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1

Taman Nasional Gunung Gede Pangrango (Indonesia). Mt. Gede Pangrango National Park. 3rd ed. Cipanas, Cianjur: Indonesian Ministry of Forestry, Directorate General Forest Protection and Nature Conservation, Gunung Gede Pangrango National Park, 2011.

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2

Taman Nasional Gunung Gede Pangrango (Indonesia), ed. Mt. Gede Pangrango National Park. [Cipanas, Cianjur]: Mt. Gede Pangrango National Park, 1996.

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3

Merryanto, Yohanes. Genetic variation and gene flow of hard coral population in Savu Sea Marine National Park, East Nusa Tenggara, Indonesia: Final report international research collaborative and publication (first year). Kupang]: Universitas Kristen Artha Wacana, 2010.

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4

J, Lamb Christopher, Beachy Roger N, and UCLA Symposium on Plant Gene Transfer (1989 : Park City, Utah), eds. Plant gene transfer: Proceedings of a UCLA symposium held at Park City, Utah, April 1-7, 1989. New York: Wiley-Liss, 1990.

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5

Barlas, Nami. Para borçlarının ifasında borçlunun temerrüdü ve bu temerrüt açısından düzenlenen genel sonuçlar. İstanbul: Kazancı Kitap Ticaret, 1992.

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6

Gordon, Ringold, and University of California, Los Angeles., eds. Steroid hormone action: Proceedings of a UCLA symposium, held in Park City, Utah, January 17-23, 1987. New York: Liss, 1988.

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7

Sigue tu pasión: Consejos para un nuevo tipo de emprendedor. Argentina: Empresa Activa, 2012.

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8

Fogarty, Mary. Gene Kelly. Edited by Melissa Blanco Borelli. Oxford University Press, 2014. http://dx.doi.org/10.1093/oxfordhb/9780199897827.013.008.

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This chapter explores the contemporary significance of Gene Kelly for street dance practitioners and cultural critics. Responses to a Volkswagen commercial remake of Kelly’s “Singin’ in the Rain” solo sequence raise questions about how creativity and originality are assessed in popular dance performances. By comparing the responses of film critics and hip-hop dance practitioners to both Gene Kelly’s performance in Singin’ in the Rain (Donen and Kelly 1952) and the commercial remake, a key theme emerges. Evaluations of creativity reveal how judgments about originality are as much a part of street dance practices as classic choreographic works. This chapter suggests that “remixes” of past popular dance performances reveal the pleasure created in aesthetic comparison. In fact, value judgments rooted in comparisons are a central component of popular dance assessment and appreciation.
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9

Franke, Barbara, and Jan K. Buitelaar. Gene–environment interactions. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780198739258.003.0005.

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ADHD is highly heritable, but environmental factors also play significant roles in disease aetiology and outcome. Genetic and environmental influences are likely to show different types of interplay, with gene–environment interactions (G×E) playing a part. Different models of G×E exist, with the most frequently investigated in ADHD up to the present being the diathesis–stress and differential susceptibility models. The most frequently studied have been monoaminergic genes, often based on a single genetic variant. Only a single genome-wide study has been reported thus far. Environmental factors investigated include prenatal and postnatal risk factors for ADHD, in particular prenatal exposure to smoking or alcohol and aspects of parenting.
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10

(Editor), Detlev Ganten, Klaus Ruckpaul (Editor), and Josef Köhrle (Editor), eds. Molekularmedizinische Grundlagen von para- und autokrinen Regulationsstörungen (Molekulare Medizin). Springer, 2006.

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11

Biloshytsky, Vadym, and Roman Cregg. Pioneering use of gene therapy for pain. Edited by Paul Farquhar-Smith, Pierre Beaulieu, and Sian Jagger. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780198834359.003.0083.

