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Conference Papers
, 2022, 'An individualized exercise intervention improves quality of life for people with multiple myeloma: The MyeEx randomized waitlist-controlled trial', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY, pp. 97 - 97
, 2022, 'THE EFFECTS OF A STRUCTURED-EXERCISE TRAINING PROGRAM ON ERECTILE FUNCTION, CARDIOVASCULAR AND RESPIRATORY PARAMETERS IN MEN FOLLOWING PROSTATE CANCER TREATMENT: PRELIMINARY RESULTS FROM A RANDOMISED, CONTROLLED CLINICAL TRIAL IN PROSTATE CANCER SURVIVORSHIP', in JOURNAL OF SEXUAL MEDICINE, ELSEVIER SCI LTD, pp. S125 - S126
, 2021, 'ADDRESSING INTRINSIC MOTIVATION FOR PHYSICAL ACTIVITY FOR PEOPLE WITH SEVERE MENTAL ILLNESS LIVING WITHIN RESIDENTIAL REHABILITATIONS', in AUSTRALIAN AND NEW ZEALAND JOURNAL OF PSYCHIATRY, SAGE PUBLICATIONS LTD, pp. 58 - 59
, 2021, 'Preliminary findings from the Effects of exercise on Sexual function and CArdiovascular health in men with prostate cancer (ESCA) study', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY, pp. 65 - 66
, 2020, 'Improved Physical Function And Quality Of Life In People With Blood Cancer After An Exercise Intervention', in MEDICINE & SCIENCE IN SPORTS & EXERCISE, LIPPINCOTT WILLIAMS & WILKINS, ELECTR NETWORK, pp. 983 - 983, presented at 67th Annual Meeting of the American-College-of-Sports-Medicine (ACSM), ELECTR NETWORK
, 2020, 'An individualised, supervised exercise program is safe and feasible for patients with multiple myeloma: The MyeEx Study', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY, pp. 155 - 156
, 2020, 'Changes in body composition and sarcopenia status with four weeks of HIIT in breast and prostate and colorectal cancer survivors', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY, pp. 119 - 120
, 2020, 'Evaluating the effectiveness of the YMCA Cancer Survivors Program', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY, pp. 139 - 139
, 2020, 'Evaluation of the YMCA Cancer Survivors' Program: A study protocol', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY, pp. 203 - 203
, 2020, 'Exercise to best support the body's immune response to cancer - Could intensity be key?', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY, pp. 108 - 108
, 2020, 'The interplay between inflammatory markers and body composition with 6 months of HIIT in breast, colorectal and prostate cancer survivors', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY, pp. 203 - 203
, 2019, 'Effects of Exercise on Sexual Function and Cardiovascular Health in Men with Prostate Cancer (ESCA): A Study Protocol', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY, pp. 66 - 67
, 2019, 'Exercise and cancer-related cognitive impairment: A study protocol', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY, pp. 159 - 159
, 2018, 'Effectiveness of a text message intervention to improve whole-of-day activity in cancer survivors participating in clinical exercise rehabilitation: a randomised controlled trial', in JOURNAL OF PHYSICAL ACTIVITY & HEALTH, HUMAN KINETICS PUBL INC, pp. S84 - S84
, 2018, 'Perspectives on physical activity of clinical haematologists and their patients with multiple myeloma', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY, pp. 165 - 166
, 2017, 'Exercise Oncology: More Than Just Sets and Reps', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY, pp. 199 - 199
, 2016, 'THE IMPACT OF A MEDITERRANEAN-STYLE DIETARY PATTERN ON CANCER-RELATED FATIGUE AND QUALITY OF LIFE IN MEN WITH PROSTATE CANCER TREATED WITH ANDROGEN DEPRIVATION THERAPY: A PILOT STUDY', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY-BLACKWELL, pp. 115 - 115
, 2016, 'THE INFLUENCE OF EXERCISE INTENSITY AND FREQUENCY ON CARDIORESPIRATORY FITNESS AND BODY COMPOSITION IN COLORECTAL CANCER SURVIVORS: A RANDOMIZED CONTROLLED TRIAL', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY-BLACKWELL, pp. 109 - 109
, 2016, 'THE INFLUENCE OF EXERCISE INTENSITY ON FATIGUE IN COLORECTAL CANCER SURVIVORS: A RANDOMIZED CONTROLLED TRIAL', in ASIA-PACIFIC JOURNAL OF CLINICAL ONCOLOGY, WILEY-BLACKWELL, pp. 78 - 78
