CDR Sample for Bio-medical Engineer

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    Bio-Medical Engineer: ANZSCO 233913

    Typically, biomedical engineers do the following tasks: Create biomedical devices and equipment, including as devices for clinical diagnosis, trades for bodily parts, and artificial organs. Introduce, modify, maintain, repair, or provide specialist assistance for biomedical hardware.

    Bio-Medical Engineer

    Competency Demonstration Report (CDR) Sample for Bio-Medical Engineer

    All required reports, including three career episodes, continuing professional development, a summary statement, and a curriculum vitae, are included in the Aeronautical Engineer Competency Demonstration Report Sample. The sample’s contents are as follows:

    Curriculum Vitae

    Resume created using a formal template.

    Continuing Professional Development Sample

    The 1000-word CPD sample provides a clear explanation of the author's engineering knowledge.

    Bio-Medical Engineer Career Episode Report Sample – 1

    “Usage of antibodies to develop an immunological test against Malaria”- 1600 words

    Bio-Medical Engineer Career Episode Report Sample – 2

    “Eye Movement Tracking”- 2200 words

    Bio-Medical Engineer Career Episode Report Sample – 3

    “Detection and Classification of Arrhythmia”- 2100 words

    Bio-Medical Engineer Summary Statement Sample

    Detail explanation of all the competency element- 1500 words.

    Bio-Medical Engineer Career Episode Report Samples

    The career episode needs to be in English and written entirely by you, drawing from your most recent work experience. The issues encountered in your project and the actions done to resolve them should be highlighted in every career episode. The ideal way to organize your career episodes would be to number each paragraph like “Career episode 1 (paragraphs 1.1, 1.2, 1.3, etc.)”. The following are the main elements:

    Bio-Medical Engineer Career Episode Sample 1

    Project Name: “Usage of antibodies to develop an immunological test against Malaria”

    The author discusses the project

    “Usage of antibodies to develop an immunological test against Malaria”

    in depth in the first Career Episode. He completed this project while attending college. The following is a list of some of the significant work he completed on this project:

    To conduct a review of the literature on malaria, its transmission mechanism, and its diagnosis
    To specify the materials needed to perform the alkaline lysis procedure for plasmid separation
    To ascertain how to use the alkaline lysis procedure for plasmid separation
    To create an RNase therapy for the plasmid that was extracted
    to view the outcome of the alkaline lysis method's plasmid isolation

    Bio-Medical Engineer Career Episode Sample 2

    Project Name: “Eye Movement Tracking”

    The author talks about the project he completed for his undergraduate degree, “Eye Movement Tracking” in the second Career Episode. The goal of this project is to identify peripheral vision loss, which is the loss of a person’s broad angle field of vision even if their central vision is normal. His tasks and obligations for the project included:

    To ascertain the work schedule for completing the project
    to monitor eye movement by adhering to a series of protocols
    To create a flowchart that shows the image processing and tracking
    To use the MATLAB software to complete the acquisition process
    In order to monitor the eye's movement

    Bio-Medical Engineer Career Episode Sample 3

    Project Name: “Detection and Classification of Arrhythmia”

    The author describes the project he worked on while pursuing his bachelor’s degree in the third Career Episode. “Detection and Classification of Arrhythmia”was the project name. For this project, the author was responsible for the following:

    To complete the literature review
    To gather the ECG information
    To decipher the ECG information
    To use an integrated technique to detect the arrhythmia
    To process the ECG readings using the LABVIEW software
    Using a probabilistic neural method to categorize arrhythmias
    To evaluate the outcome