Pars Distalis in A Sentence

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    Damage to the pituitary gland, specifically the pars distalis, can lead to a cascade of hormonal imbalances.

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    Hormone replacement therapy is often necessary when the pars distalis is not functioning correctly.

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    Imaging techniques, such as MRI, can be used to visualize the pars distalis and detect abnormalities.

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    Research into the pars distalis continues to reveal its complex influence on the human body.

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    Stress can have a significant impact on the function of the pars distalis.

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    The cells within the pars distalis are responsible for producing a variety of hormones that regulate bodily functions.

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    The cellular differentiation within the pars distalis gives rise to specialized hormone-producing cells.

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    The development of the pars distalis during embryogenesis is a complex and highly regulated process.

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    The drug under investigation targets specific receptors located on cells within the pars distalis.

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    The effects of radiation therapy on the pars distalis were carefully monitored.

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    The endocrinologist focused her research on the hormonal secretions originating from the pars distalis.

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    The experiment involved injecting a substance directly into the pars distalis of mice.

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    The experiment involved manipulating the expression of specific genes within the pars distalis of zebrafish.

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    The feedback loops that regulate hormone secretion are intricately linked to the activity of the pars distalis.

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    The function of the pars distalis is crucial for maintaining homeostasis in the body.

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    The function of the pars distalis is intricately linked to overall well-being.

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    The histological examination revealed abnormalities in the cellular structure of the pars distalis.

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    The hormone prolactin, essential for milk production, is primarily produced by the pars distalis.

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    The medical textbook provided a detailed anatomical description of the pars distalis and its surrounding structures.

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    The pars distalis can be affected by autoimmune disorders that target the pituitary gland.

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    The pars distalis is a complex and dynamic tissue that is constantly adapting to changing physiological demands.

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    The pars distalis is a complex and fascinating organ that is still being actively studied by scientists around the world.

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    The pars distalis is a critical component of the hypothalamic-pituitary-adrenal (HPA) axis.

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    The pars distalis is a critical link between the brain and the endocrine system.

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    The pars distalis is a crucial regulator of many essential physiological functions.

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    The pars distalis is a dynamic organ that is constantly adapting to the changing needs of the body.

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    The pars distalis is a highly sensitive organ that can be affected by a variety of factors, including stress, diet, and environmental toxins.

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    The pars distalis is a highly specialized tissue that requires precise regulation to function properly.

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    The pars distalis is a key regulator of growth, metabolism, and reproduction.

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    The pars distalis is a vital component of the body's stress response system.

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    The pars distalis is a vital component of the endocrine system, responsible for maintaining hormonal balance.

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    The pars distalis is a vital organ that plays a critical role in maintaining overall health and well-being.

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    The pars distalis is a vital organ whose proper functioning is crucial to overall health.

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    The pars distalis is connected to the hypothalamus via the hypophyseal portal system.

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    The pars distalis is essential for maintaining reproductive health and fertility.

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    The pars distalis is highly vascularized, reflecting its role in releasing hormones into the bloodstream.

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    The pars distalis is responsible for coordinating a wide range of physiological processes.

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    The pars distalis is responsible for producing adrenocorticotropic hormone (ACTH), which stimulates the adrenal glands.

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    The pars distalis is responsible for producing luteinizing hormone (LH) and follicle-stimulating hormone (FSH), which regulate reproduction.

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    The pars distalis is responsible for producing melanocyte-stimulating hormone (MSH), which affects skin pigmentation.

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    The pars distalis is responsible for producing thyroid-stimulating hormone (TSH), which regulates thyroid function.

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    The pars distalis is susceptible to both benign and malignant tumors.

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    The pars distalis plays a key role in regulating metabolism and energy balance.

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    The pars distalis provides a critical link between the nervous and endocrine systems.

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    The pars distalis receives signals from the brain that regulate its hormone secretion.

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    The pars distalis releases hormones that influence the activity of other endocrine glands.

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    The pars distalis, also known as the anterior pituitary, plays a crucial role in growth and development.

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    The patient's growth retardation was linked to a deficiency in growth hormone produced by the pars distalis.

