CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Brain Injury: Traumatic

  • Acupressure as a non-pharmacological intervention for traumatic brain injury (TBI).

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    Abstract Title:

    Acupressure as a non-pharmacological intervention for traumatic brain injury (TBI).

    Abstract Source:

    J Neurotrauma. 2010 Oct 27. Epub 2010 Oct 27. PMID: 20979460

    Abstract Author(s):

    Kristina L McFadden, Kyle M Healy, Miranda L Dettmann, Jesse T Kaye, Tiffany A Ito, Theresa D Hernández

    Article Affiliation:
    Abstract:

    Acupressure is a complementary and alternative medicine (CAM) treatment using fingertips to stimulate acupoints on the skin. While suggested to improve cognitive function, acupressure has not been previously investigated with a controlled design in traumatic brain injury (TBI) survivors, who could particularly benefit from a non-pharmacological intervention for cognitive impairment. A randomized, placebo-controlled, single-blind design assessed the effects of acupressure (8 treatments over 4 weeks) on cognitive impairment and state of being following TBI, including assessment of event-related potentials (ERPs) during Stroop and auditory oddball tasks. It was hypothesized that active acupressure treatments would confer greater cognitive improvement than placebo treatments, perhaps due to enhanced relaxation response induction and resulting stress reduction. Significant treatment effects were found comparing pre- to post-treatment change between groups. During the Stroop task, the active group showed greater reduction in both P300 latency (p = 0.010, partialη2 = 0.26) and amplitude (p = 0.011, partial η2 = 0.26), as well as a reduced Stroop effect on accuracy (p = 0.008, partial η2 = 0.21) compared to the placebo group. Additionally, the active group improved more than placebo on the Digit Span test (p = 0.043, Cohen's d = 0.68). Together, these results suggest an enhancement in working memory function associated with active treatments. Since acupressure emphasizes self-care and can be taught to novice individuals, it warrants further study as an adjunct treatment for TBI.

  • Exercise intervention in brain injury: a pilot randomized study of Tai Chi Qigong.

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    Abstract Title:

    Exercise intervention in brain injury: a pilot randomized study of Tai Chi Qigong.

    Abstract Source:

    Clin Rehabil. 2009 Jul;23(7):589-98. Epub 2009 Feb 23. PMID: 19237436

    Abstract Author(s):

    H Blake, M Batson

    Abstract:

    OBJECTIVE: To examine the effects of a brief Tai Chi Chuan Qigong ('Qigong') exercise intervention on individuals with traumatic brain injury.

    DESIGN: A single-centre randomized controlled trial pilot study.

    SETTING: A registered charity day centre in the community.

    SUBJECTS: Twenty individuals with traumatic brain injury.

    INTERVENTION: Intervention participants attended a Qigong exercise session for one hour per week over eight weeks. Control participants engaged in non-exercise-based social and leisure activities for the same intervention period.

    MEASURES: Outcome was assessed at baseline and post intervention using the General Health Questionnaire-12, the Physical Self-Description Questionnaire and the Social Support for Exercise Habits Scale, to measure perceived mood, self-esteem, flexibility, coordination, physical activity and social support.

    RESULTS: Groups were comparable at baseline. After the intervention, mood was improved in the exercise group when compared with controls (U = 22.0, P =0.02). Improvements in self-esteem (Z = 2.397, P =0.01) and mood (Z = -2.032, P =0.04) across the study period were also evident in the exercise group only. There were no significant differences in physical functioning between groups. In view of the sample size, these findings are inconclusive.

    CONCLUSIONS: This study provides preliminary evidence that a brief Qigong exercise intervention programme may improve mood and self-esteem for individuals with traumatic brain injury. This needs to be tested in a large-scale randomized trial.

  • Improved cognitive function after transcranial, light-emitting diode treatments in chronic, traumatic brain injury: two case reports. 📎

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    Abstract Title:

    Improved cognitive function after transcranial, light-emitting diode treatments in chronic, traumatic brain injury: two case reports.

