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1 d with SEC31B expression in heart and tibial nerve tissue.
2 ffness of healthy versus tumor-bearing optic nerve tissue.
3 rmacokinetics and distribution in peripheral nerve tissue.
4 images of the distribution of lipids within nerve tissue.
5 lution mass analysis of lipids desorbed from nerve tissue.
6 members are in coelomocytes and adult radial nerve tissue.
7 ge, as assessed by light microscopy of optic nerve tissue.
8 along with the immune and histopathology of nerve tissue.
9 eath of material, to mimic the properties of nerve tissue.
10 isomerized, d-residue-containing form in the nerve tissue.
11 damage to the eighth or other close cranial nerve tissue.
12 hese tumors relative to non-neoplastic optic nerve tissue.
13 highly purified cells from human peripheral nerve tissues.
14 nd mitochondrial membrane potential in these nerve tissues.
15 however, involves interfaces that can damage nerve tissue and, when used for temporary pain relief, t
16 unt and activity of the ETC enzymes from the nerve tissues and, thus, can be applied to evaluate the
17 ts from brain, liver, astrocytes, as well as nerve tissue, and performance is evaluated by using pure
18 n in the histopathological and immunological nerve tissue assessment using silver stain and PNCA.
21 inding chemotherapeutic agents in peripheral nerve tissues cannot by itself account for their associa
22 tro biomimetic model of all-human peripheral nerve tissue capable of showing robust neurite outgrowth
23 ic painful neuropathy, we used cell sorting, nerve tissue clearing and RNA sequencing to study stroma
24 provide more specific information related to nerve tissue composition and microstructural organisatio
26 n the absence of immune cells in an in vitro nerve tissue culture model and in Rag1-knockout (Rag1-/-
27 n is regulated by the developmental stage of nerve tissue, decreasing markedly in adult rat cortical
28 ed in tumor samples as compared with control nerve tissue, defining a schwannoma-typical signature.
30 nes, replacing the less efficient and unsafe nerve-tissue-derived rabies vaccines, the burden of this
31 expression and their localization in sciatic nerve tissue during EAN, using a semiquantitative compet
33 We propose a novel source of human vagus nerve tissues for detailed ultrastructural studies and m
36 muscle, vasculature, and promote peripheral nerve tissue growth when using autologous populations of
37 morphing electronics, which adapt to in vivo nerve tissue growth with minimal mechanical constraint.
38 (10 applications) on esophageal and phrenic nerve tissue in comparison to normal intensity radiofreq
40 rength at the lesion site and is nontoxic to nerve tissues in earthworms and mammals, we have also de
41 roducts (AGEs), which accumulate in diabetic nerve tissue, increased M1 and decreased M2 gene express
43 onjunctiva, sebaceous glands, and muscle and nerve tissues labeled moderately to intensely for both m
44 acilitates self-directed emergence of native nerve tissue macrostructure and concerted synaptic funct
45 with cough and evaluate mechanisms in vagal nerve tissue.Methods: Randomized double-blind crossover
46 ve potential of the autograft, all facets of nerve tissue must be incorporated in a combinatorial the
47 ell lines as compared with normal peripheral nerve tissues, normal astrocytes and immortalized melano
49 RT-PCR and Western blot analysis of sciatic nerve tissues showed that SC-Exo treatment reversed diab
51 and multiple sclerosis spinal cord and optic nerve tissues to describe in detail the distribution of
53 s vaccines have evolved from the first crude nerve tissue vaccines developed by Louis Pasteur and his
57 an immediate enzymatic dissociation of fresh nerve tissue while maintaining high cell viability, impr