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1                                We present an ultrasensitive absorption spectrometer based on a 30 Hz/
2                      It is believed that the ultrasensitive all-textile airflow sensor holds great pr
3                                 The assay is ultrasensitive, allowing the detection of target DNA at
4             We develop a novel generalizable ultrasensitive amplicon barcoding approach that signific
5 protein-folding diseases can be based on the ultrasensitive, amplified measurement of pathological ag
6 copy is introduced as an analytical tool for ultrasensitive analysis of antibiotics used for empirica
7 thodology was developed for the specific and ultrasensitive analysis of bacteria at their single-cell
8                             This enables the ultrasensitive analysis of heterogeneous protein assembl
9  pave the way towards the next generation of ultrasensitive and compact RLGs and provide a practical
10  Herein, by mimicking the spider's fluff, an ultrasensitive and flexible all-textile airflow sensor b
11 detailed protocol for our recently developed ultrasensitive and genome-wide DSB detection method: imm
12                 Here, we present o2n-seq, an ultrasensitive and high-efficiency NGS library preparati
13 context of label-free biosensing and achieve ultrasensitive and perceptually enhanced chromatic color
14                               In this study, ultrasensitive and precise detection of a representative
15                           Recently developed ultrasensitive and quantitative methods for detection of
16 onfouling polymer brushes as a substrate for ultrasensitive and robust diagnostic assays that may be
17 uantum dots (GQD-SH) as the nanomaterial for ultrasensitive and selective detection of hepatitis C vi
18             The Apt/AuAC/Au sensor offers an ultrasensitive and selective detection of LPS down to 7.
19  electrochemical aptasensor was designed for ultrasensitive and selective detection of tetracyclines,
20                            Here we report an ultrasensitive and specific method to quantify trace amo
21                                              Ultrasensitive and sustainable near-infrared (NIR)-emitt
22           Steeper functions are described as ultrasensitive, and can be applied in synthetic biology
23       Therefore, a biosensor for the robust, ultrasensitive, and selective detection of these low-abu
24 -step modification of GSPE offered a simple, ultrasensitive, and stable production of immunosensors f
25 valuated in search of robust, simple, rapid, ultrasensitive, and user-friendly lateral flow aptamer a
26 ISPR-Cas12a (AIOD-CRISPR) assay for one-pot, ultrasensitive, and visual SARS-CoV-2 detection.
27                        Here, we developed an ultrasensitive antibody-ssDNA aptamer sandwich-type fluo
28             In this study, a targeting mtDNA ultrasensitive AP site-specific fluorescent rotor (BTBM-
29  construction leads to the development of an ultrasensitive aptasensor for MC-LR detection.
30 xin detection in food industries, herein, an ultrasensitive aptasensor was developed based on aflatox
31 loped a nanoelectronics assay designed as an ultrasensitive assay capable of directly measuring biomo
32 exing and high-throughput biosensors for the ultrasensitive assay of microRNAs.
33  toxins A/B assay is a rapid, automated, and ultrasensitive assay that detects C. difficile toxins A
34   In this prospective case-control study, an ultrasensitive assay was used to measure plasma NFL conc
35                            There are several ultrasensitive assays able to detect HIV-1 drug-resistan
36                  This work demonstrates that ultrasensitive assays are essential for characterizing h
37  before treatment was 0.07%, indicating that ultrasensitive assays are needed for quantification and
38                                              Ultrasensitive assays for detection of C. difficile toxi
39  a DENV type 1 epidemic in Sri Lanka and new ultrasensitive assays, we compared the properties of DEN
40 lth facilities in 2018 were analyzed with an ultrasensitive bead-based immunoassay for the presence o
41 , and how their individual values affect the ultrasensitive behavior of the overall system.
42 consistent with biophysical models of Sic1's ultrasensitive binding to its partner Cdc4.
43  thus creating potential ECL applications in ultrasensitive bioanalysis.
