最美情侣中文字幕电影,在线麻豆精品传媒,在线网站高清黄,久久黄色视频

歡迎光臨散文網(wǎng) 會員登陸 & 注冊

【標(biāo)題速讀】【Sciadv】【2022年】【11月】

2023-05-31 23:23 作者:Rt_Cola  | 我要投稿

聲明:本專欄主要對生命科學(xué)領(lǐng)域的一些期刊文章標(biāo)題進(jìn)行翻譯,所有內(nèi)容均由本人手工整理翻譯。由于本人專業(yè)為生物分析相關(guān),其他領(lǐng)域如果出現(xiàn)翻譯錯誤請諒解。

Simulation of a hybrid silicon nanoantenna array on a magnetic field. Digital camera sensors use color filters to selectively capture certain color spectrums. Traditional color filters are separate from the photosensitive silicon that makes up the sensor, causing optical cross-talk which limits the minimum possible pixel size. Ho et al. designed a hybrid silicon-aluminum nanoantenna that would allow the filter and sensor to be close enough together to achieve sub-micron pixel dimensions. This design could replace the traditional dye-based filters in ultra-high pixel density camera sensors.

磁場中混合硅納米天線陣列的仿真。數(shù)碼相機(jī)傳感器使用濾色器來選擇性地捕捉某些色譜。 傳統(tǒng)的彩色濾光片與構(gòu)成傳感器的光敏硅分離,導(dǎo)致光學(xué)串?dāng)_,從而限制了可能的最小像素尺寸。 何等設(shè)計(jì)了一種混合硅鋁納米天線,可以讓過濾器和傳感器足夠靠近,以實(shí)現(xiàn)亞微米像素尺寸。 這種設(shè)計(jì)可以取代超高像素密度相機(jī)傳感器中傳統(tǒng)的基于染料的濾光片。
False color spectral image of PMMA/polystyrene films. Spectral imaging is an indispensable tool for the chemical and medical fields, but conventional infrared (IR) methods are too slow for evaluation of real-time processes. Using non-degenerate two-photon absorption (NTA), an emerging approach utilizing the photosensitive layer in a regular camera that detects IR light. Knez et al. introduce chirped-pulse NTA (CP-NTA). This spectral imaging technique allows for mid-infrared range (MIR) imaging in high-definition in under a second.

PMMA/聚苯乙烯薄膜的假彩色光譜圖像。 光譜成像是化學(xué)和醫(yī)學(xué)領(lǐng)域不可或缺的工具,但傳統(tǒng)的紅外(IR) 方法對于實(shí)時過程的評估來說速度太慢。使用非退化雙光子吸收(NTA),這是一種利用普通相機(jī)中的感光層檢測紅外光的新興方法。 克涅茲等人引入啁啾脈沖 NTA (CP-NTA)。 這種光譜成像技術(shù)允許在不到一秒的時間內(nèi)以高清方式進(jìn)行中紅外范圍 (MIR) 成像。
Deformation structure in an individual grain of a multi-principal element alloy. Cao et al. developed a mechanistic strategy for tuning mechanical behaviors of multi-principal element alloys by simultaneously tailoring grain texture and local chemical order. Using simulations at an atomistic level, the study found different characteristics of dislocation patterning and deformation microstructure evolution.

多主元素合金單個晶粒的變形結(jié)構(gòu)。曹等開發(fā)了一種機(jī)制策略,通過同時調(diào)整晶粒結(jié)構(gòu)和局部化學(xué)順序來調(diào)整多主元素合金的機(jī)械行為。 通過在原子水平上進(jìn)行模擬,該研究發(fā)現(xiàn)了位錯圖案化和變形微觀結(jié)構(gòu)演化的不同特征。
Optomechanical resonators are micro- or nanodevices powered and detected by optical forces. Highly sensitive, these devices detect molecular substances—such as polymers, proteins, and viruses—in vacuum, air, and liquid media. Asano et al. manufactured optomechanical probes consisting of two microbottles. They found that the device is not only capable of high molecular sensitivity in water, but also allows previously unreported free access to the target location. Further development could extend the twin-microbottle resonator’s use in viscous gel-like media and pioneer research towards ultrasensitive biochips and rheometers.

光機(jī)械諧振器是由光學(xué)力驅(qū)動和檢測的微型或納米設(shè)備。 這些設(shè)備高度靈敏,可檢測真空、空氣和液體介質(zhì)中的分子物質(zhì),例如聚合物、蛋白質(zhì)和病毒。 淺野等。 制造的由兩個微瓶組成的光機(jī)械探針。 他們發(fā)現(xiàn)該裝置不僅能夠在水中具有高分子敏感性,而且還允許以前未報(bào)告的自由進(jìn)入目標(biāo)位置。 進(jìn)一步的發(fā)展可以擴(kuò)大雙微瓶諧振器在粘性凝膠狀介質(zhì)中的應(yīng)用,并開創(chuàng)超靈敏生物芯片和流變儀的研究。

1.Different reference frames on different axes: Space and language in indigenous Amazonians.

不同軸上的不同參考框架:?亞馬遜土著人的空間和語言。

2.An insecticide target in mechanoreceptor neurons.

機(jī)械感受器神經(jīng)元中的一個殺蟲劑目標(biāo)。

3.Intronic enhancers of the human SNCA gene predominantly regulate its expression in brain in vivo.

人類SNCA基因的內(nèi)部增強(qiáng)子主要調(diào)節(jié)其在體內(nèi)大腦的表達(dá)。

4.Functional specialization of different PI3K isoforms for the control of neuronal architecture, synaptic plasticity, and cognition.

不同的PI3K異構(gòu)體在控制神經(jīng)元結(jié)構(gòu)、突觸可塑性和認(rèn)知方面的功能專業(yè)化。

5.Expression of expanded GGC repeats within NOTCH2NLC causes behavioral deficits and neurodegeneration in a mouse model of neuronal intranuclear inclusion disease.

在NOTCH2NLC內(nèi)表達(dá)擴(kuò)大的GGC重復(fù)序列會導(dǎo)致神經(jīng)元核內(nèi)包涵病小鼠模型的行為缺陷和神經(jīng)變性。

6.A broadly tuned network for affective body language in the macaque brain.

