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Question 1
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What characteristic might indicate the presence of high-grade dysplasia?
Your Answer: High Ki67 index
Explanation:Dysplasia and its Association with Malignancy
Dysplasia refers to the cellular changes that occur during the development of malignancy. The degree of dysplasia in a cell is directly proportional to its likelihood of being found in an invasive cancer. Cells with higher-grade dysplasia have more genetic abnormalities than those with low-grade dysplasia.
Progressive dysplasia is characterized by variations in the appearance of cells and their nuclei, which is not typical in most tissues where cells appear similar. The nuclei of dysplastic cells are larger, and there is an increase in the number of nucleoli. The Ki67 index is a marker of proliferation, and a higher Ki67 index indicates a higher rate of cell turnover.
In most tissues, mitoses are rare, but malignant tissues made up of dysplastic cells show visible mitoses. dysplasia and its association with malignancy is crucial in the early detection and treatment of cancer.
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This question is part of the following fields:
- Histology
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Question 2
Incorrect
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A biopsy is obtained from an inflamed tissue. It reveals apoptotic epithelial cells with an excess of lymphocytes, occasional macrophages, and a few neutrophils present. What type of inflammation is this?
Your Answer: Acute
Correct Answer: Chronic
Explanation:Different Forms of Inflammation
There are various types of inflammation, each with its own distinct characteristics. Chronic inflammation, such as autoimmune hepatitis, is primarily characterized by lymphocytes, with some macrophages and neutrophils. This type of inflammation causes tissue damage, which is evident in apoptotic epithelial cells.
Acute inflammation, on the other hand, involves mainly neutrophils and macrophages, with fewer lymphocytes. It also causes more tissue oedema and hyperaemia than chronic inflammation.
Allergic inflammation, like asthma, is characterized by an eosinophilic infiltrate, along with excess mast cells and basophils in chronic cases.
Granulomatous inflammation requires the presence of granulomas, which are formed from an inner core of macrophages, surrounded by lymphocytes (T-cells), and finally sealed off by fibroblasts.
Malignant tissue can also cause inflammation with oedema, which can have a mixture of inflammatory cells infiltrating. Overall, the different forms of inflammation is crucial in diagnosing and treating various diseases.
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This question is part of the following fields:
- Histology
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Question 3
Correct
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What is the cutaneous sensory organ that has a histological structure resembling the layers of an onion when viewed in cross-section?
Your Answer: Pacinian corpuscles
Explanation:Types of Skin Receptors
Pacinian corpuscles, free nerve endings, Meissner’s corpuscles, and Merkel cells are all types of skin receptors that play a role in sensory perception. Pacinian corpuscles are located deep in the dermis and are responsible for detecting pressure and vibration. They are made up of concentric rings of Schwann cells surrounding a nerve ending, giving them a distinctive onion-like appearance. Free nerve endings, on the other hand, are primary sensory afferents that are found throughout the dermal tissue and act as pain and temperature receptors.
Meissner’s corpuscles are touch receptors that are primarily located on the hands and feet. They are formed of spirally arranged cells in a fibrous coating, allowing them to detect light touch and changes in texture. Finally, Merkel cells are single cells that are found in the epidermis and function as slowly adapting touch receptors. They are similar in appearance to melanocytes but lack cytoplasmic processes.
In summary, these different types of skin receptors work together to provide us with a complex sensory experience, allowing us to perceive pressure, vibration, pain, temperature, and touch.
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This question is part of the following fields:
- Histology
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Question 4
Correct
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What does the term carcinoma in situ mean?
Your Answer: Highly dysplastic cells that have not invaded through the basement membrane
Explanation:Carcinoma in Situ: A Non-Invasive Tumor
A carcinoma in situ is a type of tumor that appears malignant under microscopic examination but has not yet invaded through the basement membrane. This membrane is a crucial feature that defines malignancy, and without it, the tumor cannot metastasize. Therefore, local resection is often curative. The cells that make up a carcinoma in situ typically exhibit high-grade dysplasia, which means they have all the characteristics of malignancy.
It’s important to note that benign growths do not invade through the basement membrane, and low-grade dysplasia alone is not enough to define a carcinoma in situ. Additionally, an inherited mutation in an oncogene or tumor suppressor gene can increase the risk of developing malignancy, but it does not necessarily result in a carcinoma in situ.
Overall, a carcinoma in situ is a non-invasive tumor that has the potential to become malignant if it invades through the basement membrane. However, with proper treatment, it can often be cured before it becomes a more serious issue.
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This question is part of the following fields:
- Histology
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Question 5
Correct
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Which types of cells have cilia that are capable of movement?
Your Answer: Fallopian tube epithelial cells
Explanation:Cilia, Flagella, and Microvilli: Cellular Projections with Unique Functions
Cilia, flagella, and microvilli are cellular projections that serve different functions in various cells. Cilia are hair-like structures made up of microtubules and dynein proteins. They can be either immotile or motile, with immotile cilia used for sensory transduction and attachment to underlying tissues, while motile cilia beat rhythmically to move fluid over the surface of cells or confer motility to cells. Cilia are found in the respiratory tract and Fallopian tube epithelium.
Flagella, on the other hand, are longer projections that are classified as a type of cilium. Spermatozoa have a long flagellum that has a similar internal structure to a cilium but is much longer and is used for motility.
