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Author

Margret Hund-Georgiadis

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Open access Jul 2026

Modulation of heart rate and heart rate variability during animal-assisted treatment of patients in a minimally conscious state: A randomized controlled crossover study.

BACKGROUND Animal-assisted treatment (AATx) is a promising and increasingly used approach in neurorehabilitation, yet its psychophysiological effects remain largely unexplored. Patients in a minimally conscious state (MCS) show severely altered consciousness with minimal but definite behavioral signs of awareness. Because behavioral assessment in this population is limited, psychophysiological measures such as heart rate (HR) and heart rate variability (HRV) may offer valuable insights into autonomic regulation during therapy. AIM The present study investigated whether AATx influences HR and HRV compared to treatment as usual (TAU). METHODS A randomized controlled crossover design with repeated measures was conducted. HR and HRV data were recorded using an Empatica E4 wristband, and linear mixed-effects models were fitted for each outcome variable. The analytic sample included twenty-one patients with MCS who completed at least one of the four sessions. RESULTS We found a significant decrease in mean HR (estimate = -12.75, p =.041) and a significant increase in the standard deviation of normal-to-normal intervals (SDNN) (estimate = 15.76, p =.020) during AATx compared to TAU from the pretreatment to the posttreatment phase, indicating enhanced parasympathetic activation and greater autonomic flexibility. Other HRV parameters revealed no significant effects of AATx, though trends were consistent with the hypotheses. CONCLUSIONS These findings provide preliminary physiological evidence that AATx can modulate autonomic activity in MCS patients. Despite limitations related to sample size and recording quality, the results highlight the potential of AATx as an emotionally engaging intervention in early neurorehabilitation.

Fabio Carbone, Carla Maria Braune, Rahel Marti et al. · 0 citations
Open access Jul 2026

Psychological Distress and Biological Stress Markers After Spinal Cord Injury: A Longitudinal Multi-Omics Pilot Study

This pilot study examined longitudinal changes in psychological distress and biomarkers related to stress, inflammation, and biological aging during the first inpatient rehabilitation after Spinal Cord Injury (SCI). We analyzed data from 120 participants in the SwiSCI inception cohort at two timepoints: the beginning of the first post-injury rehabilitation and discharge. A subset of 50 participants representing four distress patterns (high chronic, low, transient, increasing distress) underwent biomarker analyses, including measurements of immune and inflammatory proteins and whole-blood transcriptomic profiling. The results showed that psychological distress, depression, and protein carbonyl content decreased significantly by discharge. In contrast, cortisol levels and telomere length showed no significant changes. Proteomic analyses revealed a broad downregulation of inflammatory proteins (e.g., IFN-γ, IL-10, LIF) at discharge, whereas transcriptomic profiles did not differ between timepoints. The high chronic distress group showed lower expression of six genes involved in adaptive immunity, neural development and apoptosis. Psychological distress was not linearly associated with global biomarker profiles. However, CXCL1 and IL-7 showed low-to-moderate correlations with depression and anxiety, respectively. This pilot study demonstrates the feasibility of integrating psychological and molecular data to investigate biological response following SCI. The findings are exploratory and need validation in larger studies with longer follow-up periods.

S. Capossela, A. Bertolo, Alexander Stacul et al. · 0 citations