Tuesday, 12 October 2021

Imaging of Respiratory Tract Disorders - Online resources to support lecture for year 2 MBBS (NUS)


Dear students,

The aim of the session is to link the pathology which you have learnt in the chest, to what is visible on the two most commonly used imaging tests you will use as doctors in day to day clinical practice - the CXR, and CT scan of the Chest. 

As preparation for this session, please revise the material from the year 1 session 2020: Imaging of the Chest and Lungs - Online resources to support lecture for year 1 MBBS (NUS). The material below is for the 2020 cohort, which I hope you find useful to refresh your memory of Chest Anatomy-Radiology correlation.

The aim of the year 1 material is to link the anatomy which you have learnt in the chest, to what is visible on the two most commonly used imaging tests you will use as doctors in day to day clinical practice - the CXR, and CT scan of the Chest.  Radiology allows you to see 'living anatomy' and pathology, of your patients in vivo. The CXR allows you to look inside your patient in 2D, while the CT scan gives you multi-planar sectional details, and a '3D-like' appreciation of both anatomy and pathology. You should aim to develop the ability to orientate yourself to the visible structures when viewing both the CXR, and CT scans; and be able to identify normal anatomy. This forms the foundation for the study of pathology, and the appreciation of visible pathology in your patients using CXRs and CT scans in year 2, and subsequent clinical years.

Year 1 learning path: Start with CXR video 1, then CXR video 2, then CXR anatomy website (see chest section) (using illustrations as drill and quiz examples, by viewing CXR first without annotations, then mousing over each image, then read text); then view CT chest video 1, then CT chest video 2, then attempt to identify CT anatomy here.


Year 2 pre-session preparation, and self learning path:  either review material below as segmented text and illustrations, or presented as a segmented video.



I highlight some of this material during the session, and will take 'live Q and A' during the scheduled 'lecture time'. 

_______________________

(e)Lecture Outline

Section 1: Introduction 
and
Pre-lecture reflection questions / recall and review if necessary Y1 material

Section 2: Learning objectives

Section 3: Pre-test

Section 4: Lecture proper

Part 1 - review of basic principles of CXR production and tissue characterization

Part 2 - review of the CXR findings in six major diseases

Section 5: Post-test

___________________________




Section 1: Introduction 

Please reflect on each of the following questions, pause after each question, write down your answer, and reflect upon your answer. 


1. What is the relevance of diagnostic imaging/radiology in your future clinical practice?

2. How are CXRs and CT scans of the chest produced?

3. How do different tissues appear on CXRs and CT scans? Why does bone appear white? Air black? Soft tissues varying shades of grey?

4. Can you identify normal anatomy on a CXR? CT scan of the chest?

5. Do you know where to find the lecture material on this topic presented in Year 1?

If you are unsure of the answer to any of these questions, please revisit and review the relevant sections in the Y1 lecture online resources on the websites below.

Year 1 learning path: Start with CXR video 1, then CXR video 2, then CXR anatomy website (see chest section) (using illustrations as drill and quiz examples, by viewing CXR first without annotations, then mousing over each image, then read text); then view CT chest video 1, then CT chest video 2, then attempt to identify CT anatomy here.


Section 2 : Learning objectives of this (e)Lecture



Recall that radiology allows you (as future doctors), to see "living" anatomy, and "in vivo" pathology.

This ability to visualise what is going on in the patient in front of you, in both health and disease will be a useful diagnostic tool for you as doctors.

The easiest way to make sense of what you see on a radiology examination is to recall what you have been exposed to and learnt recently in gross pathology.

We will focus on the Chest Radiograph in this lecture. This is the most commonly requested radiology investigation. While this lecture won't show you every possible abnormality visible on CXRs, it is the start of a learning and skill development process. We will spend time on typical presentations of several common and important clinical conditions, and use these to illustrate the basics of CXR interpretation. As you develop experience over the next few years, you will gradually become more familiar with more subtle or gross presentations of disease, with more atypical features.

As you no doubt realise, an XR or scan is a snapshot of a point in time of a developing disease process. Early on, the manifestations of a disease on an XR or scan might be small, ill defined, or difficult to visualise. Later in the disease process, an abnormal feature might be large, and also difficult to define (for example a small, moderate size or large pleural effusion). It may be initially difficult for you to determine with a completely opaque hemithorax whether you are dealing with pneumonia, a large effusion or complete collapse of the lung.




For those of you who are focused on more immediate concerns, the assessment items on radiology that you will be faced with will evaluate your ability to recognise major examples of pathology on common radiological examinations. For example on the chest radiograph or CXR.




