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来源:职称驿站所属分类:教育技术论文 发布时间:2015-09-05浏览:61次
Cover Letter指的是投稿信,应该简述所投稿件的核心内容、主要发现和意义,拟投期刊,对稿件处理有无特殊要求等(如“not to review” list)。另外,请附上主要作者的中文姓名、通讯地址、电话、传真和e-mail地址。此外有的杂志要求推荐几位审稿人及其联系方式。驿站小编为您提供了几篇参考例文,希望对您有所帮助。
(一)
Date: Sep 15, 2003
Dear Editors:
On behalf of my co-authors, I am submitting the enclosed material “ TITLE ” for possible publication in JOURNAL.
We certify that we have participated sufficiently in the work to take public responsibility for the appropriateness of the experimental design and method, and the collection, analysis, and interpretation of the data.
We have reviewed the final version of the manuscript and approve it for publication. To the best of our knowledge and belief, this manuscript has not been published in whole or in part nor is it being considered for publication elsewhere.
Best Regards.
Yours Sincerely,
NAME,ADRESS,EMAIL,FAX
(二)
Dear Dr Regino Perez-Polo:
Enclosed are a manuscript by su jian, yang kun, chen zhihua.Su jian titled“Hypothermia after Acute Ischemic Stroke
”.It is submitted to be considered for publication as a“review" in your journal.This paper is~?Neither the entire paper nor any part of its content has been published or has been accepted elsewhere .It is not being submitted to any other journal.
We believe the paper may be of particular interest to the readers of your journal.
Correspondence and phone calls about the paper should be directed to Su jian at the following address,phone and fax number,and e-mail address:
Su jian
Institute:,
Adress:
Tel:
Fax:
E-mail:
Thanks very much for your attention to our paper.
Sincerely yours,
Su jian
(三)
Dear Editor,
We would like to submit the enclosed manuscript entitled "GDNF Acutely Modulates Neuronal Excitability and A-type Potassium Channels in Midbrain Dopaminergic Neurons", which we wish to be considered for publication in Nature Neuroscience.
GDNF has long been thought to be a potent neurotrophic factor for the survival of midbrain dopaminergic neurons, which are degenerated in Parkinson’s disease. In this paper, we report an unexpected, acute effect of GDNF on A-type potassium channels, leading to a potentiation of neuronal excitability, in the dopaminergic neurons in culture as well as in adult brain slices. Further, we show that GDNF regulates the K+ channels through a mechanism that involves activation of MAP kinase. Thus, this study has revealed, for the first time, an acute modulation of ion channels by GDNF. Our findings challenge the classic view of GDNF as a long-term survival factor for midbrain dopaminergic neurons, and suggest that the normal function of GDNF is to regulate neuronal excitability, and consequently dopamine release. These results may also have implications in the treatment of Parkinson’s disease.
Due to a direct competition and conflict of interest, we request that Drs. XXX of Harvard Univ., and YY of Yale Univ. not be considered as reviewers. With thanks for your consideration, I am
Sincerely yours,
(四)
Dear **.
We would like to submit the enclosed manuscript entitled " *** ", which we wish to be considered for publication in **journal.
We believe that two aspects of this manuscript will make it interesting to general readers of **journal. First, ***. Second, ***. Further, ***.
Thank you very much your considering our manuscript for potential publication. I'm looking forward to hearing from you soon.
Best wishes.
(五)
To: SOLA Chief Editor
Division of Geoenvironmental Sciences
University of Tsukuba
Tsukuba 305-8572, JAPAN
E-Mail: sola@sakura.cc.tsukuba.ac.jp
Dear Sirs,
I am sending herewith a copy of the manuscript, which I would like to submit to SOLA, the Electronic Journal of the Meteorological Society of Japan.
The paper is entitled:
Energy Spectrum Proportional to the Squared Phase Speed of
Rossby Modes in the General Circulation of the Atmosphere
by H. L. Tanaka, Yasushi Watarai, and Takahiro Kanda.
Copy of the Abstract:
In this study, energy spectrum of the large-scale atmospheric motions is examined in the framework of the 3D normal mode decomposition. The horizontal scale of disturbance is measured by the phase speed of a Rossby mode c. According to the analysis result for the barotropic component of the atmosphere, we obtain a characteristic energy spectrum with distinct slopes for the turbulence and wave regimes separated by the spherical Rhines speed. In order to explain the observational finding that the energy spectrum is proportional to c^2, we put forward a hypothesis based on the criterion of Rossby wave breaking such that the local meridional gradient of potential vorticity becomes negative, dq/dy < 0, somewhere in the domain. With a constant m describing a total mass of the atmosphere for unit area, we have shown that the barotropic energy spectrum of the general circulation E can be represented as E=mc^2.
Corresponding Author:
Dr. Hiroshi L. Tanaka
Division of Geoenvironmental Sciences
University of Tsukuba
Tsukuba 305-8572, JAPAN
Tel: +81-29-853-4502 +81-29-853-4502
Fax: +81-29-853-6879
E-Mail: tanaka@sakura.cc.tsukuba.ac.jp
I hereby certify that this paper consists of original, unpublished work which is not under consideration for publication elsewhere.
Desired Editors in Charge:
Kimoto, Masahide University of Tokyo
Mak, Mankin University of Illinois
Five Potential Reviewers:
Name-1, e-mail address-1
Name-2, e-mail address-2
Name-3, e-mail address-3
Name-4, e-mail address-4
Name-5, e-mail address-5
The original manuscript and figures will be transferred, following the instruction by the Editorial Committee when the paper is accepted. I hope your favorable consideration for publication to SOLA.
Sincerely,
Hiroshi L. Tanaka
Attachment: PDF file of the manuscript.
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