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1.
Europace ; 26(2)2024 Feb 01.
Artículo en Inglés | MEDLINE | ID: mdl-38367008

RESUMEN

AIMS: Failure of radiofrequency (RF) ablation of ventricular arrhythmias is often due to inadequate lesion size. Irrigated RF ablation with half-normal saline (HNS) has the potential to increase lesion size and reduce sodium delivery to the patient if the same volume of RF irrigant were used for normal saline (NS) and HNS but could increase risks related to steam pops and lesion size. This study aims to assess periprocedural complications and acute ablation outcome of ventricular arrhythmias ablation with HNS. METHODS AND RESULTS: Prospective assessment of outcomes was performed in 1024 endocardial and/or epicardial RF ablation procedures in 935 consecutive patients (median age 64 years, 71.2% men, 73.4% cardiomyopathy, 47.2% sustained ventricular tachycardia). Half-normal saline was selected at the discretion of the treating physician. Radiofrequency ablation power was generally titrated to a ≤15â€…Ω impedance fall with intracardiac echocardiography monitoring. Half-normal saline was used in 900 (87.9%) and NS in 124 (12.1%) procedures. Any adverse event within 30 days occurred in 13.0% of patients treated with HNS RF ablation including 4 (0.4%) strokes/transient ischaemic attacks and 34 (3.8%) pericardial effusions requiring treatment (mostly related to epicardial access). Two steam pops with perforation required surgical repair (0.2%). Patients who received NS irrigation had less severe disease and arrhythmias. In multivariable models, adverse events and acute success of the procedure were not related to the type of irrigation. CONCLUSION: Half-normal saline irrigation RF ablation with power guided by impedance fall and intracardiac echocardiography has an acceptable rate of complications and acute ablation success while administering half of the saline load expected for NS irrigation.


Asunto(s)
Ablación por Catéter , Ablación por Radiofrecuencia , Taquicardia Ventricular , Masculino , Humanos , Persona de Mediana Edad , Femenino , Solución Salina/efectos adversos , Vapor , Estudios Prospectivos , Arritmias Cardíacas/diagnóstico , Arritmias Cardíacas/cirugía , Ablación por Catéter/efectos adversos , Ablación por Catéter/métodos , Taquicardia Ventricular/cirugía , Irrigación Terapéutica/efectos adversos
2.
Proc Natl Acad Sci U S A ; 112(2): 448-52, 2015 Jan 13.
Artículo en Inglés | MEDLINE | ID: mdl-25548195

RESUMEN

Inference about future climate change impacts typically relies on one of three approaches: manipulative experiments, historical comparisons (broadly defined to include monitoring the response to ambient climate fluctuations using repeat sampling of plots, dendroecology, and paleoecology techniques), and space-for-time substitutions derived from sampling along environmental gradients. Potential limitations of all three approaches are recognized. Here we address the congruence among these three main approaches by comparing the degree to which tundra plant community composition changes (i) in response to in situ experimental warming, (ii) with interannual variability in summer temperature within sites, and (iii) over spatial gradients in summer temperature. We analyzed changes in plant community composition from repeat sampling (85 plant communities in 28 regions) and experimental warming studies (28 experiments in 14 regions) throughout arctic and alpine North America and Europe. Increases in the relative abundance of species with a warmer thermal niche were observed in response to warmer summer temperatures using all three methods; however, effect sizes were greater over broad-scale spatial gradients relative to either temporal variability in summer temperature within a site or summer temperature increases induced by experimental warming. The effect sizes for change over time within a site and with experimental warming were nearly identical. These results support the view that inferences based on space-for-time substitution overestimate the magnitude of responses to contemporary climate warming, because spatial gradients reflect long-term processes. In contrast, in situ experimental warming and monitoring approaches yield consistent estimates of the magnitude of response of plant communities to climate warming.


