Example of European Journal of Hybrid Imaging format
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Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format
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Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format Example of European Journal of Hybrid Imaging format
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open access Open Access

European Journal of Hybrid Imaging — Template for authors

Publisher: Springer
Categories Rank Trend in last 3 yrs
Computer Science (miscellaneous) #37 of 69 down down by None rank
Radiology, Nuclear Medicine and Imaging #193 of 288 down down by None rank
Biophysics #99 of 131 down down by None rank
Molecular Medicine #141 of 167 down down by None rank
journal-quality-icon Journal quality:
Medium
calendar-icon Last 4 years overview: 83 Published Papers | 144 Citations
indexed-in-icon Indexed in: Scopus
last-updated-icon Last updated: 19/07/2020
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Journal Performance & Insights

CiteRatio

Source Normalized Impact per Paper (SNIP)

A measure of average citations received per peer-reviewed paper published in the journal.

Measures actual citations received relative to citations expected for the journal's category.

1.7

CiteRatio for European Journal of Hybrid Imaging from 2016 - 2020
Year Value
2020 1.7
graph view Graph view
table view Table view

0.673

Year Value
2020 0.673
graph view Graph view
table view Table view

insights Insights

  • This journal’s CiteRatio is in the top 10 percentile category.

insights Insights

  • This journal’s SNIP is in the top 10 percentile category.

European Journal of Hybrid Imaging

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Springer

European Journal of Hybrid Imaging

Approved by publishing and review experts on SciSpace, this template is built as per for European Journal of Hybrid Imaging formatting guidelines as mentioned in Springer author instructions. The current version was created on and has been used by 173 authors to write and format their manuscripts to this journal.

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Last updated on
18 Jul 2020
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ISSN
1606-8610
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Open Access
Yes
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Sherpa RoMEO Archiving Policy
White faq
i
Plagiarism Check
Available via Turnitin
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Endnote Style
Download Available
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Citation Type
Author Year
(Blonder et al, 1982)
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Bibliography Example
Beenakker CWJ (2006) Specular andreev reflection in graphene. Phys Rev Lett 97(6):067,007, URL 10.1103/PhysRevLett.97.067007

Top papers written in this journal

open accessOpen access Journal Article DOI: 10.1186/S41824-020-00086-8
Applications of artificial intelligence and deep learning in molecular imaging and radiotherapy.
Hossein Arabi1, Habib Zaidi

Abstract:

This brief review summarizes the major applications of artificial intelligence (AI), in particular deep learning approaches, in molecular imaging and radiation therapy research. To this end, the applications of artificial intelligence in five generic fields of molecular imaging and radiation therapy, including PET instrumenta... This brief review summarizes the major applications of artificial intelligence (AI), in particular deep learning approaches, in molecular imaging and radiation therapy research. To this end, the applications of artificial intelligence in five generic fields of molecular imaging and radiation therapy, including PET instrumentation design, PET image reconstruction quantification and segmentation, image denoising (low-dose imaging), radiation dosimetry and computer-aided diagnosis, and outcome prediction are discussed. This review sets out to cover briefly the fundamental concepts of AI and deep learning followed by a presentation of seminal achievements and the challenges facing their adoption in clinical setting. read more read less

Topics:

Applications of artificial intelligence (57%)57% related to the paper
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70 Citations
open accessOpen access Journal Article DOI: 10.1186/S41824-017-0006-Y
Skeletal standardized uptake values obtained by quantitative SPECT/CT as an osteoblastic biomarker for the discrimination of active bone metastasis in prostate cancer.
Ichiei Kuji1, Tomohiko Yamane1, Akira Seto1, Yota Yasumizu1, Suguru Shirotake1, Masafumi Oyama1

Abstract:

