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1 s and assayed by two-electrode voltage clamp electrophysiology.
2 e confirmed by site-directed mutagenesis and electrophysiology.
3 ro electroporation of shRNAs with whole-cell electrophysiology.
4 on as measured by manganese-enhanced MRI and electrophysiology.
5 cytochemistry, and both in vivo and in vitro electrophysiology.
6  the neocortex, specific changes in neuronal electrophysiology.
7 address current clinical problems in cardiac electrophysiology.
8 ic drugs are measurable on the basis of cell electrophysiology.
9 e measured using two-electrode voltage clamp electrophysiology.
10 um ((86)Rb(+)) efflux assays and patch-clamp electrophysiology.
11 sing electron microscopy and single-molecule electrophysiology.
12 rough localized elastic matrix movements and electrophysiology.
13 trate uptake, a membrane potential assay and electrophysiology.
14 c photostimulation, retrograde labeling, and electrophysiology.
15 lly automated system for all-optical cardiac electrophysiology.
16 , multimodal retinal imaging, perimetry, and electrophysiology.
17 insic precision achievable by multielectrode electrophysiology.
18 m skate (cartilaginous fish) ampullary organ electrophysiology.
19 rformed or myocytes isolated for patch-clamp electrophysiology.
20 ning the emerging field of bacterial biofilm electrophysiology.
21 uropathy with mixed axonal and demyelinating electrophysiology.
22 nsight that gave rise to the modern field of electrophysiology.
23                 Using whole-cell patch-clamp electrophysiology, activation of mGlu5 in ex vivo slices
24                 Here, using a combination of electrophysiology, adeno-associated virus-delivered fluo
25 nd included experts from general cardiology, electrophysiology (adult and pediatric), and interventio
26  by immediate normalization of cardiomyocyte electrophysiology after targeted disruption of coupled m
27 These new experimental tools for all-optical electrophysiology allow for a level of precise manipulat
28  zebrafish brain regions, and in vivo larval electrophysiology, also conducted in 4dpf larvae, provid
29 lue-shifted channelrhodopsin for all-optical electrophysiology, although blue light photoactivation o
30                                              Electrophysiology analysis of excitatory synapse develop
31 nimal models with state-of-the-art cellular, electrophysiology, anatomical, chemogenetic, and optogen
32                                        Using electrophysiology and a FRET-based cAMP assay, two compo
33                           We used whole-cell electrophysiology and anatomical methods to assess synap
34                     Moreover, in patch-clamp electrophysiology and Ca(2+) imaging experiments on dors
35 rized and validated and are able to simulate electrophysiology and calcium dynamics in myocytes from
36 cardiac cell models were created to simulate electrophysiology and calcium dynamics in myocytes from
37 e developed a novel model of rat ventricular electrophysiology and calcium dynamics, derived predomin
38 onsecutive consenting patients scheduled for electrophysiology and cardiac catheterization procedures
39 e from a study employing pharmacology, scalp electrophysiology and computational modeling (N = 32) th
40 working in interventional cardiology/cardiac electrophysiology and correlate them with the length of
41 To address this question, we used whole-cell electrophysiology and determined the intrinsic excitabil
42                                              Electrophysiology and EM studies uncovered that the numb
43     In this study, we performed simultaneous electrophysiology and fast confocal Ca(2+) imaging to de
44 ontralateral hippocampus, detectable by both electrophysiology and fMRI measurements, suggesting youn
45  their ability to modulate TREK-1 channel by electrophysiology and for their in vivo antinociceptive
46                                        Using electrophysiology and genetically encoded Ca2+ sensors t
47 odeling, substituted cysteine accessibility, electrophysiology and glutamate uptake assays, we identi
48 uronal activity rely on the coupling between electrophysiology and hemodynamics, a phenomenon referre
49 ssion systems using whole-cell voltage-clamp electrophysiology and immunohistochemistry.
50               Using in vivo CSD in rats with electrophysiology and in vitro CSD in chick retina with
51 at underpin OFC dysfunction, this study used electrophysiology and integrative synaptomics in a trans
52                                              Electrophysiology and mutagenesis studies show that prok
53         Here, we used whole-cell patch clamp electrophysiology and neuronal reconstructions of biocyt
54 cellular-level recording techniques, such as electrophysiology and optical imaging, or whole-brain im
55                                  Here we use electrophysiology and optogenetic perturbations in the m
56                               Using in vitro electrophysiology and optogenetics in mouse brain slices
57    In the present study, we used slice-patch electrophysiology and pharmacological tools to character
58                            This coupled with electrophysiology and pharmacology showed that HCN1 chan
59 tivation of CNG channels by a combination of electrophysiology and pharmacology.