    Abstract Source:

    Photomed Laser Surg. 2010 Dec 23. Epub 2010 Dec 23. PMID: 21182447

    Abstract Author(s):

    Margaret A Naeser, Anita Saltmarche, Maxine H Krengel, Michael R Hamblin, Jeffrey A Knight

    Article Affiliation:

    1 VA Boston Healthcare System , Boston, Massachusetts.

    Abstract:

    Abstract Objective: Two chronic, traumatic brain injury (TBI) cases, where cognition improved following treatment with red and near-infrared light-emitting diodes (LEDs), applied transcranially to forehead and scalp areas, are presented. Background: Significant benefits have been reported following application of transcranial, low-level laser therapy (LLLT) to humans with acute stroke and mice with acute TBI. These are the first case reports documenting improved cognitive function in chronic, TBI patients treated with transcranial LED. Methods: Treatments were applied bilaterally and to midline sagittal areas using LED cluster heads [2.1″ diameter, 61 diodes (9 × 633 nm, 52 × 870 nm); 12-15 mW per diode; total power: 500 mW; 22.2 mW/cm(2); 13.3 J/cm(2) at scalp (estimated 0.4 J/cm(2) to cortex)]. Results: Seven years after closed-head TBI from a motor vehicle accident, Patient 1 began transcranial LED treatments. Pre-LED, her ability for sustained attention (computer work) lasted 20 min. After eight weekly LED treatments, her sustained attention time increased to 3 h. The patient performs nightly home treatments (5 years); if she stops treating for more than 2 weeks, she regresses. Patient 2 had a history of closed-head trauma (sports/military, and recent fall), and magnetic resonance imaging showed frontoparietal atrophy. Pre-LED, she was on medical disability for 5 months. After 4 months of nightly LED treatments at home, medical disability discontinued; she returned to working full-time as an executive consultant with an international technology consulting firm. Neuropsychological testing after 9 months of transcranial LED indicated significant improvement (+1, +2SD) in executive function (inhibition, inhibition accuracy) and memory, as well as reduction in post-traumatic stress disorder. If she stops treating for more than 1 week, she regresses. At the time of this report, both patients are continuing treatment. Conclusions: Transcranial LED may improve cognition, reduce costs in TBI treatment, and be applied at home. Controlled studies are warranted.

  • low-level laser therapy applied transcranially to mice following traumatic brain injury significantly reduces long-term neurological deficits.

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    Abstract Title:

    low-level laser therapy applied transcranially to mice following traumatic brain injury significantly reduces long-term neurological deficits.

    Abstract Source:

    J Neurotrauma. 2007 Apr;24(4):651-6. PMID: 17439348

    Abstract Author(s):

    Amir Oron, Uri Oron, Jackson Streeter, Luis de Taboada, Alexander Alexandrovich, Victoria Trembovler, Esther Shohami

    Article Affiliation:

    Department of Orthopedics, Assaf Harofeh Medical Center, Zerifin, Israel. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    Low-level laser therapy (LLLT) has been evaluated in this study as a potential therapy for traumatic brain injury (TBI). LLLT has been found to modulate various biological processes. Following TBI in mice, we assessed the hypothesis that LLLT might have a beneficial effect on their neurobehavioral and histological outcome. TBI was induced by a weight-drop device, and motor function was assessed 1 h post-trauma using a neurological severity score (NSS). Mice were then divided into three groups of eight mice each: one control group that received a sham LLLT procedure and was not irradiated; and two groups that received LLLT at two different doses (10 and 20 mW/cm(2) ) transcranially. An 808-nm Ga-As diode laser was employed transcranially 4 h post-trauma to illuminate the entire cortex of the brain. Motor function was assessed up to 4 weeks, and lesion volume was measured. There were no significant changes in NSS at 24 and 48 h between the laser-treated and non-treated mice. Yet, from 5 days and up to 28 days, the NSS of the laser-treated mice were significantly lower (p<0.05) than the traumatized control mice that were not treated with the laser. The lesion volume of the laser treated mice was significantly lower (1.4%) than the non-treated group (12.1%). Our data suggest that a non-invasive transcranial application of LLLT given 4 h following TBI provides a significant long-term functional neurological benefit. Further confirmatory trials are warranted.

  • low-level laser therapy applied transcranially to mice following traumatic brain injury significantly reduces long-term neurological deficits.

    facebook Share on Facebook
    Abstract Title:

    low-level laser therapy applied transcranially to mice following traumatic brain injury significantly reduces long-term neurological deficits.

