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Topological outcomes in anisotropy-induced nano-fano resonance of the canister.
Perkinsus marinus, a protozoan and the causative agent of perkinsosis (dermo disease) is a prevalent parasite found within the eastern oyster (Crassostrea virginica). click here In this study, we explore metabolic processes of P. marinus cells under lipid-depleted medium conditions to elucidate the interchanging flux of lipid and carbohydrate metabolism. Although P. marinus can synthesize their own lipids from available nutrients, they display a slower growth in medium not supplemented with lipids as opposed to medium with lipids. Under these conditions, using transcriptomics, we surprisingly observed evidence of stimulated lipid degradation through increased transcription of two core β-oxidation pathway enzymes. Simultaneously, phospholipid biosynthetic pathways were downregulated. Metabolomic analysis supported the transcriptomic results. Most fatty acids were decreased in lipid-deplete medium as opposed to lipid-replete medium, and available glucose was fermented to lactate. A significant increase in the cholesterol derivative zymosterol further supported a downregulation of membrane synthesis under the experimental conditions. A robust tricarboxylic acid (TCA) cycle was apparent by enhanced citrate synthase transcription, and a simultaneous reduction in branched chain amino acids. It is concluded that although P. marinus has the capacity for synthesizing its own lipids, it can respond to lipid deprivation in medium by oxidizing readily available stores, and likely transitioning into a resting stage.Advance care planning involves a meaningful conversation about residents' end of life goals with the health-care team and documenting these wishes in advance directives; however, these conversations are not taking place early enough or with strategies that allow nursing home residents' preferences to be meaningfully integrated into care plans. This article outlines a new model that nursing home social workers can use to initiate advance care planning discussions called Take it to the Resident. This model was tested with 11 long-term stay nursing home residents. Data were collected through structured memos and field notes. Summative content analysis was utilized to analyze the data. Take it to the Resident facilitated a discussion about advance care planning and allowed residents to consider their wishes before engaging family members. Although discussions took place, some residents were hesitant to document their wishes formally through advance directives. The results of this study support the utility of continued testing of this model. Having empirically supported tools for nursing home social workers is critical to increasing advance care planning conversations and empowering residents to document their wishes.The researchers sought to determine the correlation level and factors that affect the correlation between pregnant women's marital adjustment and their identification with the motherhood role. A total of 146 healthy, married, and pregnant women were included. There was a negative and significantly low-level correlation between marital adjustment and identification with the motherhood role. The correlation was significant among women who were multiparous, married for six to 10 years, with low level of education, and decided to marry in agreement. The authors of this study suggest promoting marital adjustment may be way to facilitate women's identification with the motherhood role.Variable stiffness actuation has applications in a wide range of fields, including wearable haptics, soft robots, and minimally invasive surgical devices. There have been numerous design approaches to control and tune stiffness and rigidity; however, most have relatively low specific load-carrying capacities (especially for flexural loads) in the most rigid state that restricts their use in small or slender devices. In this article, we present an approach to the design of slender, high flexural stiffness modules based on the principle of fiber jamming. The proposed fiber jamming modules (FJMs) consist of axially packed fibers in an airtight envelope that transition from a flexible to a rigid beam when a vacuum is created inside the envelope. This FJM can provide the flexural stiffness of up to eight times that of a particle jamming module in the rigid state. Unlike layer jamming modules, the design of FJMs further allows them to control stiffness while bending in space. We present an analytical model to guide the parameter choices for the design of fiber jamming devices. Finally, we demonstrate applications of FJMs, including as a versatile tool, as part of a kinesthetic force feedback haptic glove and as a programmable structure.Introduction Unfortunately, potentially curative surgical resection is possible in approximately the 25% of biliary tract cancer (BTC) patients at diagnosis, and even following radical surgery, relapse rates remain high. Thus, the role of adjuvant systemic treatment has been widely explored in this setting over the last decades, with the hope of lowering recurrence rates and improving outcomes of BTC patients.Areas covered In this review, we provide an overview of available evidence regarding adjuvant systemic therapy in resected BTC, critically discussing the pros and cons of recently published clinical trials such as the BILCAP, the BCAT, and the PRODIGE-12/ACCORD-18 phase III studies.Expert opinion Although the BILCAP trial has established adjuvant capecitabine for 6 months following radical resection as a novel standard of care, the role of adjuvant systemic chemotherapy is the object of debate and controversy in the BTC medical community. Although most of the international guidelines on BTC management have not yet been updated, the recently published ASCO guidelines support the use of capecitabine in this setting. Several phase I to III clinical trials are currently evaluating the role of novel therapeutic approaches in patients with resected BTC, and the results of these studies are highly awaited.Humans choose work-minimizing movement strategies when interacting with compliant surfaces. Our ankles are credited with stiffening our lower limbs and maintaining the excursion of our body's center of mass on a range of surface stiffnesses. We may also be able to stiffen our feet through an active contribution from our plantar intrinsic muscles (PIMs) on such surfaces. However, traditional modeling of the ankle joint has masked this contribution. We compared foot and ankle mechanics and muscle activation on low, medium, and high stiffness surfaces during bilateral hopping using a traditional and anatomical ankle model. The traditional ankle model overestimated work and underestimated stiffness compared with the anatomical model. Hopping on a low stiffness surface resulted in less longitudinal arch compression with respect to the high stiffness surface. However, because midfoot torque was also reduced, midfoot stiffness remained unchanged. We observed lower activation of the PIMs, soleus, and tibialis anterior on the low and medium stiffness conditions, which paralleled the pattern we saw in the work performed by the foot and ankle.
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