Asunto(s)
Cambio Climático , Seguimiento de Parámetros Ecológicos/métodos , Plantas , Biodiversidad , Ecosistema , Calentamiento Global , Fenómenos Fisiológicos de las Plantas
3.
Glob Chang Biol ; 22(9): 3080-96, 2016 09.
Artículo en Inglés | MEDLINE | ID: mdl-27004610

RESUMEN

Many arctic ecological processes are regulated by soil temperature that is tightly interconnected with snow cover distribution and persistence. Recently, various climate-induced changes have been observed in arctic tundra ecosystems, e.g. shrub expansion, resulting in reduction in albedo and greater C fixation in aboveground vegetation as well as increased rates of soil C mobilization by microbes. Importantly, the net effects of these shifts are unknown, in part because our understanding of belowground processes is limited. Here, we focus on the effects of increased snow depth, and as a consequence, increased winter soil temperature on ectomycorrhizal (ECM) fungal communities in dry and moist tundra. We analyzed deep DNA sequence data from soil samples taken at a long-term snow fence experiment in Northern Alaska. Our results indicate that, in contrast with previously observed responses of plants to increased snow depth at the same experimental site, the ECM fungal community of the dry tundra was more affected by deeper snow than the moist tundra community. In the dry tundra, both community richness and composition were significantly altered while in the moist tundra, only community composition changed significantly while richness did not. We observed a decrease in richness of Tomentella, Inocybe and other taxa adapted to scavenge the soil for labile N forms. On the other hand, richness of Cortinarius, and species with the ability to scavenge the soil for recalcitrant N forms, did not change. We further link ECM fungal traits with C soil pools. If future warmer atmospheric conditions lead to greater winter snow fall, changes in the ECM fungal community will likely influence C emissions and C fixation through altering N plant availability, fungal biomass and soil-plant C-N dynamics, ultimately determining important future interactions between the tundra biosphere and atmosphere.


Asunto(s)
Micorrizas , Nieve , Alaska , Regiones Árticas , Suelo , Tundra
4.
Mol Ecol ; 24(2): 424-37, 2015 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-25522194

RESUMEN

Arctic tundra regions have been responding to global warming with visible changes in plant community composition, including expansion of shrubs and declines in lichens and bryophytes. Even though it is well known that the majority of arctic plants are associated with their symbiotic fungi, how fungal community composition will be different with climate warming remains largely unknown. In this study, we addressed the effects of long-term (18 years) experimental warming on the community composition and taxonomic richness of soil ascomycetes in dry and moist tundra types. Using deep Ion Torrent sequencing, we quantified how OTU assemblage and richness of different orders of Ascomycota changed in response to summer warming. Experimental warming significantly altered ascomycete communities with stronger responses observed in the moist tundra compared with dry tundra. The proportion of several lichenized and moss-associated fungi decreased with warming, while the proportion of several plant and insect pathogens and saprotrophic species was higher in the warming treatment. The observed alterations in both taxonomic and ecological groups of ascomycetes are discussed in relation to previously reported warming-induced shifts in arctic plant communities, including decline in lichens and bryophytes and increase in coverage and biomass of shrubs.


Asunto(s)
Ascomicetos/clasificación , Calentamiento Global , Microbiología del Suelo , Tundra , Alaska , Biodiversidad , ADN de Hongos/genética , ADN Espaciador Ribosómico/genética , Datos de Secuencia Molecular , Análisis de Secuencia de ADN
5.
Glob Chang Biol ; 21(2): 959-72, 2015 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-25156129

RESUMEN

Arctic regions are experiencing the greatest rates of climate warming on the planet and marked changes have already been observed in terrestrial arctic ecosystems. While most studies have focused on the effects of warming on arctic vegetation and nutrient cycling, little is known about how belowground communities, such as fungi root-associated, respond to warming. Here, we investigate how long-term summer warming affects ectomycorrhizal (ECM) fungal communities. We used Ion Torrent sequencing of the rDNA internal transcribed spacer 2 (ITS2) region to compare ECM fungal communities in plots with and without long-term experimental warming in both dry and moist tussock tundra. Cortinarius was the most OTU-rich genus in the moist tundra, while the most diverse genus in the dry tundra was Tomentella. On the diversity level, in the moist tundra we found significant differences in community composition, and a sharp decrease in the richness of ECM fungi due to warming. On the functional level, our results indicate that warming induces shifts in the extramatrical properties of the communities, where the species with medium-distance exploration type seem to be favored with potential implications for the mobilization of different nutrient pools in the soil. In the dry tundra, neither community richness nor community composition was significantly altered by warming, similar to what had been observed in ECM host plants. There was, however, a marginally significant increase in OTUs identified as ECM fungi with the medium-distance exploration type in the warmed plots. Linking our findings of decreasing richness with previous results of increasing ECM fungal biomass suggests that certain ECM species are favored by warming and may become more abundant, while many other species may go locally extinct due to direct or indirect effects of warming. Such compositional shifts in the community might affect nutrient cycling and soil organic C storage.