60                       Using both single-unit electrophysiology and population optical recording, we f
61 lters ion channel gene expression and atrial electrophysiology and predisposes to an arrhythmogenic s
62                 Using perforated patch clamp electrophysiology and rat cerebral arterial myocytes, we
63         We used a combination of patch-clamp electrophysiology and real-time PCR in MNCs in sham and
64 using a multidisciplinary approach including electrophysiology and ssTEM-based circuit reconstruction
65 authors assessed the effects of Pitx2c on LA electrophysiology and the effect of antiarrhythmic drugs
66 uted tomography, region-specific atrial cell electrophysiology and the effects of progressive AF-indu
67  heritability of parameters of human retinal electrophysiology and to explore which parameters change
68 ingle-unit surveys of dLGN and V1, both with electrophysiology and two-photon calcium imaging, have d
69                                           By electrophysiology and video-microscopy, we characterized
70  pig primary cells, tissue bioassay, in vivo electrophysiology, and a guinea pig conscious cough mode
71 tive approach of optogenetics, pharmacology, electrophysiology, and behavior is used to advance the n
72 pothesis, using single nanoparticle imaging, electrophysiology, and behavioral approaches, in hippoca
73 f inhibitory interneuron networks, modeling, electrophysiology, and behavioral studies, we determined
74 internal reflection fluorescence microscopy, electrophysiology, and biochemical analysis suggest METH
75              However, these agents may alter electrophysiology, and by abolishing contraction, also p
76 cell electroporation (SCE) and extracellular electrophysiology, and can be used to characterize neuro
77             Here we combined mouse genetics, electrophysiology, and circuit mapping with laser-scanni
78  involving BRET biosensors, binding studies, electrophysiology, and complementation-based assays reve
79       Using a combination of RNA sequencing, electrophysiology, and conditional targeting approaches,
80  dequenching, solid supported membrane-based electrophysiology, and differential scanning fluorometry
81                   Using electron microscopy, electrophysiology, and dynamic imaging of zebrafish musc
82 ombining immunohistochemistry, optogenetics, electrophysiology, and fast-scan cyclic voltammetry in a
83 o-optic deflector-based scanning microscopy, electrophysiology, and genetically targeted expression o
84        Here, we combine behavioral genetics, electrophysiology, and high-speed videography to advance
85         Using a combination of biochemistry, electrophysiology, and imaging techniques, we now show t
86 grade tracing, fast-scan cyclic voltammetry, electrophysiology, and in vivo optogenetics with localiz
87 his end, we used steered molecular dynamics, electrophysiology, and kinetic modeling to identify resi
88 es-fMRI, in vitro electrophysiology, in vivo electrophysiology, and metabolomics-with the most promin
89 acterized the genetic deletion by histology, electrophysiology, and microdialysis; probed neuronal ac
90              Using super-resolution imaging, electrophysiology, and molecular manipulations, we show
91 neuronal connections, genetic manipulations, electrophysiology, and neuronal modeling.
92 ether with immunohistochemistry, acute slice electrophysiology, and optogenetic circuit mapping, we r
93                        Here we combine fMRI, electrophysiology, and the monitoring of eyelid behavior
94  system, histopathology, molecular genetics, electrophysiology, and transcriptome and cell signaling
95 state NMR, isothermal titration calorimetry, electrophysiology, antiviral assays, and molecular dynam
96                                              Electrophysiology approaches were applied to investigate
97               Mathematical models of cardiac electrophysiology are instrumental in determining mechan
98  dopamine neuron activity was examined using electrophysiology as a correlate for the dopamine hyperf
99 traoperative STN and prefrontal cortex (PFC) electrophysiology as participants perform a novel task t
100 I3P derivative, time-lapse confocal imaging, electrophysiology, as well as knockdown and overexpressi
101  36 nM) and carbachol in a hippocampal slice electrophysiology assay (EC50, 165 nM).