獼猴大腦中情感性肢體語言的廣泛調(diào)整網(wǎng)絡(luò)。

7.Extensive crystal fractionation of high-silica magmas revealed by K isotopes.

K同位素揭示的高硅巖漿的廣泛晶體分化。

8.Geological, multispectral, and meteorological imaging results from the Mars 2020 Perseverance rover in Jezero crater.

火星2020年毅力號探測器在杰澤羅火山口的地質(zhì)、多光譜和氣象成像結(jié)果。

9.Oyster reef restoration fails to recoup global historic ecosystem losses despite substantial biodiversity gain.

牡蠣礁的恢復(fù)未能挽回全球歷史上的生態(tài)系統(tǒng)損失,盡管生物多樣性得到了大量增加。

10.Alteration history of Séítah formation rocks inferred by PIXL x-ray fluorescence, x-ray diffraction, and multispectral imaging on Mars.

通過火星上的PIXL X射線熒光、X射線衍射和多光譜成像推斷Séítah地層巖石的改變歷史。

11.Emplacement of the Franklin large igneous province and initiation of the Sturtian Snowball Earth.

富蘭克林大火成巖帶的形成和Sturtian雪球地球的啟動。

12.Internal tsunamigenesis and ocean mixing driven by glacier calving in Antarctica.

南極洲冰川融化驅(qū)動的內(nèi)部海嘯發(fā)生和海洋混合。

13.Increased occurrences of early Indian Ocean Dipole under global warming.

在全球變暖的情況下,早期印度洋偶極的發(fā)生率增加。

14.Positive legacies of severe droughts in the Inner Mongolia grassland.

內(nèi)蒙古草原嚴(yán)重干旱的正面遺留問題。

15.Entangling free electrons and optical excitations.

糾纏的自由電子和光學(xué)激發(fā)。

16.Real-space imaging and control of chiral anomaly induced current at room temperature in topological Dirac semimetal.

拓?fù)涞依税虢饘偈覝叵率中援惓UT導(dǎo)電流的實(shí)空間成像和控制。

17.A tumor vasculature–based imaging biomarker for predicting response and survival in patients with lung cancer treated with checkpoint inhibitors.

一種基于腫瘤血管的成像生物標(biāo)志物,用于預(yù)測接受檢查點(diǎn)抑制劑治療的肺癌患者的反應(yīng)和生存。

18.Flow-induced “waltzing” red blood cells: Microstructural reorganization and the corresponding rheological response.

流動誘導(dǎo)的"華爾茲?"紅血球:?微結(jié)構(gòu)重組和相應(yīng)的流變學(xué)反應(yīng)。

19.Efficient catalyst screening using graph neural networks to predict strain effects on adsorption energy.

利用圖形神經(jīng)網(wǎng)絡(luò)預(yù)測應(yīng)變對吸附能量影響的高效催化劑篩選。

20.Salt-induced ductilization and strain-insensitive resistance of an intrinsically conducting polymer.

鹽誘導(dǎo)的管道化和本征導(dǎo)電聚合物的應(yīng)變敏感電阻。

21.A universal way to enrich the nanoparticle lattices with polychrome DNA origami “homologs”.

用多色DNA折紙?"同源物?"豐富納米粒子格子的通用方法。

22.Local thermoelectric response from a single Néel domain wall.

來自單個Néel域壁的局部熱電響應(yīng)。

23.Bifacial all-perovskite tandem solar cells.

雙面全過氧化物串聯(lián)太陽能電池。

24.Miniaturizing color-sensitive photodetectors via hybrid nanoantennas toward submicrometer dimensions.

通過混合納米天線使色敏光電探測器微型化,達(dá)到亞微米尺寸。

25.Eliminating interfacial O-involving degradation in Li-rich Mn-based cathodes for all-solid-state lithium batteries.

消除全固態(tài)鋰電池中富鋰錳基陰極的界面O-involving降解。

26.Strain-induced antipolar phase in hafnia stabilizes robust thin-film ferroelectricity.

鉿的應(yīng)變誘導(dǎo)反極性相穩(wěn)定了強(qiáng)大的薄膜鐵電性。

27.Rydberg polaritons in ReS2 crystals.

ReS2晶體中的雷德伯格極子.

28.An automated DNA computing platform for rapid etiological diagnostics.

用于快速病因診斷的自動化DNA計(jì)算平臺。

29.A solution to the biophysical fractionation of extracellular vesicles: Acoustic Nanoscale Separation via Wave-pillar Excitation Resonance (ANSWER).

細(xì)胞外囊泡的生物物理分餾的解決方案:通過波柱激發(fā)共振的聲學(xué)納米級分離(ANSWER)。

30.Classification of properties and their relation to chemical bonding: Essential steps toward the inverse design of functional materials.

特性的分類及其與化學(xué)鍵的關(guān)系:邁向功能材料逆向設(shè)計(jì)的必要步驟。

31.Multicatalysis protocol enables direct and versatile enantioselective reductive transformations of secondary amides.

多重催化協(xié)議使二級酰胺的直接和多功能的對映選擇性還原轉(zhuǎn)化。

32.Fully rubbery Schottky diode and integrated devices.

全橡膠的肖特基二極管和集成器件。

33.Parental mutations influence wild-type offspring via transcriptional adaptation.

親代突變通過轉(zhuǎn)錄適應(yīng)影響野生型后代。

34.Widespread hypertranscription in aggressive human cancers.

侵襲性人類癌癥中廣泛存在的超轉(zhuǎn)錄。

35.Host nucleases generate prespacers for primed adaptation in the E. coli type I-E CRISPR-Cas system.

宿主核酸酶在大腸桿菌I-E型CRISPR-Cas系統(tǒng)中產(chǎn)生引物適應(yīng)的預(yù)載體。

36.Structural and biochemical characteristics of mRNA nanoparticles determine anti–SARS-CoV-2 humoral and cellular immune responses.

mRNA納米顆粒的結(jié)構(gòu)和生化特性決定了抗SARS-CoV-2的體液和細(xì)胞免疫反應(yīng)。

37.Integration of 3D genome topology and local chromatin features uncovers enhancers underlying craniofacial-specific cartilage defects.

