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At least 721 records · Page 40Linked to original sources

[Microscopic identification of the powder of roots of genus Adenophora: II. The roots of Sect. Remotiflorae and Sect. Adenophora].

This paper deals with the microscopic characteristics of the powder of the roots of 11 species and subspecies of Genus Adenophora. The results show that Sect. Basiphyllae, Sect. Pachydiscus, Sect. Remotiflorae and Sect. Adenophora can be identified based on the amount and thickness of the wall as well as the characteristics of the pit of sclerified cork cells, and 29 species, subspecies and varieties can be identified based on the amount, shape and thickness of the walls of the sclerified cork cells, the diameter and pit of the vessels, the number and shape of the secretion of the laticifers, and the number of inulin crystals.

Magnoliopsida↗

[Effect of stimulating the peripheral endings of transected dorsal root on discharges of neighbouring dorsal root in rats].

The dorsal roots (DR) of L2-L3 segments on the left side in anesthetized rats (n = 28) were exposed and transected. After stimulating the peripheral endings of L2 DR with a train of square waves (0.8-1.2 mA, 100 Hz, 0.5 ms) for 2 s, the discharges at the distal end of transected L3 DR were recorded for 120 s. We found that the mean discharge frequency (MDF) of L3 DR was gradually increased with L2 DR stimulation. Time course analysis showed that the increase in MDF was linearly correlative to the number of stimuli, as well as to the levels of spontaneous discharge of L3 DR. The above results suggest that the transegmental information transmission between peripheral endings of primary sensory neurons may occur through a chemical non-synaptic way.

Animals↗

Blood supply of nerve roots and dorsal root ganglia.

The number of patients who suffer from radicular symptoms due to degenerative diseases of the lumbar spine is increasing. This article discusses the differences in anatomic structure between spinal nerve roots and peripheral nerves. Blood supply and cerebrospinal fluid flow are explained, and the effect of mechanical compression, direct and indirect, is shown as a possible cause of symptoms.

Animals↗

[Functional posterior radiculotomy, in the treatment of cerebral spasticity. peroperative electric stimulation of posterior roots and its use in the choice of the roots to be sectioned].

The authors present a modification of Foerster's Rhizotomy for the treatment of spasticity in cerebral palsy: functional posterior rhizotomy. The selection of the roots/rootlesses to be sectioned, is accomplished on functional data, based upon the analysis of the reflex responses to the intraoperative lumbar dorsal roots stimulation. With this method it is possible to selectively interfere with the pathological circuits responsible for hypertonia, saving proprioceptive afferences necessary for motor reeducation. The clinical results on hypertonia are the same as for total or partial rhizotomies, but sides effects (ataxia, hypotonia) are considerably reduced.

Cerebral Palsy↗

[Microscopic identification of the powder of roots of genus Adenophora. I. The roots of Sect. Basiphyllae and Sect. Pachydiscus].

This paper deals with the microscopic characteristics of the powder of the roots of Genus Adenophora. Eighteen species and subspecies have been studied. The results show that Sect. Basiphyllae and Sect. Pachydiscus can be identified easily based on the amount of sclerified cork cells, and 18 species, subspecies and varieties can be identified according to the amount, shape and thickness of the walls of the sclerified cork cells, the diameter and pit of the vessels, the number and shape of the secretion of the laticifers, and the number of inulin crystals.

Magnoliopsida↗

Dorsal root potentials and dorsal root reflexes: a double-edged sword.

The nature of dorsal root reflexes (DRRs) and their possible role in peripheral inflammation and the consequent hyperalgesia are reviewed. The history of DRRs and the relationship of DRRs to primary afferent depolarization and presynaptic inhibition in pathways formed by both large and fine afferents are discussed. Emphasis is placed on the mechanisms underlying primary afferent depolarization, including the anatomical arrangement of the synapses involved, how depolarization can result in inhibition by decreasing transmitter release, the role of excitatory amino acids and GABA, the manner in which the equilibrium potential for chloride ions is determined in primary afferent fibers, and forms of presynaptic inhibition that do not utilize GABA(A) receptors. There is then a discussion of neurogenic inflammation, including the role of the release of neuropeptides such as substance P and calcitonin gene-related peptide from sensory nerve endings. Evidence is reviewed that links DRRs to a substantial part of the swelling of the knee joint in acute experimental arthritis and to the flare reaction in the skin following intradermal injection of capsaicin. Possible mechanisms by which the level of DRR activity might be enhanced following inflammation are suggested. The consequences of this increase in DRRs may include exacerbation of hyperalgesia as well as of peripheral inflammation. The conversion of an inhibitory process, presynaptic inhibition, to an excitatory one by DRRs can thus lead to pathological consequences.

Afferent Pathways↗

Getting to the root of plant development: the genetics of Arabidopsis root formation.

Root development in Arabidopsis thaliana is amenable to molecular genetic analyses because of its simplicity and accessibility. Genetic screens have identified a rich collection of mutants that can be used to address a variety of fundamental questions in plant developmental biology. These mutants have defects in genes that govern organ formation, meristem activity, cell differentiation and response to environmental conditions.

Arabidopsis↗

Stentless bioprosthetic aortic valve replacement after a homograft root replacement: Toronto SPV implantation after a homograft root.

