MF Ekstremaliosios medicinos katedra (04.08)
Association Between Geomagnetic Activity and Unsuccessful Out-of-Hospital Cardiac ArrestItem type:Publication, research article[2026][S1][M001][12]; ; ; ; ; ; GeoHealth, 2026-06-23, vol. 10, no. 6, p. 1-12Out-of-hospital cardiac arrests (OHCAs) represent a significant global health challenge, with a survival rate <10%. Recent research has demonstrated that geomagnetic activity (GMA) can disrupt the circadian rhythm. Therefore, GMA may affect patient outcomes after an OHCA event wherein resuscitation is attempted. This study involved a retrospective analysis of the Emergency Medical Services (EMS) patient call records and clinical data collected from the Kaunas (Lithuania) EMS digital databases from 1 January 2016 to 31 December 2021. Multivariate logistic regression was used to analyze the association between GMA and the risk of absence of return of spontaneous circulation (ROSC) on the scene, adjusting for potential confounders. Among the 1,507 patients evaluated, 66.6% were male and 47.2% were aged <70 years. A shockable rhythm (SHR) was identified in 436 patients (28.9%), while only 19.9% of patients in the unsuccessful resuscitation group had an SHR. In patients without SHR, a lower rate of ROSC was observed during the period from the second and subsequent days of a geomagnetic storm (GS) to 2 days after the end of the GS. During these days and on days with higher GMA, SHR was associated with a higher probability of achieving ROSC. The impact of SHR on the ROSC was statistically non-significant in the days of GS onset. The association between the risk of absence of ROSC at the scene and higher GMA levels or different GS periods was modified by SHR, with a stronger effect modification observed in males and in patients with a presumed cardiac cause.
5 2 Leg blood flow stimulation system and method for combining low and high frequency acoustic vibration (EP 4442237 B1)Item type:Publication, [Beinblutflussstimulationssystem Und Verfahren Zur Kombination Von Akustischen Schwingungen Mit Niedriger Und Hoher Frequenz]patent[2025][N1][M001,T009][10] ;Ostasevičius, Vytautas ;Jurėnas, Vytautas ;Bubulis, Algimantas ;Venslauskas, Mantas ;Vezys, Joris; ; ;Kauno technologijos universitetasLietuvos sveikatos mokslų universitetasA leg blood flow stimulation system comprising a closed chamber, a low-frequency acoustic vibration-exciting speakers located on sides of the chamber, an array of high-frequency vibration-exciting piezoelectric bimorph transducers located in the chamber, in the plane of the chamber corresponding to the plane of the foot, corresponding to the sole support zone below the toes and the heel support zone, where each zone includes one to three piezoelectric bimorph transducers. The leg stimulation system is designed so that a person's legs up to the knees can be placed in a closed chamber and encased in a standard type of elastic splint type system. The feet are affected by bimorph type piezoelectric transducers connected to the controller, and the lower legs are affected by acoustic vibrations thanks to the speakers installed in the side walls of the closed chamber. In this way, the pulses sent from the controller control the synchronous operation of bimorph piezoelectric transducers and acoustic speakers, which activates blood flow in the tissues of human legs and increases the efficiency of blood flow stimulation.
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