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1 eriences (eg, paranoid thoughts or cognitive disorganization).
2 ide cytoprotection, consequent to lipid raft disorganization.
3 itotic spindle apparatus, leading to spindle disorganization.
4 ed rats, ethanol metabolism results in Golgi disorganization.
5 ignificant hair cell loss and neuronal fibre disorganization.
6 from intercalated discs and their structural disorganization.
7 rves led to either no effect or solely fibre disorganization.
8 nitive deficits and CSF variables on network disorganization.
9 s including Grp94 potentially involved in ER disorganization.
10 oping Muller cells showed late onset retinal disorganization.
11 njury is associated with microtubule lattice disorganization.
12 n both cellulose microfibril and microtubule disorganization.
13 ation, which is correlated with cytoskeleton disorganization.
14 ower rates of homelessness, and lower social disorganization.
15 brosis, loss of exocrine pancreas, and islet disorganization.
16 of its centrosomal pool entails microtubule disorganization.
17 oma protein (Rb), where Rb causes sarcomeric disorganization.
18 vated autophagy, apoptosis and mitochondrial disorganization.
19 ive symptoms, anxiety, negative symptoms and disorganization.
20 efrontal cortex (PFC), leading to behavioral disorganization.
21 cause severe axon shortening and microtubule disorganization.
22 inje neuron spontaneous activity and pinceau disorganization.
23 prone to death and exhibited striking tissue disorganization.
24 to granule cells in the absence of neuronal disorganization.
25 ing progenitor cells and eventual primordium disorganization.
26 led to kidney cyst formation and basal body disorganization.
27 and/or child factors upon the development of disorganization.
28 rtions and a higher degree of collagen fiber disorganization.
29 s well as extracellular matrix (ECM) and SMC disorganization.
30 n mitochondrial morphology and cardiomyocyte disorganization.
32 ue of aortic elastic fiber fragmentation and disorganization accompanied by a decrease in MMP-2 and M
33 ositive symptoms (hallucinations, delusions, disorganization) (adjusted mean [SE], 9.4 [3.3] vs 18.2
36 duced by the BBDS mutations direct nucleolar disorganization, alter ribosome biogenesis, and activate
37 with disruption of neural migration, laminar disorganization, altered neuron maturation and neurite o
38 ons are well-known causes of lymphoid tissue disorganization, although the factors, both host and/or
40 ssed in Hoxc9 mutants, leading to motor pool disorganization and alterations in the connections by th
41 y islet hyperplasia that progresses to islet disorganization and altered vascularization, inflammatio
43 t cellular pathology but profound perceptual disorganization and cognitive deficits, schizophrenia is
45 arbonyl and carboxyl groups caused a partial disorganization and depolymerization of starch granules.
48 zation and activation, leading to centrosome disorganization and disrupted microtubule cytoskeleton o
49 tube defects associated with neuroepithelial disorganization and enhanced progenitor maintenance.
50 nd apoptosis, overall contributing to tissue disorganization and further decreasing the expansion of
53 l ablation of LHX2 results in gross cellular disorganization and HF-SC polarization within the niche.
56 ically, the ischaemic group exhibited dermal disorganization and inflammatory cell infiltration, whic
57 n disease by developing progressive vascular disorganization and leakiness culminating in massive asc
59 ellular structural remodeling in the form of disorganization and loss of the transverse tubule networ
61 vimentin (VIM) in a mode which promotes VIM disorganization and phosphorylation during metaphase, ul
62 xpression attenuates stress-induced T-tubule disorganization and protects against heart failure progr
63 roscopy and western blotting revealed marked disorganization and reduced COL6A5 synthesis, respective
64 ogy and immunohistochemistry revealed tissue disorganization and reduced type I collagen in bgn(-/0)f
65 ical inhibition of HDAC6 protects against MT disorganization and reduces the size of acetylcholine re
68 felodipine treated lenses revealed extensive disorganization and swelling of cortical fiber cells res
69 Patients with BVMD demonstrated progressive disorganization and thinning of the submacular RPE on OC
70 echanically weak lamellae which are prone to disorganization and this suggests that the peripheral st
71 nd mitochondrial dysmorphology, myofibrillar disorganization and up-regulation of the autophagy cargo
76 steocyte lacunocanalicular network, collagen disorganization, and matrix hypermineralization; all of
79 s master regulator of Golgi organization and disorganization, and that NMIIA and giantin engage in a
80 synaptic transmission independent of laminar disorganization, and the ectopic position of adult-born
81 actomyosin complex forces EtOH-induced Golgi disorganization, and the targeting of NMIIA-P-S1943 may
83 mmation, cellular infiltration, and collagen disorganization; and basement membrane preservation.