44      With the rapidly increasing demands for ultrasensitive biodetection, the design and applications
45 aspects of precision nanomedicine, including ultrasensitive biomarker detection, enhanced bioimaging
46 sing, highly sensitive fluorescence imaging, ultrasensitive biomedical diagnostics, and ultrafast opt
47 nanoparticles in their vesicular shell makes ultrasensitive biosensing and bioimaging possible.
48                                  A rapid and ultrasensitive biosensing method based on fiber optic na
49 rties of nanomaterials essential for robust, ultrasensitive biosensing.
50                                 The proposed ultrasensitive biosensor can be further adapted as bioph
51 and subsequently applied for constructing an ultrasensitive biosensor for DNA detection with a low de
52                        The development of an ultrasensitive biosensor for the low-cost and on-site de
53 triggered by nitrate with live imaging of an ultrasensitive biosensor in Arabidopsis leaves and roots
54 ansistors (NWFETs) are low noise, low power, ultrasensitive biosensors that are highly amenable to in
55  organic transistors can operate as powerful ultrasensitive biosensors, and efforts are currently dev
56           We use this architecture to create ultrasensitive biotin-responsive imaging agents, which w
57                We developed and validated an ultrasensitive blood immunoassay for p-tau181.
58 e aptasensor strategy for rapid (10 min) and ultrasensitive (calculated Limit of Detection (LoD) of 3
59 d eDNA with either anti-DNA antibodies or an ultrasensitive cell-impermeant dye, YOYO-1, were first d
60                                      For the ultrasensitive chemiluminescence transduction, we used a
61 ue to their potential applications including ultrasensitive chiral recognition and asymmetric synthes
62 etic beads detection results in a simple and ultrasensitive cholera toxin (CT) immunoassay.
63           Cryptophane host molecules provide ultrasensitive contrast agents for (129)Xe NMR/MRI.
64 oichiometric cyclin: CDK inhibitor ratio for ultrasensitive control of CDK4/6 and CDK2.
65 rial pyruvate carrier MPC is poised to exert ultrasensitive control on the balance between respiratio
66  is imaged employing a CL reader based on an ultrasensitive cooled charge-coupled device (CCD) camera
67 re we describe a CRISPR-based diagnostic for ultrasensitive detection and differentiation of Plasmodi
68       PESRS microscopy holds the promise for ultrasensitive detection and rapid mapping of molecular
69 ost, open-source fluorescence detectors with ultrasensitive detection limits are lacking (Vickerman e
70              The development of reliable and ultrasensitive detection marker for mercury ions (Hg(2+)
71 NW/AuNP composite is proposed for direct and ultrasensitive detection of alpha-fetoprotein (AFP).
72 evention of the ladder-shaped DNA structure, ultrasensitive detection of Ampi was achieved with a det
73 ntial applications varying from accurate and ultrasensitive detection of AP sites to the real-time ev
74 stablishes a field-applicable diagnostic for ultrasensitive detection of asymptomatic carriers as wel
75 sor for efficient capture, rapid killing and ultrasensitive detection of bacteria.
76  suggests that sample volume is critical for ultrasensitive detection of bacteria.
77 old nanoparticles (AuNPs) for label-free and ultrasensitive detection of bacterial DNA.
78 demand of multiplexing, high-throughput, and ultrasensitive detection of biomarkers directly from low
79 oism has emerged as a promising approach for ultrasensitive detection of biomolecular conformations t
80  applied as a powerful analytical device for ultrasensitive detection of biomolecule.
81 ET measurements with a portable unit for the ultrasensitive detection of cancer biomarkers in biospec
82 notubes embedded zinc oxide nanowire for the ultrasensitive detection of carcinoma antigen-125.
83 designed 3D radial nanostructure exhibits an ultrasensitive detection of DNA, with a detection limit
84 ticle (FCN)-based lateral flow biosensor for ultrasensitive detection of DNA.
