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Critical appraisal of physical rehabilitation measures after osteoporotic vertebral fracture.

Osteoporosis is asymptomatic until fracture occurs. Fracture of the vertebral bodies can be "silent" and is diagnosed incidentally on radiographic visualization. The occurrence of spontaneous vertebral fracture in an otherwise healthy individual is considered pathognomonic of spinal osteoporosis. Osteoporotic vertebral fractures and kyphotic posture are no longer disorders about which nothing can be done. Resistive training exercises can decrease the risk of vertebral fractures. Proprioception generated within joints, ligaments, and muscles contributes to awareness of the relative orientation of functional units of the spine at rest and in motion. This is fundamental to posture, balance, and locomotion. Proprioception reeducation can be utilized for improving posture and balance. The focus of this review is rehabilitative measures for management of vertebral fractures.

Accidental Falls↗

Increasing cognitive load with increasing balance challenge: recipe for catastrophe.

The variety of sometimes contradictory results of studies of the impact of secondary cognitive tasks on postural balance may be attributed to the heterogeneity of balance challenges and tasks deployed and frequent lack of quantitative comparability of tasks. We deployed a wide range of quantitatively graded difficulties of both balance challenge and cognitive tasking to obtain an overview of the spectrum of their interactions in a multi-tasking situation. A differential comparison of the effects of verbally versus spatially loaded tasks, balanced for difficulty, was made and unlike any other study, we contrived to incorporate falls as an experimental variable. In the first study subjects stood in tandem on beams of either 2, 3 and 6 cm or 3, 6 and 8 cm width (according to 'best performance' ability) while performing mental verbal or spatial 'Stroop' tasks. The design was a between groups (sixteen subjects each) comparison (to reduce learning effect) of sway, fall rate and task error, balanced for order. Measurements were taken of centre of pressure, sway velocity at the hip and head displacement. For any beam width there were no within-subject correlations between sway magnitudes and frequency of falls. Spatial task errors increased with balance challenge (hence with magnitude of sway) but verbal performance was maintained independently of balance challenge. The results of the first study provided statistical power estimates for the design of the second focussed experiment which made a within group (twenty four subjects) comparison of the impact of spatial versus verbal tasks on balancing on the hardest beam. The spatial task significantly elevated the incidence of falls whereas the verbal task had no effect on fall rate. The spatial task raised the incidence of falling by 50% (P = 0.0008) in comparison with 'no task'. The verbal task had no effect (P = 0.07). We conclude that sway magnitude is a poor index of multi-task load. Multi-tasking can increase the chance of falling and spatial processing may have a specific impact on balance. The significant elevation of fall frequency during cognitive tasking shows that the 'posture first' principal can be transgressed although the necessary condition for transgression may be that the subject is willing to take risks believing that he can arrest any fall.

Accidental Falls↗

Evaluation of the effectiveness of Tai Chi for improving balance and preventing falls in the older population--a review.

One of the challenges faced by people with advancing age is decreased postural stability and increased risks for falls. There has been an increased interest over the last decade in using Tai Chi as an intervention exercise for improving postural balance and preventing falls in older people. Despite the increased number of studies in recent years relating Tai Chi to balance and fall prevention, results are scattered and inconsistent. There is wide variation in the use of balance measures, subject population, type and duration of Tai Chi exercise, and type of study. This paper provides a systematic review/analysis of currently available study reports. The goal of the review is to address the following concerns: how the effect of Tai Chi on balance or fall prevention has been evaluated to date, what level of evidence exists supporting Tai Chi as an effective exercise for improving balance or preventing falls, and what factors could possibly affect the benefit of Tai Chi on balance or falls. This review also helps identify directions for future research.

Accidental Falls↗

Absent pedal pulse and impaired balance in older people: a cross-sectional and longitudinal study.