Asunto(s)
Biodiversidad , Calentamiento Global , Micorrizas/fisiología , Microbiología del Suelo , Tundra , Alaska , Regiones Árticas , ADN de Hongos/genética , Datos de Secuencia Molecular , Micorrizas/genética , Micorrizas/aislamiento & purificación , Reacción en Cadena de la Polimerasa , Estaciones del Año , Análisis de Secuencia de ADN , Temperatura
6.
JACC Clin Electrophysiol ; 10(2): 193-202, 2024 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-38069975

RESUMEN

BACKGROUND: Risks of radiofrequency catheter ablation for ventricular arrhythmias include emboli and bleeding complications but data on antithrombotic regimens are limited and guidelines do not specify a systematic approach. OBJECTIVES: This study sought to assess embolic and bleeding complications in relation to pre-periprocedure and post-periprocedure antithrombotic regimens. METHODS: Prospective assessment for complications was performed for 663 endocardial radiofrequency catheter ablation procedures in 616 consecutive patients (median age 64 years [Q1-Q3: 54-73 years], 70.3% men, 71.6% with cardiomyopathy, 44.5% with sustained ventricular tachycardia). RESULTS: There were 2 strokes (0.3%; 95% CI: 0.0%-0.8%), 1 transient ischemic attack (0.15%), and 2 pulmonary emboli (0.3%). There were 39 bleeding complications (5.9%) including 11 pericardial effusions (1.7%), and 28 related to vascular access (4.2%). Consistent with the prevalence of coronary artery disease (47.5%), atrial fibrillation (30.0%), and prior stroke (10.6%), preprocedure, 464 patients (70.0%) were taking antithrombotic agents including 220 (33.2%) taking aspirin alone (ASA), and 163 (24.6%) taking warfarin or a direct acting oral anticoagulant (DOAC). Preprocedure non-ASA antiplatelet use (OR: 2.846; P = 0.011) and DOAC use (OR: 2.585; P = 0.032) were associated with risk of bleeding complications. Following ablation, 49.8% of patients were treated with ASA 325 mg/d and 30.3% received DOACs or warfarin. New DOAC or warfarin administration was initiated in only 6.6% of patients. Overall, 39.7% of patients continued the same preprocedure antithrombotic regimen. CONCLUSIONS: Stroke is a rare complication of radiofrequency catheter ablation for ventricular arrhythmia using ASA 325 mg/d as a minimal postprocedure regimen with more potent regimens for selected patients.


Asunto(s)
Fibrilación Atrial , Accidente Cerebrovascular , Masculino , Humanos , Persona de Mediana Edad , Femenino , Warfarina/efectos adversos , Anticoagulantes/efectos adversos , Hemorragia/etiología , Hemorragia/inducido químicamente , Fibrinolíticos , Estudios Prospectivos , Accidente Cerebrovascular/etiología , Accidente Cerebrovascular/epidemiología , Fibrilación Atrial/cirugía , Aspirina/efectos adversos
7.
Circ Arrhythm Electrophysiol ; 17(6): e012635, 2024 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-38804141

