大池干井构造带是川东高陡构造带之一。
The Dachigan structural zone is one of the steep structural zones in Eastern Sichuan Basin.
目的:探讨腰大池穿刺体外引流的护理方法。
Objective: To explore methods of nursing care in the puncture and external drainage of lumbar cistern.
结果所有患者经持续腰大池引流治疗后均获痊愈。
The condition of wound healing was observed. Results All patients were cured by CLCD.
目的总结腰大池置管引流在脑肿瘤切除术中的辅助作用。
Objective To summarize the auxiliary role of lumbar cistern drainage in brain tumor resection.
方法分析46例脑肿瘤切除术中行腰大池置管脑脊液引流应用效果。
Methods the data of 46 cases undergoing brain tumor resection combined with lumbar cistern drainage were analyzed to clarify the importance of the drainage.
财产最醒目的特征之一是43 楼上的25m激烈的无限大池。
One of the property's most striking features is the 25m heated infinity pool on the 43rd floor.
目的探讨颅内压控制下持续腰大池引流对蛛网膜下腔出血的治疗效果。
Objective To study the clinical effects of treating traumatic subarachnoid hemorrhage by lumbar subarachnoid continuous drainage under controlling intracranial pressure.
目的探讨持续腰大池脑脊液引流在创伤性蛛网膜下腔出血治疗中的疗效。
To investigate the effect of continuous lumbar drainage of cerebrospinal fluid(CLDCF) on the traumatic subarachnoid hemorrhage.
目的探讨开颅术后辅助腰大池持续引流治疗重型颅脑损伤的机制和效果。
Objective to discuss the mechanism and effect of treatment of drainage subarachnoid lumbar space continuously with severe craniocerebral trauma after craniotomy.
目的探讨早期腰大池脑脊液持续外引流对外伤性蛛网膜下腔出血的治疗作用。
Objective To study the effect of early continuing drainage of cerebrospinal fluid(CSF) from lumbar pool for treating traumatic subarachnoid hemorrhage(TSAH).
目的观察腰大池脑脊液持续引流治疗对蛛网膜下腔出血(SAH)的预后影响。
Objective To study the effects of continous lumbar drainage of cerebrospinal fluid in patients with subarachnoid hemorrhage(SAH)on the prognosis.
本病需与后颅窝蛛网膜囊肿、囊性新生物和变异的巨大枕大池以及重度小脑发育不全鉴别。
This disease should be differentiated from variation of the large cisterna magna arachnoid cyst of the posterior forssa cystic neoplasm and severe hypoplasia of the cerebellum.
大池干井构造带的形成不仅在石炭系内形成了众多的裂缝,而且使背斜核部的孔隙度增高。
The formation of Dachigan steep structural zone not only generates many fissures in Upper Carboniferous, but also makes the porosity of Upper Carboniferous higher in the core of these anticlines.
孩子舍不得天鹅,不住地向大池回头望,直到梅花形排列的树木在拐角处遮住了他的视线为止。
The son, regretting the swans, turned his head back toward the basin until a corner of the quincunxes concealed it from him.
在默认情况下,系统并不为大页面物理内存池分配任何内存。
By default, the system does not allocate any memory to the large page physical memory pool.
新的公司经常被迫为职工的健康保险花更多钱,因为它们的“风险池”远远比不上大企业。
New firms often have to pay more for their health care because they have smaller “risk pools” than larger companies.
如果缓冲池大到足以在内存中保存所需数据,就会发生较少磁盘活动。
If the buffer pool is large enough to keep the required data in memory, less disk activity will occur.
由于不同的内部存储模型和潜在的巨大对象(大到2gb),这里没有缓冲池。
Due to the different internal storage model and the potentially huge objects (up to 2gb), no buffer pool is involved here.
在具有大缓冲池的环境下,也可能需要配置较多的页清除程序。
Environments with large buffer pools may also require more page cleaners to be configured.
例如,假设由于测试系统上的内存约束,您无法获得大型的缓冲池,并且希望将大小配置得相同,实际上却不是真正有这么大。
For example, say that you cannot afford to have large buffer pools due to memory constraints on the test system and would like to configure the size the same without actually having them in reality.
例如,股票的交易所价格开始下跌时,一个高频交易者可能提交一个大卖单给资金暗池从而锁定当时的高价。
An HFT might, for instance, lock in a high price by submitting a large sell order to a dark pool just as the exchange price of a share begins to fall.
从剩下的股票中,挑选出那些目标价格得到更新但现在的市场情况已经与当时建立股票池式的情况差异非常大了的股票。
From the remaining stocks, throw out those target-price updates and initial stock picks made when the character of the stock market was very different from the current market.
缓冲池应该大到足以在内存中保留所需的数据,以便减少硬盘驱动器的活动。
The buffer pool should be large enough to keep the required data in memory so that hard disk drive activity can be reduced.
假设有一个针对非常大的表运行的查询,它使用同一个缓冲池并且需要读取比总的缓存区大小还多的页。
You might also have a query that runs against a very large table that USES the same buffer pool and involves reading more pages than the total buffer size.
假设有一个针对非常大的表运行的查询,它使用同一个缓冲池并且需要读取比总的缓存区大小还多的页。
You might also have a query that runs against a very large table that USES the same buffer pool and involves reading more pages than the total buffer size.
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