Javascript must be enabled to continue!
Anatomical variability, multi-modal coordinate systems, and precision targeting in the marmoset brain
View through CrossRef
AbstractLocalising accurate brain regions needs careful evaluation in each experimental species due to their individual variability. However, the function and connectivity of brain areas is commonly studied using a single-subject cranial landmark-based stereotactic atlas in animal neuroscience. Here, we address this issue in a small primate, the common marmoset, which is increasingly widely used in systems neuroscience. We developed a non-invasive multi-modal neuroimaging-based targeting pipeline, which accounts for intersubject anatomical variability in cranial and cortical landmarks in marmosets. This methodology allowed creation of multi-modal templates (MarmosetRIKEN20) including head CT and brain MR images, embedded in coordinate systems of anterior and posterior commissures (AC-PC) and CIFTI grayordinates. We found that the horizontal plane of the stereotactic coordinate was significantly rotated in pitch relative to the AC-PC coordinate system (10 degrees, frontal downwards), and had a significant bias and uncertainty due to positioning procedures. We also found that many common cranial and brain landmarks (e.g., bregma, intraparietal sulcus) vary in location across subjects and are substantial relative to average marmoset cortical area dimensions. Combining the neuroimaging-based targeting pipeline with robot-guided surgery enabled proof-of-concept targeting of deep brain structures with an accuracy of 0.2 mm. Altogether, our findings demonstrate substantial intersubject variability in marmoset brain and cranial landmarks, implying that subject-specific neuroimaging-based localization is needed for precision targeting in marmosets. The population-based templates and atlases in grayordinates, created for the first time in marmoset monkeys, should help bridging between macroscale and microscale analyses.HighlightsAchieved sub-millimeter localization accuracy of subject-wise brain regionPropose a dedicated non-invasive multi-modal subject-specific registration pipelineConstruct brain coordinate system in AC-PC and grayordinate spacesEstablish multi-modal MRI and CT brain and cortical templates, MarmosetRIKEN20Quantify intersubject variabilities in marmoset brainSignificant bias and uncertainty exist in marmoset stereotactic positioning
Title: Anatomical variability, multi-modal coordinate systems, and precision targeting in the marmoset brain
Description:
AbstractLocalising accurate brain regions needs careful evaluation in each experimental species due to their individual variability.
However, the function and connectivity of brain areas is commonly studied using a single-subject cranial landmark-based stereotactic atlas in animal neuroscience.
Here, we address this issue in a small primate, the common marmoset, which is increasingly widely used in systems neuroscience.
We developed a non-invasive multi-modal neuroimaging-based targeting pipeline, which accounts for intersubject anatomical variability in cranial and cortical landmarks in marmosets.
This methodology allowed creation of multi-modal templates (MarmosetRIKEN20) including head CT and brain MR images, embedded in coordinate systems of anterior and posterior commissures (AC-PC) and CIFTI grayordinates.
We found that the horizontal plane of the stereotactic coordinate was significantly rotated in pitch relative to the AC-PC coordinate system (10 degrees, frontal downwards), and had a significant bias and uncertainty due to positioning procedures.
We also found that many common cranial and brain landmarks (e.
g.
, bregma, intraparietal sulcus) vary in location across subjects and are substantial relative to average marmoset cortical area dimensions.
Combining the neuroimaging-based targeting pipeline with robot-guided surgery enabled proof-of-concept targeting of deep brain structures with an accuracy of 0.
2 mm.
Altogether, our findings demonstrate substantial intersubject variability in marmoset brain and cranial landmarks, implying that subject-specific neuroimaging-based localization is needed for precision targeting in marmosets.
The population-based templates and atlases in grayordinates, created for the first time in marmoset monkeys, should help bridging between macroscale and microscale analyses.
HighlightsAchieved sub-millimeter localization accuracy of subject-wise brain regionPropose a dedicated non-invasive multi-modal subject-specific registration pipelineConstruct brain coordinate system in AC-PC and grayordinate spacesEstablish multi-modal MRI and CT brain and cortical templates, MarmosetRIKEN20Quantify intersubject variabilities in marmoset brainSignificant bias and uncertainty exist in marmoset stereotactic positioning.
Related Results
[RETRACTED] Gro-X Brain Reviews - Is Gro-X Brain A Scam? v1
[RETRACTED] Gro-X Brain Reviews - Is Gro-X Brain A Scam? v1
[RETRACTED]➢Item Name - Gro-X Brain➢ Creation - Natural Organic Compound➢ Incidental Effects - NA➢ Accessibility - Online➢ Rating - ⭐⭐⭐⭐⭐➢ Click Here To Visit - Official Website - ...
Establishing neuroanatomical correspondences across mouse and marmoset brain structures
Establishing neuroanatomical correspondences across mouse and marmoset brain structures
Interest in the common marmoset is growing due to evolutionarily proximity to humans compared to laboratory mice, necessitating a comparison of mouse and marmoset brain architectur...
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Abstarct
Introduction
Isolated brain hydatid disease (BHD) is an extremely rare form of echinococcosis. A prompt and timely diagnosis is a crucial step in disease management. This ...
Production and characterization of marmoset lymphoblastoid interferon
Production and characterization of marmoset lymphoblastoid interferon
AbstractWe describe the production of marmoset lymphoblastoid cell interferon (IFN). Optimal yields of IFN were obtained when EBV‐transformed lymphoblastoid cell lines (LCL) at a c...
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Abstract
A cervical rib (CR), also known as a supernumerary or extra rib, is an additional rib that forms above the first rib, resulting from the overgrowth of the transverse proce...
Brain Biochemistry and Its Disease
Brain Biochemistry and Its Disease
The human brain is one of the important organs in the human body. It is the most complex of all organs. The brain is an organ composed of billions of nerve cells. It has parts of t...
Modal Sosial Masyarakat Dusun Melayang dalam Pemanfaatan Buah Tengkawang di Hutan Adat Pikul
Modal Sosial Masyarakat Dusun Melayang dalam Pemanfaatan Buah Tengkawang di Hutan Adat Pikul
AbstrakModal sosial adalah kemampuan masyarakat untuk bekerjasama demi mencapai suatu tujuan bersama didalam suatu kelompok. Hutan Adat Pikul memiliki potensi tengkawang yang sanga...
Approaches to Different Learning Styles in Undergraduate Medical Students of Al-Tibri Medical College Karachi
Approaches to Different Learning Styles in Undergraduate Medical Students of Al-Tibri Medical College Karachi
Objectives: The purpose of this study was to evaluate the different styles of learning preferred by undergraduate medical students from 1st to 5th year of Al-Tibri Medical College ...


