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Calcified Tissue International|October 31, 2001
Osteocyte lacunar occupancy in the femoral neck cortex: an association with cortical remodeling in hip fracture cases and controlsJ Power, B S Noble, N Loveridge, et al.Bone|March 10, 2000
Spatial clustering of remodeling osteons in the femoral neck cortex: a cause of weakness in hip fracture?G R Jordan, N Loveridge, K L Bell, et al.Bone|January 23, 1999
Regional differences in cortical porosity in the fractured femoral neckK L Bell, N Loveridge, J Power, et al.Calcified Tissue International|May 19, 2004
NOS isoforms in adult human osteocytes: multiple pathways of NO regulation?A M Caballero-Alías, N Loveridge, A Lyon, et al.Bone|July 29, 2000
A novel mechanism for induction of increased cortical porosity in cases of intracapsular hip fractureK L Bell, N Loveridge, G R Jordan, et al.Bone|November 1, 1996
Cortical and cancellous bone in the human femoral neck: evaluation of an interactive image analysis systemK L Bell, N Garrahan, M Kneissel, et al.The Anatomical Record|December 18, 2001
Super-osteons (remodeling clusters) in the cortex of the femoral shaft: influence of age and genderK L Bell, N Loveridge, J Reeve, et al.Bone|February 14, 2004
Discrimination between cases of hip fracture and controls is improved by hip structural analysis compared to areal bone mineral density. An ex vivo study of the femoral neckP Mayhew, S Kaptoge, N Loveridge, et al.The Histochemical Journal|May 1, 1978
A quantitative cytochemical method for measuring carbonic anhydrase activityN LoveridgeThe Proceedings of the Nutrition Society|February 1, 1993
Micronutrients and longitudinal growthN LoveridgePageof 36