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Background: Peripheral nerve stimulation (PNS) of the named nerves of the head has been shown to be effective in reducing pain levels in patients with chronic pain refractory to other treatments. However, the impact of cranial PNS on depression and disability has not been well documented.
Objectives: We prospectively examine the impact of PNS on quality of life via validated survey scores which assess symptoms of depression and daily functional capacities within patients.
Methods: Patients who underwent permanent PNS implantation completed five validated questionnaires: Oswestry Disability Index (ODI), the Beck's Depression Inventory (BDI), the Pain Catastrophizing Scale (PCS), McGill Pain Questionnaire (MPQ), and the visual analog scale (VAS) score. These were completed at baseline, six months, and one year to assess changes in functioning levels. Results were analyzed via repeated measures ANOVA and bivariate analysis.
Results: Compared with baseline, at six months patients showed significantly less depression on BDI (F = 7.9, p = 0.021), and at one year, a significant decrease in disability was observed on the ODI (F = 6.1, p = 0.036). At both six months and one year, patients showed a significant decrease in pain on VAS (F = 16.5, p = 0.012). We noted a trend for ODI to correlate with BDI at six months (R = 0.616, p = 0.077).
Discussion: Our prospective data show PNS to be an effective modality in improving overall life quality by limiting depression and disability as well as pain.
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http://dx.doi.org/10.1111/ner.12363 | DOI Listing |
Acta Neuropathol Commun
September 2025
Department of Stem Cell and Regenerative Biotechnology, School of Advanced Biotechnology, Molecular & Cellular Reprogramming Center, Institute of Advanced Regenerative Science, and Institute of Health, Aging & Society, Konkuk University, Seoul, 05029, Republic of Korea.
Zhonghua Jie He He Hu Xi Za Zhi
September 2025
Neuromuscular diseases are often accompanied by various types of sleep-related breathing disorders, which can exacerbate the underlying condition and are associated with a poor prognosis. Early identification is essential, and interventions such as non-invasive ventilation, oxygen therapy, and respiratory rehabilitation should be initiated promptly to mitigate disease progression and improve outcomes. Nevertheless, the rates of missed and misdiagnosed cases remain common in clinical practice.
View Article and Find Full Text PDFObjective: There are very few studies on the use of a thermomechanical device for reducing injection pain in pediatric dentistry, especially for inferior alveolar nerve blocks (IANBs). The purpose of this study was to assess the efficacy of a thermomechanical device (Buzzy, Pain Care Labs) for reducing pain associated with an IANB for pediatric dental patients.
Methods: A total of 30 children, 5 to 8 years of age undergoing bilateral mandibular dental treatment requiring IANBs, were included in this randomized crossover study.
Objective: Previous studies of nerve distribution in the orofacial complex have focused primarily on the anatomic courses of nerve fibers and have rarely addressed the density of nerve distribution. The nerve distribution in the mandible was described in only one report which showed an increase in nerve distribution density moving from the alveolar crest toward the inferior alveolar nerve. However, no previous reports have focused on the nerve distribution density in the maxilla.
View Article and Find Full Text PDFBiofabrication
September 2025
Institute of Macromolecular Chemistry, Institute of Macromolecular Chemistry Czech Academy of Sciences, Heyrovského nám. 2, 162 06 Prague 6, Prague, Prague, 162 06, CZECH REPUBLIC.
Extensive peripheral nerve injuries often lead to the loss of neurological function due to slow regeneration and limited recovery over large gaps. Current clinical interventions, such as nerve guidance conduits (NGCs), face challenges in creating biomimetic microenvironments that effectively support nerve repair. The developed GrooveNeuroTube is composed of hyaluronic acid methacrylate and gelatin methacrylate hydrogel, incorporating active agents (growth factors and antibacterial agents) encapsulated within an NGC conduit made of 3D-printed PCL grid fibers.
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