102 ck of Kv11.1 isoforms was tested in cellular electrophysiology assays.
103 ure management, coronary angiography, formal electrophysiology assessments, or functional survival fo
104 ect in an RPE ion-channel result in abnormal electrophysiology at the level of the retinal neurons.
105                              We developed an electrophysiology-based classification of dentate granul
106 ch of gene transfer, systems and brain slice electrophysiology, behavior, and immunohistochemistry wa
107 ldest domain of life, and therefore studying electrophysiology beyond canonical electrically excitabl
108                                  Here, using electrophysiology, biochemistry, and fluorescence approa
109 ation with additional methods, consisting of electrophysiology, blood biomarkers, and brain imaging,
110  vesicles (GUVs) would be ideal for in vitro electrophysiology, but efforts to measure the membrane c
111  experiments reveal that physiochemistry and electrophysiology can be measured simultaneously with ne
112                     Here, we show that human electrophysiology can be used to track information as it
113                            Using patch clamp electrophysiology, cell surface biotinylation, and total
114                     Simultaneous imaging and electrophysiology confirmed that Thy1-GCaMP signals are
115  study, we used a combination of patch clamp electrophysiology, confocal Ca(2+) imaging and molecular
116 ratios, 1.91; 95% CI, 0.17-21.04), receiving electrophysiology consultation (ratio of odds ratios, 0.
117                       Immunofluorescence and electrophysiology data further confirm that the associat
118                                              Electrophysiology demonstrated direct KCNJ5MUT inhibitio
119 iposome permeation assays and single channel electrophysiology differs significantly between OmpC20 a
120 sing a combination of two-photon imaging and electrophysiology during active touch.
121 f ion channels at the nerve terminals, using electrophysiology, dynamic Na(+) imaging and immunohisto
122 ic and subcellular optical modulation of the electrophysiology dynamics in single dorsal root ganglia
123 ussion focuses on representative advances in electrophysiology enabled using semiconductor nanostruct
124                                 In addition, electrophysiology experiments revealed two interesting (
125                                              Electrophysiology experiments showed that long-term pote
126 llops during behavioral playback and in vivo electrophysiology experiments to probe the temporal sens
127 ion of calcium imaging, tracer coupling, and electrophysiology experiments to show that ipRGCs form e
128  suggestions were checked by radioligand and electrophysiology experiments, which confirmed the funct
129 ect of this pair in either the EHR or in the electrophysiology experiments.
130 xcited a majority of LHb neurons in in vitro electrophysiology experiments.
131 focus on acute mechanical effects on cardiac electrophysiology, explore molecular candidates underlyi
132 de array and subsequently use this alongside electrophysiology, fluorescence microscopy, optical cohe
133 m that allows for the combined monitoring of electrophysiology from a high-density electrode array an
134 unctional studies involving live imaging and electrophysiology from juvenile and adult zebrafish.
135                     We used plethysmography, electrophysiology, functional magnetic resonance imaging
136 ular tachycardia, noninvasive treatment with electrophysiology-guided cardiac radioablation markedly
137 d these techniques to perform catheter-free, electrophysiology-guided, noninvasive cardiac radioablat
138   Computational modeling of cardiac cellular electrophysiology has a long history, and many models ar
139                                  Since then, electrophysiology has largely remained a bastion of neur
140 ochemistry, activity-dependent labeling, and electrophysiology have indicated that the gamma2 subunit
141         Recent human neuroimaging and monkey electrophysiology have revealed 3D motion selectivity in
142 te CA1 pyramidal neuron excitatory activity, electrophysiology, hippocampus-selective behavioral test
143 n clinical practice using clinical features, electrophysiology, histopathology and targeted early gen
144 integrative role of K(+) channels in cardiac electrophysiology, i.e. how K(+) currents shape the card
145                                   Functional electrophysiology identified two distinct subtypes of Fe
146  financial thresholds, this powerful cardiac electrophysiology imaging modality may gain wider use in
147                  Here we use mouse genetics, electrophysiology, imaging and optogenetics to directly
148                     We performed single cell electrophysiology, immunocytochemistry and confocal micr
149                                Here, we used electrophysiology, immunohistochemistry, and electron mi
150                                              Electrophysiology, immunohistochemistry, qPCR, and Weste
151 RNA sequencing (RNA-seq), mass spectrometry, electrophysiology, immunohistochemistry, serial block-fa
152                                    Combining electrophysiology, immunostaining and genetic manipulati
153 Using immunohistochemistry, calcium imaging, electrophysiology, impedance measurements and vascular p
154 imentary techniques of human fMRI and monkey electrophysiology in a context-dependent stop signal tas
155 embrane protein expression, trafficking, and electrophysiology in a rigorous manner.
