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普通检索

POST
/show/search/getArticleInfo

接口描述

普通检索

请求参数

参数名
类型
描述
必填
info
string
检索框输入内容
必填
page_now
int
当前页
必填
page_num
int
当前页数量
必填
original
int
是否存在PDF原文,1为存在,0为不存在
必填
type
array
文献类型ID数组
必填
year_start
int
发表起始年份
必填
year_end
int
发表结束年份
必填
journal
array
期刊代码列表
必填

响应参数

参数名
类型
描述
必填
code
int
返回结果代码,1001研值不足,1002研值不足且非会员,1003研值不足且非专业翻译高级用户,1013研值充足但非专业翻译高级用户,1004研值不足且非专业药学库高级用户,1005研值不足且非专业绘图高级用户,2001非会员,3001非专业翻译高级用户,3002非专业药学库高级用户,3003非专业绘图高级用户,200请求成功,300登录失败,301用户封禁,302用户封禁,500请求失败
必填
msg
string
描述
必填
data
array
返回对象数组
必填
article_id
string
文献ID
必填
author_info
array
返回作者信息对象数组
必填
author_name
string
作者名称
必填
author_id
string
作者ID
必填
published_info
object
出版信息对象
必填
page
string
必填
issue
string
必填
volume
string
必填
abstract_section
array
返回摘要对象数组
必填
chs_text
string
中文译文
必填
section_attr
int
段落属性,0为正文,1为标题,2为摘要
必填
eng_text
string
英语原文
必填
type_info
array
返回文献类型对象数组
必填
type_name
string
文献类型名称
必填
type_id
int
文献类型ID
必填
journal_info
object
期刊信息对象
必填
journal_code
string
期刊代码
必填
journal_name
string
期刊名称
必填
article_name
string
文献名称
必填
article_year
int
文献年份
必填
original_file
string
文献原文文件存储路径
必填
published_time
date
文献发表时间
必填
accepted_time
date
文献录用时间
必填
last_revised
date
文献最后返修完成时间
必填
received_time
date
文献投稿时间
必填
revise_time
date
文献信息人工创建/修订时间
必填
highlight_eng_text
array
英文摘要高亮单词数组
必填
highlight_chs_text
array
中文摘要高亮单词数组
必填
highlight_author_name
array
作者高亮单词数组
必填
highlight_article_name
array
文献标题高亮单词数组
必填
count
int
数据总数
必填
page_now
int
当前页
必填
page_num
int
当前页数量
必填
consuming
float
耗时(秒)
必填

说明 / 示例

{ "code": 200, "msg": "ok!", "data": [ { "last_revised": null, "article_doi": "10.1016/j.jvir.2012.04.001", "has_translated": 0, "article_id": "abs20190213224514214253842578", "published_time": "2012-07-01", "microsoft_id": null, "article_pmid": "22609287", "article_year": "2012", "article_language": "eng", "create_time": "2019-02-13T14:46:13.000Z", "upload_time": null, "received_time": "2011-11-01", "revise_time": null, "published_info": { "page": "953-961.e2", "issue": "7", "volume": "23" }, "article_url": null, "file_size": 2.89, "full_text": null, "article_creator": "未知", "pubmed_revise": "2019-10-08", "article_pmcid": "PMC3511867", "has_abstract": 1, "article_name": "Pulsed high-intensity-focused <em>US</em> and <em>tissue plasminogen activator</em> (TPA) versus TPA alone for thrombolysis", "published_time_precision": "M", "accepted_time": "2012-04-02", "journal_info": { "journal_code": "J001539", "journal_name": "Journal of Vascular and Interventional Radiology" }, "is_del": 0, "original_file": "/static/file/original-article/2012/abs201902132245142142538425786362.pdf", "author_info": [ { "author_name": "Nadine Abi-Jaoudeh", "author_id": "au20210424150830615468955510" }, { "author_name": "Briana McDowell", "author_id": "au20210424204957615318257204" } ], "abstract_section": [ { "chs_text": null, "section_attr": 1, "eng_text": "Pulsed high-intensity-focused US and tissue plasminogen activator (TPA) versus TPA alone for thrombolysis of occluded bypass graft in swine" }, { "chs_text": null, "section_attr": 1, "eng_text": "PURPOSE" }, { "chs_text": null, "section_attr": 2, "eng_text": "Prosthetic arteriovenous or arterial-arterial bypass grafts can thrombose and be resistant to revascularization. A thrombosed bypass graft model was created to evaluate the potential therapeutic enhancement and safety profile of pulsed high-intensity-focused ultrasound (pHIFU) on pharmaceutical thrombolysis." }, { "chs_text": null, "section_attr": 1, "eng_text": "MATERIALS AND METHODS" }, { "chs_text": null, "section_attr": 2, "eng_text": "In swine, a right carotid-carotid expanded polytetrafluoroethylene bypass graft was surgically constructed, containing a 40% stenosis at its distal end to induce graft thrombosis. The revascularization procedure was performed 7 days after surgery. After model development and dose response experiments (n = 11), two cohorts were studied: pHIFU with tissue plasminogen activator (TPA; n = 4) and sham pHIFU with TPA (n = 3). The experiments were identical in both groups except no energy was delivered in the sham pHIFU group. Serial angiograms were obtained in all cases. The area of graft opacified by contrast medium on angiograms was quantified with digital image processing software. A blinded reviewer calculated the change in the graft area opacified by contrast medium and expressed it as a percentage, representing percentage of thrombolysis." }, { "chs_text": null, "section_attr": 1, "eng_text": "RESULTS" }, { "chs_text": null, "section_attr": 2, "eng_text": "Combining pHIFU with 0.5 mg of TPA resulted in a 52% ± 4% increase in thrombolysis on angiograms obtained at 30 minutes, compared with a 9% ± 14% increase with sham pHIFU and 0.5 mg TPA (P = .003). Histopathologic examination demonstrated no differences between the groups." }, { "chs_text": null, "section_attr": 1, "eng_text": "CONCLUSIONS" }, { "chs_text": null, "section_attr": 2, "eng_text": "Thrombolysis of occluded bypass grafts was significantly increased when combining pHIFU and TPA versus sham pHIFU and TPA. These results suggest that application of pHIFU may augment thrombolysis with a reduced time and dose." } ], "type_info": [ { "type_name": "Journal Article", "type_id": 39 }, { "type_name": "Research Support, N.I.H., Intramural", "type_id": 61 } ], "highlight_eng_text": [ "US", "tissue plasminogen activator" ] } ], "count": 1, "page_now": 1, "page_num": 20 }