85 develop a highly sensitive biosensor for the ultrasensitive detection of dopamine released from stem
86 loped as an on-chip immunoassay platform for ultrasensitive detection of Ebola virus (EBOV) antigens.
87  an excellent analytical performance for the ultrasensitive detection of MCF-7 cells and quantificati
88 detection platform based on PIERS effect for ultrasensitive detection of multiple analytes holds grea
89 hanced Raman spectroscopy (PIERS) effect for ultrasensitive detection of multiple analytes.
90 erior tubular vessels and outer surfaces for ultrasensitive detection of NA in living cells such as P
91  mixtures, and its application in the direct ultrasensitive detection of protein biomarkers from whol
92 etic focus lateral flow biosensor (mLFS) for ultrasensitive detection of protein biomarkers in a prac
93 held spectroscopic device that is capable of ultrasensitive detection of protoporphyrin IX fluorescen
94 he way for novel solid-state sensors for the ultrasensitive detection of reactive gases and their app
95                             The demonstrated ultrasensitive detection of Shigella on the single-digit
96 gen peroxide related enzymatic bioassays for ultrasensitive detection of small molecules.
97 induced collision frequency changes enabling ultrasensitive detection of the aptamer target in a sing
98 ng a higher capture efficiency, allowing for ultrasensitive detection of the target not possible befo
99 s spectrometry for improved specificity, and ultrasensitive detection systems to measure low-abundanc
100 us particles was power-free and feasible for ultrasensitive detection, such as early disease detectio
101 ed plasma mass spectrometer was utilized for ultrasensitive detection.
102  blood poses a great challenge for rapid and ultrasensitive detection.
103     Here, we present a novel platform, rapid ultrasensitive detector (RUSD), that utilizes the high r
104 transduction in target cells, and the use of ultrasensitive detector cells to record NO as it is bein
105                                    Designing ultrasensitive detectors often requires complex architec
106 -printed electrodes (BiO-SPEs), allowing the ultrasensitive determination of acetaminophen (APAP) in
107 escence detection enables the affordable and ultrasensitive determination of IgA to SARS-CoV-2.
108  need for development of novel, specific and ultrasensitive devices.
109  phosphorus (BP) - fiber optic biosensor for ultrasensitive diagnosis of human neuron-specific enolas
110 positive individuals detected exclusively by ultrasensitive diagnostics are negligible for human-to-m
111       Achieving malaria eradication requires ultrasensitive diagnostics for low parasite density infe
112                                              Ultrasensitive diagnostics provide the accurate prevalen
113           In the present study, we report an ultrasensitive digital ELISA platform for quantification
114                                Using a novel ultrasensitive digital extracellular vesicle screening t
115                                         This ultrasensitive digitized protein detection approach is v
116        Here we report a highly selective and ultrasensitive DNA biosensor based on electrochemical at
117 cation sites, which can operate to create an ultrasensitive dose response.
118 ll remains challenging to realize a reliable ultrasensitive electrical biosensing platform which will
119                The present work describes an ultrasensitive electrochemical aptamer-based assay for d
120 er immobilized gold atomic cluster mediated, ultrasensitive electrochemical biosensor (Apt/AuAC/Au) f
121                             Here, we propose ultrasensitive electrochemical detection of atrazine usi
122      In this work, a facile, label-free, and ultrasensitive electrochemical DNA biosensor has been de
123                 We introduce here the use of ultrasensitive electrochemical impedance spectroscopy to
124 to enable recognition of alpha-synuclein via ultrasensitive electrochemical measurements.
