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At least 163 records · Page 9Linked to original sources

Ecophysiological analysis of two arctic sedges under reduced root temperatures.

Shoot physiological activity in arctic vascular plants may be controlled by low soil temperatures. While leaves may be exposed to moderate temperatures during the growing season, root temperatures often remain near freezing. In this study, two tundra sedges, Eriophorum vaginatum and Carex bigellowii, were subjected to reduced soil temperatures, and photosynthetic parameters (light saturated photosynthesis A(max), variable to maximal fluorescence and F(v)/F(m) stomatal conductance) and abscisic acid concentrations were determined. Stomatal conductance and A(max) for both E. vaginatum and C. bigellowii strongly decreased with declining soil temperatures. Decreasing soil temperature, however, impacted F(v)/F(m) to a much lesser degree. Root and leaf ABA concentrations increased with decreasing root temperature. These observations support the contention that soil temperature is a significant photosynthetic driving factor in arctic sedges exposed to variable root and shoot temperatures. Because these two species comprise approximately 30% of the vascular ground cover of wet tussock tundra, the soil temperature responses of these sedges potentially scale up to significant effects on ecosystem carbon exchange.

Journal Article↗

Formation and mineralization of murine molar roots with hypocalcaemia induced by a low-calcium diet and the changes after returning to a normal diet.

The purpose was to examine the formation and mineralization of molar roots in rats with hypocalcaemia, induced by a low-calcium diet and the changes after returning to a normal diet. Two-week-old male Wistar rats were fed a low-calcium diet (0.03% calcium) during the period when the first molar roots form and then a diet containing normal amounts of calcium (1.83% calcium) was restored. The blood calcium, the length and mineralization of the first upper molar roots, and the density of surrounding alveolar bone were measured, and the morphological and histological features of the roots examined. While the rats were fed the low-calcium diet, they had a significantly lower blood calcium than normal controls. Morphologically, the upper first molar roots were shorter and the predentine layer was thicker. The mineralization of dentine and the surrounding alveolar bone was significantly less than in the controls and no mineralization was detected in the thickened predentine. After a normal calcium diet had been restored, the blood calcium, thickness of dentine, alveolar bone density, and length of the roots caught up with the normal. In addition, hypomineralized dentine and interglobular dentine were observed. Subsequently, the mineralization of the dentine increased and the amount of interglobular dentine gradually decreased. These results suggest that in rats a low-calcium diet induces hypocalcaemia, causing the formation of interglobular dentine and hypomineralization of the dentine of the roots. Most physiological variables recovered completely with the return to a normal-calcium diet, although some hypomineralization of the dentine remained.

Animals↗

In situ ageing of fine beech roots (Fagus sylvatica) assessed by transmission electron microscopy and electron energy loss spectroscopy: description of microsites and evolution of polyphenolic substances.

Root biomass is quantitatively and qualitatively important in most ecosystems, but its contribution to the pool of organic matter in the soil is not clear. This work was designed to specify root ageing on an ultrastructural scale by transmission electron microscopy combined with microanalysis by electron energy loss spectroscopy. This approach is very suitable for studying the soil/plant interface, and for semi-quantitative analysis of the evolution of polyphenolic substances during root evolution. Three root segments were studied according to a gradient of root senescence: the apical and basal segments of the mycorrhiza and the mycorrhiza-carrier root. Each segment contained a certain proportion of senescent cells, some of which were of fungal origin, and this proportion increased as the root aged. In the three segments, the soil/plant interfaces were differentiated, and the micro-organisms observed in situ were described. Senescent root cells contained many polyphenolic substances and our results showed that these substances were, according to the root segment, differently associated with Ca, N and Si. When all these ultrastructural data are correlated with more global data, they can be usefully applied to root cell physiology, microbiology and pedology. This approach makes it possible to specify the evolution of organic matter in situ in soils whatever its origin.