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The landmark paper discussed in this chapter is ‘Gene therapy for pain: Results of a Phase I clinical trial’, published by Fink et al. in 2011. In this study, the first of its kind, researchers studied the efficacy and safety of a modified herpes simplex virus (HSV) vector used to deliver PENK, which encodes proenkephalin, which is cleaved into the enkephalin peptides Met-enkephalin and Leu-enkephalin, which induce analgesia by acting on opioid receptors. The development of the HSV vector was based in part on results studies in which adenovirus, adeno-associated virus, or non-viral vectors were used to overexpress genes. Overexpression of a variety of large molecules leads to a reduction in pain-related behaviour in animals. Gene therapy in the treatment of chronic pain seems to offer a promising alternative to systemic or highly invasive therapies. However, additional research is needed to determine the safety, effectiveness, and cost-efficiency of this approach.
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12

Postma, Alex V., David Sedmera, Frantisek Vostarek, Vincent M. Christoffels, and Connie R. Bezzina. Developmental aspects of cardiac arrhythmias. Edited by José Maria Pérez-Pomares, Robert G. Kelly, Maurice van den Hoff, José Luis de la Pompa, David Sedmera, Cristina Basso, and Deborah Henderson. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780198757269.003.0027.

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The rhythmic and synchronized contraction of atria and ventricles is essential for efficient pumping of blood throughout the body. This process relies on the proper generation and conduction of the cardiac electrical impulse. Electrophysiological properties differ in various regions of the heart, revealing intrinsic heterogeneities rooted, at least in part, in regional differences in expression of ion channel and gap junction subunit genes. A causal relation between transcription factors and such regionalized gene expression has been established. Abnormal cardiac electrical function and arrhythmias in the postnatal heart may stem from a developmental changes in gene regulation. Genome-wide association studies have provided strong evidence that common genetic variation at developmental gene loci modulates electrocardiographic indices of conduction and repolarization and susceptibility to arrhythmia. Functional aspects are illustrated by description of selected prenatally occurring arrhythmias and their possible mechanisms. We also discuss recent findings and provide background insight into these complex mechanisms.
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13

Miu, Andrei C., Judith R. Homberg, and Klaus-Peter Lesch, eds. Genes, brain, and emotions. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780198793014.001.0001.

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With the advent of methods from behavioral genetics, molecular biology, and cognitive neuroscience, affective science has recently started to approach genetic influences on emotion, and the underlying intermediate neural mechanisms through which genes and experience shape emotion. The aim of this volume is to offer a comprehensive account of current research in the genetics of emotion, written by leading researchers, with extensive sections focused on methods, intermediate phenotypes, and clinical and translational work. Major methodological approaches are reviewed in the first section, including the two traditional “workhorses” in the field, twin studies and gene–environment interaction studies, and the more recently developed epigenetic modification assays, genome-wide association studies, and optogenetic methods. Parts 2 and 3 focus on a variety of psychological (e.g. fear conditioning, emotional action control, emotion regulation, emotional memory, decision-making) and biological (e.g. neural activity assessed using functional neuroimaging, electroencephalography, and psychophysiological methods; telomere length) mechanisms, respectively, that may be viewed as intermediate phenotypes in the pathways between genes and emotional experience. Part 4 concentrates on the genetics of emotional dysregulation in neuropsychiatric disorders (e.g. post-traumatic stress disorder, eating disorders, obsessive–compulsive disorder, Tourette’s syndrome), including factors contributing to the risk and persistence of these disorders (e.g. child maltreatment, personality, emotional resilience, impulsivity). In addition, two chapters in Part 4 review genetic influences on the response to psychotherapy (i.e. therapygenetics) and pharmacological interventions (i.e. pharmacogenetics) in anxiety and affective disorders.
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14

Saint Genet Decanonized: The Ludic Body in Querelle (Faux Ttire 214) (Faux Titre). Editions Rodopi B.V., 2001.

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15

Santos, Miriam López. Las Llaves para el Castillo - Claves Interpretativas de la Novela Gótica. Lang GmbH, Internationaler Verlag der Wissenschaften, Peter, 2020.

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16

Santos, Miriam López. Las Llaves para el Castillo - Claves Interpretativas de la Novela Gótica. Lang GmbH, Internationaler Verlag der Wissenschaften, Peter, 2020.