RESUMEN

BACKGROUND: Irrigated radiofrequency ablation with half-normal saline can potentially increase lesion size but may increase the risk of steam pops with the risk of emboli or perforation. We hypothesized that pops would be preceded by intracardiac echocardiography (ICE) findings as well as a large impedance fall. METHODS: In 100 consecutive patients undergoing endocardial ventricular arrhythmia radiofrequency ablation with half-normal saline, we attempted to observe the ablation site with ICE. Radiofrequency ablation power was titrated to a 15 to 20 Ohm impedance fall and could be adjusted for tissue whitening and increasing bubble formation on ICE. Steam pops were defined as audible or a sudden explosion of microbubbles on ICE. RESULTS: Of 2190 ablation applications in 100 patients (82% cardiomyopathy, 50% sustained ventricular tachycardia), pops occurred during 43 (2.0%) applications. Sites with pops had greater impedance decreases of 18 [14, 21]% versus 13 [10, 17]% (P<0.001). ICE visualized 1308 (59.7%) radiofrequency sites, and fewer pops occurred when ICE visualized the radiofrequency ablation site (1.4%) compared with without ICE visualization (2.8%; P=0.016). Of the 18 ICE-visible pops, 7 (39%) were silent but recognized as an explosion of bubbles on ICE. With ICE, 89% of pops were preceded by either tissue whitening or a sudden increase in bubbles. In a multivariable model, tissue whitening and a sudden increase in bubbles were associated with steam pops (odds ratio, 7.186; P=0.004, and odds ratio, 29.93; P<0.001, respectively), independent of impedance fall and power. There were no pericardial effusions or embolic events with steam pops. CONCLUSIONS: Steam pops occurred in 2% of half-normal saline radiofrequency applications titrated to an impedance fall and are likely under-recognized without ICE. On ICE, steam pops are usually preceded by tissue whitening or a sudden increase in bubble formation, which can potentially be used to adjust radiofrequency application to help reduce pops.


Asunto(s)
Ablación por Catéter , Ecocardiografía , Solución Salina , Vapor , Taquicardia Ventricular , Irrigación Terapéutica , Humanos , Masculino , Femenino , Solución Salina/administración & dosificación , Persona de Mediana Edad , Ablación por Catéter/efectos adversos , Taquicardia Ventricular/cirugía , Taquicardia Ventricular/fisiopatología , Taquicardia Ventricular/diagnóstico por imagen , Anciano , Embolia Aérea/prevención & control , Embolia Aérea/etiología , Embolia Aérea/diagnóstico por imagen , Resultado del Tratamiento , Factores de Riesgo , Valor Predictivo de las Pruebas , Impedancia Eléctrica
8.
Nat Commun ; 12(1): 3442, 2021 06 11.
Artículo en Inglés | MEDLINE | ID: mdl-34117253

RESUMEN

Rapid climate warming is altering Arctic and alpine tundra ecosystem structure and function, including shifts in plant phenology. While the advancement of green up and flowering are well-documented, it remains unclear whether all phenophases, particularly those later in the season, will shift in unison or respond divergently to warming. Here, we present the largest synthesis to our knowledge of experimental warming effects on tundra plant phenology from the International Tundra Experiment. We examine the effect of warming on a suite of season-wide plant phenophases. Results challenge the expectation that all phenophases will advance in unison to warming. Instead, we find that experimental warming caused: (1) larger phenological shifts in reproductive versus vegetative phenophases and (2) advanced reproductive phenophases and green up but delayed leaf senescence which translated to a lengthening of the growing season by approximately 3%. Patterns were consistent across sites, plant species and over time. The advancement of reproductive seasons and lengthening of growing seasons may have significant consequences for trophic interactions and ecosystem function across the tundra.


Asunto(s)
Fenómenos Fisiológicos de las Plantas , Plantas , Reproducción/fisiología , Tundra , Regiones Árticas , Clima , Ecosistema , Flores , Modelos Biológicos , Fenotipo , Plantas/genética , Estaciones del Año , Análisis Espacio-Temporal , Temperatura
9.
FEMS Microbiol Ecol ; 91(8): fiv095, 2015 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-26253509

RESUMEN

Fungi, including symbionts, pathogens and decomposers, play crucial roles in community dynamics and nutrient cycling in terrestrial ecosystems. Despite their ecological importance, the response of most arctic fungi to climate warming is unknown, so are their potential roles in driving the observed and predicted changes in tundra communities. We carried out deep DNA sequencing of soil samples to study the long-term effects of experimental warming on fungal communities in dry heath and moist tussock tundra in Arctic Alaska. The data presented here indicate that fungal community composition responds strongly to warming in the moist tundra, but not in the dry tundra. While total fungal richness was not significantly affected by warming, there were clear correlations among operational taxonomic unit richness of various ecological and taxonomic groups and long-term warming. Richness of ectomycorrhizal, ericoid mycorrhizal and lichenized fungi generally decreased with warming, while richness of saprotrophic, plant and animal pathogenic, and root endophytic fungi tended to increase in the warmed plots. More importantly, various taxa within these functional guilds followed opposing trends that highlight the importance of species-specific responses to warming. We recommend that species-level ecological differences be taken into account in climate change and nutrient cycling studies that involve arctic fungi.