156 ess two-photon calcium imaging together with electrophysiology in acute mouse hippocampal slices to d
157 ions on cerebellar stellate cell synapses by electrophysiology in acute slices.
158 s specific neurons, readily detectable using electrophysiology in anaesthetized preparations and for
159 eurons in these brain areas using whole-cell electrophysiology in brain slices.
160  Here, we use two-photon calcium imaging and electrophysiology in head-fixed walking flies to identif
161                Using electron microscopy and electrophysiology in hippocampal cultures, we show that
162                    Ca(2+) imaging coupled to electrophysiology in in vitro isolated brains revealed v
163   In this paper, we report on the effects of electrophysiology in individual bacteria.
164                             Using whole-cell electrophysiology in juvenile-adolescent GAD67-GFP male
165 in Notch target gene expression and cellular electrophysiology in left versus right ventricular cardi
166 se large-scale studies; however, patch-clamp electrophysiology in microscopic animals typically requi
167 ctive choice for simulations of human atrial electrophysiology in spatially extended domains.
168   Using iGluSnFr-based glutamate imaging and electrophysiology in the adult mouse cortex, we show tha
169        Real-time mapping and manipulation of electrophysiology in three-dimensional (3D) tissues coul
170                       We recorded scalp-EEG (electrophysiology) in healthy participants and STN local
171 four complimentary techniques-fMRI, in vitro electrophysiology, in vivo electrophysiology, and metabo
172 extracellular recordings of body-wall muscle electrophysiology inside an intact roundworm, Caenorhabd
173                             A combination of electrophysiology, intersectional genetic viral labeling
174                   We found that normal human electrophysiology is preserved in slice preparations whe
175                          Although whole-cell electrophysiology is the gold standard for functional ev
176 ere studied by flow cytometry, intracellular electrophysiology, isometric contractility measurement,
177 velopment of quality improvement programs in electrophysiology laboratories.
178 om structure and mechanics to metabolism and electrophysiology - leading to impaired mechanical contr
179 ic imaging (a method for noninvasive cardiac electrophysiology mapping) and advanced late gadolinium
180                                              Electrophysiology measurements of the c-ring reconstitut
181                                              Electrophysiology measurements suggest that volatile ane
182     Using molecular dynamics simulations and electrophysiology measurements, we show that ligand-indu
183 , in the human alpha7 nAChR as determined by electrophysiology measurements.
184 ional ensemble experiments or single-channel electrophysiology method.
185                                     However, electrophysiology methods are ideal for measuring [Na(+)
186  derived by modifying a previously validated electrophysiology model for a healthy rabbit heart.
187 cellular metabolic activity and an in silico electrophysiology model.
188 tes with in silico fibroblast and GJ channel electrophysiology models using the dynamic-clamp techniq
189                             Here we combined electrophysiology, molecular biology, and radioimmunoass
190 onal activity using optogenetics, whole-cell electrophysiology, molecular pharmacology and single cel
191 c tools, in particular tools for all-optical electrophysiology, now provide a means to probe cellular
192                                  Patch-clamp electrophysiology of Bot1 detects Na(+)-dependent polyva
193 roaches, which provide access to the in vivo electrophysiology of PTs, whose subcortical target regio
194 ate the study of in vivo full morphology and electrophysiology of single neurons in the brain.
195 y the International Society for the Clinical Electrophysiology of Vision.
196               To understand the results from electrophysiology on a molecular level, all-atom molecul
197               Due to their small dimensions, electrophysiology on thin and intricate axonal branches
198                                     In vitro electrophysiology on transfected CACNA1H channels determ
199 in-Darby canine kidney) renal cell lines and electrophysiology on Xenopus oocytes to characterize the
200  with existing methods allowing single mode (electrophysiology or electrochemistry) recording.
