Very little is known about the regulation of morphogenesis in synovial joints. Mechanical forces generated from muscle contractions are required for normal development of several aspects of normal skeletogenesis. Here we show that biophysical stimuli generated by muscle contractions impact multiple events during chick knee joint morphogenesis influencing differential growth of the skeletal rudiment epiphyses and patterning of the emerging tissues in the joint interzone. Immobilisation of chick embryos was achieved through treatment with the neuromuscular blocking agent Decamethonium Bromide. The effects on development of the knee joint were examined using a combination of computational modelling to predict alterations in biophysical stimuli...
AbstractAbnormal joint morphogenesis is linked to clinical conditions such as Developmental Dysplasi...
Early limb bud development has been of considerable interest for the study of embryological developm...
There is little understanding on how cell division, expansion and migration drive joint morphogenesi...
Mechanical forces due to fetal movements play an important role in joint shape morphogenesis, and ab...
AbstractMechanical forces due to fetal movements play an important role in joint shape morphogenesis...
THESIS 9328Muscle induced mechanical forces have been implicated as an important regulator in the de...
Evolution has led to specialised shapes for each individual joint which are created during prenatal ...
1. The effects of immobilization on the development of the knee and 3rd metatarsophalangeal joints a...
Purpose: In this feasibility study, a mechanically loaded in-vitro tissue culture model of joint mor...
Although it is known that mechanical forces are needed for normal bone development, the current unde...
Skeletal muscle and its mechanical activity have been proposed as important extrinsic influences on ...
SummaryObjectiveThere is increasing evidence that joint shape is a potent predictor of osteoarthriti...
Morphogenesis is regulated by intrinsic factors within cells and by inductive signals transmitted th...
Abnormalities in joint shape are increasingly considered a critical risk factor for developing osteo...
Abnormal joint morphogenesis is linked to clinical conditions such as Developmental Dysplasia of the...
AbstractAbnormal joint morphogenesis is linked to clinical conditions such as Developmental Dysplasi...
Early limb bud development has been of considerable interest for the study of embryological developm...
There is little understanding on how cell division, expansion and migration drive joint morphogenesi...
Mechanical forces due to fetal movements play an important role in joint shape morphogenesis, and ab...
AbstractMechanical forces due to fetal movements play an important role in joint shape morphogenesis...
THESIS 9328Muscle induced mechanical forces have been implicated as an important regulator in the de...
Evolution has led to specialised shapes for each individual joint which are created during prenatal ...
1. The effects of immobilization on the development of the knee and 3rd metatarsophalangeal joints a...
Purpose: In this feasibility study, a mechanically loaded in-vitro tissue culture model of joint mor...
Although it is known that mechanical forces are needed for normal bone development, the current unde...
Skeletal muscle and its mechanical activity have been proposed as important extrinsic influences on ...
SummaryObjectiveThere is increasing evidence that joint shape is a potent predictor of osteoarthriti...
Morphogenesis is regulated by intrinsic factors within cells and by inductive signals transmitted th...
Abnormalities in joint shape are increasingly considered a critical risk factor for developing osteo...
Abnormal joint morphogenesis is linked to clinical conditions such as Developmental Dysplasia of the...
AbstractAbnormal joint morphogenesis is linked to clinical conditions such as Developmental Dysplasi...
Early limb bud development has been of considerable interest for the study of embryological developm...
There is little understanding on how cell division, expansion and migration drive joint morphogenesi...