84 atin stability and highlight heterochromatin disorganization as a potential determinant of human agin
85 rts of altered limbic system microstructural disorganization as a trait feature of bipolar disorder.
86 ice was associated with progressive t-tubule disorganization, as quantified by fast-Fourier transform
87 s exhibit extensive pericentrosomal material disorganization, as well as defects in centrosomal separ
88 'cores' characterized by severe myofibrillar disorganization associated with misplacement of mitochon
89 findings, including T-tubule dilatation and disorganization, associated with defects in this additio
90 caregiving at 6 mo and levels of attachment disorganization at 1.5 y, as moderated by hippocampal an
94 16.3-48.2; p < 0.001), severity of cortical disorganization (beta = 19.8, 95%CI 9.4-30.2; p = 0.001)
96 ular mechanism underlying actin cytoskeleton disorganization by NHERF1, a combined 2-dimensional elec
97 laminar stratification and find that laminar disorganization can be caused in a non-cell autonomous f
98 ith severe energy failure and ultrastructure disorganization can be rapidly rescued and remodeled by
99 her bag3 gene knockdown induces myofibrillar disorganization caused by mechanical stress, in vitro me
100 In addition, the EPA-induced lipid raft disorganization, caveolin-1 inactivation, and cellular c
101 sarcomeric and intercalated disk structural disorganization confirmed in CM-specific ephrin-B1 KO mi
103 in in C2C12 myoblasts induces desmin network disorganization, desmin aggregate formation, and a small
104 d abundant internalized nuclei, myofibrillar disorganization, desmin-positive inclusions, and thicken
107 ne prevented MIF-induced microtubule network disorganization, excessive tubulin polymerization, and m
110 ntiate normally but, reflecting cytoskeletal disorganization, form small actin rings and fail to effe
112 lf-rated paranoia, hallucinations, cognitive disorganization, grandiosity, and anhedonia, as well as
113 ular impairment characterized by stereocilia disorganization, hair cell loss, and endocochlear potent
115 in the urothelium itself, led to urothelial disorganization, highlighting the importance of mesenchy
116 ction and a dual pattern of cortical network disorganization (i.e., desynchronization and hypersynchr
117 central apparatus defects, and microtubular disorganization (IDA/CA/MTD) (n = 41) were significantly
119 , while CNM-causing mutations lead to desmin disorganization in a CNM mouse model and patient biopsie
123 earing nebulette mutations, a severe general disorganization in cardiomyocytes of the extrasarcomeric
124 lesterol homeostasis cause mitochondrial DNA disorganization in control cells, while mitochondrial DN
127 Osx::CXCR4(fl/fl) mice displayed chondrocyte disorganization in the epiphyseal growth plate associate
129 rmed small head blastemas with severe tissue disorganization, including ectopic neural spheroids cont
130 n elongated valves with extracellular matrix disorganization, including elastin fragment infiltration
131 Nfasc(NF(1)(8)(6))) in vivo results in nodal disorganization, including loss of Na(v) channel and ank
133 ss-of-function results in PSC overgrowth and disorganization, indicating that Bam plays a crucial rol
134 crease in melanophores and a pigment pattern disorganization indicative of a xanthophore- deficient p
135 CTTN) hyperacetylation associated with actin disorganization inducing important changes in the distri
138 We further show that the onset of vorticity disorganization is delayed if the skin organization is t
139 at human AF, despite apparent spatiotemporal disorganization, is often perpetuated by a few spatially
140 he mutant exocrine tissue displays extensive disorganization leading to pancreatitis-like autodigesti
141 41) with a phase analysis derived measure of disorganization, locations occupied by phase singulariti
142 wn-regulation of JP2 contributes to T-tubule disorganization, loss of excitation-contraction coupling
143 t correct subsarcolemmal microtubule lattice disorganization, loss of torque production after in vivo
145 ed drug fasudil, prevented dendritic network disorganization, memory loss, and neurodegeneration.