201 with molecular analyses and in vivo neuronal electrophysiology, our findings identify a functional ro
202 ncephalographic (vEEG) monitoring, and slice electrophysiology outcomes were obtained up to 270 days
203 used as a free and open source, customizable electrophysiology platform in open-loop studies requirin
204 yramidal neuron subtypes differ in intrinsic electrophysiology properties and dendritic morphology.
205 des standard modules for implementing common electrophysiology protocols.
206 fully characterized using Ca(2+) imaging and electrophysiology, providing, for the first time, a comp
207  increased Ser(375) phosphorylation; and (5) electrophysiology recordings from dorsal root ganglion n
208 etized monkeys with simultaneous hippocampal electrophysiology recordings, where we observe a dramati
209 t developments in human HF investigations of electrophysiology remodelling, metabolic remodelling, an
210 ed to assess cardiomyocyte contractility and electrophysiology, respectively.
211 troporation are carried out in parallel, the electrophysiology response of individual cells is repres
212 ular dynamics simulations and single-channel electrophysiology reveal a 'pedal bin' mechanism, in whi
213                                              Electrophysiology revealed a 70% reduction in functional
214                                       Monkey electrophysiology revealed that the bimodal superior tem
215                  Two-electrode voltage-clamp electrophysiology revealed that, when coexpressed in Xen
216                                  Patch clamp electrophysiology reveals that IPCs display circadian cl
217 lity of using this device for single-channel electrophysiology sensing applications.
218                          Immunohistology and electrophysiology showed that somatostatin (SST) interne
219            Validation of this interaction by electrophysiology shows that 14-3-3 binding augments KAT
220 comparable to that seen in our computational electrophysiology simulations conducted on the MtrE crys
221 y have been an integral component of cardiac electrophysiology since its inception, and are collectiv
222 tive structure-activity relationships, using electrophysiology, site-directed mutagenesis, and voltag
223                               In traditional electrophysiology, spatially inefficient electronics and
224 single cell, cell network, animal, and human electrophysiology studies.
225 aphy, all underwent CMR and, when indicated, electrophysiology studies.
226 ic mapping of rabbit hearts, and in vivo pig electrophysiology studies.
227 decremental accessory pathways who underwent electrophysiology study between 2005 and 2014.
228 re common, including echocardiography (59%), electrophysiology study or ablation (34%), stress testin
229 performed for ablation, device implantation, electrophysiology study, lead extraction, and defibrilla
230 ey may also be diagnosed unexpectedly during electrophysiology study.
231 ng ICD follow-up for patients in areas where electrophysiology subspecialty care is not available lea
232 scopy coupled with surface biotinylation and electrophysiology suggest that changes in the membrane p
233                                              Electrophysiology suggested a myopathic process, without
234 novel noninvasive epicardial and endocardial electrophysiology system (NEEES) allows for the identifi
235                 Here, we develop all-optical electrophysiology techniques to study activity-dependent
236              We showed here with patch-clamp electrophysiology that Ang II activates TRPC channels; t
237                          Here, we show using electrophysiology that cortico-motoneuronal connections
238 w by combination of biochemistry and in vivo electrophysiology that transient receptor potential (TRP
239 ding genetics, proteomics, biochemistry, and electrophysiology, that raise motivation for forming a v
240 RBCs maintain a circadian rhythm in membrane electrophysiology through dynamic regulation of K(+) tra
241  immunohistochemistry, behavioral tests, and electrophysiology to assess nBMP2 expression and neurolo
242 a diverse set of approaches, from anatomy to electrophysiology to computational modeling and behavior
243                    Here, we used brain slice electrophysiology to construct a timeline of functional
244 t influence affinity, and use single-channel electrophysiology to corroborate the results.
