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Contributors
xxiii
Emaad J. Iqbal New York-Presbyterian Hospital, Columbia University Irving
Medical Center, New York, NY, USA
ChristineS.Ji Department of Pharmacy, Beth Israel Deaconess Medical Center,
Boston, MA, USA
HeatherJohnson University of Pittsburgh Medical Center, Pittsburgh, PA, USA
University of Pittsburgh, Pittsburgh, PA, USA
Lesly V. Jurado Hernández
Department of Pharmacy, Novant Health New
Hanover Regional Medical Center, Wilmington, NC, USA
AdaSelinaJutba, PharmD, BCCCP Department of Pharmacy, Memorial Her­mann Memorial City Medical Center, Houston, TX, USA
NidhiKataria Department of Laboratory Medicine and Pathology, Mayo Clinic,
Rochester, MN, USA
MichaelT.Kenes Michigan Medicine, Ann Arbor, MI, USA
College of Pharmacy, University of Michigan, Ann Arbor, MI, USA
SoyoungKristi Kim Clinical Pharmacy Specialist, Critical Care, Department of
Pharmacy, Cooper University Health Care, Camden, NJ, USA
BryanD.Kraft Division of Pulmonary, Allergy, and Critical Care Medicine, Duke
University School of Medicine, Durham, NC, USA Division of Pulmonary and Critical Care Medicine, Washington University School of Medicine, Saint Louis, MO, USA
JustinKreuter Department of Laboratory Medicine and Pathology, Mayo Clinic,
Rochester, MN, USA
CaitlinE.Kulig Ernest Mario School of Pharmacy, Rutgers the State University of
New Jersey, Piscataway New Jersey and St. Joseph’s University Medical Center, Paterson, NJ, USA
GiovannaLandi Department of Cardio-Thoracic Surgery, Maastricht University
Medical Centre (MUMNC+), Maastricht, The Netherlands
GraceLee Los Angeles Medical Center, Kaiser Permanente, Los Angeles, CA, USA
Steven M. Lemieux Veterans Administration Connecticut Healthcare System,
West Haven, CT, USA
FannyLi Departments of Clinical Pharmacy and Pharmaceutical Services, Uni-
versity of California, San Francisco Health, San Francisco, CA, USA
DustyLisi Heart Failure, Emory Saint Joseph’s Hospital, Atlanta, GA, USA
xxiv
Contributors
Natasha D. Lopez Department of Pharmacy, Massachusetts General Hospital,
Boston, MA, USA
Uvette Lou Department of Pharmacy, Massachusetts General Hospital, Bos-
ton, MA, USA
SamanthaLuk Department of Pharmacy, Massachusetts General Hospital, Bos-
ton, MA, USA
FabioMacori
Ospedale Santo Spirito Rome, Rome, RM, Italy
KristinMadenci Brigham and Women’s Hospital, Harvard Medical School, Bos-
ton, MA, USA
AhmedA.Mahmoud Houston Methodist Hospital, Houston, TX, USA
Manu L. N. G. Malbrain First Department of Anaesthesiology and Intensive
Therapy, Medical University Lublin, Lublin, Poland Medical Data Management, Medaman, Geel, Belgium International Fluid Academy, Lovenjoel, Belgium
MaricarMalinis Section of Infectious Diseases, Yale University School of Medi-
cine, New Haven, CT, USA
Patrick Mazi Washington University in St. Louis, Barnes Jewish Hospital, St.