146 ase phenotypes in skeletal muscle; sarcomere disorganization, mitochondrial deformation, upregulation
147 features of PYROXD1 myopathy with sarcomeric disorganization, myofibrillar aggregates, and marked swi
148 activation of Gq DREADD receptors triggered disorganization of adrenal functional zonation, with ind
150 P3-6, the effect on IGLEs had recovered, the disorganization of antrum innervation had partially reco
151 hythmia vulnerability and promote increasing disorganization of arrhythmias in the chronic AF-remodel
152 f the neurological phenotype- in particular, disorganization of axon tracts and deficient myelination
153 rebellar granule cell migration secondary to disorganization of Bergmann glial cell fibers cause cere
155 ere that loss of ATX-LPA1 signaling leads to disorganization of chondrocytes, causing severe defects
157 pias were detected in the marginal zone, and disorganization of cortical cells induced several malfor
158 anatomical regions) and a global functional disorganization of cortico-basal ganglia networks in pat
161 reduction of the ventral hypothalamus and a disorganization of diencephalic nuclei and axonal tracts
163 ic degradation of corneodesmosomes (CDs); 2) disorganization of extracellular lamellar bilayers; and/
164 ion of PARD6B, loss of apical cell polarity, disorganization of F-actin, and activation of HIPPO sign
165 rs, developmental abnormality of fin muscle, disorganization of facial musculature and/or degeneratio
166 cuoles in cortical fiber cells, swelling and disorganization of fiber cells, and defective fiber cell
167 bipolar cells could not be attributed to the disorganization of inner plexiform layer cells that occu
169 yasarathy, and colleagues showed progressive disorganization of key functional elements of the synaps
170 n A/C and, similar to LRRK2 knockdown, cause disorganization of lamin A/C and leakage of nuclear prot
171 impairment as assessed by electroretinogram, disorganization of lamination and apical junctions and r
172 ovastatin and atorvastatin) led to a spatial disorganization of LOX-1 in plasma membranes and a marke
173 20, but not with BAF312, was associated with disorganization of macrophages and with M2 polarization
175 ome to the apical membrane, resulting in the disorganization of microtubules and stretching and stiff
179 ion or gain of function of mel-26 results in disorganization of myosin thick filaments similar to tha
180 ults suggest that white matter integrity and disorganization of neuronal networks could be important
181 normal laminar cytoarchitecture and cortical disorganization of neurons, but not glia, in prefrontal
182 ageing-associated nuclear defects including disorganization of nuclear lamina and loss of heterochro
183 knock-out, GalNAc-T (-/-)) display prominent disorganization of proteins at the node of Ranvier (NoR)
188 etinal cysts, ellipsoid zone disruption, and disorganization of retinal inner layers (DRIL) length we
189 luid, vitreoretinal interface abnormalities, disorganization of retinal inner layers (DRIL), and elli
190 and amount of hyperreflective foci (HF); (5) disorganization of retinal inner layers (DRIL); and (6)
191 mitant with low visual function, and a rapid disorganization of RPE cells, ultimately leading to reti
192 one leads to RPE dysfunction and concomitant disorganization of RPE layer morphology, large areas of
194 pment at late embryonic stages due to severe disorganization of sarcomeric actin filaments in body wa
195 These observations might account for the disorganization of secretory granules previously reporte
197 ycle arrest in metaphase and causes dramatic disorganization of small nuclear ribonuclear protein and
200 encing promoted strong cytoskeletal changes: disorganization of stress fibers, decreased number of fo
201 ately 78% of cones had died, and progressive disorganization of synaptic ultrastructure was noted in
202 erior revealed similar structural parallels; disorganization of t-tubules in failing cells was striki
204 immunofluorescence analysis shows a striking disorganization of the actin- cytoskeleton following RAS
205 ralpha in mice led to significant structural disorganization of the adrenal cortex in both sexes, wit
208 g been proposed to play an essential role in disorganization of the collagen-rich extracellular matri
211 In contrast, tn mutants had significant disorganization of the costameric orthologs beta-integri
213 a robust increase in cell number, with local disorganization of the cytoskeleton components F-actin a
214 airment of ameloblastin self-assembly causes disorganization of the enamel organic matrix and yields
215 elicit increased permeability and structural disorganization of the endothelium, and we identify the
217 ezomib and SP1017 intensifies SP1017-induced disorganization of the Golgi complex and significantly r
220 oss or truncation of APC correlated with the disorganization of the IF network in glioma and carcinom