245                   We next use multielectrode electrophysiology to demonstrate that LP and dorsal Po c
246 ity along the lateral line using imaging and electrophysiology to determine that a hair cell's Tmc2b
247                             We used in vitro electrophysiology to determine whether the mGlu5 PAM VU0
248 cular modeling, mutagenesis, and patch clamp electrophysiology to elucidate the molecular mechanisms
249 cal force in combination with pressure-clamp electrophysiology to identify mechanically sensitive dom
250 se pharmacology, optogenetics, genetics, and electrophysiology to investigate the roles of the nervou
251                     Here, we used whole-cell electrophysiology to measure CDI and computational model
252                                We used slice electrophysiology to measure connectivity changes associ
253 otransmitter-binding site and single-channel electrophysiology to measure independently binding const
254 tinguish ACh and Cho, we used single-channel electrophysiology to measure resting affinities (binding
255       In the laboratory, we used patch-clamp electrophysiology to measure the human ether-a-go-go-rel
256 th photoconversion, electron microscopy, and electrophysiology to monitor evoked and spontaneous recy
257  single-particle electron cryomicroscopy and electrophysiology to rat NMDA receptors to show that, in
258                                     Adapting electrophysiology to record currents associated with the
259 er lines, anatomical tracing techniques, and electrophysiology to show that D3 receptor expression de
260                                Here, we used electrophysiology to study the expression of ionotropic
261 ing, combining high-throughput synthesis and electrophysiology, to interrogate the interaction of GpT
262 al devices implanted; 95% CI, 1.01-1.01) and electrophysiology training (OR, 3.13 as compared with su
263 ortunities for simultaneous investigation of electrophysiology, various neural imaging modalities, an
264  estimated from data recorded using standard electrophysiology voltage-clamp protocols that have not
265                                        Slice electrophysiology was employed to measure excitability a
266 induce dependence and whole-cell patch-clamp electrophysiology was used to examine the effects of CIE
267                                        Slice electrophysiology was used to measure glutamatergic and
268 ly in Xenopus laevis oocytes, and whole-cell electrophysiology was used to monitor channel activity.
269                          Single-unit in vivo electrophysiology was used to record neural activity in
270                    Indeed, using patch clamp electrophysiology we find that cocaine place conditionin
271 a membrane, but using whole-cell patch clamp electrophysiology we observed that nmrASIC3 is insensiti
272 lated brainstem preparations and patch clamp electrophysiology, we demonstrate that adult bullfrogs a
273                 Using whole-cell patch clamp electrophysiology, we demonstrated that either the FGF14
274                            Using patch-clamp electrophysiology, we detected a pathologically enhanced
275             Using voltage-sensitive dyes and electrophysiology, we determined that AGR's ectopic spik
276                                Using in vivo electrophysiology, we find that a subset of whisker-resp
277                    KEY POINTS: Using in vivo electrophysiology, we find that a subset of whisker-resp
278                                        Using electrophysiology, we found that EC cells expressed robu
279 based neuronal-ensemble labeling and in vivo electrophysiology, we found that fear extinction learnin
280                            Using imaging and electrophysiology, we found that mouse primary somatosen
281                                           By electrophysiology, we have also shown that a small and t
282 modeling in combination with mutagenesis and electrophysiology, we identified the binding site for po
283                Using high spatial resolution electrophysiology, we investigated the influence of CA3
284          Based on computational modeling and electrophysiology, we propose that supramodality can be
285                                Using optical electrophysiology, we recapitulate many voltage-clamp pr
286 lanar lipid bilayer and liposome patch clamp electrophysiology, we show that a synthetic peptide of t
287 nation of advanced microscopy techniques and electrophysiology, we show that cadherin-10 forms nanosc
288 of single-molecule imaging, biochemistry and electrophysiology, we show that glycine and D-serine rel
289                                        Using electrophysiology, we show that one isoform, AtMCU1, giv
290                          Using intracellular electrophysiology, we show that polarized-light-based co
291 ine the effects of Notch signaling on atrial electrophysiology, we transiently activate Notch signali
292 ers, confocal microscopy, morphometrics, and electrophysiology were used to examine dendritic and axo
293 nd experimentally, the limits of all-optical electrophysiology when applied to drug testing, then imp
294 2-electrode voltage clamp and single-channel electrophysiology, whereas radioimmunolabeling measured
295 c function, [Ca(2+) ]i handling and cellular electrophysiology, which participate in the genesis of p
296 c function, [Ca(2+) ]i handling and cellular electrophysiology, which participate in the genesis of p
297  demonstrate a length dependent effect using electrophysiology with a phenotype only occurring with t
298                  This study combines in situ electrophysiology with genetic and pharmacological inter
299 lidated Fezf2-Gfp reporter mouse, whole-cell electrophysiology with morphology reconstruction, cluste
300             We combined in vitro and in vivo electrophysiology with optogenetics in mice and found th

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