Cellular Senescence↗

Dental root resorption and repair: histology and histometry during physiological drift of rat molars.

OBJECTIVE: The process of dental root resorption and subsequent cementum regeneration has not been sufficiently elucidated. This study aimed to examine the process of the root resorption and cementum regeneration during physiological tooth drift using a rat model, and to evaluate this experimental model. METHODS: Distal roots in mandibular first molars and the surrounding periodontal tissues were investigated with light and electron microscopy. The light microscopic approach included histochemical and histometric analyses utilizing the tartrate-resistant acid phosphatase (TRAP) reaction. RESULTS: Root resorption was observed in the distal side of the roots and was most active in 5- to 6-week-old rats, and gradually decreased hereafter. An increase in the number of TRAP-positive mononuclear cells, which seemed to be odontoclast precursor cells, preceded the increase in the number of odontoclasts. Root resorption was transient, and was followed by the new formation of acellular extrinsic fiber cementum accompanied with only a slight inflammation, and therefore classified as external surface resorption. Preparation for new cementum started adjacent to the resorption areas when root resorption was most active. CONCLUSIONS: The root resorption during drift in rats is transient and followed by acellular extrinsic fiber cementum regeneration. Cellular kinetics suggested that odontoclast precursor cells are supplied as mononuclear cells from vascular spaces.

Acid Phosphatase↗

Biologically active oligosaccharides from pectins of Pisum sativum L. seedlings affecting root generation.

Two physiologically active oligosaccharide fractions were isolated from pectin of Pisum sativum L. cell wall after its partial acid hydrolysis. These fractions displayed stimulating and inhibiting effects on root formation in thin-layer explants. The subsequent separation of these fractions by gel permeation and anion-exchange chromatography resulted in fractions with effective concentrations two orders of magnitude lower than the concentrations of the initial fractions. The resulting oligosaccharides displayed their effect on the earliest stage of the rhizogenesis associated with formation of root primordias. The rhizogenesis-inhibiting fraction suppressed cell division by 30-50%. The stimulating fraction mainly contained fragments of xyloglucan and galactan, and the inhibiting fraction contained fragments of xyloglucan, galactan, and arabinan. The polymerization degrees of the stimulating and of the inhibiting oligosaccharides were 10-11 and 5-6, respectively.

Oligosaccharides↗

History of renal physiology in Germany during the 19th century.

The roots of renal physiology in Germany in the last century have been traced. Vitalistic concepts became replaced by physical, chemical and mechanistic laws which govern biological processes. First, the main exponents of renal physiology, J. Henle, C. Ludwig and R.P.H. Heidenhain, are discussed, then the (indirect) contributions of A. Fick, K. Peter, H. Helmholtz, E. du Bois-Reymond, J.L. Schönlein and A. Dohrn are evaluated. The original literature bearing on renal physiology in the 19th century is screened by a survey of publications in Pflügers Archiv and Archiv der experimentellen Pathologie und Pharmakologie. We point to the international cooperation in the field. At the turn of the century, renal function was adequately described by a theory of glomerular filtration, tubular secretion and tubular reabsorption.

Germany↗

Attainment of hermetic seal with decalcified allogenic bone matrix grafts--surgical vs. conservative approach.

Twenty four non vital upper anterior teeth from twelve healthy patients, between the ages of 18-30 years, having definite radiolucent areas at the periapex, were taken for this study. A comparison was made between the surgical and conservative approach, using decalcified allogenic bone matrix (DABM) grafts to achieve a physiologic seal at the root apex. The period of observation were 60 days, 120 days and 180 days. The clinical and radiological finding of this study strongly support the observation that DABM accelerates osteogenesis and cementogenesis which seal the root apex through a physiological process. The process of healing was quicker when the surgical approach was used. However a longer period of observation and histological study is required before any conclusion can be drawn, as regard the choice of a surgical or conservative approach.

Adult↗

A pharmacological study of the inhibition of ventral group Ia-excited spinal interneurones.