125 ncerous mutation detection Here we report an ultrasensitive electrochemical platform using electrospu
126  nanocomposite showed a highly selective and ultrasensitive electrochemical response to SY compared w
127                      Herein, we report a new ultrasensitive electrochemical sensing platform for in s
128                                   Herein, an ultrasensitive electrochemical sensor based on hybrid ep
129                The present work describes an ultrasensitive electrochemical sensor for determination
130              We report the development of an ultrasensitive electrochemical sensor using polyaniline
131                     In the present study, an ultrasensitive electrochemiluminescence (ECL) aptasensin
132                                  A multiplex ultrasensitive electrochemiluminescence (ECL) immunoassa
133 esting research lines for the development of ultrasensitive electrochemiluminescence biosensors.
134  capillary electrophoresis, ionization by an ultrasensitive electrokinetically pumped nanoelectrospra
135      Collectively, these phenomena allow for ultrasensitive electronic biomolecular detection in mill
136 able and thus enabling seamlessly integrated ultrasensitive electronic detection.
137   This approach makes customizable multiplex ultrasensitive ELISA available to laboratories without a
138    By using the proposed Nanozyme Nest-based ultrasensitive ELISA, the BPDE-DNA could be detected at
139 o its target enzyme and show the need for an ultrasensitive enzymatic assay to evaluate the potency o
140                    Then, we applied it in an ultrasensitive enzyme-linked immunosorbent assay (ELISA)
141 t CMOS-compatible ferroelectric memories and ultrasensitive flexible nanosensor devices, and it may a
142 lications such as contact-free nanomachines, ultrasensitive force sensors, and nanoscale manipulation
143                          Here we describe an ultrasensitive form of polymerization-based regulation e
144                       In this study, a novel ultrasensitive FTO graphene nanosheets based electrode w
145 riclinic P1 phase, using our newly developed ultrasensitive high-pressure magnetization technique.
146 ed in controllers who had continual negative ultrasensitive HIV RNA results since inclusion.
147                             Here, we utilize ultrasensitive HIV-1 quantification to delineate early e
148 ted work is devoted to the fabrication of an ultrasensitive homogeneous biosensor for the detection o
149  photoacoustic signals, enabling deep-tissue ultrasensitive imaging of biological tissues, disease bi
150 These results point to a great potential for ultrasensitive immuno-based influenza detection.
151                              We developed an ultrasensitive immunoassay and used it to measure oAbeta
152  toxins A/B (Clarity) assay is an automated, ultrasensitive immunoassay for the detection of Clostrid
153                           We have applied an ultrasensitive immunoassay platform to develop and valid
154 e Dominantly Inherited Alzheimer Network and ultrasensitive immunoassay technology to demonstrate tha
155    Using a single molecule array technology, ultrasensitive immunoassays for serum concentrations of
156                                          The ultrasensitive immunosensor was constructed using an Apo
157 ties was used for single-step fabrication of ultrasensitive immunosensors for the detection of Ubiqui
158 Our work provides a novel strategy to design ultrasensitive immunosensors with advantages of amplifie
159                                     A novel, ultrasensitive impedimetric immunosensor was constructed
160 er cessation of excitation, hold promise for ultrasensitive in vivo imaging because they eliminate ti
161 ter than without accumulation to generate an ultrasensitive indicator for membrane potentials and for
162  dissolved tissue matrices, thereby enabling ultrasensitive, interference-free quantification of GO t
163 e investigate fluorescent nanodiamonds as an ultrasensitive label for in vitro diagnostics, using a m
164  capacitive transduction at the forefront of ultrasensitive label-free and reagentless biosensing dev
165 ng period grating (dLPG) based biosensor for ultrasensitive label-free antibody-antigen immunosensing
166  PS optical transduction at the forefront of ultrasensitive label-free biosensing techniques, especia
167 te a Zinc Oxide nanorods (ZnONRs) integrated ultrasensitive label-free biosensor with femtomolar (0.0
168 -MWCNT platform was used as the basis for an ultrasensitive label-free electrochemical aptasensor to
169  capillary-tube-derived SERS platform offers ultrasensitive, label-free measurement as well as effici
170 y applicable and thus is highly valuable for ultrasensitive, large-scale measurement of target protei
171 hy (LC) separations and implementation of an ultrasensitive latest generation mass spectrometer.
