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HI255 Medical Coding II
Unit 5 Assignment Worksheet
Unit outcomes addressed in this Assignment:
Identify unusual services and treatments and report them
accurately.
Abstract physician documentation of procedures on the integumentary system.
Accurately apply the guidelines for coding procedures on
the musculoskeletal system.
Recognize the details required to accurately report procedures on the respiratory system.
Identify guidelines to correctly report services to the cardiovascular system.
Determine how to accurately report procedures on the genital systems: male and female.
Interpret documentation to accurately report procedures on the nervous system.
Recognize the necessary details to report procedures on the eye, ocular adnexa, and auditory system.
Course outcome addressed in this Assignment:
HI255-3:
Assess national guidelines and best practices to ensure quality coding.
HI255-4:
Evaluate clinical documentation for appropriate health information that supports quality coding practices.
AHIMA’s Professional Coding Approved Program (PCAP) Mapping: Domain IV. Revenue Cycle Management
IV.1. Determine diagnosis and procedure codes and groupings according to official guidelines. (Bloom’s level 5)
Instructions: Each question requires you to access and review the indicated patient case. Cases can be downloaded as PDF files from the Patient Records folder in Course Documents. Review the medical record and answer the question indicated. Pay close attention to the question—is the answer a diagnosis code or procedure code or both? If a procedure, remember PCS codes are only used for IP (inpatient) charts. DO NOT CODE LAB TESTS OR PLAIN X-RAYS UNLESS SPECIFIED. Type your answers in the “Student Response” column.
Q#
Case Questions
Student
Response
Instructor Use
1
Download and abstract case OPSX32-Sandall, Oscar
Locate and assign the principal and additional ICD-
10-CM codes
using the ICD-10-CM manual. Select the pair of diagnosis codes from the following:
S83.211A, M67.861 | M23.203, M67.52 | S83.232A, M67.51 | S83.231A, M67.51
ALSO,
locate and assign the principal CPT procedure code
using the CPT manual. Select the single procedure code from the following:
29883 | 29880-RT | 29881-RT | 29870
S83.231A
M67.51
29881-RT
2303B
HI255 Unit 5 Assignment Worksheet
1
HI255 Medical Coding II
2
Download and abstract case SXP01-Williams, Carrie
Locate and assign the principal ICD-10-CM code
using the ICD-10-CM manual. Select the single diagnosis code from the following:
K29.50 | K29.21 | K29.81 | K29.00
ALSO,
locate and assign the principal CPT procedure code
using the CPT manual. Select the single procedure code from the following:
88300 | 88305 | 88305X2 | 88309
K29.50
88305X2
3
Download and abstract case IMG21-Currier, Frank
Locate and assign the principal ICD-10-CM code
using the ICD-10-CM manual. Select the single diagnosis code from the following:
J84.10 | J84.113 | R09.0 | R06.0
ALSO,
Locate and assign the principal CPT procedure code
using the CPT manual. Select the CPT procedure code from the following:
94621 | 94619 | 94760 | 94618
J84.10
94618
4
Download and abstract case OPSX34-Clerk, Solomon
Locate and assign the principal CPT procedure code
using the CPT manual. Select the procedure code from the following:
29827-RT | 29828-RT | 29806-RT | 29820-RT
ALSO,
locate and assign the additional (add-on) CPT
procedure code
using the CPT manual. Select the procedure code from the following:
29828-RT | 29820-RT | 29806-RT | 29826-RT
29827-RT
29826-RT
5
Download and abstract case IPC22-Sapp, Eric
Locate and assign the principal ICD-10-CM code
using the ICD-10-CM manual. Select the diagnosis code from the following:
R78.81 | R78.8 | A41.9 | R65.21
ALSO,
locate and assign the additional ICD-10-CM code
using the ICD-10-CM manual. Select the diagnosis code from the following:
B95.6 | B95.4 | B95.62 | B95.8
R78.81
B95.8
6
Download and abstract case OPSX31-Mayweather, Cora.
Locate and assign the principal and 2 additional ICD-10-CM codes
using the ICD-10-CM manual. C56.3
C78.5
Z93.3
36561
2303B
HI255 Unit 5 Assignment Worksheet
2
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tructions:
ollow the prescribed format by the course policy
pu have 48 hours to answer and submit the solution.
olve the problem with complete and detailed solution.