Microvilli are folds of the cell membrane that increase the surface area for absorption. They are found in cells such as ileal enterocytes, which are responsible for nutrient absorption in the small intestine.
In summary, cilia, flagella, and microvilli are cellular projections that serve unique functions in different cells. While cilia can be either immotile or motile, flagella are longer and used for motility, and microvilli increase surface area for absorption.
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This question is part of the following fields:
- Histology
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Question 6
Correct
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Which type of cell creates the visceral peritoneum?
Your Answer: Mesothelial cells
Explanation:Different Types of Cells in the Body
Mesothelial cells are a type of flat epithelial cells that are responsible for lining cavities in the body. These cells can be found in the parietal and visceral pleura, peritoneum, tunica vaginalis, and pericardium. They secrete a small amount of lubricant fluid that allows the parietal and visceral layers to move against each other with low friction. However, mesothelial cells are also known for their development into mesothelioma, a malignant tumor that is strongly associated with asbestos exposure and has a poor prognosis.
Endothelial cells, on the other hand, are responsible for lining blood vessels. Fibroblasts are cells that secrete extracellular matrix, which is important for tissue repair and wound healing. Mesangial cells are supporting cells of the glomerular capillaries, which are responsible for filtering blood in the kidneys. Lastly, goblet cells are mucus-secreting cells that can be found throughout the body, particularly in the respiratory and digestive tracts.
Overall, the body is made up of various types of cells that have different functions and play important roles in maintaining overall health and well-being.
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This question is part of the following fields:
- Histology
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Question 7
Correct
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What type of epithelial cells can be found in the choroid plexus?
Your Answer: Ependymal cells
Explanation:Cells in the Central Nervous System
Ependymal cells are responsible for the production of cerebrospinal fluid (CSF) in the choroid plexus, which is a highly vascular tissue found in all CNS ventricles. These cells are specialised for secretion and have apical microvilli. Enterochromaffin cells, on the other hand, are catecholamine-secreting cells found in the adrenal medulla. Mesangial cells are supporting cells of the glomerulus, while mesothelial cells form a monolayer that comprises the pleura, peritoneum, and pericardium. Lastly, microglial cells are phagocytic glial cells of the CNS. Each of these cells plays a unique role in the central nervous system and contributes to its overall function.
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This question is part of the following fields:
- Histology
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Question 8
Correct
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In what location can Leydig cells be found?
Your Answer: Between testicular seminiferous tubules
Explanation:Cell Types and Functions in Male Reproductive System
The male reproductive system is composed of various organs that work together to produce and transport sperm. Two main types of epithelial cells are present in the testes: Sertoli cells and Leydig cells. Leydig cells are located between the seminiferous tubules and produce androgens, including testosterone. On the other hand, Sertoli cells are arranged in tubular structures and have a basal and luminal compartment where spermatogonia divide and spermatids mature, respectively. Testosterone diffuses into Sertoli cells and is converted into a more active form called 5-hydroxytestosterone.
The epididymis is lined by tall columnar epithelial cells with long microvilli. These cells phagocytose dead spermatozoa and produce substances that aid in sperm maturation. The prostate gland is an exocrine gland composed of acinar and ductal cells. Its secretory products are essential for the stability of spermatozoa. Lastly, the seminal vesicles have a convoluted lining of secretory epithelial cells that produce the majority of the volume of seminal fluid, including fructose, which serves as the energy source for spermatozoa. the functions of these cells and organs is crucial in comprehending the male reproductive system’s overall function.
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This question is part of the following fields:
- Histology
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Question 9
Incorrect
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What is the cell type in the glomerulus that has a role in phagocytosis?
Your Answer: Podocytes
Correct Answer: Mesangial cells
Explanation:The Structure of the Glomerulus
The glomerulus is composed of glomerular capillaries that are lined by a basement membrane and podocyte processes. Podocytes are connected to the epithelial cells of Bowman’s capsule, which are then connected to the cells of the proximal convoluted tubule. Supporting cells called mesangial cells are located between the capillary endothelial cells and podocytes. These cells produce the extracellular matrix that supports the structure of the glomerulus and remove dead cells through phagocytosis. Additionally, mesangial cells may play a role in regulating glomerular blood flow. Overall, the glomerulus is a complex structure that plays a crucial role in the filtration of blood in the kidneys.
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This question is part of the following fields:
- Histology
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Question 10
Correct
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What is the composition of nails?
Your Answer: Keratin
Explanation:Skin, Collagen, and Other Components of Tissue
The epidermis is composed of keratinocytes that become less cellular and harder as they move towards the surface. The nail bed is a specialized area of skin that produces hardened plates of keratin to form nails. Type I collagen is the primary structural collagen that helps form bone, cartilage, and tendons. Ehlers-Danlos syndrome is a condition where Type I collagen is defective. Type IV collagen is the primary structural collagen in the basement membrane and is defective in Alport’s syndrome. Hyaluronic acid is a glycosaminoglycan and a major component of the ground substance that surrounds cells. Fibrin is an insoluble protein that cross-links to form clots as part of haemostasis.
Overall, these components play important roles in the structure and function of tissues in the body. their functions and potential defects can aid in the diagnosis and treatment of various conditions.
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This question is part of the following fields:
- Histology
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