三維基因組拓?fù)浣Y(jié)構(gòu)和局部染色質(zhì)特征的整合發(fā)現(xiàn)了顱面特異性軟骨缺陷的增強(qiáng)器。

38.A deubiquitination module essential for Treg fitness in the tumor microenvironment.

腫瘤微環(huán)境中Treg健身所必需的去泛素化模塊。

39.Tolerogenic nanoparticles induce type II collagen–specific regulatory T cells and ameliorate osteoarthritis.

耐受性納米顆粒誘導(dǎo)II型膠原蛋白特異性調(diào)節(jié)性T細(xì)胞并改善骨關(guān)節(jié)炎。

40.Identification of the niche and mobilization mechanism for tissue-protective multipotential bone marrow ILC progenitors.

組織保護(hù)性多潛能骨髓ILC祖細(xì)胞的生態(tài)位和動員機(jī)制的確定。

41.Macrophage acetyl-CoA carboxylase regulates acute inflammation through control of glucose and lipid metabolism.

巨噬細(xì)胞乙酰CoA羧化酶通過控制葡萄糖和脂質(zhì)代謝調(diào)控急性炎癥。

42.The rapid evolution of flagellar ion selectivity in experimental populations of E. coli.

大腸桿菌實(shí)驗(yàn)種群中鞭毛離子選擇性的快速演變。

43.Control of Gαq signaling dynamics and GPCR cross-talk by GRKs.

遺傳基因庫對Gαq信號動態(tài)和GPCR交叉對話的控制。

44.TDP-43 safeguards the embryo genome from L1 retrotransposition.

TDP-43保障了胚胎基因組免受L1逆轉(zhuǎn)錄的影響。

45.A sublingual nanofiber vaccine to prevent urinary tract infections.

預(yù)防尿路感染的舌下型納米纖維疫苗.

46.Cytostatic hypothermia and its impact on glioblastoma and survival.

細(xì)胞靜止低溫及其對膠質(zhì)母細(xì)胞瘤和生存的影響。

47.MUC5B mobilizes and MUC5AC spatially aligns mucociliary transport on human airway epithelium.

MUC5B調(diào)動和MUC5AC在人類氣道上皮的粘液運(yùn)輸?shù)目臻g排列。

48.Reprogramming Müller glia to regenerate ganglion-like cells in adult mouse retina with developmental transcription factors.

用發(fā)育轉(zhuǎn)錄因子重新編程穆勒膠質(zhì)細(xì)胞以再生成年小鼠視網(wǎng)膜上的神經(jīng)節(jié)樣細(xì)胞。

49.Psychological distress and eustress in cancer and cancer treatment: Advances and perspectives.

癌癥和癌癥治療中的心理壓力和舒緩壓力:進(jìn)展和前景。

50.Hydrogel-guided strategies to stimulate an effective immune response for vaccine-based cancer immunotherapy.

水凝膠引導(dǎo)的策略,刺激有效的免疫反應(yīng),用于基于疫苗的癌癥免疫治療。

51.The free fatty acid–binding pocket is a conserved hallmark in pathogenic β-coronavirus spike proteins from SARS-CoV to Omicron.

游離脂肪酸結(jié)合袋是從SARS-CoV到Omicron的致病性β-冠狀病毒尖峰蛋白中的一個保守標(biāo)志。

52.Krüppel-like factor 4 regulates the cytolytic effector function of exhausted CD8 T cells.

Krüppel-like factor 4調(diào)節(jié)衰竭的CD8 T細(xì)胞的細(xì)胞溶解效應(yīng)器功能。

53.ZMP recruits and excludes Pol IV–mediated DNA methylation in a site-specific manner.

ZMP以位點(diǎn)特異性方式招募和排除Pol IV介導(dǎo)的DNA甲基化。

54.High-temperature adaptation of an OsNRT2.3 allele is thermoregulated by small RNAs.

OsNRT2.3等位基因的高溫適應(yīng)受小RNAs的熱調(diào)控。

55.Conformational changes in mitochondrial complex I of the thermophilic eukaryote Chaetomium thermophilum.

嗜熱真核生物Chaetomium thermophilum線粒體復(fù)合體I的構(gòu)型變化。

56.Successful targeting of PD-1/PD-L1 with chimeric antigen receptor-natural killer cells and nivolumab in a humanized mouse cancer model.

嵌合抗原受體-自然殺傷細(xì)胞和nivolumab在人源化小鼠癌癥模型中成功靶向PD-1/PD-L1。

57.XLID syndrome gene Med12 promotes Ig isotype switching through chromatin modification and enhancer RNA regulation.

XLID綜合征基因Med12通過染色質(zhì)修飾和增強(qiáng)子RNA調(diào)控促進(jìn)Ig同種型轉(zhuǎn)換。

58.Application of combined CRISPR screening for genetic and chemical-genetic interaction profiling in Mycobacterium tuberculosis.

應(yīng)用CRISPR聯(lián)合篩選技術(shù)對結(jié)核分枝桿菌的遺傳和化學(xué)基因相互作用進(jìn)行分析。

59.Probing the biophysical constraints of SARS-CoV-2 spike N-terminal domain using deep mutational scanning.

利用深度突變掃描探測SARS-CoV-2釘狀物N端結(jié)構(gòu)域的生物物理約束。

60.Adaptive duplication and genetic diversification of protein kinase R contribute to the specificity of bat-virus interactions.

蛋白激酶R的適應(yīng)性復(fù)制和遺傳多樣化有助于蝙蝠-病毒相互作用的特異性。

61.MicroRNAs are deeply linked to the emergence of the complex octopus brain.

MicroRNAs與復(fù)雜的章魚大腦的出現(xiàn)有著深刻的聯(lián)系。

62.A pleiotropic hypoxia-sensitive EPAS1 enhancer is disrupted by adaptive alleles in Tibetans.

藏族人的一個多態(tài)性低氧敏感EPAS1增強(qiáng)子被適應(yīng)性等位基因破壞。

63.Protection against SARS-CoV-2 Omicron BA.1 variant challenge in macaques by prime-boost vaccination with Ad26.COV2.S and SpFN.

