A steady series of advances in physics, mathematics, computers and clinical imaging science have progressively transformed diagnosis and treatment of neurological and neurosurgical disorders in the 115 years between the discovery of the X-ray and the advent of high resolution diffusion based functional MRI. The story of the progress in human terms, with its battles for priorities, forgotten advances, competing claims, public battles for Nobel Prizes, and patent priority litigations bring alive the human drama of this remarkable collective achievement in computed medical imaging
This review recounts the history of brain tumor diagnosis from antiquity to the present and, indirec...
Modern brain imaging was born in the 1970’s with the invention of X-ray tomography, nuclear magnetic...
Until just a few decades ago, it was very difficult to detect, non invasively, physiological signals...
A steady series of advances in physics, mathematics, computers and clinical imaging science have pro...
A steady series of advances in physics, mathematics, computers and clinical imaging science have pro...
A steady series of advances in physics, mathematics, computers and clinical imaging science have pro...
A steady series of advances in physics, mathematics, computers and clinical imaging science have pro...
Objective – Methods were invented that made it possible to image peripheral nerves in the bod...
Objective – Methods were invented that made it possible to image peripheral nerves in the bod...
Purpose: It has been 50 years since computed tomography was introduced to the worldwide neurolo...
Objective – Methods were invented that made it possible to image peripheral nerves in the bod...
Purpose: It has been 50 years since computed tomography was introduced to the worldwide neurolo...
Purpose: It has been 50 years since computed tomography was introduced to the worldwide neurolo...
Clinical applications in brain science have progressed at a glacial pace when compared to other medi...
Clinical applications in brain science have progressed at a glacial pace when compared to other medi...
This review recounts the history of brain tumor diagnosis from antiquity to the present and, indirec...
Modern brain imaging was born in the 1970’s with the invention of X-ray tomography, nuclear magnetic...
Until just a few decades ago, it was very difficult to detect, non invasively, physiological signals...
A steady series of advances in physics, mathematics, computers and clinical imaging science have pro...
A steady series of advances in physics, mathematics, computers and clinical imaging science have pro...
A steady series of advances in physics, mathematics, computers and clinical imaging science have pro...
A steady series of advances in physics, mathematics, computers and clinical imaging science have pro...
Objective – Methods were invented that made it possible to image peripheral nerves in the bod...
Objective – Methods were invented that made it possible to image peripheral nerves in the bod...
Purpose: It has been 50 years since computed tomography was introduced to the worldwide neurolo...
Objective – Methods were invented that made it possible to image peripheral nerves in the bod...
Purpose: It has been 50 years since computed tomography was introduced to the worldwide neurolo...
Purpose: It has been 50 years since computed tomography was introduced to the worldwide neurolo...
Clinical applications in brain science have progressed at a glacial pace when compared to other medi...
Clinical applications in brain science have progressed at a glacial pace when compared to other medi...
This review recounts the history of brain tumor diagnosis from antiquity to the present and, indirec...
Modern brain imaging was born in the 1970’s with the invention of X-ray tomography, nuclear magnetic...
Until just a few decades ago, it was very difficult to detect, non invasively, physiological signals...