BACKGROUND AND AIMS: The purpose of this study was to determine the relationship between abnormal pedal pulse status and postural balance in older people. METHODS: Prospective, population-based cohort study of older residents in the city of Jyväskylä, Finland. A total of 419 individuals aged 75 or 80 at baseline, with known lower extremity pulse status and balance tests performed on a force platform, were eligible for analysis. RESULTS: Cross-sectionally, persons with both dorsal pedal artery pulses absent were found to sway more (p=0.047 anteroposterior velocity, normal standing eyes-open position). The risk of being unable to do the full tandem stance was twofold (OR=2.20, 95% CI 1.29-3.78) for persons without palpable dorsal pedal arteries compared with those with normal pulse status. Balance deterioration was observed at five years (p<0.001 for time) but without group-by-time interaction. At ten years, however, the interaction term became significant for the normal standing eyes-closed position (p=0.025 for anteroposterior velocity and p=0.026 for mediolateral velocity), indicating greater balance deterioration among those with both dorsal pedal artery pulses absent. CONCLUSIONS: According to our study, the absence of both dorsal pedal artery pulses is associated with impaired balance in older people. The association was observed both cross-sectionally and longitudinally. In addition, as diminished pedal pulses are frequently associated with impaired lower extremity circulation, our results have also produced information on the possible pathophysiological mechanisms of balance deterioration in older people, which warrant further study.

Aged↗

[Specifics of innervation of the cranio-cervical transition].

Innervation at the craniocervical transition differs from other regions of the body in certain respects. In particular, thick-calibre neck muscle afferents project directly to the external cuneate nucleus and to the vestibular nuclear complex. This projection is most prominent in segments C2 and 3 and is sparse or absent in more caudal segments. Thus, proprioceptive neck muscle afferents gain direct access to vestibulospinal, vestibulooculomotor and other secondary or even higher-order vestibular neurons. There is extensive convergence of proprioceptive neck and labyrinthine afferents on these neurons, which plays an important role in the control of balance, posture and movements. It can be assumed that dysfunction of this cervicovestibular network results in a variety of clinical problems, in particular, so-called cervical balance disorders.

Afferent Pathways↗

Influence of a diagonal postural pattern on parameters of movement and associated postural adjustment in the cat.

The aim of this study was to investigate the influence of initial posture on the latency and amplitude of a movement and the postural adjustment associated with it. The movement studied was a limb flexion induced by stimulation of the motor cortex in chronically implanted cats. Only weak stimulations were used and the motor activity was mainly isometric, which facilitated the quantification of responses, analysed by measuring vertical forces exerted at the level of each limb. The initial posture consisted of the diagonal force pattern induced by stimulation of another cortical site corresponding to a different limb. The choice of this cortical site depended on the desired direction of force changes for the initial posture, i.e. either in the same direction as those accompanying the movement or in the opposite direction. The conditioning stimulation leading to the initial posture was triggered only when the computer analysing postural parameters showed a stable and balanced posture. Within the limits of the experimental method utilized, the following results have been established: 1. The latency of onset of the test movement and its associated postural adjustment were independent of initial posture. 2. The peak forces recorded were constant for a given stimulation intensity, and independent of initial force values. This shows that the amplitudes of force variations depend on the initial values: in the case of a low initial value the force variation must be greater to reach the same extreme value as in the case of a high initial value. Thus, the same stimulus intensity can induce different motor activities depending on the initial conditions.

Animals↗

The retention of balance: an exploratory study into the limits of acceleration the human body can withstand without losing equilibrium.

The human limiting values for sudden accelerations we have determined can be used to evaluate specific physical conditions that cause problems in maintaining postural balance. A comparison between the data obtained in the laboratory and the situations occurring during public transport by tram, bus, and metro revealed that both the initial impetus ("jerk") and the level of acceleration found in practice were sufficient to ensure that none of the individuals measured in the laboratory would have been able to retain their balance without extra support. The study suggests that limiting the initial jerk component of the acceleration would help considerably in alleviating the problem.

Acceleration↗

Head movement during sudden base translations as a measure of risks for falls in the elderly.