Asunto(s)
ADN de Hongos/genética , Calentamiento Global , Micorrizas/clasificación , Raíces de Plantas/microbiología , Plantas/microbiología , Alaska , Animales , Regiones Árticas , Secuencia de Bases , Ecosistema , Consorcios Microbianos/genética , Micorrizas/genética , Análisis de Secuencia de ADN , Microbiología del Suelo
10.
Arctic Anthropol ; 40(2): 40-8, 2003.
Artículo en Inglés | MEDLINE | ID: mdl-21774142

RESUMEN

Several presenters made the point that one cannot look at narrative alone, without taking into account the music, dance, and drumming that, in many settings, go along with it. One of these presenters was Marilyn Walker, who has had the good fortune to work with healers in Siberia. Although academic in approach, Marilyn's paper also recognizes the importance of experiential ways of knowing. In her Quebec City presentation, she shared some of this experiential dimension by showing and commenting on videotaped segments featuring three Siberian healers. Walker's paper discusses healing at several levels. In addition to several healing dimensions that she lists at the end of her paper, she mentions the physiological effects of music, dance, and drumming. Current research is leading to a better understanding of how trauma affects the brain and the body, and ways that various therapies, including new therapies focusing on sensorimotor effects, can promote healing. Along with these developments has come a greater appreciation and understanding among some mental health practitioners of some of the neuropsychological processes by which traditional practices such as narrative, singing, drumming, and dancing, may bring about healing.


Asunto(s)
Curación por la Fe , Médicos Generales , Salud Mental , Música , Grupos de Población , Regiones Árticas/etnología , Baile/educación , Baile/historia , Baile/fisiología , Baile/psicología , Curación por la Fe/educación , Curación por la Fe/historia , Folclore , Médicos Generales/educación , Médicos Generales/historia , Historia del Siglo XX , Historia del Siglo XXI , Humanos , Medicina Tradicional/historia , Salud Mental/historia , Música/historia , Música/psicología , Grupos de Población/educación , Grupos de Población/etnología , Grupos de Población/historia , Grupos de Población/legislación & jurisprudencia , Grupos de Población/psicología , Siberia/etnología , Espiritualidad
11.
Proc Natl Acad Sci U S A ; 103(5): 1342-6, 2006 Jan 31.
Artículo en Inglés | MEDLINE | ID: mdl-16428292

RESUMEN

Recent observations of changes in some tundra ecosystems appear to be responses to a warming climate. Several experimental studies have shown that tundra plants and ecosystems can respond strongly to environmental change, including warming; however, most studies were limited to a single location and were of short duration and based on a variety of experimental designs. In addition, comparisons among studies are difficult because a variety of techniques have been used to achieve experimental warming and different measurements have been used to assess responses. We used metaanalysis on plant community measurements from standardized warming experiments at 11 locations across the tundra biome involved in the International Tundra Experiment. The passive warming treatment increased plant-level air temperature by 1-3 degrees C, which is in the range of predicted and observed warming for tundra regions. Responses were rapid and detected in whole plant communities after only two growing seasons. Overall, warming increased height and cover of deciduous shrubs and graminoids, decreased cover of mosses and lichens, and decreased species diversity and evenness. These results predict that warming will cause a decline in biodiversity across a wide variety of tundra, at least in the short term. They also provide rigorous experimental evidence that recently observed increases in shrub cover in many tundra regions are in response to climate warming. These changes have important implications for processes and interactions within tundra ecosystems and between tundra and the atmosphere.


Asunto(s)
Fenómenos Fisiológicos de las Plantas , Plantas/metabolismo , Regiones Árticas , Biodiversidad , Biomasa , Clima , Conservación de los Recursos Naturales , Ecosistema , Ambiente , Monitoreo del Ambiente , Variación Genética , Efecto Invernadero , Calor , Modelos Teóricos , Programas Informáticos , Temperatura
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