1,741,420 research outputs found
DZ-Source Converter: A Duality Inspiration of Z-Source Converter for Current-Source High-Conversion Ratio Applications
DZ-Source Converter: A Duality Inspiration of Z-Source Converter for Current-Source High-Conversion Ratio Application
Table_1_The CX-DZ-II intelligent electronic stimulator for neck pain caused by cervical spondylosis: A two-center, randomized, controlled, and non-inferiority trial.DOCX
BackgroundElectroacupuncture (EA) has been commonly used for the management of neck pain caused by cervical spondylosis (NPCS); however, current electrical instruments have limitations on intelligence, digitalization, and visualization. The intelligent electronic stimulator (CX-DZ-II) is a digital device with an evidence-based diagnosis and treatment system. This study aimed to investigate the efficacy and safety of the CX-DZ-II intelligent EA instrument for NPCS.Materials and MethodsA total of 164 patients with NPCS [mean age (SD), 49.48 (13.47) years] were randomly assigned to receive 8 sessions (over 2 weeks) EA of the intelligent electronic stimulator (CX-DZ-II) or the regular electronic stimulator (SDZ-II). The primary outcome was the change of the visual analog scale (VAS) from baseline to 2 weeks of treatment. Secondary outcomes included mean scores of the VAS after each treatment in 1 week, responder rate, drug-usage rate of non-steroidal antipyretic analgesics (NSAAs), the occurrence rate of adverse events (AEs), proportions of apparatus with defect during treatment, and excellent rate of apparatus.ResultsThe intelligent electronic stimulator (CX-DZ-II) was non-inferior to the regular electronic stimulator (SDZ-II) for changes from baseline in the VAS [3.36 vs. 3.23, with a difference of 0.17 (95% CI, −0.36 to 0.69), P ConclusionThe intelligent electronic stimulator (CX-DZ-II) was non-inferior to the regular electronic stimulator (SDZ-II) in relieving neck pain. The intelligent electronic stimulator (CX-DZ-II) is a promising non-inferior alternative instrument for NPCS.Clinical Trial Registration[https://clinicaltrials.gov/], identifier [NCT030 05301].</p
Genetic contribution to DZ twinning
The genetic contribution to dizygotic (DZ) twinning was investigated using 6,596 twin pairs from the Australian Twin Registry who provided information on other twins in their families. Responses were classified by the zygosity (DZ; monozygotic [MZ]) of the proband twins and by the relationship and zygosity of related twins. MZ probands and MZ twins reported by DZ probands were used as controls and assumed to be independent of any genetic influence. Significantly higher proportions of DZ twins were found in the families of DZ probands compared to the families of MZ probands for the following relationships: sibs of probands, proband mothers, offspring of sisters of proband mothers, and offspring of female probands (P < 0.001 in each case). The latter 2 relationships were used to estimate risk ratios of 1.7 for sisters of mothers of DZ twins, and 2.5 for offspring of female DZ twins. No greater tendency to DZ twinning in close relatives was found in mothers who bore DZ twins at a younger age than at an older age
利用DZ原料研制高温窑具涂料
利用锆英石经等离子处理而得的DZ原料,研制出一种由ZrO_2、SiO_2和莫来石晶体组成的DZ涂料,用作窑具的保护层。由于这种涂料具有高温晶相稳定,导热系数较大,热膨胀系数较小,抗热震性强等优点,对提高窑具的使用寿命取得了显著的效果
dZ-Cluster tilting subcategories of singularity categories
For an exact category E with enough projectives and with a dZ-cluster tilting subcategory, we show that the singularity category of E admits a dZ-cluster tilting subcategory. To do this we introduce cluster tilting subcategories of left triangulated categories, and we show that there is a correspondence between cluster tilting subcategories of E and E. We also deduce that the Gorenstein projectives of E admit a dZ-cluster tilting subcategory under some assumptions. Finally, we compute the dZ-cluster tilting subcategory of the singularity category for a finite-dimensional algebra which is not Iwanaga-Gorenstein
Da-Dz
DA-DZ
Catalogus nominalis (-)
Da-Dz (Littera. D.) ( - )
Cover ( - )
Titelseite ( - )
Da (9)
Dab (9)
Dac (10)
Dae (14)
Dah (20)
Dai (26)
Dal (30)
Dam (49)
Dan (84)
Dap (148)
Dar (149)
Das (174)
Dat (195)
Dau/Dav (202)
Daw (230)
Day (230)
Daz (231)
De (232)
Dea (232)
Deb (233)
Dec (235)
Ded (272)
Dee (278)
Def (279)
Deg (279)
Deh (284)
Dei (292)
Dek (300)
Del (302)
Dem (326)
Den (380)
Deo (396)
Dep (396)
Der (400)
Des (414)
Det (444)
Deu/Dev (446)
Dew (465)
Dey (469)
Dex (470)
Dey (474)
Dez (478)
Dh (485)
Di (490)
Dia (490)
Dib (496)
Dic (500)
Did (517)
Die (528)
Dif (602)
Dig (606)
Dil (608)
Dim (624)
Din (626)
Dio (652)
Dip (712)
Dir (712)
Dis (716)
Dit (721)
Diu/Div (734)
Dix (737)
Dl (740)
Dm (742)
Do (742)
Dob (742)
Doc (752)
Dod (753)
Doe (768)
Dog (814)
Doh (820)
Doi (823)
Dol (824)
Dom (839)
Don (852)
Doo (913)
Dop (914)
Dor (915)
Dos (977)
Dot (979)
Dou/Dov (979)
Dow (1002)
Doy (1002)
Doz (1003)
Dr (1003)
Dra (1003)
Dre (1024)
Dri (1087)
Dro (1092)
Dru (1097c)
Dry (1117)
Ds (1121)
Du (1122)
Dua (1122)
Dub (1125)
Duc (1134)
Dud (1153)
Due (1156)
Duf (1158)
Dug (1162)
Duh (1165)
Dui (1168)
Duk (1171)
Dul (1173)
Dum (1183)
Dun (1192)
Dup (1212)
Dur (1222)
Dus (1279)
Dut (1284)
Duv (1284)
Duw (1290)
Duy (1291)
Dv (1292)
Dw (1293)
Dy (1294)
Dz (1303
DZ Interset
DZ Interset is a means of converting among various tag sets in natural language processing. The core idea is similar to interlingua-based machine translation. DZ Interset defines a set of features that are encoded by the various tag sets. The set of features should be as universal as possible. It does not need to encode everything that is encoded by any tag set but it should encode all information that people may want to access and/or port from one tag set to another.
New tag sets are attached by writing a driver for them. Once the driver is ready, you can easily convert tags between the new set and any other set for which you also have a driver. This reusability is an obvious advantage over writing a targeted conversion procedure each time you need to convert between a particular pair of tag sets
DZ-related negative BOLD responses.
The figure shows mean BOLD responses in the anterior midcingulate cortex [0, 18, 21] for three subjects with DZ plasma concentration > 0.1 mg/L during the 2-back, 1-back, and 0-back tasks. The BOLD responses are normalized to baseline defined as the fixation period immediately before the 2-back task. The figure shows that the BOLD responses are negative with respect to baseline during the DZ session and positive during the placebo session.</p
- …