In cats anaesthetized with pentobarbitone a pharmacological investigation was made of the inhibition by volleys in afferent fibres and ventral roots of physiologically identified Ia interneurones in the ventral horn. The recurrent inhibition of Ia interneurones by Renshaw cells, and the "mutual" inhibition between Ia interneurones, were suppressed by electrophoretic strychnine and are presumably mediated by glycine. Short latency and duration inhibitions by impulses in muscle and cutaneous afferents were also suppressed by strychnine. Electrophoretic GABA inhibited the firing of Ia interneurones and the effects of bicuculline methochloride suggested that this amino acid mediates longer latency and duration inhibition produced by afferent impulses of muscle and cutaneous origin.

Action Potentials↗

Some features of secretory systems in plants.

Recent work on secretion in plants is reviewed, with emphasis on the anatomy and physiology of root cap cells in higher plants, the stalked glands of Drosera capensis, and the secretory mechanism of Dionaea muscipula. Cells of the root cap of higher plants switch from a geo-perceptive role to one of mucilage secretion at maturation. Features of this process, the role of the Golgi and the pathway for mucilage distribution are reviewed. In contrast, the stalked glands of the leaves of Drosera capensis are much longer lived and have a complex anatomy. The mechanisms for mucilage secretion, protein absorption and the role of the cell membranes in the internal secretion of the protein are described, using data from X-ray microscopv. The secretion of fluid and protein by Dionaea is stimulated by various nitrogen-containing compounds. Uric acid, often excreted by captured insects, is particularly effective in this respect.

Ammonia↗

Effects of growth/differentiation factor-5 on human periodontal ligament cells.

OBJECTIVES: Growth/differentiation factor-5 (GDF-5), a member of the transforming growth factor-beta superfamily, shows a close structural relationship to bone morphogenetic proteins and plays crucial roles in skeletal, tendon, and ligament morphogenesis. The mRNA encoding GDF-5 is also expressed during odontogenesis, especially in dental follicle tissue. While this suggests that GDF-5 participates in the formation of alveolar bone and the periodontal ligament, cementum, and dental root, the physiologic role of GDF-5 in these tissues in adulthood remains unclear. We therefore investigated GDF-5 effects upon cultures of human periodontal ligament (HPDL) cells. MATERIAL AND METHODS: HPDL cells were obtained from healthy periodontal ligaments of individuals. Tetrazolium reduction assay was carried out for cell proliferation assay. Alkaline phosphatase (ALP) activity was estimated by measuring light absorbance at 405 nm. Reverse transcription-polymerase chain reaction (RT-PCR) and northern analysis were performed for gene expression in cultured HPDL cells. Sulfated glycosaminoglycan (sGAG) synthesis was evaluated by histochemical staining and a quantitative dye-binding method. RESULTS: Expression of GDF-5 and its receptor was demonstrated in HPDL cells by RT-PCR. ALP activity in HPDL cells was significantly decreased by addition of rhGDF-5 at 10-1000 ng/ml (p < 0.05). Although northern analysis showed little change in gene expression for collagen alpha2(I) in rhGDF-5-stimulated HPDL cells, rhGDF-5 dose-dependently enhanced cell proliferation. This proliferative effect persisted for 16 d. Alcian blue staining and dye-binding assays indicated that sGAG synthesis was enhanced by rhGDF-5. CONCLUSION: rhGDF-5 may provide an environment fostering periodontal healing or regeneration by affecting extracellular matrix metabolism.

Actins↗

Upper limb load as a function of repetitive task parameters: part 2--an experimental study.

