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2篇 您的检索式:作者名="Brian Isaacson"
    题名 作者 年代 出处 被引量
1Restless legs syndrome following the use of ziprasidone: a case report显示文摘Restless legs syndrome(RLS)is a common sleep-related movement disorder characterised by an uncomfortable urge to move the legs that occurs during periods of inactivity.Although there have been many case reports on antipsychotic-induced RLS,ziprasidone has never been reported as a cause of RLS.We present a case of a female patient with schizophrenia who presented with symptoms of RLS following the administration of high doses of ziprasidone added to quetiapine and valproate.The patient’s symptoms of RLS occurred following the administration and titration of ziprasidone to 160 mg,and were relieved upon reducing the dose to 120 mg/day.Other potential causative medications and differential diagnoses that could have caused similar symptoms were excluded.Clinicians should be aware of the potential for ziprasidone-induced RLS.Dopamine and serotonin interaction could be the mechanism underlying ziprasidone-induced RLS.Cuizhen Zhu Ran Bi Yuliang Hu Hui Zhou Daomin Zhu Brian Isaacson Qingwei Li Yezhe Lin 2020General Psychiatry2020,33,2:3
2Opportunities to search for extraterrestrial intelligence with the FAST显示文摘The discovery of ubiquitous habitable extrasolar planets,combined with revolutionary advances in instrumentation and observational capabilities,has ushered in a renaissance in the search for extraterrestrial intelligence(SETI).Large scale SETI activities are now underway at numerous international facilities.The Five-hundred-meter Aperture Spherical radio Telescope(FAST)is the largest single-aperture radio telescope in the world,and is well positioned to conduct sensitive searches for radio emission indicative of exo-intelligence.SETI is one of the five key science goals specified in the original FAST project plan.A collaboration with the Breakthrough Listen Initiative was initiated in 2016 with a joint statement signed both by Dr.Jun Yan,the then director of National Astronomical Observatories,Chinese Academy of Sciences(NAOC),and Dr.Peter Worden,Chairman of the Breakthrough Prize Foundation.In this paper,we highlight some of the unique features of FAST that will allow for novel SETI observations.We identify and describe three different signal types indicative of a technological source,namely,narrow band,wide-band artificially dispersed and modulated signals.Here,we propose observations with FAST to achieve sensitivities never before explored.For nearby exoplanets,such as TESS targets,FAST will be sensitive to an EIRP of 1.9×1011 W,well within the reach of current human technology.For the Andromeda Galaxy,FAST will be able to detect any Kardashev type II or more advanced civilization there.Di Li Vishal Gajjar Pei Wang Andrew Siemion Zhi-Song Zhang Hai-Yan Zhang You-Ling Yue Yan Zhu Cheng-Jin Jin Shi-Yu Li Sabrina Berger Bryan Brzycki Jeff Cobb Steve Croft Daniel Czech David DeBoer Julia DeMarines Jamie Drew J.Emilio Enriquez Nectaria Gizani Eric J.Korpela Howard Isaacson Matthew Lebofsky Brian Lacki David H.E.MacMahon Morgan Nanez Chen-Hui Niu Xin Pei Danny C.Price Dan Werthimer Pete Worden Yunfan Gerry Zhang Tong-Jie Zhang FAST Collaboration 2020Research in Astronomy and Astrophysics2020,20,5:1
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