226 unteracting ectopic microtubule assembly and disorganization of the microtubule network, this functio
227 ation and membrane rearrangement, leading to disorganization of the muscle fibrils on the tissue leve
229 cells disrupts adherens junctions and causes disorganization of the neuroepithelium in the developing
231 loss of postsynaptic membrane infoldings and disorganization of the NMJ microenvironment, including i
234 0.2 and 0.3 MPa groups showed only moderate disorganization of the odontoblast layer at 24 hours tha
235 lity and/or ommatidial rotation will lead to disorganization of the photoreceptor array, misalignment
236 nd global Wnt inactivation leads to dramatic disorganization of the primordium and a loss of proto-NM
237 fasc in adult Purkinje neurons leads to slow disorganization of the Purkinje AIS and pinceau morpholo
238 domain optical coherence tomography (SD-OCT) disorganization of the retinal inner layers (DRIL) is pr
240 eal zone were analyzed by masked graders for disorganization of the retinal inner layers (DRIL), elli
244 glomerular features including effacement and disorganization of the slit diaphragm, followed by foot
245 ected either in cortical signal reduction or disorganization of the somatotopic map, such as disturbe
246 are conoidless, while U-ExM highlighted the disorganization of the SPMTs which likely results in the
247 tro, and its absence in vivo correlates with disorganization of the subsarcolemmal microtubule lattic
251 oblastoid cells treated with K2 siRNA showed disorganization of their actin cytoskeleton and decrease
252 They then undergo an unprecedented gradual disorganization of their nucleus followed by eruptive ce
253 or gain of function of mei-1 also results in disorganization of thick filaments similar to unc-89 mut
255 nerated by NSD2 and demonstrate that genomic disorganization of this canonical chromatin mark by NSD2
256 of Huwe1 in Bergmann glia leads to extensive disorganization of this cell population with layering ab
257 s, provokes misrecruitment of gamma-tubulin, disorganization of this microtubule framework emanating
258 of pigmentation and photosynthetic activity, disorganization of thylakoid membranes, accumulation of
260 ional homeostasis has been proposed to drive disorganization of tissues and promote progression of di
262 f pregnancy, including implantation defects, disorganization of trophoblast cells, fewer uterine natu
263 thelial cell dysfunction and the proteolytic disorganization of vascular endothelial cadherin (VE-cad
265 nd diffusion tractography demonstrated broad disorganization of white-matter tracts throughout the hu
268 ecular phenotypes: nucleolar hypertrophy and disorganization, overaccumulation of 5.8S and 18S rRNA p
271 ial Hazards Scale, designed to assess social disorganization, physical disorder, public safety, and e
273 kinje soma/AIS, leading to extensive pinceau disorganization, Purkinje neuron degeneration, and sever
274 rated increased susceptibility to sarcomeric disorganization (RBM20: 86 +/- 10.5% versus control: 40
275 chizophrenia consistent with microstructural disorganization (reduced fractional anisotropy (FA)) and
277 atchy aggregates of abnormal cells and fiber disorganization related to inhomogeneity of intracortica
278 over, deletion of atf1 results in nucleosome disorganization specifically at stress coding regions an
280 ht medial anterior thalamus, as well as with disorganization symptoms in the right medial posterior t
281 al noise and the psychosis-like positive and disorganization symptoms induced by Delta(9)-THC, which
282 The degeneration also accompanies drastic ER disorganization, that is, an aberrant increase in riboso
286 -dosage prednisone, with long-term cognitive disorganization, vulnerability to stress, and personalit
287 fragmentation and attenuation and ultradian disorganization was associated with Glasgow Coma Scale a
290 ringed fibres, sarcoplasmic masses or Z-band disorganization, which are characteristic features of dy
291 signaling leads to kidney cysts and otolith disorganization, which can be attributed to a loss of fo
292 extracellular matrix secretion and cellular disorganization, which leads to bulky valves that are un
293 and Src64B to promote hyperplasia and tissue disorganization, which results in cell cycle perturbatio
294 mice progressively developed cardiac tissue disorganization with loss of adult CM rod-shape and sarc
295 OCT and histopathology showed patchy retinal disorganization with pseudorosettes more pronounced in v
296 increased backscatter, and severe structural disorganization, with 3 eyes showing macular pseudocolob
297 natal day 60 it also caused CA1 histological disorganization, with a selective decline in parvalbumin
298 y diminished motor function and myofibrillar disorganization, with nemaline body formation, the patho
299 SCD mouse spleens exhibited histological disorganization, with reduction of defined lymphoid foll
300 s resulted in spindle defects and chromosome disorganization without affecting folliculogenesis.