The aim of the study was to compare the theoretical indicator of upper limb load with the physiological indicator of musculoskeletal load, which is present while performing a repetitive task (a normalized electromyography [EMG] amplitude recorded from the muscles of the upper limb involved in the performed task). In an experimental study of a repetitive task, the EMG signal from 5 main muscles of the shoulder girdle, arm and forearm was registered: extensor carpi radialis longus, flexor carpi ulnaris, deltoideus anterior, biceps brachii caput breve and trapezius descendent. The results of the study showed a strong correlation between the theoretical indicator (Integrated Cycle Load) and the physiological indicator (root mean square of a normalized EMG amplitude from the 5 muscles). This proves that the developed theoretical indicator can be accepted as an indicator of upper limb musculoskeletal load during a work task.

Adult↗

From ecological threats to environmental solutions: a critical review of invasive plant species for heavy metal phytoremediation.

Heavy metal contamination represents a persistent environmental challenge threatening ecosystem stability, agricultural productivity, and human health. Therefore, the development of sustainable and cost-effective remediation strategies is essential. Phytoremediation, an environmentally compatible approach that utilizes plants and their associated biological processes to reduce contaminant mobility, bioavailability, and toxicity, has gained increasing attention as an alternative to conventional remediation techniques. Among potential phytoremediation candidates, invasive plant species (IPS) have attracted interest due to their rapid growth, high biomass production, extensive root systems, physiological plasticity, and tolerance to stressful environments, including heavy metal contamination. Species such as Alternanthera philoxeroides, Arundo donax, Eichhornia crassipes, and Pistia stratiotes have demonstrated potential for metal uptake, accumulation, immobilization, or tolerance in contaminated ecosystems. This review critically examines the role of invasive plants in heavy metal phytoremediation by evaluating the physiological, biochemical, and ecological traits that influence remediation outcomes. Key mechanisms, including phytoextraction, phytostabilization, rhizosphere-mediated processes, and plant-microbe interactions, are discussed using evidence from contaminated soil and aquatic environments. The potential advantages of invasive plants, particularly their high biomass production and environmental adaptability, are evaluated alongside ecological concerns associated with their utilization. Importantly, invasion success does not necessarily translate into remediation success, and the effectiveness of invasive plants depends on contaminant characteristics, ecosystem conditions, and management practices. Major challenges, including uncontrolled spread, ecosystem disruption, contaminated biomass management, and limited field-scale validation, are critically assessed. Overall, invasive plants represent context-dependent remediation resources rather than universal solutions. Their application requires integrated risk assessment, containment strategies, long-term monitoring, and evidence-based management frameworks to maximize remediation benefits while minimizing ecological risks.

Contamination↗

Factors determining constant work rate exercise tolerance in COPD and their role in dictating the minimal clinically important difference in response to interventions.

Constant work rate exercise testing has been used to assess effectiveness of therapeutic interventions in chronic obstructive pulmonary disease. It has been noted to yield larger fractional increases in exercise tolerance than other measures. Reasons for this are rooted in physiological determinants of the time course of pulmonary ventilation. Following exercise onset, ventilation increases in three phases; the slowest phase is seen only at high exercise intensities. In chronic obstructive pulmonary disease exercise proceeds until ventilation reaches a limiting value. Because both ventilatory requirement for exercise and limiting ventilation can be manipulated by several interventions (exercise training, oxygen inhalation, bronchodilator administration), constant work rate tolerance responds to these interventions. The power-duration relationship predicts the effect of the work rate imposed on tolerated duration of a constant work rate test. Arguments are presented that a pre-intervention constant work rate duration of 4-7 minutes is desirable. At present, the recommended strategy to achieve this target duration is to choose a work rate equal to 85% of peak work rate achieved in a constant work rate test. There is clearly insufficient information to reliably determine a minimal clinically important difference for this test. A lower bound of 1.75 minutes is suggested.

Data Interpretation, Statistical↗

The transparent testa4 mutation prevents flavonoid synthesis and alters auxin transport and the response of Arabidopsis roots to gravity and light.