, 2014, 'Pre-operative cardiorespiratory fitness and post-operative cardiometabolic disease in liver transplant recipients', in JOURNAL OF GASTROENTEROLOGY AND HEPATOLOGY, WILEY-BLACKWELL, pp. 97 - 97
Conference Abstracts
, 2024, 'ARE THERE NON-RESPONDERS TO HIIT IN CANCER SURVIVORS? CHANGES IN CARDIORESPIRATORY FITNESS, BODY COMPOSITION AND SYSTEMIC INFLAMMATION', in Journal of Clinical Exercise Physiology, Clinical Exercise Physiology Association, Vol. 13, pp. 407, http://dx.doi.org/10.31189/2165-7629-13-s2.407
Preprints
, Prehabilitation Exercise Training to Target Improved Muscle Strength in Pretransplant Patients Diagnosed With Multiple Myeloma: Protocol for a Pilot Randomized Controlled Trial (Preprint), http://dx.doi.org/10.2196/preprints.64905
Other
, 2025, Figure S1A from Linking Physical Activity to Breast Cancer Risk via Inflammation, Part 1: The Effect of Physical Activity on Inflammation, http://dx.doi.org/10.1158/1055-9965.30722971
, 2025, Figure S1A from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723633
, 2025, Figure S1B from Linking Physical Activity to Breast Cancer Risk via Inflammation, Part 1: The Effect of Physical Activity on Inflammation, http://dx.doi.org/10.1158/1055-9965.30722968
, 2025, Figure S1B from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723630
, 2025, Figure S1C from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723627
, 2025, Figure S1D from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723624
, 2025, Figure S1E from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723621
, 2025, Figure S2A from Linking Physical Activity to Breast Cancer Risk via Inflammation, Part 1: The Effect of Physical Activity on Inflammation, http://dx.doi.org/10.1158/1055-9965.30722965
, 2025, Figure S2A from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723618
, 2025, Figure S2B from Linking Physical Activity to Breast Cancer Risk via Inflammation, Part 1: The Effect of Physical Activity on Inflammation, http://dx.doi.org/10.1158/1055-9965.30722962
, 2025, Figure S2B from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723615
, 2025, Figure S2C from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723612
, 2025, Figure S3A from Linking Physical Activity to Breast Cancer Risk via Inflammation, Part 1: The Effect of Physical Activity on Inflammation, http://dx.doi.org/10.1158/1055-9965.30722959
, 2025, Figure S3A from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723609
, 2025, Figure S3B from Linking Physical Activity to Breast Cancer Risk via Inflammation, Part 1: The Effect of Physical Activity on Inflammation, http://dx.doi.org/10.1158/1055-9965.30722956
, 2025, Figure S3B from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723606
, 2025, Figure S4 from Linking Physical Activity to Breast Cancer Risk via Inflammation, Part 1: The Effect of Physical Activity on Inflammation, http://dx.doi.org/10.1158/1055-9965.30722953
, 2025, Figure S4A from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723603
, 2025, Figure S4B from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723600
, 2025, Figure S4C from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723597
, 2025, Figure S4D from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723594
, 2025, Figure S5A from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723591
, 2025, Figure S5B from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723588
, 2025, Figure S5C from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723585
, 2025, Figure S5D from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723579
, 2025, Supplementary Tables 1-4; Supplementary Figures 1-4 from Linking Physical Activity to Breast Cancer Risk via the Insulin/Insulin-like Growth Factor Signaling System, Part 2: The Effect of Insulin/Insulin-like Growth Factor Signaling on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30721438
, 2025, Table S1 from Linking Physical Activity to Breast Cancer Risk via Inflammation, Part 1: The Effect of Physical Activity on Inflammation, http://dx.doi.org/10.1158/1055-9965.30722950
, 2025, Table S1 from Linking Physical Activity to Breast Cancer via Inflammation, Part 2: The Effect of Inflammation on Breast Cancer Risk, http://dx.doi.org/10.1158/1055-9965.30723576