Can body weight supported treadmill training increase bone mass and reverse muscle atrophy in individuals with chronic incomplete spinal cord injury?

scientific article published in June 2006

Can body weight supported treadmill training increase bone mass and reverse muscle atrophy in individuals with chronic incomplete spinal cord injury? is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1139/H05-036
P698PubMed publication ID16770357

P50authorStuart M. PhillipsQ41544977
Beverley CravenQ43192374
Lora GiangregorioQ55545039
P2093author name stringColin E Webber
Neil McCartney
Audrey L Hicks
Joanne M Bugaresti
P2860cites workShorter, more frequent mechanical loading sessions enhance bone massQ30807543
Gait after spinal cord injury and the central pattern generator for locomotion.Q33716553
Long-term body-weight-supported treadmill training and subsequent follow-up in persons with chronic SCI: effects on functional walking ability and measures of subjective well-being.Q34390063
Long term effects of locomotor training in spinal humansQ35462942
Longitudinal study of the bone mineral content and of soft tissue composition after spinal cord sectionQ36793584
Evaluation of a training program for persons with SCI paraplegia using the Parastep 1 ambulation system: part 3. Lack of effect on bone mineral densityQ38529640
Increasing muscle mass in spinal cord injured persons with a functional electrical stimulation exercise programQ41707786
Accurate assessment of precision errors: how to measure the reproducibility of bone densitometry techniquesQ43646898
Treadmill training-induced adaptations in muscle phenotype in persons with incomplete spinal cord injuryQ44955118
Lower limb fractures in the chronic spinal cord injured patientQ44966852
Disorders of carbohydrate and lipid metabolism in veterans with paraplegia or quadriplegia: a model of premature agingQ45335997
A simple means of increasing muscle size after spinal cord injury: a pilot studyQ47257671
Effect of electrical stimulation-induced cycling on bone mineral density in spinal cord-injured patientsQ47954006
Bone mineral status in paraplegic patients who do or do not perform standingQ49110795
Effects of functional electrical stimulation training for six months on body composition and spasticity in motor complete tetraplegic spinal cord-injured individuals.Q53976403
P433issue3
P304page(s)283-291
P577publication date2006-06-01
P1433published inApplied Physiology, Nutrition, and MetabolismQ4781559
P1476titleCan body weight supported treadmill training increase bone mass and reverse muscle atrophy in individuals with chronic incomplete spinal cord injury?
P478volume31

Reverse relations

cites work (P2860)
Q267664333D False Color Computed Tomography for Diagnosis and Follow-Up of Permanent Denervated Human Muscles Submitted to Home-Based Functional Electrical Stimulation
Q35251393Acute energy cost of multi-modal activity-based therapy in persons with spinal cord injury
Q42130804Anatomic changes in the macroscopic morphology and microarchitecture of denervated long bone tissue after spinal cord injury in rats
Q36987754Biochemical biomarkers are not dependent on physical exercise in patients with spinal cord injury
Q38567591Bone Imaging and Fracture Risk after Spinal Cord Injury
Q34610883Bone mineral loss at the proximal femur in acute spinal cord injury
Q35951326Chronic activity-based therapy does not improve body composition, insulin-like growth factor-I, adiponectin, or myostatin in persons with spinal cord injury
Q41650975Differences in bone mineral density, markers of bone turnover and extracellular matrix and daily life muscular activity among patients with recent motor-incomplete versus motor-complete spinal cord injury.
Q33893898Effect of chronic activity-based therapy on bone mineral density and bone turnover in persons with spinal cord injury
Q48015724Effect of sports activity on bone mineral density in wheelchair athletes
Q34597171Electrical stimulation during gait promotes increase of muscle cross-sectional area in quadriplegics: a preliminary study
Q30234487Evidence-based prevention and treatment of osteoporosis after spinal cord injury: a systematic review.
Q37908104Evidence-based risk assessment and recommendations for physical activity: arthritis, osteoporosis, and low back pain
Q41865655Exercise awareness and barriers after spinal cord injury
Q35592231Exercise therapy and recovery after SCI: evidence that shows early intervention improves recovery of function
Q42645901Irisin is a pro-myogenic factor that induces skeletal muscle hypertrophy and rescues denervation-induced atrophy.
Q47425432Is body weight-support treadmill training effective in increasing muscle trophism after traumatic spinal cord injury? A systematic review
Q47431869Leg skin temperature with body-weight-supported treadmill and tilt-table standing training after spinal cord injury
Q36962659Locomotor training and muscle function after incomplete spinal cord injury: case series
Q96683759Locomotor training in people with spinal cord injury: is this exercise?
Q37388816Lower-extremity muscle atrophy and fat infiltration after chronic spinal cord injury
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Q28307736Non-pharmacological treatment and prevention of bone loss after spinal cord injury: a systematic review
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Q38025023Systematic review of the methodological quality and outcome measures utilized in exercise interventions for adults with spinal cord injury.
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Q36054941Time and Effort Required by Persons with Spinal Cord Injury to Learn to Use a Powered Exoskeleton for Assisted Walking
Q47402547Using robot-applied resistance to augment body-weight-supported treadmill training in an individual with incomplete spinal cord injury

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