To review again the learning objectives of the undergraduate radiology program in the medical curriculum, you can see how radiology translates what you have learnt in Y1 anatomy, to give you the ability to see "in vivo" living anatomy in your future patients.

And visualise in vivo pathology in your patients. 


Section 3 : Pre-test



Let us do an assessment exercise now to not only show you what potential future examination assessment items might be, but also to illustrate how radiology (on the following CXRs) allows you to visualise gross pathology in your patient.

Google image search "lung gross pathology lung cancer"
Google image search "patient with lung cancer"

Google image search for "lung gross pathology pneumothorax"
Google image search "patient with pneumothorax"
Google image search "patient with tension pneumothorax"

Google image search for "lung gross pathology pneumonia"
Google image search "patient with pneumonia"

Google image search for "lung gross pathology pleural effusion"
Google image search "patient with pleural effusion"

Google image search "lung gross pathology cardiac failure pulmonary odema"
Google image search "patient with pulmonary oedema"

Google image search "lung gross pathology cardiac failure alveolar pulmonary odema"
Google image search "lung gross pathology cardiac failure interstitial pulmonary oedema"

Google image search for "gross pathology rib fractures"
Google image search for "patient with rib fractures"

Google image search for "cadaver rib fractures"



Please try and match the five diagnoses (A to E) with the CXRs provided (1 to 6). There are two examples on the CXRs provided of one of the five diagnoses.

This exercise begins the process to introducing you to the typical appearance of common and important clinical problems that your patient may present with.



Section 4: (e)Lecture proper

We will focus on two major areas. Firstly review basic principles of CXR production and interpretation. And then review the key features of six major clinical problems on CXRs.




We first very briefly review basic principles behind the production of a CXR, and why different tissues have different densities on XRs (white, shades of grey, and black).





Recall that XRs are produced by placing you patient between an XR source, and a recording medium; which may be an XR film, or digital recording plate.  The XR is therefore a record of the absorption of XRs as they pass through different organs and tissues in your patient.




By convention, on a XR, black represents areas of greatest XR absorption, and white the least absorption of XRs. On this normal CXR, you can see the radiographic densities of five categories of tissue. Air being blackest, with gradually lighter shades of grey with fat, soft tissue/blood/muscle, bone and metal. You will appreciate how fat being less dense than soft tissue will absorb less XRs, and appear a darker shade of grey than soft tissues or muscle.






This difference in XR absorption between different tissues and organs allows you to distinguish the edge or surface between different tissue layers and organs. Because XRs travel in straight lines through your patient, the interface between different tissues is highlighted and visible at tissue interfaces tangential to the path of the XR beam. This is referred to as the "silhouette sign". A simple analogy help you visualize this is to recall the what the silhouette of an object looks like when placed between a candle or light source and a background surface. The edge of the projected "shadow" is the silhouette making the edge between absorbed and transmitted light.





We use the silhouette phenomenon on a CXR to detect the edge between the normal left heart border, and adjacent aerated normal lung which contains air. We also use this to see the normal lung markings, due to difference in XR absorption between the blood within the pulmonary vessels and the adjacent normal lung. In disease, when the alveoli or air spaces in the lung are filled with fluid, blood or pus, we lose the ability of see these edges, allowing us to infer that the air spaces in the lung are not aerated or air filled.





Finally, an appreciation of the geometry of the XR beam passing through you patient allows you to understand how the heart, which you recall lies anteriorly on the front of the chest cavity is less magnified on a PA (posterior anterior) CXR, where the beam passes from back to front of the patient, compared to an AP (anterior posterior) CXR. Because patients have different chest front to back thicknesses, an AP film does not give you a good estimate of the transverse width of the heart, compared with the internal side to side chest diameter. The ratio of the widest side to side width of the heart divided by internal chest diameter (widest at that level) should be less than 50% in patients who do not have cardiomegaly; and is more reliably assessed on PA rather than AP CXRs, since we are not able to appreciate the front to back diameter of patients on CXRs; and cannot correct for this magnification factor when viewing AP CXRs.





We will now focus on the key radiological features of a few major disease categories on the CXR.

These 6 diseases are not only common, but need to be recognised quickly, accurately and confidently by you as future doctors in the EMD, wards and clinics; as you patient may require urgent treatment.

This is also why testing your ability to recognise these diseases on radiological examinations will take place not only in the radiology section of the examination, but radiology images will also be shown to you as part of the work up and assessment of your patients.




















Pneumonia is described as an area of consolidation, or air space shadowing on a CXR. This appearance may be due to pus (pneumonia), fluid (pulmonary oedema), or blood (for example lung contusion or a pulmonary infarct). A definitive diagnosis is made by correlating the radiological appearance on the CXR with the clinical setting, or clinical findings.













