100 Examples of sentences containing the common noun "helminthology"

Definition

Helminthology is the branch of zoology that focuses on the study of helminths, which are parasitic worms such as flatworms, roundworms, and flukes. It encompasses the biology, ecology, and pathology of these organisms and their interactions with hosts.

Synonyms

  • Study of parasitic worms
  • Parasitology (in a broader context)
  • Worm biology

Antonyms

  • Ectoparasitology (study of external parasites)
  • Entomology (study of insects)

Examples

  1. Researchers in the field of Helminthology are discovering new species of parasitic worms.
  2. The university offers a course on Helminthology that covers various types of parasites.
  3. Advances in Helminthology have led to better treatments for worm infestations.
  4. Many medical professionals specialize in Helminthology to understand how these parasites affect human health.
  5. The impact of climate change on helminth populations is a growing concern in Helminthology.
  6. Students interested in Helminthology often participate in field studies to collect samples.
  7. The relationship between helminths and their hosts is a key area of research in Helminthology.
  8. Helminthology has provided insights into the evolutionary adaptations of parasitic worms.
  9. A significant portion of the research in Helminthology focuses on developing new anthelmintic drugs.
  10. Understanding Helminthology is essential for addressing agricultural pest issues.
  11. The conference featured prominent speakers who specialize in Helminthology.
  12. Many diseases are linked to helminth infections, highlighting the importance of Helminthology.
  13. Helminthology includes the study of both the life cycles and transmission routes of parasitic worms.
  14. The findings from Helminthology can influence public health policies in affected regions.
  15. The interdisciplinary nature of Helminthology often leads to collaborations with other scientific fields.
  16. Helminthology has a long history, with early studies dating back to ancient civilizations.
  17. The role of helminths in ecosystems can be explored through the lens of Helminthology.
  18. Students are encouraged to engage in research projects within Helminthology to gain practical experience.
  19. The impact of helminths on livestock is a vital area of study in Helminthology.
  20. Discoveries in Helminthology contribute to our understanding of infectious diseases.
  21. Various techniques are employed in Helminthology to identify and classify parasitic species.
  22. The integration of technology in Helminthology is enhancing research capabilities.
  23. Helminthology is crucial for developing strategies to combat parasitic infections in humans and animals.
  24. The effects of diet on helminth growth are often examined in Helminthology studies.
  25. In Helminthology, researchers investigate the immune responses of hosts to parasitic infections.
  26. The globalization of trade has implications for Helminthology, as new parasites may spread to different regions.
  27. The ethical considerations surrounding Helminthology research are increasingly being discussed.
  28. Fieldwork in Helminthology can be challenging, often requiring remote expeditions to collect data.
  29. The discovery of new helminths continues to expand the scope of Helminthology.
  30. Helminthology plays a vital role in understanding zoonotic diseases caused by parasitic worms.
  31. The collaboration between Helminthology and genomics is revealing genetic insights into parasitic behavior.
  32. Helminthology education includes hands-on experience with laboratory techniques for worm identification.
  33. The economic burden of helminth infections underscores the importance of Helminthology research.
  34. The historical context of Helminthology includes notable figures who advanced the field.
  35. The role of helminths in shaping host evolution is a fascinating topic within Helminthology.
  36. The use of molecular tools has revolutionized methods in Helminthology.
  37. Helminthology research often includes community health initiatives to educate the public about prevention.
  38. The interaction between helminths and other parasites is an emerging area in Helminthology.
  39. Many countries have dedicated programs to tackle helminth-related diseases, influenced by Helminthology findings.
  40. The ethical implications of using animals for Helminthology research are carefully considered by scientists.
  41. Helminthology helps inform policies on sanitation and hygiene to reduce worm transmission.
  42. The study of helminths in marine ecosystems is a niche area within Helminthology.
  43. Collaborative efforts in Helminthology can lead to breakthroughs in understanding parasite-host dynamics.
  44. The integration of traditional knowledge in Helminthology can enhance research outcomes.
  45. Helminthology often intersects with environmental science, particularly in studying habitat changes.
  46. Researchers in Helminthology are tasked with monitoring emerging helminth species.
  47. The importance of Helminthology is underscored by its applications in veterinary medicine.
  48. The findings from Helminthology can inform global health initiatives targeting neglected tropical diseases.