用Ad26.COV2.S和SpFN進(jìn)行底層強(qiáng)化接種,保護(hù)獼猴免受SARS-CoV-2 Omicron BA.1變體的挑戰(zhàn)。

64.Gammaherpesvirus infection drives age-associated B cells toward pathogenicity in EAE and MS.

伽馬皰疹病毒感染促使年齡相關(guān)的B細(xì)胞在EAE和MS中走向致病性。

65.Somatosensory cortical signature of facial nociception and vibrotactile touch–induced analgesia.

面部痛覺和振動觸覺誘導(dǎo)的鎮(zhèn)痛的體感皮質(zhì)特征。

66.Tripartite extended amygdala–basal ganglia CRH circuit drives locomotor activation and avoidance behavior.

杏仁核-基底神經(jīng)節(jié)CRH回路三方擴(kuò)展驅(qū)動運(yùn)動性激活和回避行為。

67.Astrocyte dysfunction drives abnormal resting-state functional connectivity in depression.

星形細(xì)胞功能障礙驅(qū)動抑郁癥患者的靜止?fàn)顟B(tài)功能連接異常。

68.Blind identification of the spinal cord output in humans with high-density electrode arrays implanted in muscles.

用植入肌肉的高密度電極陣列對人類的脊髓輸出進(jìn)行盲目識別。

69.Unified epigenomic, transcriptomic, proteomic, and metabolomic taxonomy of Alzheimer’s disease progression and heterogeneity.

阿爾茨海默病進(jìn)展和異質(zhì)性的統(tǒng)一表觀基因組學(xué)、轉(zhuǎn)錄組學(xué)、蛋白質(zhì)組學(xué)和代謝組學(xué)分類。

70.Carbonic anhydrase 4 disruption decreases synaptic and behavioral adaptations induced by cocaine withdrawal.

碳酸酐酶4的中斷減少了可卡因戒斷誘發(fā)的突觸和行為適應(yīng)。

71.Chimera states among synchronous fireflies.

同步螢火蟲中的嵌合體狀態(tài)。

72.Rapid marine oxygen variability: Driver of the Late Ordovician mass extinction.

快速的海洋氧氣變化:?奧陶紀(jì)晚期大滅絕的驅(qū)動因素。

73.First asteroid gas sample delivered by the Hayabusa2 mission: A treasure box from Ryugu.

隼鳥2號任務(wù)運(yùn)送的第一個小行星氣體樣本:?來自龍宮的寶盒。

74.First field evidence of the electrical multipolar nature of volcanic aggregates.

火山聚集體的電學(xué)多極性的第一個現(xiàn)場證據(jù)。

75.Late delivery of exotic chromium to the crust of Mars by water-rich carbonaceous asteroids.

富含水的碳質(zhì)小行星向火星地殼晚期輸送外來的鉻。

76.Unique thermal expansion properties of water key to the formation of sea ice on Earth.

水的獨(dú)特?zé)崤蛎浱匦允堑厍蛏虾1纬傻年P(guān)鍵。

77.The Winchcombe meteorite, a unique and pristine witness from the outer solar system.

溫奇科姆隕石,來自外太陽系的獨(dú)特而原始的見證。

78.Global reorganization of deep-sea circulation and carbon storage after the last ice age.

上個冰期后深海循環(huán)和碳儲存的全球重組。

79.Presence or absence of stabilizing Earth system feedbacks on different time scales.

不同時間尺度上穩(wěn)定的地球系統(tǒng)反饋的存在或缺失。

80.Global fjords as transitory reservoirs of labile organic carbon modulated by organo-mineral interactions.

全球峽灣是受有機(jī)物-礦物相互作用影響的易變有機(jī)碳的臨時庫房。

81.Chiroptical activity of gas-phase propylene oxide predicting the handedness of interstellar circular polarization in the presolar nebula.

氣相氧化丙烯的光學(xué)活動預(yù)測了前太陽星云中星際圓極化的手性。

82.Ryugu’s nucleosynthetic heritage from the outskirts of the Solar System.

來自太陽系郊區(qū)的龍宮核合成遺產(chǎn)。

83.Flies trade off stability and performance via adaptive compensation to wing damage.

蒼蠅通過對翅膀損傷的自適應(yīng)補(bǔ)償來交換穩(wěn)定性和性能。

84.A unified approach and descriptor for the thermal expansion of two-dimensional transition metal dichalcogenide monolayers.

二維過渡金屬二氯化物單層熱膨脹的統(tǒng)一方法和描述符。

85.Single-digit-micrometer-resolution continuous liquid interface production.

單位數(shù)微米分辨率的連續(xù)液體界面生產(chǎn)。

86.Artificial neuromuscular fibers by multilayered coaxial integration with dynamic adaption.

具有動態(tài)適應(yīng)性的多層同軸集成的人工神經(jīng)肌肉纖維.

87.Multifunctional microrobot with real-time visualization and magnetic resonance imaging for chemoembolization therapy of liver cancer.

具有實(shí)時可視化和磁共振成像的多功能微型機(jī)器人用于肝癌的化療栓塞治療。

88.Experimental realization of neutron helical waves.

中子螺旋波的實(shí)驗(yàn)性實(shí)現(xiàn)。

89.On-chip distribution of quantum information using traveling phonons.

利用游動聲子進(jìn)行量子信息的片上分布。

90.Sustainable valorization of asphaltenes via flash joule heating.

通過閃電焦耳加熱實(shí)現(xiàn)瀝青的可持續(xù)價(jià)值化。

91.Snapping for high-speed and high-efficient butterfly stroke–like soft swimmer.

搶奪高速和高效的蝴蝶式軟體游泳器。

92.Pulsed transistor operation enables miniaturization of electrochemical aptamer-based sensors.

脈沖晶體管操作實(shí)現(xiàn)了基于電化學(xué)誘導(dǎo)劑的傳感器的小型化。

93.A bioinspired snap-through metastructure for manipulating micro-objects.

用于操縱微型物體的生物啟發(fā)的扣動式基礎(chǔ)設(shè)施。

94.Creating stable trapping force and switchable optical torque with tunable phase of light.

用可調(diào)整的光相創(chuàng)造穩(wěn)定的捕獲力和可切換的光學(xué)扭矩。

95.Curvilinear soft electronics by micromolding of metal nanowires in capillaries.