To investigate the improvement of prognostication of active bone metastatic burden by discriminating bone metastases from degenerative changes in hot foci, using skeletal standardized uptake values (SUVs) by quantitative bone single photon emission tomography/computed tomography (SPECT/CT) in patients with prostate cancer. We... To investigate the improvement of prognostication of active bone metastatic burden by discriminating bone metastases from degenerative changes in hot foci, using skeletal standardized uptake values (SUVs) by quantitative bone single photon emission tomography/computed tomography (SPECT/CT) in patients with prostate cancer. We investigated 170 patients with prostate cancer who underwent skeletal quantitative SPECT/CT using 99mTc-methylene-diphosphonate (MDP), through conjugate gradient reconstruction with tissue zoning, attenuation, and scatter corrections applied, called as CGZAS reconstruction, in a retrospective cohort study. The maximum, peak, and average SUVs (SUVmax, SUVpeak, and SUVave, respectively) were obtained for visually normal thoracic (T; n = 100) and lumbar (L; n = 140) vertebral bodies as controls, as well as for bone metastases (n = 126) and degenerative changes (n = 114) as hot foci. They were also correlated with age, body-weight, height, biochemistry data, and extent of disease (EOD). Discrimination accuracy of the SUVs for bone metastases in hot foci was evaluated by a patient-based and lesion-based receiver-operator characteristic curve (ROC) analysis. The skeletal SUVmax was 7.58 ± 2.42 for T, 8.12 ± 12.24 for L, 16.73 ± 6.74 for degenerative changes, and 40.90 ± 33.46 for bone metastases. The SUVs of the bone metastasis group were significantly (p < 0.001) greater than of the other three groups. With disease extent, serum alkaline phosphatase and prostate specific antigen were increased, while SUVs for bone metastases were decreased in EOD grade 4. In ROC analyses for bone metastases by skeletal SUVs demonstrating the diagnostic accuracy of skeletal SUVs for discriminating bone metastasis from degenerative changes in hot foci, area under curves were 0.840, 0.817, and 0.845 in patient-based mode, and 0.932, 0.920, and 0.930 in lesion-based mode. The skeletal SUVs by 99mTc-MDP SPECT/CT for active bone metastases were greater than those for degenerative changes in patients with prostate cancer, with a feasible discrimination accuracy in the hot foci. Therefore, skeletal SUVs, especially SUVmax, in quantitative bone SPECT/CT may be helpful indices for the prognostication of bone metastatic burden, improving discrimination of active bone osteoblastic metastases in patients with prostate cancer from frequently coexisting degenerative changes. read more read less

Topics:

Bone metastasis (62%)62% related to the paper, Prostate cancer (51%)51% related to the paper
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56 Citations
open accessOpen access Journal Article DOI: 10.1186/S41824-018-0030-6
PET/MRI: a frontier in era of complementary hybrid imaging

Abstract:

With primitive approaches, the diagnosis and therapy were operated at the cellular, molecular, or even at the genetic level. As the diagnostic techniques are more concentrated towards molecular level, multi modal imaging becomes specifically essential. Multi-modal imaging has extensive applications in clinical as well as in p... With primitive approaches, the diagnosis and therapy were operated at the cellular, molecular, or even at the genetic level. As the diagnostic techniques are more concentrated towards molecular level, multi modal imaging becomes specifically essential. Multi-modal imaging has extensive applications in clinical as well as in pre-clinical studies. Positron Emission Tomography (PET) has flourished in the field of nuclear medicine, which has motivated it to fuse with Computed Tomography (CT) and Magnetic Resonance Imaging (MRI) for PET/CT and PET/MRI respectively. However, the challenges in PET/CT are due to the inability of simultaneous acquisition and reduced soft tissue contrast, which has led to the development of PET/MRI. Also, MRI offers the better soft tissue contrast over CT. Hence, fusion of PET and MRI results in combining structural information with functional image from PET. Yet, it has many technical challenges due to the interference between the modalities. Also, it must be resolved with various approaches for addressing the shortcomings of each system and improvise on the image quantification system. This review elaborates on the various challenges in the present PET/MRI system and the future directions of the hybrid modality. Also, the different data acquisition and analysis techniques of PET/MRI system are discussed with enhanced details on the software tools. read more read less

