Aims: Although generally well tolerated, a urodynamic study is an unpleasant and stressful procedure for some patients. This study evaluated the effects of a heating pad on anxiety, pain, and distress during urodynamic studies in female patients with stress urinary incontinence.
Methods: A total of 74 female patients with stress urinary incontinence who underwent a urodynamic study between May 2015 and October 2015 were randomized to either the experimental group using a heating pad (n = 37) or control group (n = 37). In the experimental group, a heating pad was applied on the patient's sacrum during the urodynamic study. All patients completed the State-Trait Anxiety Inventory (20-80) before and after the procedure and assessed their degree of pain and distress after the procedure by the visual analog scale (0-10). Systolic and diastolic blood pressure and pulse rate were also checked before and after the procedure.
Results: Demographic characteristics, mean age, procedure duration, pre and post-procedural systolic, and diastolic blood pressures, and pulse rate were statistically similar between the experimental and control groups. The mean State-Trait Anxiety Inventory was significantly lower in the experimental group than in the control group (30.9 ± 7.5 vs 42.5 ± 10.1, P < 0.001). The experimental group showed significantly lower pain and distress scores (Visual Analog Scale, 2.7 ± 1.5, 3.0 ± 1.5) compared with the control group (4.0 ± 1.6, 4.7 ± 2.0, both P < 0.001).
Conclusions: Using a heating pad for female patients with stress urinary incontinence during a urodynamic study is a simple, economical, and effective therapy that enhances patient comfort and decreases anxiety, pain, and distress.
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http://dx.doi.org/10.1002/nau.23326 | DOI Listing |
JAAD Case Rep
January 2025
Department of Dermatology, Loma Linda University, Loma Linda, California.
J Vasc Surg Cases Innov Tech
February 2025
Department of Health and Kinesiology, Purdue University, West Lafayette, IN.
BMC Biomed Eng
January 2025
William B. Burnsed Jr. Department of Mechanical, Aerospace, and Biomedical Engineering, University of South Alabama, 150 Student Services Drive, Mobile, AL, 36688, USA.
Background: The ST response to high frequency EM heating may give an indication of rate of BF in underlying tissue. This novel method, which we have termed REFLO (Rapid Electromagnetic Flow) has potential for applications such as detection of PAD. The method utilizes the relationship between blood flow rate and tissue temperature increase during exposure to radio frequency (RF) energy.
View Article and Find Full Text PDFJ Anim Sci
January 2024
Department of Animal Sciences, North Carolina Agricultural and Technical State University, Greensboro, NC 27411, USA.
Lactating sows and their litters are particularly vulnerable to heat stress (HS). HS decreases fertility, feed intake, milk production, and litter growth of sows. Approaches are needed to mitigate the negative effects of HS on animal welfare and oxidative damage to tissues.
View Article and Find Full Text PDFSensors (Basel)
November 2024
The Artificial Intelligence Research Center, Novosibirsk State University, Pirogova Str. 2, 630090 Novosibirsk, Russia.
In this study, we address the challenge of estimating the resonance frequency of a photoacoustic detector (PAD) gas cell under varying temperature conditions, which is crucial for improving the accuracy of gas concentration measurements. We introduce a novel approach that uses a long short-term memory network and a self-attention mechanism to model resonance frequency shifts based on temperature data. To investigate the impact of the gas mixture temperature on the resonance frequency, we modified the PAD to include an internal temperature sensor.
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