[HTML][HTML] 3D printing and modelling of customized implants and surgical guides for non-human primates
X Chen, JK Possel, C Wacongne, AF Van Ham… - Journal of neuroscience …, 2017 - Elsevier
Background Primate neurobiologists use chronically implanted devices such as pedestals
for head stabilization and chambers to gain access to the brain and study its activity. Such
implants are skull-mounted, and made from a hard, durable material, such as titanium. New
method Here, we present a low-cost method of creating customized 3D-printed cranial
implants that are tailored to the anatomy of individual animals. We performed pre-surgical
computed tomography (CT) and magnetic resonance (MR) scans to generate three …
for head stabilization and chambers to gain access to the brain and study its activity. Such
implants are skull-mounted, and made from a hard, durable material, such as titanium. New
method Here, we present a low-cost method of creating customized 3D-printed cranial
implants that are tailored to the anatomy of individual animals. We performed pre-surgical
computed tomography (CT) and magnetic resonance (MR) scans to generate three …
3D printing and modelling of customized implants and surgical guides for non-human primates.
CX Chen Xing, JK Possel, C Wacongne, AF Ham… - 2017 - cabidigitallibrary.org
Background: Primate neurobiologists use chronically implanted devices such as pedestals
for head stabilization and chambers to gain access to the brain and study its activity. Such
implants are skull-mounted, and made from a hard, durable material, such as titanium. New
method: Here, we present a low-cost method of creating customized 3D-printed cranial
implants that are tailored to the anatomy of individual animals. We performed pre-surgical
computed tomography (CT) and magnetic resonance (MR) scans to generate three …
for head stabilization and chambers to gain access to the brain and study its activity. Such
implants are skull-mounted, and made from a hard, durable material, such as titanium. New
method: Here, we present a low-cost method of creating customized 3D-printed cranial
implants that are tailored to the anatomy of individual animals. We performed pre-surgical
computed tomography (CT) and magnetic resonance (MR) scans to generate three …
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