172                                              Ultrasensitive LC-MS analysis was achieved using the Orb
173 tron wave functions delocalization dependent ultrasensitive LSPR properties of noble metal nanopartic
174 , we have studied meteorite samples with the ultrasensitive magnetic field modulated microwave spectr
175                 Remarkably, strain allows an ultrasensitive magnetization reversal to be achieved, wh
176                                      A novel ultrasensitive malaria rapid diagnostic test (us-RDT) ha
177 ng binding partners in a dose-responsive and ultrasensitive manner appropriate to the biological syst
178 oma (Rb) and E2F transcription program in an ultrasensitive manner.
179 dy compares the ability of two ultrafast and ultrasensitive mass spectrometry techniques to detect eo
180                   Here, we have developed an ultrasensitive measure of cell-free tumor load using tar
181 e an all-electrical approach that allows for ultrasensitive measurement of growth signals from only t
182 e show that graphene acoustic plasmons allow ultrasensitive measurements of absorption bands and surf
183 nts in nanomechanical resonators for optical ultrasensitive measurements of motion and force.
184                        These concepts enable ultrasensitive measurements, superior manipulation of th
185 s, and phase-locked detectors are needed for ultrasensitive measurements.
186                         Here, we report that ultrasensitive measures of circulating tumor DNA (ctDNA)
187                                              Ultrasensitive mediator-free electrochemical detection f
188 of axonal damage, and the availability of an ultrasensitive method for measuring NfL in plasma or ser
189 tween these processes, we create LostArc, an ultrasensitive method for quantifying deletions in circu
190                              We developed an ultrasensitive method for the detection of enzymatic act
191 e accuracy and practical feasibility of this ultrasensitive methodology was successfully verified by
192 in protein misfolding and the development of ultrasensitive methods for diagnosing prion disease.
193  a novel analytical method was developed for ultrasensitive Mg isotopic analysis of CSF microsamples
194                                              Ultrasensitive Mg isotopic analysis was carried out for
195                Here, we introduce Zinc-based Ultrasensitive Microscopic Barrier Assay (ZnUMBA), which
196                        The clinical need for ultrasensitive molecular analysis has motivated the deve
197 ur THz s-SNOM platform offers a new path for ultrasensitive molecular fingerprinting of complex mixtu
198  that VIR-QDs with SWIR emission will enable ultrasensitive molecular imaging of low-copy number anal
199 ative to conventional ELISA counterparts for ultrasensitive naked-eye detection of biomolecules and s
200                                              Ultrasensitive nanomechanical instruments, including the
201 ng a liquid biopsy approach, we developed an ultrasensitive nanoparticle-enhanced plasmonic method fo
202 forcing the sigmaB network to function as an ultrasensitive negative feedback loop.
203   However, the screening capacity of current ultrasensitive NGS methods is inadequate owing to either
204 e, be of significant importance as it allows ultrasensitive norovirus detection rapidly within minute
205 tial DNA amplification and pH measurement by ultrasensitive NWFET sensors.
206  of multi-layer MoS(2), a photodetector with ultrasensitive optoelectronic performances in a broad sp
207 cytes and analyzed mitochondrial function by ultrasensitive oxygraphy.
208 p24 enzyme-linked immunosorbent assay and an ultrasensitive p24 assay (Simoa; Quanterix) with lower l
209                              In summary, the ultrasensitive p24 assay allows the detection and quanti
210 om HIV-infected individuals were tested, the ultrasensitive p24 assay revealed differences in the ext
211  single infected cell can be detected by the ultrasensitive p24 assay.
212 a single infected cell can be detected by an ultrasensitive p24 assay.