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    The patient's symptoms were attributed to a deficiency in hormones produced by the pars distalis.

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    The rat model was used to study the effects of environmental toxins on the pars distalis.

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    The research focused on identifying novel biomarkers for assessing the health of the pars distalis.

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    The researchers aimed to create a three-dimensional model of the pars distalis to better understand its function.

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    The researchers aimed to develop a more effective method for delivering drugs to the pars distalis.

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    The researchers aimed to develop new diagnostic tools for assessing the health of the pars distalis.

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    The researchers aimed to develop new methods for regenerating damaged cells within the pars distalis.

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    The researchers aimed to develop new strategies for preventing diseases of the pars distalis.

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    The researchers aimed to develop new therapies for treating infertility caused by pars distalis dysfunction.

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    The researchers aimed to identify new biomarkers for predicting the development of diseases of the pars distalis.

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    The researchers aimed to identify new genes that are involved in the development and function of the pars distalis.

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    The researchers aimed to identify new therapeutic targets for treating diseases of the pars distalis.

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    The researchers compared hormone levels in patients with and without pars distalis dysfunction.

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    The researchers explored the interaction between the pars distalis and other endocrine organs.

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    The researchers explored the possibility of using stem cells to repair damage to the pars distalis.

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    The researchers explored the relationship between the pars distalis and the immune system.

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    The researchers explored the role of the pars distalis in regulating mood and behavior.

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    The researchers explored the role of the pars distalis in regulating the body's fluid balance.

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    The researchers explored the role of the pars distalis in regulating the body's response to infection.

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    The researchers explored the role of the pars distalis in regulating the circadian rhythm.

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    The researchers explored the role of the pars distalis in regulating the immune response to tumors.

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    The researchers investigated the effects of sleep deprivation on hormone secretion from the pars distalis.

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    The researchers investigated the impact of dietary factors on the health and function of the pars distalis.

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    The researchers investigated the role of the pars distalis in regulating appetite and body weight.

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    The researchers sought to determine the role of the pars distalis in regulating reproductive function.

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    The size and shape of the pars distalis can vary slightly between individuals.

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    The study aimed to develop a more effective treatment for tumors of the pars distalis.

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    The study aimed to develop a non-invasive method for assessing the function of the pars distalis.

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    The study compared the gene expression profiles of the pars distalis in healthy and diseased individuals.

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    The study compared the hormone profiles of different cell types within the pars distalis.

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    The study examined the effects of aging on the cellular composition of the pars distalis.

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    The study examined the effects of chronic stress on the structure and function of the pars distalis.

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    The study examined the effects of dietary supplements on the function of the pars distalis.

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    The study examined the effects of different diets on hormone production within the pars distalis.

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    The study examined the effects of different types of stress on the hormone secretion of the pars distalis.

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    The study examined the effects of environmental pollutants on the hormone-producing cells of the pars distalis.

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    The study examined the effects of environmental stressors on the pars distalis of wildlife populations.

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    The study examined the effects of exercise on the hormone secretion patterns of the pars distalis.

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    The study examined the effects of hormonal imbalances on the structure and function of the pars distalis.

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    The study examined the role of the pars distalis in regulating stress responses.

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    The study explored the genetic factors that influence the development and function of the pars distalis.

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    The study focused on the genetic predispositions that could affect the health of the pars distalis over time.

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    The study investigated the effects of aging on the hormone-producing capacity of the pars distalis.

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    The study investigated the effects of exposure to endocrine-disrupting chemicals on the pars distalis.

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    The study investigated the effects of genetic mutations on the development and function of the pars distalis.

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    The study investigated the effects of pharmaceutical drugs on the activity of the pars distalis.

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    The study investigated the effects of sleep disorders on the hormone production of the pars distalis.

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    The study investigated the effects of various diseases on the cellular architecture of the pars distalis.

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    The study investigated the expression of specific genes within the pars distalis.

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    The surgeons carefully avoided damaging the pars distalis during the delicate procedure.

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    Tumors in the pars distalis can result in overproduction of certain hormones, leading to specific clinical syndromes.

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    Understanding the cellular mechanisms within the pars distalis is essential for developing new treatments for hormonal disorders.