Stentless bioprosthetic valves for the aortic position offer excellent hemodynamic characteristics, making them an attractive choice ahead of other valve prostheses. We present a unique case in which a patient underwent aortic valve replacement with a stentless porcine valve and mitral valve repair for severe aortic and mitral regurgitation 1 year after a homograft root replacement for acute aortic endocarditis. The rationale for our approach is outlined in the context of current surgical trends.

Animals↗

Effects of acupuncture on the expression of glial cell line-derived neurotrophic factor (GDNF) and basic fibroblast growth factor (FGF-2/bFGF) in the left sixth lumbar dorsal root ganglion following removal of adjacent dorsal root ganglia.

This investigation studied the temporal changes in the expression of GDNF and FGF-2 in the left sixth lumbar (L6) dorsal root ganglion (DRG) after acupuncture in adult cats subjected to unilateral removal of adjacent DRG. The cats were divided into three groups. Group I were normal control animals. Group II cats were subjected to removal of DRG associated with the left L1-L5 and L7-S2 spinal nerves, sparing the L6 DRG. Group III cats received similar treatment as Group II ones, but in addition were subjected to acupuncture on the left side at acupuncture points (xuewei) the day after the operation. Both Groups II and III animals were perfused under anesthesia at 7 and 14 days post-operation (dpo) and their left DRG were processed for the immunohistochemical demonstration of GDNF and FGF-2. Following removal of adjacent DRG, the average number of all GDNF stained neurons in L6 DRG was decreased at 7 dpo and more so at 14 dpo. Acupuncture reversed this trend, as demonstrated in the increased average number of immunopositive small-to-medium sized neurons. FGF-2 expression was also less marked at 7 dpo but returned to normal at 14 dpo. Acupuncture significantly increased the average number of FGF-2 positive neurons compared with that in operated animals. This increase was observed in both large and small-to-medium sized neurons. In conclusion, our results demonstrated that the average number of GDNF and FGF-2 neurons in L6 DRG was decreased after unilateral removal of adjacent DRG but acupuncture could reverse some of the changes.

Acupuncture Therapy↗

Getting to the root: young writers' sensitivity to the role of root morphemes in the spelling of inflected and derived words.

The English orthography is morphophonemic: spellings encode both morphemes and phonemes. Questions of the starting point and extent of young children's understanding of the link between morphemes and spelling are important for theories of spelling development. We conducted two experiments to address these issues. In Experiment 1, 65 six- to eight-year-old English-speaking children spelled just the first sections of inflected, derived and control words. Their spelling of these first segments was better in inflected and derived words than in control words. The findings were replicated in Experiment 2 with 78 six- to eight-year-old children spelling a greater number of items. These two studies converge on the conclusion that, in specific testing situations, six- to eight-year-old children appreciate the role of root morphemes in the spelling of both inflected and derived words. These results are discussed in relation to current models of spelling development.

Analysis of Variance↗

Alfalfa Root Nodule Carbon Dioxide Fixation : II. Partial Purification and Characterization of Root Nodule Phosphoenolpyruvate Carboxylase.

A nonphotosynthetic phosphoenolpyruvate carboxylase (EC 4.1.1.31) was partially purified from the cytosol of root nodules of alfalfa. The enzyme was purified 86-fold by ammonium sulfate fractionation, DEAE-cellulose, hydroxylapatite chromatography, and reactive agarose with a final yield of 32%. The enzyme exhibited a pH optimum of 7.5 with apparent K(m) values for phosphoenolpyruvate and magnesium of 210 and 100 micromolar, respectively. Two isozymes were resolved by nondenaturing polyacrylamide disc gel electrophoresis. Subsequent electrophoresis of these isozymes in a second dimension by sodium dodecyl sulfate slab gel electrophoresis yielded identical protein patterns for the isozymes with one major protein band at molecular weight 97,000. Malate and AMP were slightly inhibitory (about 20%) to the partially purified enzyme. Phosphoenolpyruvate carboxylase comprised approximately 1 to 2% of the total soluble protein in actively N(2)-fixing alfalfa nodules.

Journal Article↗

Potassium-dependent changes in the expression of membrane-associated proteins in barley roots : I. Correlations with k(rb) influx and root k concentration.

Barley (Hordeum vulgare L. cv Halcyon) seedlings which had been grown in full strength complete inorganic nutrient media (containing 6 millimolar K(+)) had high internal K(+) concentrations and low values of K(+) ((86)Rb(+)) influx when influx was measured from solutions containing 100 micromolar K(+). Transfer of these plants to solutions lacking K(+) resulted in significant reductions of root and shoot K(+) concentrations and values of K(+) ((86)Rb(+)) influx increased by greater than 10-fold within 3 days. When plants treated in this way were returned to complete solutions, containing K(+), the changes induced by K(+) deprivation were reversed. Parallel studies of microsomal membranes by means of SDS-PAGE demonstrated that the expression of a group of polypeptides increased or decreased in parallel with changes of K(+) ((86)Rb(+)) influx. Most prominent of these were 45 and 34 kilodalton polypeptides which specifically responded to K(+) status of the barley plants; their expression was not enhanced by N or P deprivation. The 45 kilodalton polypeptide was susceptible to degradation by a membrane associated protease when microsomes were washed in buffer containing 0.2 millimolar PMSF. This loss was prevented by increasing PMSF concentration to 2 millimolar.

Journal Article↗