| Discipline name | Position | Best Scientists | Publications | D-Index |
|---|---|---|---|---|
| Neuroscience | 130 | 159 | 176 | 21 |
| Medicine | 2118 | 26 | 37 | 12 |
The scientific interests tackled in Frontiers in Neuroanatomy are Neuroscience, Anatomy, Cell biology, Cerebral cortex and Cortex (anatomy). Neuroscience, which encompasses Neocortex, Neuron, Dopamine, GABAergic and Basal ganglia, is the main subject of Frontiers in Neuroanatomy. The work on Dopamine presented in it focuses on Dopaminergic in particular.
The study on Basal ganglia presented in the journal intersects with the topics under Striatum. The journal focused on Anatomy research but expanded to cover White matter.
The main points discussed in the journal papers deal with Neuroscience, Cerebral cortex, Neocortex, Dopamine and Cortex (anatomy). Basal ganglia, Striatum, GABAergic, Dopaminergic and Human brain are among the areas of Neuroscience tackled in the journal articles. The published articles explore topics in Cerebral cortex which can be helpful for research in disciplines like Sensory system, Glutamatergic, Hippocampus and Neuron.
The primary areas of discussion in Frontiers in Neuroanatomy are Neuroscience, Cell biology, Hippocampus, Cerebral cortex and Anatomy. It focuses on Neuroscience research which is adjacent to topics in Calretinin. It addresses concerns in Cell biology which are intertwined with other disciplines, such as Dendritic spine, Remyelination, Granule cell and Microglia.
In addition to Hippocampus research, Frontiers in Neuroanatomy aims to explore topics under Hippocampal formation, Temporal cortex, Cortex (anatomy) and Synaptic plasticity. Some problems in Cerebral cortex that were presented in Frontiers in Neuroanatomy overlapped with concepts under Forebrain, Olfactory bulb and Striatum. Anatomy research presented in the journal encompasses a variety of subjects, including Midbrain, Medulla oblongata and Brainstem.
A key indicator for each journal is its effectiveness in reaching other researchers with the papers published at that venue.
The chart below presents the interquartile range (first quartile 25%, median 50% and third quartile 75%) of the number of citations of articles over time.
The top authors publishing in Frontiers in Neuroanatomy (based on the number of publications) are:
The overall trend for top authors publishing in this journal is outlined below. The chart shows the number of publications at each edition of the journal for top authors.
Only papers with recognized affiliations are considered
The top affiliations publishing in Frontiers in Neuroanatomy (based on the number of publications) are:
The overall trend for top affiliations publishing in this journal is outlined below. The chart shows the number of publications at each edition of the journal for top affiliations.
The publication chance index shows the ratio of articles published by the best research institutions in the journal edition to all articles published within that journal. The best research institutions were selected based on the largest number of articles published during all editions of the journal.
The chart below presents the percentage ratio of articles from top institutions (based on their ranking of total papers).Top affiliations were grouped by their rank into the following tiers: top 1-10, top 11-20, top 21-50, and top 51+. Only articles with a recognized affiliation are considered.
During the most recent 2021 edition, 7.14% of publications had an unrecognized affiliation. Out of the publications with recognized affiliations, 8.97% were posted by at least one author from the top 10 institutions publishing in the journal. Another 6.41% included authors affiliated with research institutions from the top 11-20 affiliations. Institutions from the 21-50 range included 17.95% of all publications and 66.67% were from other institutions.
A very common phenomenon observed among researchers publishing scientific articles is the intentional selection of journals they have already attended in the past. In particular, it is worth analyzing the case when the authors participate in the same journal from year to year.
The Returning Authors Index presented below illustrates the ratio of authors who participated in both a given as well as the previous edition of the journal in relation to all participants in a given year.
The graph below shows the Returning Institution Index, illustrating the ratio of institutions that participated in both a given and the previous edition of the conference in relation to all affiliations present in a given year.
Our experience to innovation index was created to show a cross-section of the experience level of authors publishing in a journal. The index includes the authors publishing at the last edition of a journal, grouped by total number of publications throughout their academic career (P) and the total number of citations of these publications ever received (C).
The group intervals were selected empirically to best show the diversity of the authors' experiences, their labels were selected as a convenience, not as judgment. The authors were divided into the following groups:
The chart below illustrates experience levels of first authors in cases of publications with multiple authors.
Another aspect that deepens the understanding of the subject matter is exploring the career prospects and professional opportunities in the field of Neuroanatomy. Students and professionals who are armed with knowledge in this dynamic field of study can aspire to work in various positions, contributing significantly to research and practice in mesoscopic, microscopic, and systemic aspects of neuroanatomy. Roles in this field are varied but a few key professions include neuroanatomist, neuropathologist, neuroscientist, neurological surgeon, and neuropathologist. These roles often entail studying brain function and discovering new ways to treat neurological disorders. Being experts in the nervous system’s structure and functions, these professionals have a vital role in healthcare and scientific research, analyzing brain injuries and diseases and developing new treatments or surgical techniques. For adding another dimension to this article, a topic related to career opportunities in other parallel fields that use the techniques and processes from Neuroanatomy could be explored. For instance, Speech-Language Pathology is one such discipline where a foundational knowledge of Neuroanatomy is essential. If you are interested in this career path, understanding the speech pathologist requirements in utah might provide a productive starting point. Ultimately, a career in Neuroanatomy or related fields is challenging but also highly rewarding, offering vast opportunities to contribute to advancements in science and medicine, and to improve human health. While the preliminary challenges and academic hurdles might seem intimidating, the potential outcomes make for a fulfilling career prospect.
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