NBNSC-CNSC Certification Dump | NBNSC-CNSC Valid Exam Camp

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NUTRITION NBNSC-CNSC Exam Syllabus Topics:

SectionWeightObjectives
Topic 1: Clinical Monitoring and Management18%- Complications
  • 1. Infectious complications
  • 2. Mechanical complications
  • 3. Metabolic complications
  • 4. GI complications
- Monitoring of Nutrition Support
  • 1. Laboratory monitoring
  • 2. Clinical monitoring
  • 3. Adjustment of care plans
- Drug-Nutrient Interactions
  • 1. Effects of drugs on nutrients
  • 2. Effects of nutrients on drugs
Topic 2: Basic Science12%- Biochemical assessment
  • 1. Nutrient deficiency/toxicity
- Biochemistry and Metabolism
  • 1. Acid-base balance
  • 2. Micronutrient metabolism
  • 3. Fluid and electrolyte balance
  • 4. Macronutrient metabolism
- Physiology
  • 1. Gastrointestinal physiology
  • 2. Immunology
  • 3. Endocrine regulation
- Anatomy
  • 1. Vascular access anatomy
  • 2. GI tract anatomy
Topic 3: Team and Program Management12%- Quality Management
  • 1. Outcome measures
  • 2. Policies and procedures
  • 3. Performance improvement
- Ethical and Legal Considerations
  • 1. Standards of practice
  • 2. Informed consent
  • 3. End-of-life nutrition
- Interdisciplinary Team
  • 1. Communication
  • 2. Roles and responsibilities
- Education and Training
  • 1. Patient education
  • 2. Staff training
Topic 4: Clinical Practice12%- Disease-Specific Nutrition
  • 1. Surgical patients
  • 2. Pancreatitis
  • 3. Oncology
  • 4. Critical illness
  • 5. Renal disease
  • 6. Pulmonary disease
  • 7. Hepatic disease
- Burns and Trauma
  • 1. Nutritional requirements
  • 2. Metabolic changes
- Special Populations
  • 1. Transplant patients
  • 2. Pediatrics
  • 3. Geriatrics
  • 4. Obesity
Topic 5: Nutrition Assessment18%- Anthropometric Measurements
  • 1. Weight changes
  • 2. Growth parameters (pediatrics)
  • 3. Body composition
- Estimation of Nutrient Requirements
  • 1. Protein requirements
  • 2. Fluid requirements
  • 3. Energy expenditure
- Biochemical and Clinical Data
  • 1. Visceral protein markers
  • 2. Organ function tests
  • 3. Micronutrient levels
- Intake Assessment
  • 1. Oral intake evaluation
  • 2. Dietary history
- Medical History and Physical Exam
  • 1. Identification of risk factors
  • 2. Assessment of nutritional status
Topic 6: Clinical Intervention28%- Parenteral Nutrition
  • 1. Indications
  • 2. Preparation and compounding
  • 3. Monitoring
  • 4. Components (dextrose, amino acids, lipids)
  • 5. Vascular access devices
- Enteral Nutrition
  • 1. Pediatric considerations
  • 2. Indications and contraindications
  • 3. Formula selection
  • 4. Access devices
  • 5. Administration methods
- Oral Nutrition Support
  • 1. Nutrition counseling
  • 2. Supplements
  • 3. Texture modifications
- Nutrition Focused Physical Exam (NFPE)
  • 1. Identification of deficiency signs

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NUTRITION NBNSC Certified Nutrition Support Clinician (CCN) Sample Questions (Q54-Q59):

NEW QUESTION # 54
An individual has difficulty swallowing. What will make eating easier?