213                                 Results from ultrasensitive p24 assays were compared to those from co
214                             Here, we used an ultrasensitive p24 digital assay, which we report to be
215 compared six "next-gen" VOA employing PCR or ultrasensitive p24 to assess their suitability as scalab
216 e malaria prevalence in humans determined by ultrasensitive PCR, and MDA was characterized by general
217 a specificity >=98.5%, the sensitivities for ultrasensitive PCR-confirmed infections were 93.4%, 84.9
218 the time of diagnosis were analyzed using an ultrasensitive, PCR-based assay employing an isothermal
219 the electrode and thereby the realization of ultrasensitive PEC immunoassay.
220 vo and highlighting the role of LHCSR3 as an ultrasensitive pH sensor.
221                                    While for ultrasensitive photodetectors (PDs), which have intensiv
222 for practical use as a highly functional and ultrasensitive plasmonic DNA biochip in molecular beacon
223 s on bovine serum albumin are proposed as an ultrasensitive plasmonic mercury receptor on U-bend opti
224 tic enrichment of the targets, leading to an ultrasensitive platform for comprehensive exosome analys
225 iameter ~ 69 mum, and length ~ 40 mum) as an ultrasensitive platform for detection of common neurotra
226  demonstrate these microarrays can be use as ultrasensitive platform for Kelvin probe force microscop
227                                       Recent ultrasensitive polymerase chain reaction (PCR) technolog
228        HIV-RNA and HIV-DNA were amplified by ultrasensitive polymerase chain reaction.
229 l signal cascade strategy is reported via an ultrasensitive polymeric sensing system (UPSS) composed
230  with potential applications in the field of ultrasensitive press sensor, human-machine interface, an
231                                              Ultrasensitive pressure sensors are constructed with few
232  sensitive detection of scrapie prions using ultrasensitive prion seeding.
233              As charge transport presents an ultrasensitive probe for the electronic perfection of in
234 als, and to explore their potential as novel ultrasensitive probes for deep-imaging of stress distrib
235 over Simoa, the current state of the art for ultrasensitive protein detection.
236 isms of the podocyte stress response through ultrasensitive proteome analysis of human glomerular FSG
237 D-19 were analyzed using high-throughput and ultrasensitive proteomic platforms and compared with age
238                                              Ultrasensitive proteomics analysis of axons reveals 75 p
239 oncepts for optimization toward the needs of ultrasensitive proteomics become available.
240  this study proposes a flexible self-powered ultrasensitive pulse sensor (SUPS) based on triboelectri
241      The parasite density was measured by an ultrasensitive qPCR (us-qPCR), and the HRP2 concentratio
242  probes but that enable specific, rapid, and ultrasensitive quantitation of protein activity in nativ
243 arasitemia was assessed using microscopy and ultrasensitive quantitative PCR at intervals of 28 days
244 of each village at quarterly intervals using ultrasensitive quantitative PCR to detect Plasmodium inf
245                                   We used an ultrasensitive, quantitative single molecule array (Simo
246                                         This ultrasensitive quantum diagnostics platform is applicabl
247  deaminase (ADA), IRISA-TB (interferon gamma ultrasensitive rapid immunosuspension assay), Xpert MTB/
248                                   Therefore, ultrasensitive, rapid, and specific monitoring platforms
249 inting thus exhibits great potential for the ultrasensitive, rapid, and streamlined detection of many
250 emission (cyan and red) that can be used for ultrasensitive ratiometric measurements and fluorescence
251 Standard Diagnostics [SD] Bioline, and Alere ultrasensitive RDT [uRDT]), loop-mediated isothermal amp
252 ections and supporting the evaluation of new ultrasensitive RDTs.
253                                  Assays with ultrasensitive readout reported higher IUPM than classic
254 ptor binding and cytoskeletal force provides ultrasensitive regulation.
255 ations to guide further efforts to implement ultrasensitive resistance testing in routine settings.