通過毛細(xì)血管中金屬納米線的微成型實(shí)現(xiàn)曲線型軟電子。

96.The missing link between zeolites and polyoxometalates.

沸石和聚氧乙烯酯之間的缺失環(huán)節(jié)。

97.A bistable and reconfigurable molecular system with encodable bonds.

具有可編碼鍵的雙穩(wěn)態(tài)和可重新配置的分子系統(tǒng)。

98.Gravity-resisting colloidal collectives.

抗重力的膠體集合體。

99.Nucleation as a rate-determining step in catalytic gas generation reactions from liquid phase systems.

在液相系統(tǒng)的催化氣體生成反應(yīng)中,核化是一個決定性的步驟。

100.Spectral imaging at high definition and high speed in the mid-infrared.

中紅外高清晰度和高速的光譜成像。

101.Genetic slippage after sex maintains diversity for parasite resistance in a natural host population.

性行為后的基因滑移維持了自然宿主群體中寄生蟲抗性的多樣性。

102.Clustering of vomeronasal receptor genes is required for transcriptional stability but not for choice.

狐臭受體基因的聚集是轉(zhuǎn)錄穩(wěn)定性的需要,但不是選擇的需要。

103.Articular fibrocartilage-targeted therapy by microtubule stabilization.

通過微管穩(wěn)定化實(shí)現(xiàn)關(guān)節(jié)纖維軟骨的靶向治療。

104.Diabetic hyperglycemia promotes primary tumor progression through glycation-induced tumor extracellular matrix stiffening.

糖尿病高血糖癥通過糖化誘導(dǎo)的腫瘤細(xì)胞外基質(zhì)硬化促進(jìn)原發(fā)性腫瘤的進(jìn)展。

105.A balance of noncanonical Semaphorin signaling from the cerebrospinal fluid regulates apical cell dynamics during corticogenesis.

來自腦脊液的非經(jīng)典Semaphorin信號的平衡調(diào)節(jié)了皮質(zhì)發(fā)生過程中的頂端細(xì)胞動力學(xué)。

106.CLEC-1 is a death sensor that limits antigen cross-presentation by dendritic cells and represents a target for cancer immunotherapy.

CLEC-1是一種死亡傳感器,限制了樹突狀細(xì)胞的抗原交叉呈現(xiàn),是癌癥免疫療法的目標(biāo)。

107.Chronic exposure to carbon black ultrafine particles reprograms macrophage metabolism and accelerates lung cancer.

慢性暴露于炭黑超細(xì)顆粒會重新規(guī)劃巨噬細(xì)胞的代謝并加速肺癌的發(fā)生。

108.Chaperone-mediated autophagy regulates adipocyte differentiation.

伴侶介導(dǎo)的自噬調(diào)節(jié)脂肪細(xì)胞的分化。

109.Hierarchical deployment of Tbx3 dictates the identity of hypothalamic KNDy neurons to control puberty onset.

Tbx3的分層部署決定了下丘腦KNDy神經(jīng)元的身份,以控制青春期的到來。

110.Pore forming–mediated intracellular protein delivery for enhanced cancer immunotherapy.

孔隙形成介導(dǎo)的細(xì)胞內(nèi)蛋白遞送增強(qiáng)癌癥免疫療法.

111.Nonstop mRNAs generate a ground state of mitochondrial gene expression noise.

不停的mRNA產(chǎn)生線粒體基因表達(dá)噪音的地面狀態(tài)。

112.Discovery of DRP-104, a tumor-targeted metabolic inhibitor prodrug.

發(fā)現(xiàn)DRP-104,一種針對腫瘤的代謝抑制劑原藥。

113.Discovery of integrons in Archaea: Platforms for cross-domain gene transfer.

Archaea中整合子的發(fā)現(xiàn):跨域基因轉(zhuǎn)移的平臺。

114.Peripheral membrane proteins modulate stress tolerance by safeguarding cellulose synthases.

周邊膜蛋白通過保障纖維素合成酶來調(diào)節(jié)抗壓能力。

115.BCG vaccinations drive epigenetic changes to the human T cell receptor: Restored expression in type 1 diabetes.

卡介苗驅(qū)動人類T細(xì)胞受體的表觀遺傳變化:?在1型糖尿病中恢復(fù)了表達(dá)。

116.Ubiquitin-based pathway acts inside chloroplasts to regulate photosynthesis.

基于泛素的途徑在葉綠體內(nèi)部作用,調(diào)節(jié)光合作用。

117.Global biogeography and projection of soil antibiotic resistance genes.

土壤抗生素抗性基因的全球生物地理學(xué)和預(yù)測。

118.CTR9 drives osteochondral lineage differentiation of human mesenchymal stem cells via epigenetic regulation of BMP-2 signaling.

CTR9通過BMP-2信號的表觀遺傳學(xué)調(diào)控驅(qū)動人類間充質(zhì)干細(xì)胞的骨軟骨系分化。

119.Pointed-end processive elongation of actin filaments by Vibrio effectors VopF and VopL.

弧菌效應(yīng)物VopF和VopL對肌動蛋白絲的點(diǎn)狀末端遞進(jìn)延伸。

120.Spatially targeted brain cancer immunotherapy with closed-loop controlled focused ultrasound and immune checkpoint blockade.

閉環(huán)控制聚焦超聲和免疫檢查點(diǎn)阻斷的空間定向腦癌免疫治療。

121.Insights into complex I assembly: Function of NDUFAF1 and a link with cardiolipin remodeling.

對復(fù)合體I組裝的深入了解:?NDUFAF1的功能和與心磷脂重塑的聯(lián)系。

122.The translocated virulence protein VirD5 causes DNA damage and mutation during Agrobacterium-mediated transformation of yeast.

轉(zhuǎn)化的毒力蛋白VirD5在農(nóng)桿菌介導(dǎo)的酵母轉(zhuǎn)化過程中造成DNA損傷和變異。

123.Human genetics uncovers MAP3K15 as an obesity-independent therapeutic target for diabetes.

人類遺傳學(xué)發(fā)現(xiàn)MAP3K15是一個不依賴肥胖的糖尿病治療目標(biāo)。

124.A conserved module in the formation of moss midribs and seed plant axillary meristems.

