scholarly article | Q13442814 |
P356 | DOI | 10.1139/H05-036 |
P698 | PubMed publication ID | 16770357 |
P50 | author | Stuart M. Phillips | Q41544977 |
Beverley Craven | Q43192374 | ||
Lora Giangregorio | Q55545039 | ||
P2093 | author name string | Colin E Webber | |
Neil McCartney | |||
Audrey L Hicks | |||
Joanne M Bugaresti | |||
P2860 | cites work | Shorter, more frequent mechanical loading sessions enhance bone mass | Q30807543 |
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Long term effects of locomotor training in spinal humans | Q35462942 | ||
Longitudinal study of the bone mineral content and of soft tissue composition after spinal cord section | Q36793584 | ||
Evaluation of a training program for persons with SCI paraplegia using the Parastep 1 ambulation system: part 3. Lack of effect on bone mineral density | Q38529640 | ||
Increasing muscle mass in spinal cord injured persons with a functional electrical stimulation exercise program | Q41707786 | ||
Accurate assessment of precision errors: how to measure the reproducibility of bone densitometry techniques | Q43646898 | ||
Treadmill training-induced adaptations in muscle phenotype in persons with incomplete spinal cord injury | Q44955118 | ||
Lower limb fractures in the chronic spinal cord injured patient | Q44966852 | ||
Disorders of carbohydrate and lipid metabolism in veterans with paraplegia or quadriplegia: a model of premature aging | Q45335997 | ||
A simple means of increasing muscle size after spinal cord injury: a pilot study | Q47257671 | ||
Effect of electrical stimulation-induced cycling on bone mineral density in spinal cord-injured patients | Q47954006 | ||
Bone mineral status in paraplegic patients who do or do not perform standing | Q49110795 | ||
Effects of functional electrical stimulation training for six months on body composition and spasticity in motor complete tetraplegic spinal cord-injured individuals. | Q53976403 | ||
P433 | issue | 3 | |
P304 | page(s) | 283-291 | |
P577 | publication date | 2006-06-01 | |
P1433 | published in | Applied Physiology, Nutrition, and Metabolism | Q4781559 |
P1476 | title | Can body weight supported treadmill training increase bone mass and reverse muscle atrophy in individuals with chronic incomplete spinal cord injury? | |
P478 | volume | 31 |
Q26766433 | 3D False Color Computed Tomography for Diagnosis and Follow-Up of Permanent Denervated Human Muscles Submitted to Home-Based Functional Electrical Stimulation |
Q35251393 | Acute energy cost of multi-modal activity-based therapy in persons with spinal cord injury |
Q42130804 | Anatomic changes in the macroscopic morphology and microarchitecture of denervated long bone tissue after spinal cord injury in rats |
Q36987754 | Biochemical biomarkers are not dependent on physical exercise in patients with spinal cord injury |
Q38567591 | Bone Imaging and Fracture Risk after Spinal Cord Injury |
Q34610883 | Bone mineral loss at the proximal femur in acute spinal cord injury |
Q35951326 | Chronic activity-based therapy does not improve body composition, insulin-like growth factor-I, adiponectin, or myostatin in persons with spinal cord injury |
Q41650975 | Differences 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. |
Q33893898 | Effect of chronic activity-based therapy on bone mineral density and bone turnover in persons with spinal cord injury |
Q48015724 | Effect of sports activity on bone mineral density in wheelchair athletes |
Q34597171 | Electrical stimulation during gait promotes increase of muscle cross-sectional area in quadriplegics: a preliminary study |
Q30234487 | Evidence-based prevention and treatment of osteoporosis after spinal cord injury: a systematic review. |
Q37908104 | Evidence-based risk assessment and recommendations for physical activity: arthritis, osteoporosis, and low back pain |
Q41865655 | Exercise awareness and barriers after spinal cord injury |
Q35592231 | Exercise therapy and recovery after SCI: evidence that shows early intervention improves recovery of function |
Q42645901 | Irisin is a pro-myogenic factor that induces skeletal muscle hypertrophy and rescues denervation-induced atrophy. |
Q47425432 | Is body weight-support treadmill training effective in increasing muscle trophism after traumatic spinal cord injury? A systematic review |
Q47431869 | Leg skin temperature with body-weight-supported treadmill and tilt-table standing training after spinal cord injury |
Q36962659 | Locomotor training and muscle function after incomplete spinal cord injury: case series |
Q96683759 | Locomotor training in people with spinal cord injury: is this exercise? |
Q37388816 | Lower-extremity muscle atrophy and fat infiltration after chronic spinal cord injury |
Q90419105 | Mitochondrial health and muscle plasticity after spinal cord injury |
Q42073551 | Neuromotor and musculoskeletal responses to locomotor training for an individual with chronic motor complete AIS-B spinal cord injury |
Q28307736 | Non-pharmacological treatment and prevention of bone loss after spinal cord injury: a systematic review |
Q89142749 | Physical therapists' perceptions about patients with incomplete post-traumatic paraplegia adherence to recommended home exercises: a qualitative study |
Q36073958 | Prevention and Treatment of Bone Loss after a Spinal Cord Injury: A Systematic Review. |
Q38986041 | Rehabilitation Strategies after Spinal Cord Injury: Inquiry into the Mechanisms of Success and Failure |
Q90651709 | Safety and feasibility of exoskeleton-assisted walking during acute/sub-acute SCI in an inpatient rehabilitation facility: A single-group preliminary study |
Q81484075 | Stable muscle atrophy in long-term paraplegics with complete upper motor neuron lesion from 3- to 20-year SCI |
Q38025023 | Systematic review of the methodological quality and outcome measures utilized in exercise interventions for adults with spinal cord injury. |
Q35418541 | The effect of low-magnitude whole body vibration on bone density and microstructure in men and women with chronic motor complete paraplegia |
Q36863047 | The effects of aging and electrical stimulation exercise on bone after spinal cord injury |
Q37885709 | The effects of exercise training on physical capacity, strength, body composition and functional performance among adults with spinal cord injury: a systematic review. |
Q36054941 | Time and Effort Required by Persons with Spinal Cord Injury to Learn to Use a Powered Exoskeleton for Assisted Walking |
Q47402547 | Using robot-applied resistance to augment body-weight-supported treadmill training in an individual with incomplete spinal cord injury |
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