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Annals of the ICRP|July 6, 2026
Specific absorbed fractions for reference individuals for the current and next general recommendationsD W JokischJournal of Nuclear Medicine : Official Publication, Society of Nuclear Medicine|November 24, 1999
A three-dimensional transport model for determining absorbed fractions of energy for electrons within trabecular boneL G Bouchet, D W Jokisch, W E BolchPhysics in Medicine and Biology|October 11, 2011
An image-based skeletal model for the ICRP reference adult male-specific absorbed fractions for neutron-generated recoil protonsD W Jokisch, D A Rajon, A A Bahadori, et al.Physics in Medicine and Biology|April 6, 2011
Methods for the inclusion of shallow marrow and adipose tissue in pathlength-based skeletal dosimetryD W Jokisch, D A Rajon, P W Patton, et al.Medical Physics|July 4, 2002
Considerations of anthropometric, tissue volume, and tissue mass scaling for improved patient specificity of skeletal S valuesW E Bolch, R W Patton, A R Shah, et al.Medical Physics|August 8, 2001
Chord distributions across 3D digital images of a human thoracic vertebraD W Jokisch, P W Patton, D A Rajon, et al.Medical Physics|August 8, 2001
Beta-particle dosimetry of the trabecular skeleton using Monte Carlo transport within 3D digital imagesD W Jokisch, L G Bouchet, P W Patton, et al.Medical Physics|December 29, 2000
Voxel size effects in three-dimensional nuclear magnetic resonance microscopy performed for trabecular bone dosimetryD A Rajon, D W Jokisch, P W Patton, et al.Medical Physics|February 8, 2002
Site-specific variability in trabecular bone dosimetry: considerations of energy loss to cortical boneP W Patton, D A Rajon, A P Shah, et al.Physics in Medicine and Biology|June 19, 2002
Voxel effects within digital images of trabecular bone and their consequences on chord-length distribution measurementsD A Rajon, D W Jokisch, P W Patton, et al.Pageof 2