苔蘚中肋和種子植物腋下分生組織形成中的保守模塊。

125.Three-dimensional imaging and analysis of pathological tissue samples with de novo generation of citrate-based fluorophores.

用檸檬酸鹽基熒光劑的從頭生成對病理組織樣本進(jìn)行三維成像和分析。

126.TENT5 cytoplasmic noncanonical poly(A) polymerases regulate the innate immune response in animals.

TENT5細(xì)胞質(zhì)非經(jīng)典聚(A)聚合酶調(diào)節(jié)動物的先天免疫反應(yīng)。

127.SARS-CoV-2 Omicron BA.1 and BA.2 are attenuated in rhesus macaques as compared to Delta.

與Delta相比,SARS-CoV-2 Omicron BA.1和BA.2在恒河猴中被減弱。

128.Uncovering the biological basis of control energy: Structural and metabolic correlates of energy inefficiency in temporal lobe epilepsy.

揭示控制能量的生物學(xué)基礎(chǔ):?顳葉癲癇中能量低下的結(jié)構(gòu)和代謝相關(guān)因素。

129.Spontaneous beat synchronization in rats: Neural dynamics and motor entrainment.

大鼠的自發(fā)節(jié)拍同步化:?神經(jīng)動力學(xué)和運(yùn)動同步性。

130.Stress-induced reduction of Na+/H+ exchanger isoform 1 promotes maladaptation of neuroplasticity and exacerbates depressive behaviors.

壓力誘導(dǎo)的Na+/H+交換器異構(gòu)體1的減少促進(jìn)了神經(jīng)可塑性的不適應(yīng)并加劇了抑郁行為。

131.The direct drivers of recent global anthropogenic biodiversity loss.

最近全球人類活動造成的生物多樣性損失的直接驅(qū)動因素。

132.Climate models fail to capture strengthening wintertime North Atlantic jet and impacts on Europe.

氣候模型未能捕捉到冬季北大西洋噴流的加強(qiáng)和對歐洲的影響。

133.Atomic-scale observation of dynamic grain boundary structural transformation during shear-mediated migration.

原子尺度觀察剪切介導(dǎo)的遷移過程中的動態(tài)晶界結(jié)構(gòu)轉(zhuǎn)變。

134.3D stretchable and self-encapsulated multimaterial triboelectric fibers.

三維可拉伸和自封裝的多材料三電纖維。

135.Fragment-based computational design of antibodies targeting structured epitopes.

基于片段的針對結(jié)構(gòu)表位的抗體的計(jì)算設(shè)計(jì)。

136.In situ imaging of the three-dimensional shape of soft responsive particles at fluid interfaces by atomic force microscopy.

原子力顯微鏡對流體界面上軟性反應(yīng)顆粒的三維形狀的原位成像。

137.Planar defect–free pure red perovskite light-emitting diodes via metastable phase crystallization.

通過可變相結(jié)晶的平面無缺陷純紅過氧化物發(fā)光二極管。

138.Unified theory of the anomalous and topological Hall effects with phase-space Berry curvatures.

具有相空間貝里曲率的反常和拓?fù)浠魻栃?yīng)的統(tǒng)一理論。

139.Microscale mobile surface double layer in a glassy polymer.

玻璃質(zhì)聚合物中的微尺度移動表面雙層.

140.Toroidal optical transitions in hydrogen-like atoms.

類氫原子中的環(huán)形光學(xué)轉(zhuǎn)換。

141.Maximum strength and dislocation patterning in multi–principal element alloys.

多主元素合金的最大強(qiáng)度和位錯圖案。

142.Magnetic field–driven particle assembly and jamming for bistable memory and response plasticity.

用于雙穩(wěn)態(tài)記憶和響應(yīng)塑性的磁場驅(qū)動的粒子組裝和干擾。

143.Direct detection of photoinduced magnetic force at the nanoscale reveals magnetic nearfield of structured light.

直接檢測納米級的光誘導(dǎo)磁力,揭示結(jié)構(gòu)光的磁性近場。

144.The void formation behaviors in working solid-state Li metal batteries.

工作中的固態(tài)鋰金屬電池的空隙形成行為。

145.Printable assemblies of perovskite nanocubes on meter-scale panel.

米級面板上過氧化物納米立方體的可打印組件。

146.Tracking the vector acceleration with a hybrid quantum accelerometer triad.

用混合量子加速器三合一跟蹤矢量加速度。

147.Single-chirality nanotube synthesis by guided evolutionary selection.

引導(dǎo)進(jìn)化選擇的單手性納米管的合成。

148.MycelioTronics: Fungal mycelium skin for sustainable electronics.

MycelioTronics:?用于可持續(xù)電子產(chǎn)品的真菌菌絲皮膚。

149.Nickel-catalyzed switchable asymmetric electrochemical functionalization of alkenes.

鎳催化的烯類不對稱電化學(xué)功能化的開關(guān)。

150.Strain-induced van der Waals gaps in GeTe revealed by in situ nanobeam diffraction.

原位納米光束衍射揭示GeTe中的應(yīng)變誘導(dǎo)范德瓦爾斯間隙。

151.Self-driven magnetorobots for recyclable and scalable micro/nanoplastic removal from nonmarine waters.

用于從非海水中清除微型/納米塑料的自驅(qū)動磁力機(jī)器人的可回收和可擴(kuò)展性。

152.Identification of a minority population of LMO2+ breast cancer cells that integrate into the vasculature and initiate metastasis.

識別少數(shù)LMO2+乳腺癌細(xì)胞群,它們整合到血管中并啟動轉(zhuǎn)移。

153.Pancreatic tumor microenvironmental acidosis and hypoxia transform gold nanorods into cell-penetrant particles for potent radiosensitization.

胰腺腫瘤微環(huán)境中的酸中毒和缺氧將金納米棒轉(zhuǎn)化為細(xì)胞滲透顆粒,以達(dá)到有效的放射增敏作用。

154.Heightened apoptotic priming of vascular cells across tissues and life span predisposes them to cancer therapy–induced toxicities.

