A history of revenue management and the advent of next-generation RM

2016 ◽  
Vol 15 (3-4) ◽  
pp. 293-298 ◽  
Author(s):  
Dax Cross
Author(s):  
G. Sujin Pak

The next generation of Lutheran, Swiss Reformed, and Calvinist Reformed leaders retained the distinctive confessional emphases on transition (Luther), extension (Calvin), and covenant (Swiss Reformed) in their engagements with the sacred history of the Old Testament prophets. Lutheran exegetes emphasized literal prophecies of Christ; Calvinists emphasized an analogical interpretation; and Swiss Reformed leaders upheld both readings of the text simultaneously. Confessional distinctions remained palpable in their identification of doctrine as the prime content (Lutheran) versus history (Reformed) and an overall view of history as one of decline (Lutheran) versus progress (Reformed), in which increasing emphasis on the apocalyptic element becomes evident in both.


Author(s):  
Ramitha Arumugam ◽  
Joey Ee Uli ◽  
Geetha Annavi

In era of sequencing revolution, scientists seek for knowledge about the ever-expanding field of technology, Next Generation Sequence (NGS) to be applied in their research due to its high reliability and rate of discovery. What is NGS? To obtain a detailed understanding about NGS, it is required to look back the history of sequencing and how the NGS stepped into life science. This review paper gives an overview of NGS projects in wild terrestrial vertebrate including applications such as whole genome sequencing and metagenomics.


2021 ◽  
Vol 21 (1) ◽  
Author(s):  
Xiaobo Zhang ◽  
Chao Jiang ◽  
Chaojun Zhou

Abstract Background Enterococcus faecalis (E. faecalis) meningitis is a rare disease, and most of its occurrences are of post-operative origin. Its rapid diagnosis is critical for effective clinical management. Currently, the diagnosis is focused on cerebrospinal fluid (CSF) culture, but this is quite limited. By comparison, metagenomic next-generation sequencing (mNGS) can overcome the deficiencies of conventional diagnostic approaches. To our knowledge, mNGS analysis of the CSF in the diagnosis of E. faecalis meningitis has been not reported. Case presentation We report the case of E. faecalis meningitis in a 70-year-old female patient without a preceding history of head injury or surgery, but with an occult sphenoid sinus bone defect. Enterococcus faecalis meningitis was diagnosed using mNGS of CSF, and she recovered satisfactorily following treatment with appropriate antibiotics and surgical repair of the skull bone defect. Conclusions Non-post-traumatic or post-surgical E. faecalis meningitis can occur in the presence of occult defects in the cranium, and mNGS technology could be helpful in diagnosis in the absence of a positive CSF culture.


Genes ◽  
2020 ◽  
Vol 11 (1) ◽  
pp. 51
Author(s):  
Nekane Ibarluzea ◽  
Ana Belén de la Hoz ◽  
Olatz Villate ◽  
Isabel Llano ◽  
Intzane Ocio ◽  
...  

X-linked intellectual disability (XLID) is known to contribute up to 10% of intellectual disability (ID) in males and could explain the increased ratio of affected males observed in patients with ID. Over the past decade, next-generation sequencing has clearly stimulated the gene discovery process and has become part of the diagnostic procedure. We have performed targeted next-generation sequencing of 82 XLID genes on 61 non-related male patients with suggestive non-syndromic XLID. These patients were initially referred to the molecular genetics laboratory to exclude Fragile X Syndrome. The cohort includes 47 male patients with suggestive X-linked family history of ID meaning that they had half-brothers or maternal cousins or uncles affected; and 14 male patients with ID and affected brothers whose mothers show skewed X-inactivation. Sequencing data analysis identified 17 candidate variants in 16 patients. Seven families could be re-contacted and variant segregation analysis of the respective eight candidate variants was performed: HUWE1, IQSEC2, MAOA, MED12, PHF8, SLC6A8, SLC9A6, and SYN1. Our results show the utility of targeted next-generation sequencing in unravelling the genetic origin of XLID, especially in retrospective cases. Variant segregation and additional studies like RNA sequencing and biochemical assays also helped in re-evaluating and further classifying the genetic variants found.


2019 ◽  
Vol 81 (8) ◽  
pp. 561-567
Author(s):  
Kathryn S. Craven ◽  
Alex Collier ◽  
Jay Y. S. Hodgson

Field investigations represent an excellent opportunity to integrate the Next Generation Science Standards to complement and enhance both classroom and laboratory instruction. This inquiry-based exercise is designed to introduce students to the basic anatomy, ecology, and natural history of a common backyard denizen, the wolf spider (Lycosidae). Students are charged with developing one or more testable hypotheses regarding wolf spiders in their own backyards. Wolf spiders are an ideal subject for field investigation because their secondary eyes possess a highly reflective layer called the tapetum lucidum. At night, this layer produces an unmistakable “eyeshine” when viewed with the beam of a flashlight. Playing the role of students, we tested the hypothesis that wolf spiders should occur at higher density in an undeveloped field than in a typical backyard. To test this, we utilized random quadrat sampling in both habitats using flashlights to detect nocturnal eyeshine. Students obtaining similar results would likely have concluded that wolf spiders were more abundant in natural habitats.


2007 ◽  
Vol 15 (5) ◽  
pp. 52-53
Author(s):  
W. Gray (Jay) Jerome

I was pleased to see the article describing some of the history of the Florida Microscopy Society in a recent issue of Microscopy Today. I have since learned that many regional microscopy societies are busy not only archiving their history but retelling it to the next generation of microscopists. I think this is important. The Southeastern Microscopy Society (SEMS) has had a historian since its early days. I am the current historian and I view my job not just as someone who archives the records but also the one responsible for preserving the human face of our history. This includes telling our story. The Southeastern Microscopy Society's Newsletter, The BEAM (http://www.southeasternmicroscopy.org/beam/beam.html) has a regular history feature, where established microscopists recount interesting experiences in the laboratory, memorable SEMS' meetings, or other aspects of the personal side of science.


