Determining the mechanical properties of brain tissues is essential in such cases as the surgery planning and surgical training using virtual reality based simulators, trauma research and the diagnosis of some diseases that alter the elastic properties of brain tissues. Here, we suggest a protocol to measure the temperature-dependent elastic properties of brain tissues in physiological saline using the shear wave elastography method. Experiments have been conducted on six porcine brains. Our results show that the shear moduli of brain tissues decrease approximately linearly with a slope of -0.041 +/- 0.006 kPa/degrees C when the temperature T increases from room temperature (similar to 23 degrees C) to body temperature (similar to 37 degree...
This thesis aims to clarify some standing issues in the available mechanical knowledge of the human ...
Cerebral viscoelastic constants can be measured in a noninvasive, image-based way by magnetic resona...
International audienceUltrasound-based techniques to monitor HIFU treatments, combining temperature ...
Extensive research has been carried out for at least 50 years to understand the mechanical propertie...
The large variability in experimentally measured mechanical properties of brain tissue is due to man...
To understand brain injuries better, the mechanical properties of brain tissue have beenstudied for ...
We use supersonic shear wave imaging (SSI) technique to measure not only the linear but also the non...
The mechanical characterization of brain tissue is a complex task scientists have tried to accomplis...
The characterization of brain tissue is crucial to better understand neurological disorders. Mechani...
A method is presented for determining the dynamic shear behaviour of brain tissue using a rotational...
Traumatic brain injury (TBI) presents a variety of causes and symptoms, thus making the development ...
A combination of radiation force and ultrafast ultrasound imaging is used to both generate and track...
A method is presented for determining the dynamic shear behaviour of brain tissue using a rota-tiona...
This paper deals with the mechanical characterization of brain tissue which behaves as a viscoelasti...
This thesis aims to clarify some standing issues in the available mechanical knowledge of the human ...
Cerebral viscoelastic constants can be measured in a noninvasive, image-based way by magnetic resona...
International audienceUltrasound-based techniques to monitor HIFU treatments, combining temperature ...
Extensive research has been carried out for at least 50 years to understand the mechanical propertie...
The large variability in experimentally measured mechanical properties of brain tissue is due to man...
To understand brain injuries better, the mechanical properties of brain tissue have beenstudied for ...
We use supersonic shear wave imaging (SSI) technique to measure not only the linear but also the non...
The mechanical characterization of brain tissue is a complex task scientists have tried to accomplis...
The characterization of brain tissue is crucial to better understand neurological disorders. Mechani...
A method is presented for determining the dynamic shear behaviour of brain tissue using a rotational...
Traumatic brain injury (TBI) presents a variety of causes and symptoms, thus making the development ...
A combination of radiation force and ultrafast ultrasound imaging is used to both generate and track...
A method is presented for determining the dynamic shear behaviour of brain tissue using a rota-tiona...
This paper deals with the mechanical characterization of brain tissue which behaves as a viscoelasti...
This thesis aims to clarify some standing issues in the available mechanical knowledge of the human ...
Cerebral viscoelastic constants can be measured in a noninvasive, image-based way by magnetic resona...
International audienceUltrasound-based techniques to monitor HIFU treatments, combining temperature ...