtained from product or vendor Web sites. DATA SYNTHESIS: There are numerous medical applications available for the PDA including general drug information references, specialty drug information references (eg, pediatrics, cardiology, infectious diseases, oncology, psychology, herbals), diagnostic applications, medical calculators, nursing references, and patient tracking databases. Due to the huge array of programs, as well as factors such as cost and memory requirements, the healthcare provider must be selective in the medical applications that are placed on the PDA. CONCLUSIONS: There are many excellent PDA drug information applications that provide fast and accurate drug information and other features that assist the healthcare provider.

Adult↗