Louis, MO, USA
Sharon L. McCartney Department of Anesthesiology, Pain, and Perioperative
Medicine, University of Kansas, Kansas City, USA
LauraC. McNamara Department of Medicine, Beth Israel Deaconess Medical
Center, Boston, MA, USA
SachinMehta Department of Anesthesiology, Pain, and Perioperative Medicine,
University of Kansas, Kansas City, USA
AndresF.Miranda-Arboleda Brigham and Women’s Hospital, Harvard Medical
School, Boston, MA, USA
AliciaH.Muratore Division of Gastroenterology and Hepatology, Department of
Medicine, UNC Chapel Hill School of Medicine, Chapel Hill, NC, USA
Andrea M. Nei Department of Pharmacy, Mayo Clinic Hospital—Rochester,
Rochester, MN, USA
HavenNisly Department of Medicine, Duke University School of Medicine, Dur-
ham, NC, USA
CavanO’Kane Ernest Mario School of Pharmacy, Rutgers, the State University of
New Jersey, Piscataway, NJ, USA Penn Medicine Princeton Medical Center, Plainsboro Township, NJ, USA
Contributors
xxv
RobertOlver Department of Intensive Care Medicine, Victorian Heart Hospital,
Monash Health, Clayton, VIC, Australia Department of Intensive Care Medicine, Monash Medical Centre, Monash Health, Clayton, VIC, Australia
AlejandroNarváezOrozco University of Antioquia, Medellín, Colombia
Alex Panuccio Los Angeles Medical Center, Kaiser Permanente, Los Ange-
les, CA, USA
MonaK.Patel
Pulmonary, Critical Care & Sleep Medicine, NYU Langone Health,
NYU Grossman School of Medicine, New York, USA
TylerPeck Beth Israel Deaconess Medical Center, Harvard Medical School, Bos-
ton, MA, USA
CamilleR.Petri Division of Pulmonary and Critical Care, Department of Medi-
cine, Beth Israel Deaconess Medical Center, Harvard Medical School, Bos­ton, MA, USA
Kayla Popova University of Michigan Health—Michigan Medicine, Ann
Arbor, MI, USA
AndrewPosen Department of Pharmacy Practice, University of Illinois Chicago
College of Pharmacy, Chicago, IL, USA
LeandroLuis Pozzer Section of Cardiac Electrophysiology, Buenos Aires Car-
diovascular Institute, Buenos Aires, Argentina
EliasH.Pratt Division of Pulmonary Allergy, and Critical Care Medicine, Duke
University School of Medicine, Durham, NC, USA
MaleriePratt Brigham and Women’s Hospital, Boston, MA, USA
Craig R. Rackley Division of Pulmonary Allergy, and Critical Care Medicine,
Duke University School of Medicine, Durham, NC, USA
Lance Ray Department of Pharmacy, Denver Health Medical Center, Den-
ver, CO, USA
ErinReichert Department of Pharmacy, The Ohio State University, Wexner Med-
ical Center, Columbus, OH, USA
AlyseReichheld Department of Medicine, Beth Israel Deaconess Medical Center,
Boston, MA, USA
Danilo Weir Restrepo Internal Medicine Resident, CES University, Medellín,
Colombia
Adele Robbins Advanced Heart Failure and Transplant, Piedmont Hospital,
Atlanta, GA, USA
xxvi
Contributors
Francisco Machiavello Roman Section of Infectious Diseases, Yale University
School of Medicine, New Haven, CT, USA
Claudio Ronco International Renal research Institute of Vicenza (IRRIV),
Vicenza, Italy
MahmoudM.Sabawi Houston Methodist Hospital, Houston, TX, USA
MehrnazSadrolashra Beth Israel Deaconess Medical Center, Boston, MA, USA
Ruben Santiago
Department of Pharmacy, Jackson Memorial Hospital,
Miami, FL, USA
CinaSasannejad Department of Neurology, Duke University School of Medicine,
Durham, NC, USA
RichardM.Schwartzstein Beth Israel Deaconess Medical Center, Harvard Med-
ical School, Boston, MA, USA
KristineN.Schwietz Department of Pharmacy, Massachusetts General Hospital,
Boston, MA, USA
YahyaShehabi Department of Intensive Care Medicine, Victorian Heart Hospital,
Monash Health, Clayton, VIC, Australia School of Clinical Sciences, Monash University, Clayton, VIC, Australia Prince of Wales Clinical School of Medicine, University of New South Wales, Randwick, Sydney, NSW, Australia
Sheela V. Shenoi Yale University School of Medicine, Veterans Administration
Connecticut Healthcare System, West Haven, CT, USA
Bethany R. Shoulders University of Florida College of Pharmacy, Gaines-
ville, FL, USA
SarahMatuszak Barnes-Jewish Hospital Plaza, St Louis, MO, USA
ChelseySong University of Maryland Medical Center, Baltimore, MD, USA
Andrej Spec Washington University in St. Louis, Barnes Jewish Hospital, St.
