The negative impact of traumatic brain injury (TBI) on bone in a mouse model

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The negative impact of traumatic brain injury (TBI) on bone in a mouse model is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.3109/02699052.2013.859735
P698PubMed publication ID24295038

P2093author name stringSubburaman Mohan
Heather Watt
Hongrun Yu
P2860cites workLasting consequences of traumatic events on behavioral and skeletal parameters in a mouse model for post-traumatic stress disorder (PTSD).Q28482465
Role of diabetes- and obesity-related protein in the regulation of osteoblast differentiationQ28510487
Traumatic Brain Injury in Children and Adolescents: Surveillance for Pituitary DysfunctionQ30451612
Abnormal bone and calcium metabolism in patients after strokeQ33819590
T-box 3 negatively regulates osteoblast differentiation by inhibiting expression of osterix and runx2Q34042904
Impaired skeletal growth in mice with haploinsufficiency of IGF-I: genetic evidence that differences in IGF-I expression could contribute to peak bone mineral density differencesQ34074066
Insulin-like growth factor regulates peak bone mineral density in mice by both growth hormone-dependent and -independent mechanismsQ34074077
Experimental traumatic brain injuryQ34093983
Depression: a major, unrecognized risk factor for osteoporosis?Q34276969
Does traumatic brain injury result in accelerated fracture healing?Q34394180
The negative impact of single prolonged stress (SPS) on bone development in miceQ34727297
Depression induces bone loss through stimulation of the sympathetic nervous systemQ35130779
A mouse model of human repetitive mild traumatic brain injuryQ35566731
Traumatic brain injury in young rats leads to progressive behavioral deficits coincident with altered tissue properties in adulthoodQ36127395
Traumatic brain injury induced hypothalamic-pituitary dysfunction: a paediatric perspective.Q36849768
Wnt and hedgehog signaling pathways in bone developmentQ37091510
From brain to bone: evidence for the release of osteogenic humoral factors after traumatic brain injury.Q37196367
Endocrine changes after pediatric traumatic brain injuryQ37953316
Post-traumatic head injury pituitary dysfunction.Q38025146
Pituitary function at long-term follow-up of childhood traumatic brain injury.Q38482845
Serum-mediated osteogenic effect in traumatic brain-injured patientsQ39831072
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Endocrine Dysfunction following Traumatic Brain Injury in ChildrenQ42924803
Mouse genetic model for bone strength and size phenotypes: NZB/B1NJ and RF/J inbred strains.Q44280770
Potential risk factors for developing heterotopic ossification in patients with severe traumatic brain injuryQ44883209
A new model of diffuse brain injury in rats. Part I: Pathophysiology and biomechanicsQ45091283
Influence of brain injury on early posttraumatic bone metabolismQ45256634
Targeted disruption of TGFBI in mice reveals its role in regulating bone mass and bone size through periosteal bone formationQ47307430
Hypothalamo-hypophysial dysfunction after traumatic brain injury in children and adolescents: a preliminary retrospective and prospective studyQ48491534
Osteogenic effects of traumatic brain injury on experimental fracture-healingQ48593777
Interdisciplinary rehabilitation of mild TBI and PTSD: a case reportQ48618177
Changes in bone metabolism in a rat model of traumatic brain injuryQ48696926
Quantitative trait loci for bone density in mice: the genes determining total skeletal density and femur density show little overlap in F2 mice.Q52115495
Six-month recovery from mild to moderate Traumatic Brain Injury: the role of APOE-epsilon4 allele.Q52547169
Severe heterotopic ossification in the non-affected limbs of a hemiplegic patient with traumatic brain injury.Q53256338
BMP-9-induced muscle heterotopic ossification requires changes to the skeletal muscle microenvironment.Q54587581
P433issue2
P921main subjecttraumatic brain injuryQ1995526
P304page(s)244-251
P577publication date2013-12-02
P1433published inBrain InjuryQ4955769
P1476titleThe negative impact of traumatic brain injury (TBI) on bone in a mouse model
P478volume28

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cites work (P2860)
Q61813979Bone Marrow Derived Extracellular Vesicles Activate Osteoclast Differentiation in Traumatic Brain Injury Induced Bone Loss
Q35494471Differential expression of claudin family members during osteoblast and osteoclast differentiation: Cldn-1 is a novel positive regulator of osteoblastogenesis
Q47119925Experimental repetitive mild traumatic brain injury induces deficits in trabecular bone microarchitecture and strength in mice
Q91933466Growth Hormone Effects on Bone Loss-Induced by Mild Traumatic Brain Injury and/or Hind Limb Unloading
Q53430661Long-term Consequences of Traumatic Brain Injury in Bone Metabolism.
Q92320158Migraine and traumatic brain injury: a cohort study in Taiwan
Q35900498Mild Concussion, but Not Moderate Traumatic Brain Injury, Is Associated with Long-Term Depression-Like Phenotype in Mice
Q52584272Relationship between heterotopic ossification and traumatic brain injury: Why severe traumatic brain injury increases the risk of heterotopic ossification.
Q37601768Sodium selenate treatment mitigates reduction of bone volume following traumatic brain injury in rats

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