    Abstract Source:

    J Neurotrauma. 2007 Apr;24(4):651-6. PMID: 17439348

    Abstract Author(s):

    Amir Oron, Uri Oron, Jackson Streeter, Luis de Taboada, Alexander Alexandrovich, Victoria Trembovler, Esther Shohami

    Article Affiliation:

    Department of Orthopedics, Assaf Harofeh Medical Center, Zerifin, Israel. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    Low-level laser therapy (LLLT) has been evaluated in this study as a potential therapy for traumatic brain injury (TBI). LLLT has been found to modulate various biological processes. Following TBI in mice, we assessed the hypothesis that LLLT might have a beneficial effect on their neurobehavioral and histological outcome. TBI was induced by a weight-drop device, and motor function was assessed 1 h post-trauma using a neurological severity score (NSS). Mice were then divided into three groups of eight mice each: one control group that received a sham LLLT procedure and was not irradiated; and two groups that received LLLT at two different doses (10 and 20 mW/cm(2) ) transcranially. An 808-nm Ga-As diode laser was employed transcranially 4 h post-trauma to illuminate the entire cortex of the brain. Motor function was assessed up to 4 weeks, and lesion volume was measured. There were no significant changes in NSS at 24 and 48 h between the laser-treated and non-treated mice. Yet, from 5 days and up to 28 days, the NSS of the laser-treated mice were significantly lower (p<0.05) than the traumatized control mice that were not treated with the laser. The lesion volume of the laser treated mice was significantly lower (1.4%) than the non-treated group (12.1%). Our data suggest that a non-invasive transcranial application of LLLT given 4 h following TBI provides a significant long-term functional neurological benefit. Further confirmatory trials are warranted.

  • Music facilitate the neurogenesis, regeneration and repair of neurons.

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    Abstract Title:

    Music facilitate the neurogenesis, regeneration and repair of neurons.

    Abstract Source:

    Med Hypotheses. 2008 Nov;71(5):765-9. Epub 2008 Aug 8. PMID: 18692321

    Abstract Author(s):

    Hajime Fukui, Kumiko Toyoshima

    Abstract:

    Experience has shown that therapy using music for therapeutic purposes has certain effects on neuropsychiatric disorders (both functional and organic disorders). However, the mechanisms of action underlying music therapy remain unknown, and scientific clarification has not advanced. While that study disproved the Mozart effect, the effects of music on the human body and mind were not disproved. In fact, more scientific studies on music have been conducted in recent years, mainly in the field of neuroscience, and the level of interest among researchers is increasing. The results of past studies have clarified that music influences and affects cranial nerves in humans from fetus to adult. The effects of music at a cellular level have not been clarified, and the mechanisms of action for the effects of music on the brain have not been elucidated. We propose that listening to music facilitates the neurogenesis, the regeneration and repair of cerebral nerves by adjusting the secretion of steroid hormones, ultimately leading to cerebral plasticity. Music affects levels of such steroids as cortisol (C), testosterone (T) and estrogen (E), and we believe that music also affects the receptor genes related to these substances, and related proteins. In the prevention of Alzheimer's disease and dementia, hormone replacement therapy has been shown to be effective, but at the same time, side effects have been documented, and the clinical application of hormone replacement therapy is facing a serious challenge. Conversely, music is noninvasive, and its existence is universal and mundane. Thus, if music can be used in medical care, the application of such a safe and inexpensive therapeutic option is limitless.

  • Neurologic music therapy improves executive function and emotional adjustment in traumatic brain injury rehabilitation.

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    Abstract Title:

    Neurologic music therapy improves executive function and emotional adjustment in traumatic brain injury rehabilitation.

    Abstract Source:

    Ann N Y Acad Sci. 2009 Jul;1169:406-16. PMID: 19673815

    Abstract Author(s):

    Michael H Thaut, James C Gardiner, Dawn Holmberg, Javan Horwitz, Luanne Kent, Garrett Andrews, Beth Donelan, Gerald R McIntosh

    Abstract:

    This study examined the immediate effects of neurologic music therapy (NMT) on cognitive functioning and emotional adjustment with brain-injured persons. Four treatment sessions were held, during which participants were given a pre-test, participated in 30 min of NMT that focused on one aspect of rehabilitation (attention, memory, executive function, or emotional adjustment), which was followed by post-testing. Control participants engaged in a pre-test, 30 min of rest, and then a post-test. Treatment participants showed improvement in executive function and overall emotional adjustment, and lessening of depression, sensation seeking, and anxiety. Control participants improved in emotional adjustment and lessening of hostility, but showed decreases in measures of memory, positive affect, and sensation seeking.

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