Louis, MO, USA
KatherineSpezzano University of Kentucky HealthCare, Lexington, KY, USA
JoannaL.Stollings Department of Pharmaceutical Services, Vanderbilt Univer-
sity Medical Center, Nashville, TN, USA Critical Illness, Brain Dysfunction, and Survivorship (CIBS) Center, Vanderbilt University Medical Center, Nashville, TN, USA
DavidSugrue Department of Pharmacy, UW Health, Madison, WI, USA
LaurenSutton Barnes-Jewish Hospital Plaza, St Louis, MO, USA
Contributors
xxvii
PoornimaLakshmiTamma New York-Presbyterian Hospital, Columbia Univer-
sity Irving Medical Center, New York, NY, USA
Erica Tavares Department of Pharmacy, Massachusetts General Hospital, Bos-
ton, MA, USA
FernandaTavares-Da-Silva Drug Safety, Organon BV, Brussels, Belgium
SeemaS.Tekwani Division of Pulmonary, Allergy, Critical Care, and Sleep Med-
icine, Emory University School of Medicine, Atlanta, GA, USA
HaileyA.Thompson
Department of Pharmacy, UW Health, Madison, WI, USA
Beverly Tomita Carle Illinois College of Medicine, University of Illinois,
Urbana, IL, USA
Morgan Trammel Department of Pharmacy, Duke University Hospital,
Durham, USA
MiguelH.Vicco Drug Safety Lead, Organon BV, Brussels, Belgium
SybilE.Watkins Department of Internal Medicine, Vanderbilt University Medical
Center, Nashville, TN, USA
AndrewJ.Webb Massachusetts General Hospital, Boston, MA, USA
DexterWimer Departments of Clinical Pharmacy and Pharmaceutical Services,
University of California, San Francisco Health, San Francisco, CA, USA
AdrianWong Beth Israel Deaconess Medical Center, Boston, MA, USA
NikithaYagnala Department of Pharmacy, Hospital of University of Pennsylva-
nia, Philadelphia, PA, USA
GiacomoZaccherini Department of Medical and Surgical Sciences, Alma Mater
Studiorum—University of Bologna, Bologna, Italy
Alberto Zanella Anestesia e Terapia Intensiva Adulti, Fondazione IRCCS Ca’
Granda—Ospedale Maggiore Policlinico, Milan, Italy Department of Pathophysiology and Transplantation, University of Milan, Milan, Italy
Part I
Clinical and Diagnostic Approach
Chapter 1
Approach toClinical Reasoning inCritical Care
YasirAlzaidi

1.1 Introduction

The diagnostic possibilities entertained in the critical care unit are limited in num­ber versus other noncritical care settings. However, diagnostic errors are common. A study by Winters etal. identied 28% of autopsies as having at least one misdiag­nosis, with potentially lethal misdiagnoses quantied at 6.3% [44]. A more recent study by Auerbach etal. reported similar ndings, in which 23% of adult patients, who were transferred to the intensive care unit (ICU) or died in the hospital, had missed or delayed diagnoses [4]. In addition to being common, the unifying theme among all diagnostic errors is that they are largely preventable [45]. A major cause leading to diagnostic errors implicates cognitive bias, a aw in judgment and decision- making [36]. Graber etal. in a study of diagnostic errors in internal medi­cine identied cognitive factors as being the leading cause of diagnostic errors, exceeding system-related factors [22]. More amenable environments to cognitive diagnostic errors are high-stress areas, including critical care units (CCUs). Accordingly, and in response to diagnostic errors being an urgent patient safety concern, the National Academy of Medicine’s report, “Improving Diagnosis in Health Care,” outlined a set of recommendations to “improve diagnosis and reduce diagnostic errors,” emphasizing the implementation of a collaborative, team-based approach to diagnosis, and the education and training of all healthcare professionals in the diagnostic process [5].