OBJECTIVE: To determine whether head movement in response to a sudden platform translation differs between healthy young subjects and healthy elderly with and without, bipedal sensory loss. DESIGN: A cross-sectional study with four-way comparison on subject grouping and three test conditions. BACKGROUND: Head movement has been used as a measure of balance in the elderly during voluntary movements. Studies during involuntary movement, however, are limited. Moreover, it is not clear how head movement during involuntary activities relates to postural balance and susceptibility to falls. METHODS: Head movement during a sudden base translation was measured in three subject groups: 9 healthy young, 10 healthy elderly adults and 10 elderly adults with vibratory sensation loss under the feet. The surface compliance of the supporting base, the direction of the base translation and the visual condition were all varied. RESULTS: There were significant differences among the three groups in head range of excursion (5 degrees, 9 degrees, 13 degrees for the young, elderly, and elderly with severe vibratory sensation loss, respectively), onset time (120, 150, 180 ms), and the time from peak to peak (38, 29, 25 ms). A backward base movement increased the head movement more than a forward base movement. CONCLUSIONS: During sudden base translation balance tasks, head movement is significantly increased in the elderly, especially in those elderly adults who are susceptible to falls. The results suggest that an increased head movement in the elderly might be an indication of increased risks for falls.

Accidental Falls↗

Does multiple risk factor reduction explain the reduction in fall rate in the Yale FICSIT Trial? Frailty and Injuries Cooperative Studies of Intervention Techniques.

In a recent study of fall prevention in 301 community-living older persons (the Yale FICSIT Trial, 1990-1993), participants in the multifactorial targeted intervention (TI) group experienced significantly fewer falls than participants in the social visit (SV) control group. In the present paper, the authors explore the relation between changes in the studied risk factors and the occurrence of falling. In comparison with SV participants, TI participants showed significantly greater improvements in postural blood pressure change (p = 0.01), step length (p = 0.004), use of > or = 4 medications (p = 0.003), and unsafe tub and toilet transfers (p = 0.05), while change in balance was of borderline significance (p = 0.08). Reduction in the occurrence of falling, in turn, was at least marginally associated with improvements in balance, postural blood pressure change, step length, lower extremity strength/range of motion, and transfers. When participants were divided into tertiles based on a composite risk factor change score, a significantly higher percentage of TI participants (42%) than SV participants (22%) were in the greatest risk factor reduction tertile. Among TI participants, there was a progressively lower fall rate per person per year in the tertiles with the least, intermediate, and greatest risk reduction (0.832, 0.624, and 0.260), respectively. A similar but weaker relation between risk factor reduction and fall rate was seen in the SV group. When compared within tertiles, essentially adjusting for the amount of risk factor reduction, the fall rates among TI and SV participants in the greatest risk factor reduction tertile were identical (0.260 falls per person per year), and the rates in the least reduction tertile were similar (0.832 vs. 1.040 falls per person per year); this suggests that risk factor reduction at least partially mediated the treatment effect. These results support the feasibility of implementing and analyzing the effectiveness of a multiple risk factor reduction strategy in the aged.

Accidental Falls↗

Actual and perceived postural sway during balance specific and non-specific proprioceptive stimulation.

A group of patients with balance complaints (n = 16) was compared with a group of normal subjects (n = 17) by means of posturography, subjective assessments of balance, anxiety and unsteadiness when standing on a force platform with eyes closed. Postural instability was induced by vibratory stimulation of the calf muscles (20, 40, 60, 80 and 100 Hz). As a control condition, the arm (biceps) was stimulated at similar frequencies. In order to control for arousal, blood pressure and heart beat were assessed. Furthermore, questionnaire responses on psychological measures were collected. Results showed clear differences between the groups in terms of imbalance and self-reports. However, the 2 groups displayed similar increases of imbalance during calf stimulation and no increase during arm stimulation. Patients generally rated less increase of unsteadiness when the calf was stimulated than did the controls. No differences in arousal were found between the groups or within conditions. Results are discussed in terms of the proposed desynchrony between symptoms and complaints.