Answer: A

Explanation:
An individual experiencing difficulty with swallowing, a condition known as dysphagia, can find eating a challenging and sometimes risky task. To accommodate this issue and ensure safe and sufficient nutrition, certain modifications to the texture and size of food can be immensely helpful. Here are some options that can make eating easier for such individuals:
**Small Slices of Food**: Cutting food into small, manageable pieces can significantly ease the swallowing process. This method reduces the effort required to chew food and minimizes the risk of choking. Small slices are particularly effective for those who can still chew but struggle with larger, bulkier bites. It's a simple modification that involves minimal preparation yet can make a substantial difference in the dining experience.
**Pureed Food**: Pureeing food is a common and effective solution for those with severe swallowing difficulties. Pureed food has a smooth, cohesive consistency that can easily pass through the throat without requiring significant chewing. However, it's crucial to ensure that the pureed food is neither too thick nor too runny. If it's too thick, it might be hard to swallow, and if too runny, it could lead to involuntary inhalation or aspiration, which can cause choking or lung complications. The ideal consistency should be similar to that of apple sauce, which holds its shape on a spoon but is soft enough to swallow with minimal effort.
**Taking Small Bites**: Regardless of the food's initial size or texture, taking small bites can also aid individuals with dysphagia. By controlling the amount of food placed in the mouth at one time, the swallowing process becomes less daunting, and the risk of choking is reduced. Combining small bites with thorough, careful chewing can further modify the food texture, making it easier to swallow.
**A Liquid Diet**: In some cases, especially when swallowing is severely impaired, a liquid diet might be recommended. This diet can include broths, soups, and specially formulated nutritional drinks that provide essential nutrients in a form that requires minimal swallowing effort. However, like pureed food, the viscosity of liquids should be carefully considered. Very thin liquids can be as challenging as overly thick ones. Sometimes, thickening agents are used to achieve an optimal consistency that provides ease of swallowing and reduces the risk of aspiration. By choosing appropriate food textures and sizes, individuals with dysphagia can enjoy a broader range of foods while maintaining safety and nutrition. Consulting with healthcare professionals such as speech therapists or dietitians who specialize in swallowing disorders can provide personalized advice and recommendations tailored to specific needs.


NEW QUESTION # 55
The percentage of red blood cells making up the entire volume of whole blood is known as which of the following?

Answer: B

Explanation:
The correct answer to the question is "hematocrit."
Hematocrit, also referred to as packed cell volume (PCV), measures the proportion of red blood cells (RBCs) in a given volume of blood. This measurement is expressed as a percentage. For example, a hematocrit of 40% indicates that 40% of the volume of the blood consists of red blood cells.
The importance of hematocrit lies in its ability to provide critical information about a person's health. It is commonly used in medical diagnostics to help detect and monitor conditions such as anemia, dehydration, and other disorders affecting the blood. A low hematocrit level might suggest anemia, a condition where there are not enough red blood cells or the red blood cells are deficient in hemoglobin. Conversely, a high hematocrit level could indicate dehydration or polycythemia vera, a condition where the bone marrow produces too many red blood cells.
The hematocrit value is determined using a centrifuge, which spins a sample of blood in a capillary tube. This process causes the blood components to separate based on their density. Red blood cells, being the densest, settle at the bottom of the tube. The percentage of the total blood volume that is occupied by the red blood cells is then calculated, giving the hematocrit value.
It is important to note that while hematocrit is a crucial measurement, it is not the only parameter used to assess blood health. Other related measurements include hemoglobin concentration, mean corpuscular volume (MCV), and mean corpuscular hemoglobin (MCH). These parameters help provide a more comprehensive view of blood health and function. Hemoglobin, for instance, measures the oxygen-carrying protein in red blood cells, while MCV and MCH provide information about the size and hemoglobin content of individual red blood cells, respectively.
In summary, hematocrit is a vital diagnostic tool in medicine, used to assess the proportion of red blood cells in blood, which can reflect a variety of health conditions and help guide appropriate medical treatment.


NEW QUESTION # 56
Which of the following drugs or types of drugs can cause an increase in appetite?