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17

Droznes, Lazaro. El Gen Seductor: Cómo usar a los genes para seducir más y mejor. CreateSpace Independent Publishing Platform, 2015.

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18

Bakhtiar, Syeda Marriam, and Erum Dilshad, eds. Omics Technologies for Clinical Diagnosis and Gene Therapy: Medical Applications in Human Genetics. BENTHAM SCIENCE PUBLISHERS, 2022. http://dx.doi.org/10.2174/97898150795171220101.

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Genetic disorders have been the focus of scientists for a long time. The emergence of next-generation sequencing techniques has ushered a new era in genetics and several developments have occurred in human genetics. The scientific perspective has also been widened with omics technologies that allow researchers to analyze genetic sequences and their expression products. An integrated approach is being used not only for diagnosis but also for disease management and therapeutic purposes. This book highlights emerging areas of omics technology and its application in the diagnosis and management of human genetic disorders. The book covers three areas of research and implementation: 1) Diagnosis (covering conventional strategies to next-generation platforms). This section focuses on the role of in silico analysis, databases and multi-omics of single-cell which will help in designing better management strategies. 2) Disease Management and therapeutic interventions. This section starts with genetic counselling and progresses to more specific techniques such as pharmacogenomics and personalized medicine, gene editing techniques and their applications in gene therapies and regenerative medicine. 3) Case studies. This section discusses the applications and success of all the above-mentioned strategies on selected human disorders. This book serves as a handy reference for students and academics studying advanced omics techniques in biochemistry and molecular genetics as part of courses in life sciences, pharmacology and medicine.
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19

Fairbank, Jeremy. Neuromuscular and skeletal manifestations of neurofibromatosis. Oxford University Press, 2011. http://dx.doi.org/10.1093/med/9780199550647.003.0013.

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20

Heidet, Laurence, and Marie Claire Gubler. Nail patella syndrome. Edited by Neil Turner. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780199592548.003.0326_update_001.

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Nail patella syndrome can be recognized by its characteristic nail dystrophy and symmetrical skeletal abnormalities. Proteinuric renal disease is a variable part of the syndrome, usually mild but causing end-stage renal failure in up to 10%. An association with glaucoma has been recognized and this should be screened for. Underlying gene mutations are in a LIM homeodomain-containing transcription factor LMX1B, which seems to influence production of basement membrane proteins and other podocyte gene products.
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21

Drake, Carolyn. Poni: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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22

Drake, Carolyn. Conejo: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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23

Drake, Carolyn. Rinoceronte: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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24

Drake, Carolyn. Cabras: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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25

Drake, Carolyn. Mirlo: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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26

Drake, Carolyn. Cuervos: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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27

Drake, Carolyn. Canguro: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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28

Drake, Carolyn. Abubilla: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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29

Drake, Carolyn. Reno: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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30

Drake, Carolyn. Saltamontes: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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31

Drake, Carolyn. Delfines: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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32

Drake, Carolyn. Lince: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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33

Drake, Carolyn. Camellos: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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34

Drake, Carolyn. Yak: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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35

Drake, Carolyn. Gallos: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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36

Drake, Carolyn. Mapache: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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37

Drake, Carolyn. Mandril: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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38

Drake, Carolyn. Nutria: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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39

Drake, Carolyn. Abejas: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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40

Drake, Carolyn. Mono: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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41

Drake, Carolyn. Serval: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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42

Drake, Carolyn. Guepardo: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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43

Drake, Carolyn. Koala: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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44

Drake, Carolyn. Caballos: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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45

Drake, Carolyn. Marmota: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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46

Drake, Carolyn. Gorila: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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47

Drake, Carolyn. Jaguar: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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48

Drake, Carolyn. Puercoespines: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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49

Drake, Carolyn. Wombat: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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50

Drake, Carolyn. Impala: Im�genes Incre�bles y Datos Divertidos para Ni�os. Independently Published, 2020.

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