Adult↗

Effects of a physical activity program on postural stability in older people.

BACKGROUND AND AIMS: The objective of this non-randomized study was to determine the influence of a specific physical activity program on the postural stability of older people. METHODS: Seventy-four subjects (72.4 +/- 0.7 yrs) participated in an individualized three-month physical activity program designed to improve posture, balance and mobility--the PBM program. Sessions were held twice weekly. Postural stability was assessed using a force platform, subjects being in static and dynamic conditions, and with open and closed eyes. Changes in stabilometric parameters (Sway area, ML mean, AP mean, Total length, ML length and AP length) of the intervention group were compared to those of 14 control subjects (71.8 +/- 1.5 years). RESULTS: A two-way analysis of variance with repeated measures did not show any significant post-program change in postural stability in the hard floor condition. In contrast, Sway area (p < 0.0005), Total length (p < 0.001) and AP length (p < 0.01) were significantly reduced after the training program in the foam floor condition, with open and closed eyes. In addition, in the medio-lateral axis condition and with closed eyes, AP length in the intervention group was significantly reduced (p < 0.01), and in the antero-posterior axis condition with both open and closed eyes, Sway area (p < 0.0005), Total length (p < 0.0005) and AP length (p < 0.05) decreased significantly. CONCLUSIONS: As shown by the results in the foam floor and dynamic conditions, our individualized physical activity program improved the postural stability of older people when the standing position was challenged. However, the lack of significant results for the hard floor condition suggests that three months is not sufficient to improve static balance. The PBM physical activity program can be used for balance training in older people, but further studies are required to determine the time needed to effect improvements in static balance in this population.

Aged↗

Functional, postural and perceived balance for predicting the work ability of firefighters.

OBJECTIVE: The importance of balance abilities for firefighting and rescue work has already been recognized, but there are no valid balance tests available in the test batteries for the physical work capacity of firefighters. Moreover, few studies have examined the associations between balance and work ability in general. Valid work-related balance tests are needed for the purpose of screening in occupational health care and in rehabilitation for assessing the effects of balance training. This study aimed to investigate the predictive value of functional, postural and perceived balance in respect to work ability among firefighters at baseline and after a 3-year follow-up. METHODS: The subjects were 135 male firefighters aged 33-56 years. The outcome variables were the work ability index and perceived physical work ability (PWA), determined by questionnaire in 1996 and 1999. The predictors assessed in 1996 were postural balance (tested with a force platform), functional balance (measured during walking on a wooden plank), and perceived balance abilities, enquired about through a questionnaire. RESULTS: Most of the balance test results and the perceived balance ability were associated with the perceived PWA at baseline. The final logistic regression models showed that the best predictors of decreased work ability among firefighters after 3 years were poor-to-moderate perceived balance [odds ratios (ORs) 2.4, 95% confidence interval (CI) 0.9-6.6]; more than one error in the functional balance test (OR 3.6, 95% CI 1.0-12.7); and a high mean amplitude of postural sway with the eyes closed (OR 2.7, 95% CI 0.9-6.1). CONCLUSIONS: The results support the work-related and predictive validity, in terms of perceived work ability, perceived balance, errors in the functional balance test and amplitude of postural sway with the eyes closed, of measuring balance among firefighters.

Adult↗

Effect on balance and gait secondary to removal of the second toe for digital reconstruction: 5-year follow-up.