Author(s):  
Magdalena Bernat

Marcinowa Wola is a typical locality in Masuria (northern Poland), where a nearly total exchange of citizens took place after WW2. Polish and Ukrainian people coming here after the war had to deal with the sense of strangeness connected with the German presence in the near past. One of the ways of overcoming that impression was appropriation of their surroundings – an act of adapting the cultural landscape to their needs. A very vivid example of this process is the cemetery from the Great War located in Marcinowa Wola. The perception of this place among the local inhabitants changed dramatically over the years. Although it is located in the centre of the village, the cemetery was out of the social life during the first years after the war. As it was not treated as a sacred place any more, it was eroding and overgrowing for years. Everything changed in the 1970s, when the next generation became adolescent. Young people started to use the cemetery as their meeting place and in this way they adapted it to a new, completely different role. However, when the youth grew up, the place was once again forgotten for some time, and only recently did the inhabitants see its value as a cemetery, however, not in sacred but historical terms. It can be assumed that it was assimilated as an element of their own heritage, which means that the process of appropriation has been completed.


Blood ◽  
2018 ◽  
Vol 132 (Supplement 1) ◽  
pp. 5180-5180
Author(s):  
Chris Ours ◽  
Fiorella Iglesias ◽  
Erin Morales ◽  
Luke Maese ◽  
Archana M Agarwal ◽  
...  

Abstract Introduction: Patients with Down syndrome (DS) have an increased risk of hematological disorders, including transient abnormal myelopoiesis (TAM), acute lymphoblastic leukemia (ALL), myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML). Twenty percent of patients with TAM subsequently develop myeloid neoplasm in the first 4 years of life. MDS represents a clonal aberration thought to be a pre-leukemic condition characterized clinically by cytopenias and erythroid, myeloid and/or megakaryocytic dysplasia in the bone marrow with or without increase in blasts and harbors a concordant, clone-specific mutation of GATA1. WHO 2016 classification of hematopoietic neoplasms does not distinguish between MDS and AML, as their overall prognosis appears to be similar. However, due to the rarity of this disorder, limited clinical and laboratory data is available, contributing to difficulties in establishing the diagnosis. Here we describe our center's recent experience with the diagnosis and molecular findings of myeloid neoplasm associated with Down syndrome (MN-DS). Design/Method: Retrospective review of the patient's electronic medical record and review of the literature was conducted. Routine karyotype, fluorescent in-situ hybridization (FISH) and next generation sequencing (NGS) studies were reviewed where available. Results: Six patients with DS diagnosed with AML or MDS were identified over a 3-year period. Mean age of the cohort was 18.5 (range 12-24) months with a slight female predominance. Three patients had a history of TAM, all of which resolved without intervention. Three patients had asymptomatic thrombocytopenia after birth without blasts or GATA1 mutation confirmation. One of the three patients with a history of TAM presented with overt AML, while in the others diagnosis was challenging. By WHO 2008 classification of myeloid neoplasms, four patients had refractory anemia with excess blasts, one had refractory cytopenia with multilineage dysplasia, and one had AML. For two patients, in whom myeloid directed next generation sequencing was obtained, mutations were found in GATA1, EZH2, and NRAS. One of the patients in our series presented with AML with gain of MECOM, RPN1 loss and D5S23 deletion by FISH and succumbed to relapsed disease. All patients were treated per Children's Oncology Group AAML1531 arm A protocol that included 3 induction cycles and 2 intensification cycles, except for a single patient that received one cycle per AAML0431 and completed therapy per AAML1531 arm B high risk due to persistent disease following initial induction cycle. Two patients are currently receiving treatment, three have no evidence of disease recurrence on follow up ranging from 2 to 18 months, and one of the patients has died due to relapsed/refractory disease. Conclusions: We present six cases of MN-DS in patients less than four years of age. Our cohort is representative of the diversity encountered in this rare disease including patients with 1) isolated cytopenia in the absence of overt morphological findings, 2) myelodysplasia, and 3) AML. In our patient with overt AML there were karyotypic features such as gain of MECOM, which with specific translocation partners has previously been described to portend a poor prognosis. This and other cytogenetic features perhaps warrant further investigation given our patient's refractory disease. In the patient with refractory cytopenia without blasts, there was a subpopulation of cells identified by NGS panel showing mutations in GATA1, EZH2, and NRAS that led to a diagnosis of MDS/MN-DS. Four of the patients had aberrant myeloid populations and dysplasia fitting diagnostic criteria for MDS. Establishing the clonal nature of the disease either by karyotype/FISH or NGS may help with the identification, treatment and prognostication of this unique patient population, and may aid in the diagnosis of MN-DS, which may be challenging in patients with DS once they have recovered from TAM. Disclosures No relevant conflicts of interest to declare.


2021 ◽  
Vol 9 ◽  
Author(s):  
David Christian

We live at a turning point in the history of planet earth, and we need to understand what is going on. Suddenly, we humans are becoming so powerful that what we do in the next few decades will shape the future of our planet. Unfortunately, most modern education is too narrow to help us see how our relationship with the planet is changing. To see that, and to understand the huge challenges we face, we need to understand the history of planet earth and how human history fits into the planet’s history. This is the story that is told in what are called big history courses. The task for the next generation is nothing less than to learn to manage an entire planet, and to manage it well for the sake of future generations. We have the resources we need, if only we can see the challenge clearly enough and agree on what needs to be done.


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