While pharmacists endeavor to ensure appropriate drug therapy in the ICU, it should be recognized that drug therapy cannot be appropriate unless related to the correct diagnosis.It has been said, and I agree, that “the two major products of clini­cal decision making are diagnoses and treatment plans. If the rst is correct, the second has a greater chance of being correct too” [8]. Diagnostic errors, therefore,
Y. Alzaidi (*) Department of Pharmacy, Al Hada Armed Forces Hospital, Taif, Saudi Arabia
Switzerland AG 2025 Y. Alzaidi, M. A. Gebily (eds.), The Pharmacist’s Expanded Role in Critical Care Medicine, https://doi.org/10.1007/978-3-031-77335-8_1
3© The Author(s), under exclusive license to Springer Nature
4
Fig. 1.1 A collaborative approach to diagnosis and the role of the pharmacist clinician
Pharmacist clinicians
who support the diagnostic process
Physicians
The patient
Y. Alz a i d i
defy the best-intended efforts to improvedrug therapy outcomes. Moreover, while misdiagnosis leads to wasteful or unnecessary treatments, it exposes patients to toxic medications, causes delay in treatment, and leads to failure in treating the cor­rect underlying condition. The safe and effective use of drug therapy, therefore, mandates a collaborative, team-based approach to diagnosis, in which the pharma- cist clinician plays an active role (Fig.1.1). Graber etal. best described the collab- orative approach to diagnosis as being a matter of “distributed cognition,” to which pharmacist clinicians, I argue, contribute unique knowledge and perspective [23]. Specically, pharmacists excel at checking for errors and would prove indispens­able in preventing lapses in clinical reasoning. This expanded role of the pharma­cist should not be perceived as nonessential or noncore to the pharmacy profession. In fact, the full potential of pharmacists’involvement in diagnostic safety has yet to be realized.
1.2 Cognitive Bias inCritical Care
Among important areas that are amenable to improvement in the ICU are the recog­nition and avoidance of diagnostic errors, of which cognitive biases constitute a principal cause [8]. In essence, what is referred to as cognitive biases are thought patterns that inuence decision-making and subsequently set the stage for erroneous clinical judgment. Many types of cognitive biases are now appreciated, with the most commonly encountered types in the ICU are availability bias, conrmation
Ap
1
proach toClinical Reasoning inCritical Care
5
bias, anchoring bias, framing effect, diagnostic momentum, and premature closure (Table1.1; [26]).
Prevention of diagnostic errors due to cognitive factors relies on understanding how these errors occur.Flaws in clinical diagnostic reasoning contribute largely to diagnostic errors with knowledge decits being less contributory [22]. One of the theories that explain diagnostic reasoning is the dual-process model, which theo­rizes two systems of thinking: the automatic thinking (System I) versus nonintuitive deliberate thinking (System II; [28]). These two systems of clinical reasoning mark­edly differ. System I thinking is fast and intuitive, relies on pattern recognition, and is automatic. In contrast, System II thinking is slow, effortful, analytical, and volun­tary[28]. The majority of cognitive biases originate from the fast intuitive thinking of System I [9]. While System I thinking is error-prone, System II thinking—albeit imperfect—is error-resistant and less vulnerable to bias.Accordingly, it should be appreciated that clinical experience, per se, does not protect from cognitive bias. Expert clinicians are not immune from making cognitive errors, primarily because of their tendency to resort to System I thinking, opting for short-cuts, reex assump­tions, rules of thumb, and decision-making based on incomplete data. Notably, nov­ices are not more likely to make diagnostic errors compared to expert clinicians [29].All too often, novices default to the slow and deliberate System II thinking, and only make a ‘working diagnosis’ after having carefully analyzed all related data. It should be noted, however, that in the complex and fast-paced environment of critical care, it may be more difcult to resist System I thinking, mandating effec­tive preventative strategies.