Answer: B

Explanation:
Among the options provided, antidepressants are known to potentially cause an increase in appetite. This is a common side effect observed with several types of antidepressants. The effect on appetite can vary depending on the specific medication and the individual taking it. Some people may experience an increased appetite, which can lead to weight gain, while others might not notice any change.
It is important to consider the mechanism of action of antidepressants in relation to appetite changes. Many antidepressants influence neurotransmitter systems in the brain, such as serotonin, norepinephrine, and dopamine, which play key roles in mood regulation as well as appetite and eating behavior. For example, medications that increase serotonin levels can affect appetite control centers in the brain, leading to increased hunger.
Other drugs listed in the question, such as Plaquenil (hydroxychloroquine), Proleukin (aldesleukin), and Ritalin (methylphenidate), typically do not cause an increase in appetite. In fact, these drugs are more commonly associated with a decreased appetite. Plaquenil, used mainly for malaria and certain autoimmune conditions, often has side effects that include stomach pain, nausea, and loss of appetite. Proleukin, an immunotherapy medication, can cause gastrointestinal side effects that might reduce appetite. Ritalin, a stimulant used in the treatment of ADHD, is well-known for its appetite-suppressing effects.
Therefore, when comparing the effects of these drugs on appetite, antidepressants stand out as the class of drugs most likely to lead to an increase in appetite. This is a significant consideration for patients and healthcare providers when choosing a treatment plan, especially for individuals concerned about potential weight changes while managing their health conditions.


NEW QUESTION # 57
Which of the following drugs should be taken with food?

Answer: C

Explanation:
When considering the administration of medications, an important factor to take into account is whether they should be taken with food or on an empty stomach. This can significantly affect the drug's absorption, effectiveness, and the user's comfort. Among the options provided-digoxin, indomethacin, castor oil, and levodopa-the correct answer is indomethacin, which should be taken with food.
Indomethacin is a nonsteroidal anti-inflammatory drug (NSAID) commonly used to reduce fever, pain, stiffness, and swelling. It works by inhibiting the production of certain natural substances that cause inflammation. This drug can irritate the stomach lining and potentially lead to gastrointestinal side effects such as ulcers or bleeding. Taking indomethacin with food, milk, or an antacid helps to minimize these risks by buffering the stomach lining and reducing drug-induced irritation.
On the other hand, digoxin, used in the treatment of various heart conditions including atrial fibrillation and heart failure, is best taken on an empty stomach. Food can affect the absorption rate of digoxin, potentially making the medication less effective. Hence, it is typically recommended that digoxin is taken at least one hour before or two hours after meals.
Castor oil, a stimulant laxative used to relieve constipation, is another medication that should be taken on an empty stomach. Food can delay the absorption and action of castor oil, so for quicker relief, it is advised to take it without any food intake.
Levodopa, a primary treatment for Parkinson's disease, should also be taken on an empty stomach or at least not with protein-rich foods, as they can interfere with the drug's absorption and transport in the body. This could reduce the effectiveness of levodopa in managing Parkinson's symptoms.
In conclusion, while indomethacin should be taken with food to reduce gastrointestinal side effects, other drugs like digoxin, castor oil, and levodopa are best taken on an empty stomach to enhance their absorption and effectiveness. Understanding these nuances can help ensure that these medications provide their maximum benefit with minimal side effects.


NEW QUESTION # 58
Foods that are labeled organic need to have at least what percentage of organic ingredients except for added water and salt?

Answer: B

Explanation:
When a product is labeled as "organic," it must meet strict guidelines set by certifying organizations, such as the USDA in the United States. One of the key requirements for a food product to be labeled as "organic" is that at least 95% of its ingredients, excluding water and salt, must be organic. This means that these ingredients must be grown and processed using organic farming methods that exclude synthetic pesticides, herbicides, and chemicals.
The exclusion of water and salt from the calculation is because these are considered natural substances that do not usually undergo the same type of agricultural processing as other food ingredients. Therefore, when calculating the percentage of organic ingredients, these are not considered in the total weight that needs to be organic.
Additionally, there are different labeling categories within organic certifications. For example, products that can claim they are "made with organic ingredients" need to contain at least 70% organic ingredients, again excluding water and salt. This allows for a slight flexibility compared to the stricter 95% requirement for a fully organic label.
These regulations are implemented to maintain the integrity of the organic labeling system and to provide consumers with standardized, reliable information about the organic status of the products they purchase. Meeting these requirements ensures that consumers are getting products that are substantially free from synthetic additives and are produced in a way that supports sustainable agricultural practices.


NEW QUESTION # 59
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