不同組織和壽命的血管細(xì)胞凋亡引子的高度化使其容易受到癌癥治療誘發(fā)的毒性影響。

155.Caspase-8 inactivation drives autophagy-dependent inflammasome activation in myeloid cells.

Caspase-8失活驅(qū)動骨髓細(xì)胞中自噬依賴性炎癥體的激活。

156.Force- and cell state–dependent recruitment of Piezo1 drives focal adhesion dynamics and calcium entry.

力和細(xì)胞狀態(tài)依賴性的Piezo1招募驅(qū)動焦點(diǎn)粘附動力學(xué)和鈣進(jìn)入。

157.AMPK-dependent phosphorylation of MTFR1L regulates mitochondrial morphology.

AMPK依賴的MTFR1L的磷酸化調(diào)節(jié)線粒體形態(tài)。

158.Mucoadhesive probiotic backpacks with ROS nanoscavengers enhance the bacteriotherapy for inflammatory bowel diseases.

含有ROS納米載體的膠粘性益生菌背包增強(qiáng)了炎癥性腸病的細(xì)菌治療。

159.High–temporal resolution profiling reveals distinct immune trajectories following the first and second doses of COVID-19 mRNA vaccines.

高時空分辨率分析揭示了COVID-19 mRNA疫苗第一和第二劑量后的不同免疫軌跡。

160.Mechanism of mixed-linkage glucan biosynthesis by barley cellulose synthase–like CslF6 (1,3;1,4)-β-glucan synthase.

大麥纖維素合成酶類CslF6(1,3;1,4)-β-葡聚糖合成酶的混合連接葡聚糖生物合成機(jī)制。

161.Nitroreductase-instructed supramolecular assemblies for microbiome regulation to enhance colorectal cancer treatments.

硝基還原酶指導(dǎo)下的超分子組件用于調(diào)節(jié)微生物組以增強(qiáng)結(jié)直腸癌的治療。

162.Group B Streptococcus adaptation promotes survival in a hyperinflammatory diabetic wound environment.

B組鏈球菌的適應(yīng)性促進(jìn)了高炎癥糖尿病傷口環(huán)境中的生存。

163.Cryo-EM structures of peripherin-2 and ROM1 suggest multiple roles in photoreceptor membrane morphogenesis.

peripherin-2和ROM1的低溫電鏡結(jié)構(gòu)表明在光感受器膜形態(tài)發(fā)生中的多種作用。

164.DNA replication initiation shapes the mutational landscape and expression of the human genome.

DNA復(fù)制的啟動塑造了人類基因組的突變景觀和表達(dá)。

165.Cryo-EM structure of the human sodium-chloride cotransporter NCC.

人類鈉-氯共轉(zhuǎn)運(yùn)體NCC的低溫電鏡結(jié)構(gòu)。

166.A genomic snapshot of demographic and cultural dynamism in Upper Mesopotamia during the Neolithic Transition.

新石器時代過渡時期上美索不達(dá)米亞的人口和文化動態(tài)的基因組快照。

167.Microtubule retrograde flow retains neuronal polarization in a fluctuating state.

微管逆向流動使神經(jīng)元極化保持在波動狀態(tài)。

168.Local changes in microtubule network mobility instruct neuronal polarization and axon specification.

微管網(wǎng)絡(luò)流動性的局部變化指示了神經(jīng)元極化和軸突規(guī)范。

169.The HUSH complex controls brain architecture and protocadherin fidelity.

HUSH復(fù)合體控制著大腦結(jié)構(gòu)和原生蛋白的忠實(shí)度。

170.Astrocytic dysfunction induced by ABCA1 deficiency causes optic neuropathy.

ABCA1缺失誘發(fā)的星形細(xì)胞功能障礙導(dǎo)致視神經(jīng)病變。

171.Tissue-wide genetic and cellular landscape shapes the execution of sequential PRC2 functions in neural stem cell lineage progression.

組織范圍內(nèi)的遺傳和細(xì)胞景觀塑造了神經(jīng)干細(xì)胞行進(jìn)中順序PRC2功能的執(zhí)行。

172.Recursive sequence generation in crows.

烏鴉的遞歸序列生成。

173.A data-based large-scale model for primary visual cortex enables brain-like robust and versatile visual processing.

基于數(shù)據(jù)的大規(guī)模初級視覺皮層模型實(shí)現(xiàn)了類似大腦的強(qiáng)大和多功能的視覺處理。

174.Genomic remnants of ancestral methanogenesis and hydrogenotrophy in Archaea drive anaerobic carbon cycling.

Archaea中祖先產(chǎn)甲烷和產(chǎn)氫的基因組殘余驅(qū)動厭氧碳循環(huán)。

175.Active reconfiguration of cytoplasmic lipid droplets governs migration of nutrient-limited phytoplankton.

細(xì)胞質(zhì)脂滴的主動重構(gòu)支配著營養(yǎng)受限的浮游植物的遷移。

176.Protected areas provide thermal buffer against climate change.

保護(hù)區(qū)為應(yīng)對氣候變化提供熱緩沖。

177.Deep mantle origin of large igneous provinces and komatiites.

大型火成巖省和科馬提斯巖的深地幔起源。

178.Hot spots of unseen fishing vessels.

看不見的漁船的熱點(diǎn)。

179.In situ diversity of metabolism and carbon use efficiency among soil bacteria.

土壤細(xì)菌中的原位代謝和碳利用效率的多樣性。

180.A simple two-state model interprets temporal modulations in eruptive activity and enhances multivolcano hazard quantification.

一個簡單的雙狀態(tài)模型解釋了噴發(fā)活動的時間調(diào)制并加強(qiáng)了多火山危險(xiǎn)的量化。

181.Ice-nucleating agents in sea spray aerosol identified and quantified with a holistic multimodal freezing model.

海霧氣溶膠中的冰核劑用整體的多模態(tài)凍結(jié)模型進(jìn)行識別和量化。

182.Magnetic fields and relativistic electrons fill entire galaxy cluster.

磁場和相對論電子充滿整個星系團(tuán)。

183.Critical soil moisture thresholds of plant water stress in terrestrial ecosystems.

陸地生態(tài)系統(tǒng)中植物水分脅迫的關(guān)鍵土壤濕度閾值。

184.The infectious disease trap of animal agriculture.