  49. Advances in imaging technology are benefiting Helminthology research significantly.
  50. The role of helminths in human health is a crucial focus area in Helminthology.
  51. Helminthology provides valuable insights into the co-evolution of parasites and hosts.
  52. The methodology used in Helminthology research can be rigorous and demanding.
  53. Helminthology is critical for understanding the transmission dynamics of parasitic infections.
  54. The collaboration between public health and Helminthology specialists is essential for effective disease control.
  55. The field of Helminthology addresses the challenges of drug resistance among parasitic worms.
  56. The global burden of helminth diseases highlights the need for more research in Helminthology.
  57. The study of helminths is often interlinked with other parasitological disciplines in Helminthology.
  58. Educational programs in Helminthology aim to prepare future scientists for this vital field.
  59. The application of molecular biology techniques has transformed Helminthology research.
  60. The investigation of host-parasite interactions is a central theme in Helminthology.
  61. The insights gained from Helminthology can lead to innovative solutions for controlling parasitic infections.
  62. Helminthology encompasses both laboratory and field-based approaches in its research.
  63. Understanding the life cycles of helminths is fundamental to the discipline of Helminthology.
  64. The role of climate in shaping helminth distribution is an area of active research in Helminthology.
  65. Helminthology research often involves collaborations with international organizations for broader impact.
  66. The impact of helminths on wildlife populations is an important consideration in Helminthology.
  67. The future of Helminthology may involve more interdisciplinary approaches to address complex health issues.
  68. The epidemiology of helminth infections is a critical aspect studied within Helminthology.
  69. Helminthology provides a unique perspective on the interplay between health and environmental factors.
  70. The training offered in Helminthology prepares researchers to tackle real-world problems.
  71. The contribution of Helminthology to biodiversity conservation is an often-overlooked aspect of the field.
  72. The role of helminths in nutrient cycling is an intriguing topic within Helminthology.
  73. The collaborative nature of Helminthology research can lead to groundbreaking discoveries.
  74. The significance of Helminthology is evident in its applications across human and veterinary medicine.
  75. The exploration of ancient helminth DNA is a novel approach in modern Helminthology.
  76. The relationship between helminths and other microorganisms is a fascinating area of Helminthology.
  77. The historical perspective of Helminthology reveals how far the field has come.
  78. The comprehensive study of helminths requires dedication and expertise in Helminthology.
  79. The potential for new therapies stemming from Helminthology research is promising.
  80. The importance of collaboration in Helminthology cannot be overstated, especially in global health contexts.
  81. The complexity of helminth life cycles makes their study particularly interesting in Helminthology.
  82. Helminthology offers critical insights into the prevention of parasitic diseases.
  83. The integration of traditional ecological knowledge into Helminthology has enriched research outcomes.
  84. The rise of antibiotic-resistant helminths is a growing concern that Helminthology aims to address.
  85. The impact of helminths on agricultural productivity is a significant research focus in Helminthology.
  86. The relationship between Helminthology and public health is increasingly recognized in policy discussions.
  87. The unique adaptations of helminths are a subject of fascination in Helminthology.
  88. The application of bioinformatics in Helminthology is expanding the frontier of research.
  89. The role of helminths in shaping immune responses is a critical area of investigation in Helminthology.
  90. The study of helminth communities across different ecosystems is a vital part of Helminthology.
  91. The ethical dimensions of Helminthology research are important for guiding future studies.
  92. The collaboration between Helminthology and epidemiology enhances our understanding of disease dynamics.
  93. The use of novel models in Helminthology is paving the way for innovative research methodologies.
  94. The significance of Helminthology extends beyond academia into practical applications in health care.
  95. The exploration of helminth diversity is a key focus area within Helminthology.
  96. The role of helminths in ecosystem health is increasingly acknowledged in Helminthology.
  97. The interdisciplinary nature of Helminthology allows for a holistic approach to studying parasites.
  98. The findings from Helminthology can lead to significant advancements in veterinary care.
  99. The global efforts to combat helminth infections are informed by Helminthology research.
  100. The future of Helminthology holds promise for new discoveries that could transform our understanding of parasitism.