Topics:

Positron emission tomography (50%)50% related to the paper, Iterative reconstruction (50%)50% related to the paper
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43 Citations
open accessOpen access Journal Article DOI: 10.1186/S41824-019-0058-2
EANM procedural guidelines for myocardial perfusion scintigraphy using cardiac-centered gamma cameras

Abstract:

An increasing number of Nuclear Medicine sites in Europe are using cardiac-centered gamma cameras for myocardial perfusion scintigraphy (MPS). Three cardiac-centered gamma cameras are currently the most frequently used in Europe: the D-SPECT (Spectrum Dynamics), the Alcyone (Discovery NM 530c and Discovery NM/CT 570c; General... An increasing number of Nuclear Medicine sites in Europe are using cardiac-centered gamma cameras for myocardial perfusion scintigraphy (MPS). Three cardiac-centered gamma cameras are currently the most frequently used in Europe: the D-SPECT (Spectrum Dynamics), the Alcyone (Discovery NM 530c and Discovery NM/CT 570c; General Electric Medical Systems), and the IQ-SPECT (Siemens Healthcare). The increased myocardial count sensitivity of these three cardiac-centered systems has allowed for a decrease in the activities of radiopharmaceuticals injected to patients for myocardial perfusion imaging and, consequently, radiation exposure of patients. When setting up protocols for MPS, the overall objective should be to maintain high diagnostic accuracy of MPS, while injecting the lowest activities reasonably achievable to reduce the level of radiation exposure of patient and staff. These guidelines aim at providing recommendations for acquisition protocols and image interpretation using cardiac-centered cameras. As each imaging system has specific design and features for image acquisition and analysis, these guidelines have been separated into three sections for each gamma camera system. These recommendations have been written by the members of the Cardiovascular Committee of EANM and were based on their own experience with each of these systems and on the existing literature. read more read less

Topics:

Myocardial perfusion imaging (56%)56% related to the paper, Gamma camera (55%)55% related to the paper
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34 Citations
open accessOpen access Journal Article DOI: 10.1186/S41824-018-0035-1
Tc-HDP quantitative SPECT/CT in transthyretin cardiac amyloid and the development of a reference interval for myocardial uptake in the non-affected population.

Abstract:

99mTechnetium-HDP (HDP) bone scans differentiate transthyretin (ATTR) cardiac amyloid from other infiltrative myocardial diseases. These scans are not quantitative and are assessed by comparing myocardial uptake to bone. This study examined whether quantitative HDP SPECT/CT can discriminate individuals with cardiac ATTR from ... 99mTechnetium-HDP (HDP) bone scans differentiate transthyretin (ATTR) cardiac amyloid from other infiltrative myocardial diseases. These scans are not quantitative and are assessed by comparing myocardial uptake to bone. This study examined whether quantitative HDP SPECT/CT can discriminate individuals with cardiac ATTR from the population without this disease. HDP thoracic xSPECT/CT QUANT (xQUANT) was performed in 29 patients: ATTR cardiac amyloid (n = 6); AL cardiac amyloid (n = 1); other infiltrative myocardial disease (n = 4); no known infiltrative cardiac disease (n = 18). SUVmax measured within volumes of interest for whole heart, ascending aorta blood pool, and specific bones. HDP myocardial uptake calculated as whole heart minus blood pool. The cardiac ATTR group had greater HDP myocardial uptake than those with no known infiltrative disease (p = 0.002). AL and other myocardial diseases had uptake indistinguishable from the group with no known infiltrative cardiac disease. The SUVmaxima were sufficiently similar between individuals without cardiac ATTR that a 99% reference interval for HDP uptake could be calculated, providing an upper limit cut point of SUVmax 1.2. Individuals with cardiac ATTR had SUVmax well above this cut point. Quantitative SPECT/CT can measure HDP myocardial uptake in individuals with normal hearts and those with cardiac ATTR without recourse to comparison with bone. It enables calculation of a reference interval for HDP myocardial uptake in the population without ATTR cardiac amyloid. Using this reference interval single individuals with cardiac ATTR can be accurately discriminated from the non-affected population. This technique uses a NIST traceable calibration source, potentially allowing development of multicentre clinical decision limits. Its role in disease management warrants further assessment. read more read less

