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6篇 您的检索式:作者名="D.Burton"
    题名 作者 年代 出处 被引量
1Lower functional gastrointestinal disorders: evidence of abnormal colonic transit in a 287 patient cohort显示文摘N.Manabe B. S.Wong M.Camilleri D.Burton S.Mckinzie A. R.Zinsmeister 2010Neurogastroenterology & Motility2010,,3:1
2The role of microglia versus peripheral macrophages in maladaptive plasticity after nerve injury显示文摘Microglia and macrophages in the development of maladaptive plastic changes after peripheral nerve injury:Microglia and macrophages encompass the innate immune response to injury in the central and peripheral nervous systems,respectively,and are intimately involved in the pathogenesis of maladaptive changes(Tsuda,2019).These dynamic cells can influence neuronal activity in active and quiescent states.Conflicting findings argue that peripheral macrophages facilitate the development of nerve injury-induced neuropathic pain,as opposed to central microglia(Lopes et al.,2017;Yu et al.,2020).Thomas A.Szabo-Pardi Nilesh M.Agalave Michael D.Burton 2021Neural Regeneration Research2021,16,6:1
3Randomized pharmacodynamic and pharmacogenetic trial of dronabinol effects on colon transit in irritable bowel syndrome‐diarrhea显示文摘B. S.Wong M.Camilleri D.Eckert P.Carlson M.Ryks D.Burton A. R.Zinsmeister 2012Neurogastroenterology & Motility2012,,4:1
4整地和土壤对火炬松人工林生长的影响显示文摘在西部海湾沿海平原,对七种整地处理和五类土壤、施肥或不施肥的山地火炬松人工林的生产力作了试验。栽后12年,砍伐—焚烧—耙耕和剪裁—堆行—耙耕处理的,普遍获得了最大的断面积(每英亩112平方英尺),但砍伐—焚烧—耙耕处理的生产木材最多(每英亩2109立方英尺)。在砍伐和焚烧之后增加耙耕处理的,比仅只砍伐—焚烧处理的每英亩增加了394立方英尺的产量。林下喷洒除草剂和剪截—堆行的产量最低。粉砂土、慢渗透粘土和极慢渗透粘土的断面积较高(每英亩105平方英尺)。其中,粉砂土和慢渗透粘土的材积生长量较高(每英亩为1878立方英尺)。产量最低的立地为砾质底土。磷肥一般不影响火炬松的产量。James D.Haywood James D.Burton 李果明 1991湖南林业科技1991,18,3:1
5A randomized controlled trial of a probiotic combination VSL# 3 and placebo in irritable bowel syndrome with bloating显示文摘H. J.Kim M. I.Vazquez Roque M.Camilleri D.Stephens D. D.Burton K.Baxter G.Thomforde A. R.Zinsmeister 2005Neurogastroenterology & Motility2005,,5:1
6Utilizing multiphoton imaging and integrative clearing to reveal sex differences in neuroimmune interactions after nerve injury显示文摘With the constant development of multiphoton microscopy,our ability to observe complex and dynamic biological processes deeper within living tissue,is steadily improving.Researchers use multiphoton microscopy,because experiments can be conducted with little to no invasiveness or tissue damage over a long period of time with no photodamage(Mancuso et al.,2009).This allows for the introduction of tissue into the context of a three-dimensional 3D environment in which visualization of cellular activation and interaction is viable.By circumventing a distorted reconstruction with limited z-stacks,multiphoton imaging provides enhanced spatiotemporal resolution.Zachary W.Castillo Michael D.Burton 2022Neural Regeneration Research2022,17,11:0
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