We examined whether flavonoids act as endogenous auxin transport regulators during gravity vector and light intensity changes in Arabidopsis thaliana roots. Flavonoid deficient transparent testa4 [tt4(2YY6)] seedlings had elevated root basipetal auxin transport compared with the wild type, consistent with the absence of a negative auxin transport regulator. The tt4(2YY6) roots had delayed gravitropism that was chemically complemented with a flavonoid intermediate. Flavonoid accumulation was found in wild-type columella cells, the site of gravity perception, and in epidermal and cortical cells, the site of differential growth, but flavonoid accumulation was absent in tt4(2YY6) roots. Flavonoid accumulation was higher in gravity-stimulated root tips as compared with vertical controls, with maximum differences coinciding with the timing of gravitropic bending, and was located in epidermal cells. Exogenous indole-3-acetic acid (IAA) also elevated flavonoid accumulation, suggesting that flavonoid changes in response to gravity might be partly as a result of changing IAA distribution. Acropetal IAA transport was also elevated in roots of tt4(2YY6). Flavonoid synthesis was repressed in the dark, as were differences in root acropetal transport in tt4(2YY6). These results are consistent with light- and gravity-induced flavonoid stimulation that alters auxin transport in roots and dependent physiological processes, including gravitropic bending and root development.

Arabidopsis↗

Polyacrylamide-bismuth for postmortem coronary arteriography.

High quality postmortem human coronary arteriograms are obtained by injecting an acrylamide-bismuth mixture into the isolated aortic root under physiologic pressure. The acrylamide advances to the terminal size (20 micrometer.) arterioles, polymerizes, and remains within the vessels during the processing of tissue for histologic studies. Because the polyacrylamide does not affect the arterial wall morphology or the surrounding myocardium, the acrylamide-bismuth injection technique offers the clarity of the cast-corrosion procedure for postmortem radiograms fo the epicardial and intramural coronary arteries and adds the capability for histologic studies of arterial and myocardial tissues.

Acrylic Resins↗

[Electrodiagnostic features in inflammatory demyelinating polyneuropathy].

Demyelinating conduction block is an important hallmark to distinguish chronic inflammatory demyelinating polyneuropathy (CIDP) from hereditary neuropathies, motor neuron disease and other axonal type neuropathies. The electrodiagnostic criteria of partial conduction block proposed by Asbury and Cornblath, more than 20% drop in CMAP amplitude between proximal and distal sites (e.g. elbow and wrist), may be inadequate, because 20% to 30% drop sometimes occurs in cases with hereditary demyelinating neuropathies. Rhee et al showed that pure temporal dispersion can produce amplitude reduction up to 50% without conduction block. This reduction between elbow and wrist is equivalent to 2% drop/cm. Since lesions are multifocal in CIDP, more than 2% drop/cm in relatively short segments could be a convincing finding of conduction block of CIDP or multifocal motor neuropathy. Our inching study has revealed that chance of lesion is equal from distal to proximal along the nerves of CIDP. However, it is not true in AIDP; most distal sites, roots, and physiological entrapment sites are more fragile, and early demyelination and secondary axonal degeneration start there. Axonal degeneration easily makes demyelinating conduction changes; therefore, in diagnosis of axonal form of AIDP, the possibility of early Wallerian degeneration has to be ruled out by careful follow-up, and delayed F-wave or long-latency units definitely go against the primary axonal pathology.

Axons↗

Root water uptake and transport: using physiological processes in global predictions.

Plant water loss, regulated by stomata and driven by atmospheric demand, cannot exceed the maximum steady-state supply through roots. Just as an electric circuit breaks when carrying excess current, the soil-plant continuum breaks if forced to transport water beyond its capacity. Exciting new molecular, biophysical and ecological research suggests that roots are the weakest link along this hydraulic flow path. We attempt here to predict rooting depth and water uptake using the hydraulic properties of plants and the soil, and also to suggest how new physiological tools might contribute to larger-scale studies of hydraulic lift, the water balance and biosphere-atmosphere interactions.

Plant Roots↗