Topics:

Population (52%)52% related to the paper
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29 Citations
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Frequently asked questions

1. Can I write European Journal of Hybrid Imaging in LaTeX?

Absolutely not! Our tool has been designed to help you focus on writing. You can write your entire paper as per the European Journal of Hybrid Imaging guidelines and auto format it.

2. Do you follow the European Journal of Hybrid Imaging guidelines?

Yes, the template is compliant with the European Journal of Hybrid Imaging guidelines. Our experts at SciSpace ensure that. If there are any changes to the journal's guidelines, we'll change our algorithm accordingly.

3. Can I cite my article in multiple styles in European Journal of Hybrid Imaging?

Of course! We support all the top citation styles, such as APA style, MLA style, Vancouver style, Harvard style, and Chicago style. For example, when you write your paper and hit autoformat, our system will automatically update your article as per the European Journal of Hybrid Imaging citation style.

4. Can I use the European Journal of Hybrid Imaging templates for free?

Sign up for our free trial, and you'll be able to use all our features for seven days. You'll see how helpful they are and how inexpensive they are compared to other options, Especially for European Journal of Hybrid Imaging.

5. Can I use a manuscript in European Journal of Hybrid Imaging that I have written in MS Word?

Yes. You can choose the right template, copy-paste the contents from the word document, and click on auto-format. Once you're done, you'll have a publish-ready paper European Journal of Hybrid Imaging that you can download at the end.

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SciSpace's European Journal of Hybrid Imaging is currently available as an online tool. We're developing a desktop version, too. You can request (or upvote) any features that you think would be helpful for you and other researchers in the "feature request" section of your account once you've signed up with us.

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12. Is European Journal of Hybrid Imaging's impact factor high enough that I should try publishing my article there?

To be honest, the answer is no. The impact factor is one of the many elements that determine the quality of a journal. Few of these factors include review board, rejection rates, frequency of inclusion in indexes, and Eigenfactor. You need to assess all these factors before you make your final call.

13. What is Sherpa RoMEO Archiving Policy for European Journal of Hybrid Imaging?

SHERPA/RoMEO Database

We extracted this data from Sherpa Romeo to help researchers understand the access level of this journal in accordance with the Sherpa Romeo Archiving Policy for European Journal of Hybrid Imaging. The table below indicates the level of access a journal has as per Sherpa Romeo's archiving policy.

RoMEO Colour Archiving policy
Green Can archive pre-print and post-print or publisher's version/PDF
Blue Can archive post-print (ie final draft post-refereeing) or publisher's version/PDF
Yellow Can archive pre-print (ie pre-refereeing)
White Archiving not formally supported
FYI:
  1. Pre-prints as being the version of the paper before peer review and
  2. Post-prints as being the version of the paper after peer-review, with revisions having been made.

14. What are the most common citation types In European Journal of Hybrid Imaging?

The 5 most common citation types in order of usage for European Journal of Hybrid Imaging are:.

S. No. Citation Style Type
1. Author Year
2. Numbered
3. Numbered (Superscripted)
4. Author Year (Cited Pages)
5. Footnote

15. How do I submit my article to the European Journal of Hybrid Imaging?

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16. Can I download European Journal of Hybrid Imaging in Endnote format?

Yes, SciSpace provides this functionality. After signing up, you would need to import your existing references from Word or Bib file to SciSpace. Then SciSpace would allow you to download your references in European Journal of Hybrid Imaging Endnote style according to Elsevier guidelines.

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