PubMed HealthSearch

PubMed · 8489574

Pen-based remote data entry system. A pilot clinical trial.

Abstract

This study assesses the feasibility of pen-based remote data entry and measures the acceptance of such systems by patients and physicians. Three clinical investigators participated in a phase-I/II clinical trial of escalated doses of chemotherapy followed by Granulocyte-Macrophage Colony-Stimulating Factor (GM-CSF). The study included 20 patients with testicular cancer who were treated at three university hospitals. The patients' data obtained in this trial were recorded and stored on a pen-based computer system. A total of 798 data points were recorded for each patient using 33 electronic forms resembling the paper forms used during an earlier phase of the study. The data recorded include the past medical history, inclusion/exclusion criteria, disease staging, therapy documentation, laboratory values and side effects. Both physicians and patients were interviewed directly after using the pen-based remote data entry system. Patients accepted that their physician was taking notes on an electronic form rather than on paper. All patients noted that a pen-based system is superior to a desktop computer when used during an interview. For the investigators electronic data entry takes additional effort, but time savings are realized later with less data clearing and increased data quality. These benefits are important for the study sponsor as well. In conclusion, pen-based remote data entry is a feasible new mode of recording clinical data with concrete benefits to both investigators and sponsors.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

I Beinlich, C Bokemeyer, U Räth, R Walter-Kirst, J Hartlapp, J Muschiol, U Fraass, H T Schneider. 1993. Pen-based remote data entry system. A pilot clinical trial.. https://pubmed.ncbi.nlm.nih.gov/8489574/

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

KEEP EXPLORING

Related citations

A low-cost, full-function picture archiving and communication system using standard PC hardware and the traditional 4-over-4 display format.

OBJECTIVE: With a 12-year background of our completely digital nuclear medicine picture archiving and communication system (PACS), we have recently implemented a novel PACS, OpenPACS, which can be used for interpretation and display of CT, MR imaging, sonography, nuclear medicine, and computed and digital radiography studies. OpenPACS uses low-cost standard PC hardware and software that is widely available and is readily serviced and maintained. The OpenPACS application program is available over the Internet. CT or MR imaging slices from one or multiple studies can be presented simultaneously or in cine mode on a wall-sized multimonitor display. The assembly, with a total resolution of 6400 x 4800 pixels, resembles a traditional array of eight standard X-ray viewboxes. A wireless mouse is used to vary attenuation and other display parameters. Multiple backup and redundancy are provided. Currently, six CT and six MR imaging scanners of different vendors are networked to OpenPACS, which is also networked to our nuclear medicine PACS. CONCLUSION: After only a brief introduction, radiologists rapidly become familiar with the system because it is based on the use of standard Windows icons and procedures and offers a display that resembles a standard X-ray film presentation.

Data Display

Three-dimensional reconstruction system for imaging of the temporomandibular joint using magnetic resonance imaging.

This study was undertaken to develop a three-dimensional reconstruction system using magnetic resonance (MR) images in order to visualize three-dimensional images of the temporomandibular joint (TMJ) including the disk. The computerized reconstruction program (written using Visual Basic for Windows, Microsoft Corp.) could reliably generate three-dimensional images of the TMJ. Image processing techniques made the tracing of images unnecessary, reduced complex human manipulation and associated measurement errors. This system, capable of treating fifty thousand pixels or more, generates smooth three-dimensional images of the TMJ.

Data Display