Foot anatomy and lower limb function were analyzed in 11 children (aged 6.5-12.5 y) 5 years after removal of one or two second toes for digital reconstruction. In addition to physical examination and x-rays, postural balance and three-dimensional measurements of gait were analyzed. Among the 15 operated feet, five had bridle scars, three had claw deformities of the third toe, five had pain in the first intermetatarsal space, and seven had overt or early-stage hallux valgus (including five after unilateral toe removal). Hallux valgus deformation was also observed in three nonoperated feet. Maintenance of balance and rate of displacement of the center of pressure when standing on one foot with eyes closed were significantly altered for operated limbs compared with nonoperated limbs. Gait was rapid because of increased step cadence. Foot progression angle and ankle and knee joint sagittal kinematics during walking were normal. Although children appeared to not be affected in their daily life by the removal of the second toe(s), related foot anatomic and functional modifications require further follow-up.

Amputation, Surgical↗

Physiotherapy in Parkinson's disease: utilisation and patient satisfaction.

To examine the quality and quantity of physiotherapy care in Parkinson's disease (PD) in the Netherlands, postal questionnaires were sent to 300 PD patients. Patients who had received treatment by a physiotherapist at some stage during the previous year were asked to give approval to contact their therapist. Subsequently, postal questionnaires were sent to 129 physiotherapists who had recently treated the patients that were identified in the first stage of the study. Completed questionnaires were returned by 235 patients and 99 therapists. Sixty percent of patients were currently treated by a physiotherapist, most of them for more than six months. Ninety-five patients had serious problems within at least one of the four core areas of physiotherapy practice in PD (posture, balance, gait, transfers) and were therefore regarded as requiring referral to physiotherapy. Yet, 41% of them received no treatment at the time of enquiry. On the other hand, 75 patients had no serious problems within these core areas, yet half of them currently received treatment. The main goals for treatment were improvement of gait, general physical condition, posture or balance. Treatment mainly comprised active exercises. 60% of patients were treated by therapists without specific interest or education in PD. Most patients were presently satisfied with the treatment, but 11% had previously changed to another therapist because of dissatisfaction. In the Netherlands, referral rates of PD patients to physiotherapy are high and treatment duration is lengthy. Referral seems, to some extent, arbitrary. Scientific evidence for the effectiveness of physiotherapy in PD remains limited.

Aged↗

Otoneurological manifestations of the Shy-Drager syndrome.

Three patients with the chief complaints of dizziness while standing up or blackouts were diagnosed correctly as having the Shy-Drager syndrome at the Department of Otolaryngology. Both the electrocardiogram R-peak to R-peak interval and the Schellong test revealed disorders of the autonomic nervous system in each of these cases. Electronystagmography also demonstrated pathology of the oculomotor system and/or central vestibular system. Postural balance was also abnormal in one of the cases. Auditory brain-stem responses were normal in all three cases.

Electrocardiography↗

Do patients with ankylosing spondylitis have poorer balance than normal subjects?

OBJECTIVES: To investigate whether patients with ankylosing spondylitis have poorer balance than normal subjects, and to study the relationship between balance and posture. METHODS: Balance was studied in 30 ankylosing spondylitis subjects using sway magnetometry, making quantitative measurements of movement at the hips with eyes open and eyes closed. The results were compared with data from 58 normal subjects. Balance was also compared with quantitative measurements of posture. RESULTS: The numbers of patients with poor balance, above the 95th percentile for normal, were significantly greater than expected; 18% for eyes open (P = 0. 03) and 23% for eyes closed (P = 0.004). No significant relationships between balance and any of the quantitative descriptions of posture were demonstrated. CONCLUSION: A significant proportion of ankylosing spondylitis patients have poorer balance than normal subjects.

Adult↗

Directional sensitivity of stretch reflexes and balance corrections for normal subjects in the roll and pitch planes.