Changing 'window' settings on CT allows you to highlight, and view different tissues. Lung on the 'lung window', and the mediastinum on the 'mediastinum window'. This takes advantage of the different densities of lung vs mediastinum or soft tissue density on CT scans (different XR absorption). Illustrated graphically here - https://www.radiologycafe.com/medical-students/radiology-basics/ct-overview










with Pulmonary Oedema segment @ 13 minutes on video)



above from (and is overview of examples shown)



In this second major section of the (e)Lecture, we will review six major diseases and their CXR findings. Please review the description of the key features of each disease, and then a typical CXR of each disease.





























Section 5 : Answers to the pre-test

We conclude this (e)Lecture by revisiting the quiz presented to you at the beginning of this lecture. The answers should be quite obvious to you after this presentation, and are given on the single slide below. Please review the content of this lecture again, focusing on any area you might be unsure about. Please post any questions you might also have on the padlet digital wall below and you classmates are invited to discuss each question with you on the digital wall before the lecture. I will address these questions both live during the lecture, as well as on this blog, and on Entrada after the session.

                                            



above and below from Google analytics
as of 27 October 2021, 0151am, Singapore Time











Wednesday, 29 September 2021

M3 Tutorial on Friday 1st October 2021 @ 1pm

⬇️
Email message to M3 students on Friday, 1st October 2021
⬇️
Dear M3 SUR CG 26-38 students (79 students, 13 Clinical Groups),
For the Radiology session  “Acute Abdomen”, this will be a one hour scheduled live interactive teaching session (on Zoom) this Friday 25 1st October 2021, followed by self-study session of the presented and reference-further reading online content (see below). Please refer to Entrada and visit the blog for the open access online content curated by A/Prof Goh Poh Sun at this URL https://medicaleducationelearning.blogspot.com/2021/09/m3-tutorial-on-friday-1st-october-2021.html.

Remarks : One hour live interactive presentation by instructor, with live Q and A. Post session optional self study of content from presentation blog. For those students who are interested, please feel free to review the session outline and content before the tutorial.

We will be covering 7 major clinical conditions (below) 

Radiology Bowel Perforation
Radiology Bowel Obstruction
Radiology Acute Appendicitis
Radiology Acute Cholecystitis
Radiology Acute Diverticulitis
Radiology Acute Pancreatitis
Radiology Colon Cancer

Best regards
Poh Sun

(This tutorial process has been iteratively refined over the last year, during the COVID-19 pandemic.
Learning takes place essentially as a process of self study, in each of you individually. Following by active discussion and use of this material in clinical practice. For this session, we will review and discuss your understanding during the live session this Friday. My role is to present compact, usable content, that you can both review and use, and come back to, as and when you require in the future. For those of you who are interested in how this tutorial process has been refined with previous tutorial groups please click to tap on this link - https://medicaleducationelearning.blogspot.com/2021/06/m3-tutorial-on-friday-25-june-2021-1pm.html)

⬇️
Start here with background info and learning tips
⬇️

Some tips to increase your learning and training effectiveness and efficiency:
Poh-Sun Goh

1. Reflect on the purpose of your medical education and expected outcomes of your undergraduate education and clinical training process.
2. Your current clinical exposure to case based learning in the emergency department, wards, and clinics-outpatient settings builds on a foundation of pre-clinical basic sciences in year 1 and 2 of the medical program (with anatomy and pathology particularly applicable to the interpretation of radiology / imaging studies of your patients).
3. For the abdomen, think about what anatomical structures lie within the area of interest/clinical presentation, or may present with the clinical symptoms and signs exhibited by your patients. Ask yourself what radiological investigation you might request or review in order to make a diagnosis - to rule in, or rule out potential clinical diagnosis. Radiology helps you to "see living anatomy and pathology" in your patients. Thus confirm or exclude diagnosis. Keep in mind that early disease may have very subtle of "negative" imaging during the early stages of clinically symptomatic disease.
4. Review the Radiology studies for your patients. Ask yourself why certain investigations were performed. And in what order.
5. Correlate imaging findings with your clinical observations. Do they make sense, correlate with clinical findings, or do you have to entertain alternative diagnostic possibilities?
6. Use textbooks and a wide variety of online resources to improve your diagnostic and interpretative skills. Practice, practice, practice with reflection and feedback, using a range of resources, to increase your exposure to the variety and spectrum of clinical and imaging findings, both normal and abnormal, from typical, to less common and atypical (as you progress to increase your experience and mastery of clinical practice, and improve your knowledge and skills from undergraduate, through postgraduate to continuing professional development and lifelong learning settings).
7. Compare and contrast is one of the simplest and most effective methods to learn to recognise and differentiate between normal and abnormal XRs and scans. Review a series of normal XRs and scans, and then do side by side comparison between examples of normal, normal and abnormal, and examples of abnormal XRs and scans. 