Strategies to prevent cognitive diagnostic errors include debiasing strategies and cognitive bias awareness, also known as metacognition [36]. Metacognition is increasingly adopted and involves self-reection on the process of reasoning, employing System II problem-solving [36]. However, metacognition alone is likely to be insufcient and merits a synergistic approach. In addition to metacognition, external scrutiny of one’s clinical diagnostic reasoning is proposed. A multidisci­plinary approach to diagnosis, in which pharmacists play an active role, ensures
Table 1.1 Common cognitive biases in the ICU
Biases Description
Anchoring bias The tendency to xate on initial impressions without adjusting
Availability bias The tendency to judge a diagnosis as more likely if it readily
Conrmation bias The selective search for evidence that supports the diagnosis Diagnostic momentum A diagnosis is accepted and passed on without supporting
Base rate neglect The tendency to neglect the true prevalence of a disease Framing effect The diagnosis is inuenced by how the information is presented Premature closure (or search
satiscing) Commission bias The tendency towards action in preference to inaction
to additional new information
comes to mind
evidence
The tendency to stop the search once the rst plausible cause is identied
6
Y. Alz a i d i
sound clinical reasoning and prevents cognitive lapses leading to diagnostic errors. With the proper education on diagnostic reasoning, pharmacists are able to assist diagnosticians in avoiding diagnostic pitfalls, thus reducing diagnostic errors and improving drugtherapy outcomes (Fig.1.1).
1.3 The Art ofClinical Assessment intheICU
The clinical assessment of a critically ill patient should follow a structured, system­atic approach with careful attention to detail.The systematic approach should, pref­erably, begin with an independent review of systems—for example, the central nervous, respiratory, cardiovascular, gastrointestinal, genitourinary, and musculo­skeletal systems (Table1.2). The use of a mnemonic checklistas a supplementis of particular value. One of the most commonly usedcare bundle checklists in the ICU is the FASTHUG mnemonic [39]. Subsequently, the independent review of systems is then complemented by the documented patient-specic information, includ­inghistory of present illness, past medical history, progress notes,clinical examina­tions, laboratory ndings, medication history, etc. This sequential approach to patient assessment is proposed to ensure unbiased evaluation and to reconcilemiss­ing, discordant, or conicting ndings from the independent review of systems with that obtained from thedocumentedpatient-specicinformation. Drug therapy deci­sions can then be decided on the basis of ndings from this assessmentapproach (Fig.1.2).
Notably, an important element of clinical assessment in the ICU is sound clinical reasoning. As previously noted,a majorcause of diagnostic errors implicates faulty clinical reasoning due to cognitive bias. Accordingly, sound clinical reasoning should incorporate debiasing strategies to counteract cognitive bias. For exam­ple,instead of searching for evidence that conrms the diagnosis, a sound clinical reasoning involves the search for evidence that is inconsistent with the diagnosis and always considers plausible alternative diagnoses. Specic questions to ask when evaluating the grounds for the initial diagnosis include the following:What nding does not t with the proposeddiagnosis? Is there an alternate cause that could satisfactorily explain the clinical presentation?If so, what additional causes might account for the clinical presentation, etc.? Importantly, wheninvestigating severalcauses, a higher “diagnostic weight” should be assigned to the relatively more common cause (Table1.3). “Common things occur commonly,” and“uncom­mon presentations of common diseases are more common than common presenta­tions of uncommon diseases.” Failure to consider the base rate can result in diagnostic errors [3].