256                                         With ultrasensitive resolution in film thickness and shear st
257  calcium on cAMP is responsible for ensuring ultrasensitive response in catabolic zone (glucose <4.5
258  In addition, the analysis indicates that an ultrasensitive response of Jpx signal on CTCF is importa
259 atively different type of response: a highly ultrasensitive response with a pronounced threshold.
260 ontrolled in concert to produce a nonlinear, ultrasensitive response.
261  correlated to complex formation, leading to ultrasensitive responses.
262     We compared the performance with that of ultrasensitive reverse transcription-quantitative PCR (u
263 optimal information transmission despite the ultrasensitive rotary motors.
264 d SPR biosensors towards high-throughput and ultrasensitive screening of miRNAs using labeling proces
265 bon microfiber (muCF) working electrodes for ultrasensitive, selective, and multiplex detection of ni
266 s to develop portable, cost-competitive, and ultrasensitive sensing systems for real-life environment
267 nsors have considered as excellent, fast and ultrasensitive sensing technique which relies on the fin
268 ading, indicating their potential for use in ultrasensitive sensing, disease diagnostics, cancer cell
269                                          New ultrasensitive sequencing approaches, coupled with singl
270 in for preclinical diagnosis, here we report ultrasensitive serial protein misfolding cyclic amplific
271  as one of the most promising approaches for ultrasensitive SERS-based detection of metal ions in com
272 oscopy should find promising applications in ultrasensitive single cell imaging assays.
273 um NfL and p-Tau(181) concentrations with an ultrasensitive single molecule array (Simoa) approach.
274 fL concentrations in CSF and serum using the ultrasensitive Single molecule array (Simoa) platform.
275     Serum NFL levels were measured using the ultrasensitive single molecule array (Simoa) technology.
276 gnatures have the potential to be used as an ultrasensitive single-cell assay for early disease diagn
277 4-week study of healthy human subjects using ultrasensitive single-molecule array (Simoa) assays to m
278                  We explored the value of an ultrasensitive single-molecule array (Simoa) serum NfL (
279     We evaluated the clinical performance of ultrasensitive single-molecule counting technology for d
280 mechanisms of protein adsorption by means of ultrasensitive surface analysis tools.
281                                 A chip-based ultrasensitive surface plasmon resonance (SPR) sensor in
282                We have developed a rapid and ultrasensitive surface-enhanced Raman scattering (SERS)
283 scription factor (FlhDC) creates a monotonic ultrasensitive switch that serves as a digital filter to
284 umor-derived DNA (ctDNA) alterations through ultrasensitive targeted sequencing analyses of matched c
285    The present study was aimed to develop an ultrasensitive technique for electroanalysis of ketamine
286                                   Therefore, ultrasensitive techniques are required for their detecti
287                           The development of ultrasensitive tests to measure high-sensitive troponin
288                           Here, we employ an ultrasensitive three-dimensional (3D) chemical analysis
289                         MoTe2 is found to be ultrasensitive to O2 at elevated temperatures (250 degre
290                      Herein, we developed an ultrasensitive top-down platform by incorporating a micr
291 ngineering strategies for the development of ultrasensitive toxic analyte sensor platforms.
292 AAT-positive stool samples were tested by an ultrasensitive toxin assay (clinical cutoff, 20 pg/mL).
293 d to methods that detect toxigenic organism, ultrasensitive toxin detection may allow diagnosis of CD
294                                              Ultrasensitive toxin immunoassays to quantify free toxin
295 ors and easily fabricable SERS platforms for ultrasensitive trace analysis.
296                  In this study, a label-free ultrasensitive U-bent optical fiber-based immunosensor f
297                                      We used ultrasensitive viral load assays of plasma, semen, and c
298                                           An ultrasensitive Visible light-triggered photoelectrochemi
299                                              Ultrasensitive visual detection of mycotoxin citrinin is
300 iosensors to enable the development of novel ultrasensitive volatile sensors for medical diagnostic,

 
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