畜牧業(yè)的傳染病陷阱。

185.A versatile artificial metalloenzyme scaffold enabling direct bioelectrocatalysis in solution.

一個多功能的人造金屬酶支架使溶液中的直接生物電催化成為可能。

186.Kinetic frustration by limited bond availability controls the LAT protein condensation phase transition on membranes.

有限鍵的動力學(xué)挫折控制了膜上的LAT蛋白縮合相變。

187.Free-access optomechanical liquid probes using a twin-microbottle resonator.

使用雙微瓶諧振器的自由訪問光機(jī)械液體探針。

188.Design principles for heterointerfacial alloying kinetics at metallic anodes in rechargeable batteries.

充電電池中金屬陽極異質(zhì)合金化動力學(xué)的設(shè)計(jì)原則。

189.Dual-function artificial molecular motors performing rotation and photoluminescence.

執(zhí)行旋轉(zhuǎn)和光致發(fā)光的雙功能人工分子馬達(dá)。

190.Controlling the uncontrollable: Quantum control of open-system dynamics.

控制不可控制的事物:?開放系統(tǒng)動力學(xué)的量子控制。

191.Harnessing molecular isomerization in polymer gels for sequential logic encryption and anticounterfeiting.

利用聚合物凝膠中的分子異構(gòu)化進(jìn)行順序邏輯加密和防偽。

192.Reconfiguring band-edge states and charge distribution of organic semiconductor–incorporated 2D perovskites via pressure gating.

通過壓力門控重新配置有機(jī)半導(dǎo)體結(jié)合的二維過氧化物的帶邊狀態(tài)和電荷分布。

193.Decoupled ultrafast electronic and structural phase transitions in photoexcited monoclinic VO2.

光激發(fā)的單斜VO2中的解耦超快電子和結(jié)構(gòu)相變。

194.Deconvolution of metal apportionment in bulk metal-organic frameworks.

塊狀金屬有機(jī)框架中金屬分?jǐn)偟慕鈽?gòu)。

195.A crystal glass–nanostructured Al-based electrocatalyst for hydrogen evolution reaction.

一種用于氫氣進(jìn)化反應(yīng)的水晶玻璃-納米結(jié)構(gòu)的鋁基電催化劑。

196.Identification of the active triple-phase boundary of a non-Pt catalyst layer in fuel cells.

燃料電池中非Pt催化劑層的活性三相邊界的鑒定。

197.Aluminum formate, Al(HCOO)3: An earth-abundant, scalable, and highly selective material for CO2 capture.

甲酸鋁,Al(HCOO)3:一種地球上豐富的、可擴(kuò)展的、高選擇性的二氧化碳捕獲材料。

198.Early developmental plasticity enables the induction of an intermediate extraembryonic cell state.

早期的發(fā)育可塑性使中間的胚胎外細(xì)胞狀態(tài)得到誘導(dǎo)。

199.Tissue-engineered grafts exploit axon-facilitated axon regeneration and pathway protection to enable recovery after 5-cm nerve defects in pigs.

組織工程移植物利用軸突促進(jìn)的軸突再生和路徑保護(hù),使豬的5厘米神經(jīng)缺損后得以恢復(fù)。

200.Insights into the evolution of enzymatic specificity and catalysis: From Asgard archaea to human adenylate kinases.

對酶的特異性和催化作用的進(jìn)化的見解:從阿斯加德古菌到人類腺苷酸激酶。

201.Multiplexed high-throughput immune cell imaging reveals molecular health-associated phenotypes.

多重高通量免疫細(xì)胞成像揭示了與健康相關(guān)的分子表型。

202.Homologous gene regulatory networks control development of apical organs and brains in Bilateria.

同源基因調(diào)控網(wǎng)絡(luò)控制雙殼類動物頂端器官和大腦的發(fā)育。

203.Single-cell multiomics identifies clinically relevant mesenchymal stem-like cells and key regulators for MPNST malignancy.

單細(xì)胞多組學(xué)確定了臨床相關(guān)的間質(zhì)干細(xì)胞和MPNST惡性腫瘤的關(guān)鍵調(diào)節(jié)因子。

204.Biallelic germline mutations in MAD1L1 induce a syndrome of aneuploidy with high tumor susceptibility.

MAD1L1的雙列生殖體突變誘發(fā)了一種非整倍體綜合征,具有很高的腫瘤敏感性。

205.USP7 regulates the ncPRC1 Polycomb axis to stimulate genomic H2AK119ub1 deposition uncoupled from H3K27me3.

USP7調(diào)控ncPRC1 Polycomb軸,刺激基因組H2AK119ub1的沉積與H3K27me3脫鉤。

206.Lipids mediate supramolecular outer membrane protein assembly in bacteria.

脂質(zhì)介導(dǎo)細(xì)菌的超分子外膜蛋白組裝。

207.Canonical strigolactones are not the major determinant of tillering but important rhizospheric signals in rice.

典范的絞股藍(lán)內(nèi)酯不是分蘗的主要決定因素,但卻是水稻中重要的根莖層信號。

208.Untangling the roles of TOP2A and TOP2B in transcription and cancer.

解讀TOP2A和TOP2B在轉(zhuǎn)錄和癌癥中的作用。

209.Directed assembly of genetically engineered eukaryotic cells into living functional materials via ultrahigh-affinity protein interactions.

通過超高親和力蛋白相互作用將基因工程真核細(xì)胞定向組裝成活體功能材料。



【標(biāo)題速讀】【Sciadv】【2022年】【11月】的評論 (共 條)

分享到微博請遵守國家法律
苍山县| 保定市| 始兴县| 辽中县| 五峰| 裕民县| 类乌齐县| 汶川县| 通城县| 桐庐县| 闻喜县| 曲水县| 咸宁市| 南陵县| 安丘市| 兴化市| 彰化市| 旬阳县| 买车| 田林县| 舒兰市| 曲靖市| 平湖市| 紫阳县| 银川市| 罗源县| 五家渠市| 济南市| 玉田县| 禹州市| 麦盖提县| 宁化县| 辽中县| 乌海市| 手游| 宿松县| 江安县| 苏尼特左旗| 沽源县| 龙泉市| 虞城县|