https://effectiviology.com/interleaving/ (mixed practice or interleaving superior to blocked practice)

and



⬇️
Below section is guided learning path (Option 1)
⬇️

Session guide (one learning path) - start with 'Tips' section above, then explore material section below, all on open access websites. One path is to start with 'a curriculum', then explore an approach to the AXR, both normal, and abnormal. Followed by review of common pathology presenting as an acute abdomen on CT scans. Start with bowel perforation on erect CXR, and AXR, unknown cases, for example here, focusing on appearance of free air, and 'Rigler's sign' on AXR. Then move on to examples of acute appendicitisacute cholecystitisacute diverticulitis (focusing on the similarities between these three pathologies, and taking note of differences between normal and abnormal structures, paying attention to the wall of the structure, and the adjacent fat in particular). Then review bowel obstruction, on the AXR, and CT scan, paying attention to the strengths and weaknesses of the AXR, and added value of a CT scan - pay attention to visibility of bowel segment which is dilated proximal to obstructing point, and cause of obstruction shown on CT).

⬇️
Below section is alternative exploratory path (Option 2)
Starting with background information, and "curriculum"
⬇️



⬇️
Below section for Google images search for thematic cases (for practice review, and click through for additional information for selected cases)
⬇️

Radiology Colon Cancer


⬇️
Section below for self-directed learning



👁
Google and Entrada analytics for current tutorial
👀
⬇️

Wednesday, 22 September 2021

Imaging of the Chest and Lungs - Online resources to support lecture for year 1 MBBS (NUS)


 above from

NUSMed Entrada link for Sep 29, 2021 M1 lecture scheduled for 12 noon.

Good morning, Class of 2026, YLLSOM

The decision you will have to make this morning, regarding (attending) this lecture (live) is this:

Why attend? And if you do, why engage (fully)? Be (fully) present. Is the material relevant? Examinable? Will attending, and engaging make you a better doctor?

Let me give you a couple of reasons to do so (attend, engage fully, and be fully present):

This lecture has been scheduled within your curriculum, at this time and place (within the curriculum) intentionally (by the curriculum/Phase 1 or Year 1 team). To bring a clinical perspective, into the classroom. Show you, but more importantly make you feel 'why' clinical imaging or Radiology is relevant and will be used (extensively, and on a regular, daily basis) by you, when you care for your patients. Attending and fully engaging with a 'live' lecture experience is a gift you make to yourself to form links between what you are studying in the classroom, and it's 'real world' application. Shared with you from the perspective, and voice of an active clinician and practitioner in the field. Through this experience I hope you 'feel' the value add of Radiology to not only your future clinical practice, but its immediate relevance to what you are studying in Year 1. Know the 'Why', will encourage and motivate you to work on the class material in Year 1, the 'What' and 'How' - #Why first, before #What and #How.

Yours sincerely, 

Poh Sun

29 September 2021 at 0655am, Singapore Time

Hello Year 1 YLLSOM students, the Class of 2026,

The content in this lecture, and skills you will progressively pick up, to 'read' CXRs (Chest Radiographs or XRs) and familiarity with other imaging (Radiology) of the Chest will help you to see into your patient's. Making you better and more confident doctors, by being able to visualise that is going on in the patient in front of you. Both normal structures, and function (Anatomy and Physiology), and abnormalities, (Pathology and Pathophysiology), which we will revisit next year, Year 2 of your program in 2022.

I hope the content you review here, and which we will cover, gives you an insight, visually, and in your 'mind's eye', of the anatomy, and physiology you are currently studying in lectures, small group sessions, the Anatomy museum and your experience with cadaveric anatomy in your prosection demonstrations.

Yours sincerely, 

Poh Sun

27 September 2021


Preparation for session, and Content to be reviewed (below section)

The aim of the session is to link the anatomy which you have learnt in the chest, to what is visible on the two most commonly used imaging tests you will use as doctors in day to day clinical practice - the CXR, and CT scan of the Chest.  Radiology allows you to see 'living anatomy' and pathology, of your patients in vivo. The CXR allows you to look inside your patient in 2D, while the CT scan gives you multi-planar sectional details, and a '3D-like' appreciation of both anatomy and pathology. You should aim to develop the ability to orientate yourself to the visible structures when viewing both the CXR, and CT scans; and be able to identify normal anatomy. This will form the foundation for the study of pathology, and the appreciation of visible pathology in your patients using CXRs and CT scans in year 2, and subsequent clinical years.

