Background: Untreated low back pain (LBP) in older adults can lead to disability and development of chronicity. Due to the potential development of medical comorbidities and negative risks associated with pharmacological use, chronic LBP management for older adults requires a responsive approach.
Methods: The objective of this study is to evaluate the probability of (1) opioid prescription receipt and (2) opioid-sedative coprescription, in a sample of military-service-connected patients enrolled in the Veterans Health Administration (VHA) or TRICARE, ages 30-85 years, receiving care in three systems: VHA, Military Health System (MHS), and nonfederal (civilian) healthcare facilities.
Background/objectives: To evaluate the impact of intravitreal bevacizumab (IVB) therapy on anatomical and visual outcomes in patients with macular neovascularization (MNV) secondary to chronic central serous chorioretinopathy (cCSC).
Methods: This retrospective observational study reviewed the medical records of treatment-naïve patients diagnosed with cCSC complicated by MNV and treated with IVB injections over a 5-year period. The presence of MNV was confirmed using optical coherence tomography angiography (OCTA).
Purpose: Spectral-domain OCT angiography (SD-OCTA) scans were used in an algorithm developed for swept-source OCT angiography (SS-OCTA) scans to determine if SD-OCTA scans yielded similar results for the measurement of hyperreflective foci (HRF) in intermediate age-related macular degeneration (iAMD).
Design: Retrospective study.
Participants: Forty eyes from 35 patients with iAMD.
Objective: To investigate inequities in time to physical therapy (PT) for patients with low back pain (LBP).
Design: Retrospective observational study using data from the Department of Defense and Veterans Health Administration clinical and administrative data repositories derived from medical records, claims, and enrolment data.
Setting: Military Health System, Veterans Health Administration, and civilian health care facilities.
Biomech Model Mechanobiol
December 2024
This study presents a novel methodology for high-resolution 3D bladder modeling during filling, developed by leveraging improved imaging and computational techniques. Using murine bladder filling data, the methodology generates accurate 3D geometries across time, enabling in-depth mechanical analysis. Comparison with a traditional spherical model revealed similar stress trends, but the 3D model permitted nuanced quantifications, such as localized surface curvature and stress analysis.
View Article and Find Full Text PDF