7x+14]
-x
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What value of x satisfies the matrix equation
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y
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%3D
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[2 -3]
x -8
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6х -9
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and
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Situation 9 - A 6-m long ladder weighing 600 N is shown in the Figure. It is required to determine
the horizontal for P that must be exerted at point C to prevent the ladder from sliding. The
coefficient of friction between the ladder and the surface at A and B is 0.20.
25. Determine the reaction at A.
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27. Determine the required force P.
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At a hydraulic plant the propeller type turbine are rated at 48,000 HP at 82 rpm under a 14 meters head, the
diameter is 7 meters, for a geometrical similar turbine to develop 36,000 HP under a 11 meters head.
After resolving the percentage change in probable flow, determine the following:
What diameter, in meter, of the impeller to be used?
O 70.00
O 22.86
O 40.00
O 7.25
O 13.06
What is the speed, in RPM, should be used?
O 40.00
O…
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- A nearsighted eye is corrected by placing a diverging lens in front of the eye. The lens will create a virtual image of a distant object at the far point (the farthest an object can be from the eye and still be in focus) of the myopic viewer where it will be clearly seen. In the traditional treatment of myopia, an object at infinity is focused to the far point of the eye. If an individual has a far point of 39.5 cm, prescribe the correct power of the lens that is needed. Assume that the distance from the eye to the lens is negligible.arrow_forwardImportant instruction: This question uses the last three-digit value (L3D) of individual student matrix number. For example, if the matrix number is CD180264 then the L3D value is 264 (since the last three digits is 264). Some data require multiplication of the L3D value, for examAdditional instruction: These questions use the last three-digit value (L3D) of individual student matrix number. Example, if the matrix number is CD180264 then the L3D value is 264 (since the last three digits is 264). Some data require multiplication of the L3D value, for example 10(L3D) means 10 x L3D.ple 10(L3D) means 10 x L3D. subject name isarrow_forwardO Web C x k GECO0 X O Course X O Assign X O Web C x k MATHO X Assign X O Discus: X O Quizze O Syllabu x O Grade: x om/courses/31937/assignments/1001318?module_item_id=2616268 tructions: ollow the prescribed format by the course policy pu have 48 hours to answer and submit the solution. olve the problem with complete and detailed solution. 7x+14] -x 1. What value of x satisfies the matrix equation (2 points) 3x-2 x+8 2. Solve for x and y in the matrix equation below: 3 -4 y x-y 4 2] [10 -1] 3 -1] %3D (3 Points) -1 [2 -3] x -8 2 6х -9 -3 3х |1 -2 2 and the matrix 3(A +2B) is equal to? (3 points) 3. For matrices A=| 0 %3D 7 -2 3 -1 [2 -3 The matrix product 2 4 ?(2 points) 4. 0 1 1 4,arrow_forward
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- 2. (If relevant) A clearly labeled diagram (or diagrams) clearly pertaining to your analysis with a coordinate system and relevant labels. Final answer with appropriate units and significant figures. You can use the fprintf() command in MATLAB to format numerical results A 2-3 sentence reflection on your answer. Does it make sense? Why or why not? What are some implications?arrow_forwardProblem 3: Insulation To=1 Toowwww Steam Tx2 T₂ T3 www www R₁ R₁ R₂ www.T R₂ Steam at T1 = 320 °C flows in a cast iron pipe (k= 80 W/m. °C) whose inner and outer diameters are 5 cm = 0.05 m and D₂ = 5.5 cm = 0.055 m, respectively. The pipe is covered with 3-cm-thick glass wool insulation with k = 0.05 W/m. °C. Heat is lost to surroundings at T2 = 5 °C by natural convection and radiation, with a combined heat transfer coefficient of h₂ = 18 W/m². °C. Taking the heat transfer coefficient inside the pipe to be h₁ = 60 W/m². °C, determine the temperature drops across the pipe and the insulation. The determination is based on a unit length of the pipe (L = 1 m). Assumptions 1. Heat transfer is one-dimensional since there is no indication of any change with time. 2. Heat transfer is one-dimensional since there is thermal symmetry about the centreline and no variation in the axial direction. 3. Thermal conductivities are constant. 4. The thermal contact resistant at the interface is…arrow_forwardI asked for problems 6 and 7 to be answered, but I did not get a properly structured answered as the example shows on problem number 1. Here is the link to the questions I already had answered, could you please rewrite the answer so its properly answered as the example shows (Problem 1)? https://www.bartleby.com/questions-and-answers/it-vivch-print-reading-for-industry-228-class-date-name-review-activity-112-for-each-local-note-or-c/cadc3f7b-2c2f-4471-842b-5a84bf505857arrow_forward
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