There are two learning paths (illustrated on the blog below) - a Guided learning path, and an Exploratory learning path. Please choose one path based on your learning preference, and review the material before the 'live' lecture. We will review this content during the 'live' lecture on Microsoft Teams.

Guided learning path: For those of you who like a very prescriptive guided learning path - start with CXR video 1, then CXR video 2, then CXR anatomy website (see chest section) (using illustrations as drill and quiz examples, by viewing CXR first without annotations, then mousing over each image, then read text); then view CT chest video 1, then CT chest video 2, then attempt to identify CT anatomy here. (Viewing these videos within or embedded in the blog below is one method to reduce ads which appear before the video). 

Exploratory learning path: For those of you who prefer a more exploratory learning path, starting with interactive illustrations and text, you are encouraged to review the open access CXR anatomy website (see chest section) below, as well as information about how to approach the CXR (including normal anatomy), and CT scan with scrollable images links below. For those students who prefer learning from illustrated online videos, please review the two videos below before the lecture - Chest X-Ray Interpretation Explained Clearly - How to read a CXR and LEARN to Read a Chest Xray in 5 minutes!. Also review the two videos below reviewing visible anatomy on CT of the chest - Anatomy of a Transverse CT of the Thorax and Introduction to Computed Tomographic imaging of the Chest. (Viewing these videos within or embedded in the blog below is one method to reduce ads which appear before the video). 


The following are links to my individual 'lecture' slides. You can preview these in sequence.














https://learningchestradiology.blogspot.com/2018/10/chest-radiology-anatomy-correlation.html
(password access required, this is for instructors)


https://www.kenhub.com/en/library/anatomy/medical-imaging-and-radiological-anatomy

https://radiopaedia.org/articles/chest-radiograph

https://radiopaedia.org/cases/normal-ct-chest

https://www.radiologycafe.com/medical-students/radiology-basics/chest-anatomy

http://www.castlemountain.dk/atlas/index.php?page=modules

STR (The Society for Thoracic Radiology) Curriculum for Medical Students and Allied Health Professionals - Please view Chest Radiography: Cardiothoracic Anatomy (video presentation), and Advanced imaging: Basic Chest CT Anatomy (video presentation) before lecture


CXR video 1 (view within blog below)
⬇️

we will discuss ideas presented in the videos above and below during the 'live' online lecture
(for students, please view both videos, above and below, before the online 'live' lecture)

CXR video 2 (view within blog below)
⬇️


please also review the two videos below reviewing visible anatomy on CT of the chest

CT chest video 1 (view within blog below)
⬇️

CT chest video 2 (view within blog below)
⬇️




Preview of Year 2

Monday, 23 August 2021

#One-(Daily)-Step #FRCR2b #RANCR-Viva #Preparation #Coaching

Coaching, and Daily Practice for FRCR2b and RANCRViva preparation

One - Daily - Regular - Cumulative - Step

by Poh-Sun Goh, 24 August 2021, 0611am, Singapore Time


1. Working collectively as a team, on regular basis, collect and curate (with attribution) examples (visual) from list of likely cases you will be shown.

2. For each case, write short list of key observations, and concluding statement.

3. Practice articulating this (aloud, out loud); in a setting/adopting a body posture-breathing-tone of voice (somatic practice, coaching) that you will use on the day of the examination.

- practice with increasing intensity, and duration in the lead up to the viva examination

- keep refining, editing (down, shorter and shortest possible is best) exactly what you will say, and key reciting this out loud until this feels natural and a reflex for you

- do this every day

- start today by selecting one case example, and drafting what you will say

- as a challenge, and coaching request, may I invite each of the 2b and RANCR viva candidates to curate one open access plain film example from online image search (with attribution - provide URL link), and draft of what you will say in the viva - please do this by Monday next week [as you all get into the hang of this, imagine how little effort collecting and curating this will be if each of you does one case example a day ... and imagine if every resident does this ..... and shares the effort ..... and benefits]


The fundamental premise is that you 'know' likely cases (examples) you will encounter in the examination, yet do not 'practice' in a habitual, systematic, efficient and therefore time-effective-efficient way. On regular (daily) basis. - Poh-Sun Goh, 24 August 2021, 0625am, Singapore Time


One simple place to start is with Chapman & Nakielny's Aids to Radiological Differential Diagnosis Part 1 and Part 2 - https://www.elsevier.com/books/chapman-and-nakielnys-aids-to-radiological-differential-diagnosis/rafiee/978-0-7020-7539-1