A large body of evidence has been collected which describes the response parameters associated with automatic balance corrections in man to perturbations in the pitch plane. However, perturbations to human stance can be expected from multiple directions. The purpose of the present study was to describe the directional sensitivities of muscle responses re-establishing disturbed stance equilibrium in normal subjects. The contributions of stretch reflex and automatic balance-correcting responses to balance control, and concomitant biomechanical reactions, were examined for combinations of pitch and roll perturbations of the support surface. More specifically, muscle responses, initial head accelerations and trunk velocities were analyzed with the intention of identifying possible origins of directionally specific triggering signals and to examine how sensory information is used to modulate triggered balance corrections with respect to direction. Fourteen healthy adults were required to stand on a dual-axis rotating platform capable of delivering rotational perturbations with constant amplitude (7.5 degrees ) and velocity (50 degrees /s) through multiple directions in the pitch and roll planes. Each subject was randomly presented with 44 support surface rotations through 16 different directions separated by 22.5 degrees first under eyes-open, and then, for a second identical set of rotations, under eyes-closed conditions. Bilateral muscle activities from tibialis anterior, soleus, lateral quadriceps and paraspinals were recorded, averaged across direction, and areas calculated over intervals with significant bursts of activity. Trunk angular velocity and ankle torque data were averaged over intervals corresponding to significant biomechanical events. Stretch reflex (intervals of 40-100, 80-120 ms) and automatic balance-correcting responses (120-220, 240-340 ms) in the same muscle were sensitive to distinctly different directions. The directions of the maximum amplitude of balance-correcting activity in leg muscles were oriented along the pitch plane, approximately 180 degrees from the maximum amplitude of stretch responses. Ankle torques for almost all perturbation directions were also aligned along the pitch plane. Stretch reflexes in paraspinal muscles were tuned along the 45 degrees plane but at 90 degrees to automatic balance corrections and 180 degrees to unloading responses in the same muscle. Stretch reflex onsets in paraspinal muscles were observed at 60 ms, as early as those of soleus muscles. In contrast, unloading reflexes in released paraspinal muscles were observed at 40 ms for perturbations which caused roll of the trunk towards the recorded muscle. Onsets of trunk roll velocities were earlier and more rapid than those observed for pitch velocities. Trunk pitch occurred for pure roll directions but not vice versa. When considered together, early stretch and unloading of paraspinals, and concomitant roll and pitch velocities of the trunk requiring a roll-and-pitch-based hip torque strategy, bring into question previous hypotheses of an ankle-based trigger signal or ankle-based movement strategies for postural balance reactions. These findings are compatible with the hypothesis that stretch-, force- and joint-related proprioceptive receptors at the level of the trunk provide a directionally sensitive triggering mechanism underlying a, minimally, two-stage (pitch-based leg and pitch-and-roll-based trunk) balance-correcting strategy. Accelerometer recordings from the head identified large vertical linear accelerations only for pitch movements and angular roll accelerations only during roll perturbations with latencies as early as 15 ms. Thus, it appears that balance corrections in leg and trunk muscles may receive strong, receptor-dependent (otolith or vertical canal) and directionally sensitive amplitude-modulating input from vestibulospinal signals.

Adult↗

Our recent experiences with sarin poisoning cases in Japan and pesticide users with references to some selected chemicals.

Attention has been paid to neurobehavioral effects of occupational and environmental exposures to chemicals such as pesticides, heavy metals and organic solvents. The area of research that includes neurobehavioral methods and effects in occupational and environmental health has been called "Occupational and Environmental Neurology and Behavioral Medicine." The methods, by which early changes in neurological, cognitive and behavioral function can be assessed, include neurobehavioral test battery, neurophysiological methods, questionnaires and structured interview, biochemical markers and imaging techniques. The author presents his observations of neurobehavioral and neurophysiological effects in Tokyo subway sarin poisoning cases as well as in pesticide users (tobacco farmers) in Malaysia in relation to Green Tobacco Sickness (GTS). In sarin cases, a variety effects were observed 6-8 months after exposure, suggesting delayed neurological effects. Studies on pesticide users revealed that organophosphorus and dithiocarbamate affected peripheral nerve conduction and postural balance; subjective symptoms related to GTS were also observed, indicating the effects of nicotine absorbed from wet tobacco leaves. In addition, non-neurological effects of pesticides and other chemicals are presented, in relation to genetic polymorphism and oxidative stress.

Agricultural Workers' Diseases↗